Rapport d’analyse de la taille, de la part et des tendances du marché des superalliages au Moyen-Orient et en Afrique – Aperçu et prévisions de l’industrie jusqu’en 2031

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Rapport d’analyse de la taille, de la part et des tendances du marché des superalliages au Moyen-Orient et en Afrique – Aperçu et prévisions de l’industrie jusqu’en 2031

  • Chemical and Materials
  • Publish Reports
  • Sep 2024
  • MEA
  • 350 Pages
  • Nombre de tableaux : 130
  • Nombre de figures : 25

Middle East And Africa Superalloys Market

Taille du marché en milliards USD

TCAC :  % Diagram

Diagram Période de prévision
2024 –2031
Diagram Taille du marché (année de référence)
USD 291.96 Million
Diagram Taille du marché (année de prévision)
USD 478.68 Million
Diagram TCAC
%
DiagramPrincipaux acteurs du marché
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>Segmentation du marché des superalliages au Moyen-Orient et en Afrique, par type de produit ( superalliages à base de nickel , superalliages à base de cobalt et superalliages à base de fer), application (aérospatiale et défense, turbines à gaz industrielles, automobile , pétrole et gaz, énergie, industrie maritime, industrie de transformation chimique, réacteurs nucléaires , électricité et électronique, et autres) – Tendances et prévisions de l'industrie jusqu'en 2031

Marché des superalliages

Analyse du marché des superalliages

Le marché des superalliages connaît une croissance soutenue, tirée par la demande croissante des secteurs de l'aéronautique, de la production d'énergie et de l'automobile. Ces matériaux hautes performances, connus pour leur capacité à résister à des températures extrêmes et à des environnements corrosifs, sont essentiels pour les moteurs à turbine avancés et les applications industrielles. Les avancées technologiques et les investissements accrus dans la recherche et le développement améliorent les performances des superalliages et élargissent leurs applications. La dynamique du marché est également influencée par les fluctuations des prix des matières premières et les facteurs géopolitiques affectant les chaînes d'approvisionnement. Dans l'ensemble, le marché devrait continuer à se développer, en mettant l'accent sur l'innovation et la durabilité pour répondre à l'évolution des demandes industrielles.

Taille du marché des superalliages

Français La taille du marché des superalliages au Moyen-Orient et en Afrique était évaluée à 291,96 millions USD en 2023 et devrait atteindre 478,68 millions USD d’ici 2031, avec un TCAC de 6,5 % au cours de la période de prévision de 2024 à 2031. En plus des informations sur les scénarios de marché tels que la valeur marchande, le taux de croissance, la segmentation, la couverture géographique et les principaux acteurs, les rapports de marché organisés par Data Bridge Market Research comprennent également une analyse des importations et des exportations, un aperçu de la capacité de production, une analyse de la consommation de production, une analyse des tendances des prix, un scénario de changement climatique, une analyse de la chaîne d’approvisionnement, une analyse de la chaîne de valeur, un aperçu des matières premières/consommables, des critères de sélection des fournisseurs, une analyse PESTLE, une analyse Porter et un cadre réglementaire.

Tendances du marché des superalliages

« Demande croissante dans le secteur aérospatial »

Le marché des superalliages connaît plusieurs tendances majeures. Tout d’abord, la demande croissante de turbines à gaz et de moteurs à réaction à haut rendement dans l’aéronautique et la production d’électricité stimule la croissance du marché. Les progrès de la fabrication additive et de l’impression 3D permettent des conceptions et des applications de superalliages plus complexes. En outre, l’accent est de plus en plus mis sur les pratiques durables et respectueuses de l’environnement, ce qui encourage le développement de méthodes de production et de processus de recyclage plus écologiques pour les superalliages. Les efforts du secteur automobile pour améliorer les performances et l’efficacité énergétique contribuent également à l’augmentation de l’utilisation des superalliages. Les tensions géopolitiques et les fluctuations des prix des matières premières ont un impact sur les chaînes d’approvisionnement, influençant la dynamique du marché. Dans l’ensemble, l’innovation et la durabilité sont au cœur de l’évolution du marché des superalliages.

Portée du rapport et segmentation du marché des superalliages

Attributs

Informations clés sur le marché des superalliages

Segments couverts

Type de produit : Superalliages à base de nickel, superalliages à base de cobalt et superalliages à base de fer

Application : aérospatiale et défense, turbines à gaz industrielles, automobile, pétrole et gaz, énergie, industrie maritime, industrie de transformation chimique, réacteurs nucléaires, électricité et électronique, et autres

Pays couverts

Émirats arabes unis, Arabie saoudite, Israël, Afrique du Sud, Égypte, Qatar, Oman, Koweït, Bahreïn et reste du Moyen-Orient et de l'Afrique

Principaux acteurs du marché

voestalpine High Performance Metals GmbH (une filiale de voestalpine AG) (Autriche), VDM Metals (Allemagne), Outokumpu (Finlande), ATI (États-Unis), AMG ALUMINUM (États-Unis), Eramet (France) et Aperam (Luxembourg) entre autres

Opportunités de marché

Progrès technologiques et innovations dans les technologies de fabrication et de traitement des superalliages

Croissance rapide du secteur des énergies renouvelables

Ensembles d'informations sur les données à valeur ajoutée

Outre les informations sur les scénarios de marché tels que la valeur marchande, le taux de croissance, la segmentation, la couverture géographique et les principaux acteurs, les rapports de marché organisés par Data Bridge Market Research comprennent également une analyse des importations et des exportations, un aperçu de la capacité de production, une analyse de la consommation de production, une analyse des tendances des prix, un scénario de changement climatique, une analyse de la chaîne d'approvisionnement, une analyse de la chaîne de valeur, un aperçu des matières premières/consommables, des critères de sélection des fournisseurs, une analyse PESTLE, une analyse Porter et un cadre réglementaire.

Définition du marché des superalliages

Le marché des superalliages désigne le segment de l'industrie des matériaux axé sur les alliages hautes performances conçus pour résister à des conditions extrêmes, telles que les températures élevées, la corrosion et l'oxydation. Ces alliages, qui comprennent des superalliages à base de nickel, de cobalt et de fer, sont essentiels dans des applications exigeantes telles que les moteurs aérospatiaux, les turbines de production d'énergie et les composants automobiles hautes performances. Les superalliages offrent une résistance mécanique et une stabilité supérieures, ce qui les rend essentiels pour les systèmes technologiques avancés. Le marché englobe la production, la distribution et l'application de ces matériaux, motivés par leur rôle essentiel dans l'amélioration des performances et de la durabilité dans diverses industries de haute technologie.                   

Dynamique du marché des superalliages

Conducteurs  

  • Demande croissante de superalliages de la part de l'industrie aérospatiale

La demande croissante de superalliages de la part de l'industrie aéronautique est un facteur important de croissance du marché mondial des superalliages. Les superalliages, connus pour leur résistance exceptionnelle à la chaleur, à la corrosion et à l'oxydation, sont essentiels à la fabrication de composants clés des avions, en particulier dans les moteurs. Le secteur aéronautique dépend fortement de matériaux capables de résister à des températures extrêmes et de maintenir l'intégrité structurelle, en particulier dans les aubes de turbine, les chambres de combustion et les systèmes d'échappement, où les conditions de fonctionnement peuvent atteindre jusqu'à 1 000 °C.

L’une des principales raisons de l’utilisation croissante des superalliages dans l’aéronautique est leur capacité à conserver leur résistance à haute température, ce qui les rend idéaux pour les moteurs à réaction, qui subissent une chaleur intense pendant leur fonctionnement. Les superalliages à base de nickel, par exemple, sont couramment utilisés dans les aubes de turbines à haute pression en raison de leur stabilité thermique supérieure et de leur capacité à résister à la déformation. Ces alliages améliorent l’efficacité des moteurs, ce qui conduit à une meilleure consommation de carburant et à une réduction des émissions de carbone, deux préoccupations essentielles pour l’industrie aéronautique. Avec l’expansion du secteur aéronautique mondial, notamment tirée par la hausse de la demande de transport aérien et des dépenses de défense, le besoin d’avions plus efficaces et plus durables augmente.

Par exemple,

Selon l'Association internationale du transport aérien (IATA), l'industrie aéronautique connaîtra une croissance durable au cours des 20 prochaines années, car près du double du nombre de passagers par rapport au scénario actuel utilisera le service aérien d'ici 2037. Il y aura donc une énorme demande pour les superalliages légers par nature et utilisés dans la fabrication d'avions.

  • Augmentation des budgets de défense et des investissements militaires à l’échelle mondiale

L’augmentation des budgets de défense et des investissements militaires à l’échelle mondiale est un facteur important de croissance du marché des superalliages. Les superalliages, en particulier les alliages à base de nickel et de cobalt, sont des matériaux essentiels utilisés dans la production d’équipements militaires de haute performance, notamment les moteurs à réaction, les missiles et les navires de guerre. Les propriétés uniques des superalliages, telles que leur capacité à résister à des températures extrêmes, à des environnements à fortes contraintes et à des conditions corrosives, les rendent indispensables dans les applications militaires où les performances et la durabilité sont primordiales.

Les dépenses mondiales en matière de défense augmentent régulièrement en raison des tensions géopolitiques accrues, des efforts de modernisation et du besoin de capacités de défense plus avancées. Par exemple, les avions de combat avancés comme le F-35 Lightning II, développé par Lockheed Martin, dépendent fortement des superalliages dans leurs moteurs à turbine. Les composants du moteur fonctionnent à des températures et des pressions extrêmement élevées, et les superalliages sont utilisés pour maintenir l’intégrité structurelle et les performances dans ces conditions exigeantes. Alors que plusieurs pays, dont les États-Unis, le Royaume-Uni et le Japon, augmentent leurs achats d’avions F-35, la demande de superalliages dans le secteur de la défense est vouée à augmenter. 

Par exemple,

En avril 2023, selon un article publié par Reuters en 2023, le ministère américain de la Défense a attribué à Lockheed Martin un contrat de 7,8 milliards de dollars pour produire 126 jets F-35 supplémentaires pour l'armée de l'air, la marine et le corps des Marines, reflétant la demande continue de superalliages utilisés dans leurs moteurs.

Opportunités

  • Progrès technologiques et innovations dans les technologies de fabrication et de traitement des superalliages

Technological advancements and innovations in superalloy manufacturing and processing technologies present significant growth opportunities for the superalloys market. Superalloys, known for their exceptional mechanical strength, resistance to thermal degradation, and oxidation, are critical materials in industries such as aerospace, power generation, automotive, and chemical processing. As demand for high-performance materials increases in these sectors, cutting-edge advancements in production techniques and material composition are poised to unlock new potentials for the superalloys market.

One of the most transformative innovations in superalloy manufacturing is Additive Manufacturing (AM), also known as 3D printing. This technology allows for the production of complex geometries with reduced material waste, which is highly beneficial in sectors like aerospace, where lightweight components are crucial. AM provides manufacturers with the flexibility to create custom-designed superalloy parts with high precision, optimizing performance in high-temperature and high-stress environments. By reducing the need for costly and time-consuming machining processes, AM has the potential to significantly lower production costs, making superalloys more accessible across various industries. Innovations in powder metallurgy are also driving growth in the superalloys market. Advanced techniques such as Hot Isostatic Pressing (HIP) and Metal Injection Molding (MIM) enable the production of superalloy components with enhanced microstructural properties and improved mechanical performance. These processes allow for better control over grain size and distribution, resulting in parts that are more resistant to fatigue, creep, and oxidation. The ability to produce components with superior performance characteristics opens up new applications for superalloys in demanding environments, such as turbine blades in gas engines or structural components in jet engines.

  • Fast Growing Renewable Energy Sector

The rapid growth of the renewable energy sector is creating significant opportunities for the superalloys market, as these materials are critical in the construction of high-performance energy systems. Superalloys, known for their exceptional strength, heat resistance, and corrosion resistance, are essential in industries like wind, solar, geothermal, and hydrogen energy.

In wind energy, especially offshore wind farms, turbines face extreme conditions such as high winds and corrosive marine environments. Superalloys are used in turbine blades, gears, and bearings, helping to extend the lifespan and reliability of these systems. As governments around the world invest heavily in wind energy infrastructure, the demand for durable materials like superalloys will continue to rise. Countries such as China, the U.S., and parts of Europe are scaling up offshore wind projects, which creates direct market opportunities for superalloy manufacturers. Again, in Concentrated Solar Power (CSP) plants, superalloys are critical for components that must withstand high temperatures, such as heat exchangers and turbines. These plants operate at extreme temperatures to capture and store solar energy, and the need for materials that can endure such thermal stress drives demand for nickel- and cobalt-based superalloys. Growth in CSP plants, particularly in regions like the Middle East, will further fuel the superalloy market.

For instance,

In January 2024 according to an article published by International Energy Agency the dramatic 50% increase in global renewable energy capacity in 2023, reaching nearly 510 gigawatts, underscores a significant opportunity for the super alloys market. As solar PV and wind power installations expand rapidly. Super alloys are critical in renewable energy applications due to their exceptional strength and corrosion resistance. They are used in wind turbine components, such as blades and gearboxes, as well as in solar power systems and energy storage technologies. This growth in renewable energy infrastructure drives the need for durable, high-performance materials, positioning super alloys as essential to the sector's continued expansion and innovation.

Restraints/Challenges

  • Limited Raw Materials Availability

The global super alloys market is restrained by the limited availability of raw materials essential for the production of these high-performance materials. Super alloys are primarily composed of elements such as nickel, cobalt, chromium, and titanium, which are essential for their exceptional strength, thermal resistance, and oxidation protection at high temperatures. However, the extraction and supply of these materials face significant constraints, contributing to market challenges.

Nickel and cobalt are among the most critical materials used in super alloys, but their availability is limited due to several factors. The Democratic Republic of Congo (DRC) is the largest producer of cobalt, contributing over 70% of the global supply. Political instability, labor issues, and environmental concerns in the region create uncertainties around the steady supply of cobalt. Similarly, nickel mining is concentrated in regions like Indonesia and the Philippines, where stringent environmental regulations and export restrictions have affected production levels, limiting the availability of this crucial material. These supply chain disruptions drive up costs for super alloy manufacturers, increasing market volatility.

Another difficulty associated with raw material availability is the growing demand for nickel and cobalt in other industries, such as Electric Vehicles (EVs) and renewable energy. The shift toward green energy technologies have increased the competition for these metals, further straining supply chains. As a result, super alloy manufacturers are facing increased competition from battery producers, which drives up prices and reduces material availability.

For instances

In October 2021, according to an article by Elsevier B.V., Super alloys require rare raw materials like cobalt, nickel, and chromium, which are often sourced from politically unstable regions. This increases the risk of supply chain disruptions, directly impacting production and costs. As super alloy materials are often extracted from regions with significant geopolitical tension, such as cobalt from the Democratic Republic of Congo, international conflicts or economic sanctions can lead to unpredictable supply shortages and price fluctuations.

  • Stiff Competition from Alternative Materials and Technologies

The global super alloys market faces substantial challenges due to stiff competition from alternative materials and technologies. Super alloys, known for their exceptional strength and resistance to extreme temperatures and corrosion, are crucial in industries such as aerospace, automotive, and power generation. Despite their advantages, they encounter significant competition from emerging materials and technological advancements.

One primary challenge is the development and adoption of alternative materials that offer similar or superior performance characteristics at potentially lower costs. For instance, advanced ceramics and composites are increasingly being explored as substitutes for super alloys. These materials can provide comparable strength and thermal resistance while often being lighter or more cost-effective. Innovations in materials science are continuously introducing new options that could diminish the reliance on traditional super alloys.

Along with it, economic factors also play a role in the competitive dynamics of the super alloys market. Fluctuations in the prices of raw materials, such as nickel and cobalt, which are essential components of many super alloys, can impact the cost-effectiveness of these materials. Moreover, geopolitical tensions and supply chain disruptions can further exacerbate these issues, affecting the overall market stability.

This market report provides details of new recent developments, trade regulations, import-export analysis, production analysis, value chain optimization, market share, impact of domestic and localized market players, analyses opportunities in terms of emerging revenue pockets, changes in market regulations, strategic market growth analysis, market size, category market growths, application niches and dominance, product approvals, product launches, geographic expansions, technological innovations in the market. To gain more info on the market contact Data Bridge Market Research for an Analyst Brief, our team will help you take an informed market decision to achieve market growth.

Impact and Current Market Scenario of Raw Material Shortage and Shipping Delays

Data Bridge Market Research offers a high-level analysis of the market and delivers information by keeping in account the impact and current market environment of raw material shortage and shipping delays. This translates into assessing strategic possibilities, creating effective action plans, and assisting businesses in making important decisions.

Apart from the standard report, we also offer in-depth analysis of the procurement level from forecasted shipping delays, distributor mapping by region, commodity analysis, production analysis, price mapping trends, sourcing, category performance analysis, supply chain risk management solutions, advanced benchmarking, and other services for procurement and strategic support.

Expected Impact of Economic Slowdown on the Pricing and Availability of Products

When economic activity slows, industries begin to suffer. The forecasted effects of the economic downturn on the pricing and accessibility of the products are taken into account in the market insight reports and intelligence services provided by DBMR. With this, our clients can typically keep one step ahead of their competitors, project their sales and revenue, and estimate their profit and loss expenditures.

Superalloys Market Scope

The market is segmented on the basis of product type and application. The growth amongst these segments will help you analyze meagre growth segments in the industries and provide the users with a valuable market overview and market insights to help them make strategic decisions for identifying core market applications.

Product Type

  • Nickel-Based Superalloys
  • Cobalt-Based Superalloys
  • Iron Based Superalloys

Application

  • Aerospace and Defence
    • Commercial/Passenger
    • Defence
  • Industrial Gas Turbines
  • Automotive
    • Four-Wheeler
    • Two-Wheeler
  • Oil and Gas
    • Upstream
    • Downstream
  • Power
    • Wind
    • Hydropower
    • Solar
    • Others
  • Marine Industry
  • Chemical Processing Industry
  • Nuclear Reactors
  • Electrical and Electronics
    • Industrial Electrical and Electronics
    • Consumer Electrical and Electronics
  • Others

Superalloys Market Regional Analysis

The market is analyzed and market size insights and trends are provided by product type and application as referenced above.

The countries covered in the market are U.A.E, Saudi Arabia, Israel, South Africa, Egypt, Qatar, Oman, Kuwait, Bahrain, and rest of Middle East and Africa.

U.A.E. is growing rapidly in the Middle East and Africa superalloys market due to increasing demand for superalloys from high temperature industrial applications.

The country section of the report also provides individual market impacting factors and changes in regulation in the market domestically that impacts the current and future trends of the market. Data points like down-stream and upstream value chain analysis, technical trends and porter's five forces analysis, case studies are some of the pointers used to forecast the market scenario for individual countries. Also, the presence and availability of Middle East and Africa brands and their challenges faced due to large or scarce competition from local and domestic brands, impact of domestic tariffs and trade routes are considered while providing forecast analysis of the country data.

Superalloys Market Share

The market competitive landscape provides details by competitors. Details included are company overview, company financials, revenue generated, market potential, investment in research and development, new market initiatives, Middle East and Africa presence, production sites and facilities, production capacities, company strengths and weaknesses, product launch, product width and breadth, application dominance. The above data points provided are only related to the companies' focus related to market.

Superalloys Market Leaders Operating in the Market Are:

  • voestalpine High Performance Metals GmbH (A Subsidiary of voestalpine AG) (Austria)
  • VDM Metals (Germany)
  • Outokumpu (Finland)
  • ATI (U.S.)
  • AMG ALUMINUM (U.S.)
  • Eramet (France)
  • Aperam (Luxembourg)

Latest Developments in Superalloys Market

  • According to a research article published by Elsevier B.V. superalloys, particularly nickel-based alloys, are critical for high-temperature industrial applications due to their exceptional heat resistance. These alloys, which include high concentrations of chromium, iron, and titanium, maintain their strength, toughness, and dimensional stability at temperatures up to 1000°C. This makes them ideal for components in jet engines, such as high-pressure turbine blades and combustion chambers, which operate in extreme heat. Their resistance to corrosion and oxidation under high temperatures further enhances their performance and longevity, making superalloys indispensable in industries requiring durable and reliable materials for extreme conditions
  • Selon un article publié par Corrotherm International Ltd, les superalliages sont essentiels pour les applications industrielles à haute température en raison de leur résistance exceptionnelle à la chaleur et de leur durabilité. Par exemple, l'alliage INCONEL 601, avec sa teneur élevée en nickel et en chrome, est largement utilisé dans les moteurs à réaction, où il supporte des températures supérieures à 1200 °C tout en résistant à l'oxydation et à la corrosion. De même, l'alliage INCONEL C-276 est essentiel dans les usines de traitement des déchets et le traitement chimique en raison de sa résistance exceptionnelle à la corrosion et de sa stabilité à haute température. Dans l'industrie pétrolière et gazière, l'alliage INCONEL 625 est utilisé dans les pipelines et les équipements exposés à des environnements corrosifs sévères et à des températures élevées, mettant en évidence le rôle essentiel des superalliages dans le maintien des performances et de la sécurité dans des conditions difficiles


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Demande de démonstration

Table des matières

1 INTRODUCTION

1.1 OBJECTIVES OF THE STUDY

1.2 MARKET DEFINITION

1.3 OVERVIEW

1.4 LIMITATIONS

1.5 MARKETS COVERED

2 MARKET SEGMENTATION

2.1 MARKETS COVERED

2.2 GEOGRAPHICAL SCOPE

2.3 YEARS CONSIDERED FOR THE STUDY

2.4 CURRENCY AND PRICING

2.5 DBMR TRIPOD DATA VALIDATION MODEL

2.6 MULTIVARIATE MODELING

2.7 PRIMARY INTERVIEWS WITH KEY OPINION LEADERS

2.8 DBMR MARKET POSITION GRID

2.9 MARKET APPLICATION COVERAGE GRID

2.1 DBMR VENDOR SHARE ANALYSIS

2.11 SECONDARY SOURCES

2.12 ASSUMPTIONS

3 EXECUTIVE SUMMARY

4 PREMIUM INSIGHTS

4.1 PESTEL ANALYSIS

4.1.1 POLITICAL FACTORS

4.1.2 ECONOMIC FACTORS

4.1.3 SOCIAL FACTORS

4.1.4 TECHNOLOGICAL FACTORS

4.1.5 ENVIRONMENTAL FACTORS

4.1.6 LEGAL FACTORS

4.2 PORTER’S FIVE FORCES ANALYSIS

4.2.1 THREAT OF NEW ENTRANTS

4.2.2 BARGAINING POWER OF SUPPLIERS

4.2.3 BARGAINING POWER OF BUYERS

4.2.4 THREAT OF SUBSTITUTES

4.2.5 INTERNAL COMPETITION

4.3 PRICING ANALYSIS

4.3.1 MANUFACTURING COSTS

4.3.2 SUPPLY AND DEMAND DYNAMICS

4.3.3 GEOPOLITICAL FACTORS

4.3.4 FUTURE TRENDS IN PRICING

4.3.5 CONCLUSION

4.4 PRODUCTION CONSUMPTION ANALYSIS

4.5 CLIMATE CHANGE SCENARIO

4.5.1 ENVIRONMENTAL CONCERNS

4.5.2 INDUSTRY RESPONSE

4.5.3 GOVERNMENT ROLE

4.5.4 ANALYST RECOMMENDATION

4.6 PRODUCTION CAPACITY OVERVIEW

4.6.1 SECTOR-SPECIFIC CAPACITY DISTRIBUTION

4.6.1.1 AEROSPACE

4.6.1.2 POWER GENERATION

4.6.1.3 AUTOMOTIVE AND MARINE

4.6.2 GEOGRAPHIC DISTRIBUTION OF CAPACITY

4.6.2.1 NORTH AMERICA

4.6.2.2 EUROPE

4.6.2.3 ASIA-PACIFIC

4.6.3 KEY TRENDS IN CAPACITY EXPANSION

4.6.4 CONCLUSION

4.7 SUPPLY CHAIN ANALYSIS

4.7.1 OVERVIEW

4.7.2 LOGISTIC COST SCENARIO

4.7.3 IMPORTANCE OF LOGISTICS SERVICE PROVIDERS

4.8 TECHNOLOGICAL ADVANCEMENTS BY MANUFACTURERS

4.8.1 ADVANCED ALLOY DESIGN AND COMPOSITION

4.8.2 ADDITIVE MANUFACTURING (AM)

4.8.3 ADVANCED PROCESSING TECHNIQUES

4.8.4 HIGH-TEMPERATURE AND HIGH-PRESSURE PROCESSING

4.8.5 RECYCLING AND SUSTAINABLE PRACTICES

4.8.6 ENHANCED QUALITY CONTROL AND TESTING

4.8.7 CONCLUSION

4.9 VENDOR SELECTION CRITERIA

4.9.1 QUALITY AND COMPLIANCE

4.9.2 TECHNOLOGICAL CAPABILITIES

4.9.3 PRODUCTION CAPACITY AND RELIABILITY

4.9.4 COST COMPETITIVENESS

4.9.5 TECHNICAL SUPPORT AND SERVICE

4.9.6 ENVIRONMENTAL AND SUSTAINABILITY PRACTICES

4.9.7 REPUTATION AND EXPERIENCE

4.1 INNOVATION AND FUTURE READINESS

4.10.1 FINANCIAL STABILITY

4.10.2 CONCLUSION

4.11 RAW MATERIAL COVERAGE

4.11.1 NICKEL-BASED SUPERALLOYS

4.11.2 COBALT-BASED SUPERALLOYS

4.11.3 IRON-BASED SUPERALLOYS

4.11.4 KEY RAW MATERIALS

4.11.5 MARKET DYNAMICS AND TRENDS

4.11.6 CONCLUSION

5 REGULATION COVERAGE

6 MARKET OVERVIEW

6.1 DRIVERS

6.1.1 GROWING DEMAND FOR SUPERALLOYS FROM AEROSPACE INDUSTRY

6.1.2 INCREASED DEFENSE BUDGETS AND MILITARY INVESTMENTS GLOBALLY

6.1.3 RISING AUTOMOTIVE INDUSTRY’S PUSH TOWARDS HIGH/PERFORMANCE ENGINES AND COMPONENTS

6.2 RESTRAINTS

6.2.1 LIMITED RAW MATERIALS AVAILABILITY

6.2.2 HIGH MANUFACTURING COST OF SUPERALLOYS

6.3 OPPORTUNITIES

6.3.1 TECHNOLOGICAL ADVANCEMENTS AND INNOVATIONS IN SUPERALLOY MANUFACTURING AND PROCESSING TECHNOLOGIES

6.3.2 FAST GROWING RENEWABLE ENERGY SECTOR

6.3.3 INCREASING DEMAND FOR SUPERALLOYS FROM HIGH TEMPERATURE INDUSTRIAL APPLICATIONS

6.4 CHALLENGES

6.4.1 STIFF COMPETITION FROM ALTERNATIVE MATERIALS AND TECHNOLOGIES

6.4.2 ENVIRONMENTAL CONCERNS ASSOCIATED WITH SUPERALLOY PRODUCTION AND DISPOSAL

7 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY PRODUCT TYPE

7.1 OVERVIEW

7.2 NICKEL-BASED SUPERALLOYS

7.3 COBALT-BASED SUPERALLOYS

7.4 IRON BASED SUPERALLOYS

8 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY APPLICATION

8.1 OVERVIEW

8.2 AEROSPACE AND DEFENSE

8.2.1 AEROSPACE AND DEFENSE, BY TYPE

8.3 INDUSTRIAL GAS TURBINES

8.4 AUTOMOTIVE

8.4.1 AUTOMOTIVE, BY TYPE

8.5 OIL AND GAS

8.5.1 OIL AND GAS, BY TYPE

8.6 POWER

8.6.1 POWER, BY TYPE

8.7 MARINE INDUSTRY

8.8 CHEMICAL PROCESSING INDUSTRY

8.9 NUCLEAR REACTORS

8.1 ELECTRICAL AND ELECTRONICS

8.10.1 ELECTRICAL AND ELECTRONICS, BY TYPE

8.11 OTHERS

9 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY REGION

9.1 MIDDLE EAST AND AFRICA

9.1.1 U.A.E

9.1.2 SAUDI ARABIA

9.1.3 ISRAEL

9.1.4 SOUTH AFRICA

9.1.5 EGYPT

9.1.6 QATAR

9.1.7 OMAN

9.1.8 KUWAIT

9.1.9 BAHRAIN

9.1.10 REST OF MIDDLE EAST AND AFRICA

10 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: COMPANY LANDSCAPE

10.1 COMPANY SHARE ANALYSIS: MIDDLE EAST AND AFRICA

11 SWOT ANALYSIS

12 COMPANY PROFILES

12.1 PRECISION CASTPARTS CORP.

12.1.1 COMPANY SNAPSHOT

12.1.2 COMPANY SHARE ANALYSIS

12.1.3 PRODUCT PORTFOLIO

12.1.4 RECENT UPDATES

12.2 ATI

12.2.1 COMPANY SNAPSHOT

12.2.2 REVENUE ANALYSIS

12.2.3 COMPANY SHARE ANALYSIS

12.2.4 PRODUCT PORTFOLIO

12.2.5 RECENT DEVELOPMENT

12.3 ALCOA CORPORATION

12.3.1 COMPANY SNAPSHOT

12.3.2 REVENUE ANALYSIS

12.3.3 COMPANY SHARE ANALYSIS

12.3.4 PRODUCT PORTFOLIO

12.3.5 RECENT DEVELOPMENT

12.4 HYANES INTERNATIONAL

12.4.1 COMPANY SNAPSHOT

12.4.2 REVENUE ANALYSIS

12.4.3 COMPANY SHARE ANALYSIS

12.4.4 PRODUCT PORTFOLIO

12.4.5 RECENT UPDATES

12.5 BAOTI GROUP CO. LTD

12.5.1 COMPANY SNAPSHOT

12.5.2 COMPANY SHARE ANALYSIS

12.5.3 PRODUCT PORTFOLIO

12.5.4 RECENT UPDATES

12.6 AMG ALUMINUM

12.6.1 COMPANY SNAPSHOT

12.6.2 REVENUE ANALYSIS

12.6.3 PRODUCT PORTFOLIO

12.6.4 RECENT UPDATES

12.7 APERAM

12.7.1 COMPANY SNAPSHOT

12.7.2 REVENUE ANALYSIS

12.7.3 PRODUCT PORTFOLIO

12.7.4 RECENT DEVELOPMENT

12.8 CRS HOLDING, LLC

12.8.1 COMPANY SNAPSHOT

12.8.2 REVENUE ANALYSIS

12.8.3 PRODUCT PORTFOLIO

12.8.4 RECENT UPDATES

12.9 DONCASTERS GROUP

12.9.1 COMPANY SNAPSHOT

12.9.2 PRODUCT PORTFOLIO

12.9.3 RECENT DEVELOPMENT

12.1 ERAMET

12.10.1 COMPANY SNAPSHOT

12.10.2 REVENUE ANALYSIS

12.10.3 PRODUCT PORTFOLIO

12.10.4 RECENT DEVELOPMENT

12.11 FUSHUN SPECIAL STEEL CO., LTD.

12.11.1 COMPANY SNAPSHOT

12.11.2 PRODUCT PORTFOLIO

12.11.3 RECENT DEVELOPMENT

12.12 IBC ADVANCED ALLOYS

12.12.1 COMPANY SNAPSHOT

12.12.2 REVENUE ANALYSIS

12.12.3 PRODUCT PORTFOLIO

12.12.4 RECENT DEVELOPMENT

12.13 MISHRA DHATU NIGAM LIMITED

12.13.1 COMPANY SNAPSHOT

12.13.2 REVENUE ANALYSIS

12.13.3 PRODUCT PORTFOLIO

12.13.4 RECENT DEVELOPMENT

12.14 OUTOKUMPU

12.14.1 COMPANY SNAPSHOT

12.14.2 REVENUE ANALYSIS

12.14.3 PRODUCT PORTFOLIO

12.14.4 RECENT DEVELOPMENT

12.15 PROTERIAL, LTD.

12.15.1 COMPANY SNAPSHOT

12.15.2 PRODUCT PORTFOLIO

12.15.3 RECENT DEVELOPMENT

12.16 ROLLED ALLOYS INC.

12.16.1 COMPANY SNAPSHOT

12.16.2 PRODUCT PORTFOLIO

12.16.3 RECENT DEVELOPMENT

12.17 SANDVIK CORMANT US

12.17.1 COMPANY SNAPSHOT

12.17.2 PRODUCT PORTFOLIO

12.17.3 RECENT UPDATES

12.18 SPECIAL MELTED PRODUCTS LTD.

12.18.1 COMPANY SNAPSHOT

12.18.2 PRODUCT PORTFOLIO

12.18.3 RECENT DEVELOPMENT

12.19 VDM METALS

12.19.1 COMPANY SNAPSHOT

12.19.2 PRODUCT PORTFOLIO

12.19.3 RECENT DEVELOPMENT

12.2 VOESTALPINE HIGH PERFORMANCE METALS GMBH (A SUBSIDIARY OF VOESTALPINE AG)

12.20.1 COMPANY SNAPSHOT

12.20.2 PRODUCT PORTFOLIO

12.20.3 RECENT DEVELOPMENT

13 QUESTIONNAIRE

14 RELATED REPORTS

Liste des tableaux

TABLE 1 REGULATIONS ACROSS VARIOUS REGIONS AND COUNTRIES: SUPERALLOYS MARKET

TABLE 2 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 3 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 4 MIDDLE EAST AND AFRICA NICKEL-BASED SUPERALLOYS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 5 MIDDLE EAST AND AFRICA NICKEL-BASED SUPERALLOYS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 6 MIDDLE EAST AND AFRICA COBALT-BASED SUPERALLOYS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 7 MIDDLE EAST AND AFRICA COBALT-BASED SUPERALLOYS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 8 MIDDLE EAST AND AFRICA IRON BASED SUPERALLOYS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 9 MIDDLE EAST AND AFRICA IRON BASED SUPERALLOYS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 10 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 11 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 12 MIDDLE EAST AND AFRICA AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 13 MIDDLE EAST AND AFRICA AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 14 MIDDLE EAST AND AFRICA AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 15 MIDDLE EAST AND AFRICA INDUSTRIAL GAS TURBINES IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 16 MIDDLE EAST AND AFRICA INDUSTRIAL GAS TURBINES IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 17 MIDDLE EAST AND AFRICA AUTOMOTIVE IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 18 MIDDLE EAST AND AFRICA AUTOMOTIVE IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 19 MIDDLE EAST AND AFRICA AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 20 MIDDLE EAST AND AFRICA OIL AND GAS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 21 MIDDLE EAST AND AFRICA OIL AND GAS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 22 MIDDLE EAST AND AFRICA OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 23 MIDDLE EAST AND AFRICA POWER IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 24 MIDDLE EAST AND AFRICA POWER IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 25 MIDDLE EAST AND AFRICA POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 26 MIDDLE EAST AND AFRICA MARINE INDUSTRY IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 27 MIDDLE EAST AND AFRICA MARINE INDUSTRY IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 28 MIDDLE EAST AND AFRICA CHEMICAL PROCESSING INDUSTRY IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 29 MIDDLE EAST AND AFRICA CHEMICAL PROCESSING INDUSTRY IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 30 MIDDLE EAST AND AFRICA NUCLEAR REACTORS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 31 MIDDLE EAST AND AFRICA NUCLEAR REACTORS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 32 MIDDLE EAST AND AFRICA ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 33 MIDDLE EAST AND AFRICA ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 34 MIDDLE EAST AND AFRICA ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 35 MIDDLE EAST AND AFRICA OTHERS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (USD THOUSAND)

TABLE 36 MIDDLE EAST AND AFRICA OTHERS IN SUPERALLOYS MARKET, BY REGION, 2022-2031 (TONS)

TABLE 37 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY COUNTRY, 2022-2031 (USD THOUSAND)

TABLE 38 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY COUNTRY, 2022-2031 (TONS)

TABLE 39 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 40 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 41 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 42 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 43 MIDDLE EAST AND AFRICA AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 44 MIDDLE EAST AND AFRICA OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 45 MIDDLE EAST AND AFRICA AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 46 MIDDLE EAST AND AFRICA POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 47 MIDDLE EAST AND AFRICA ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 48 U.A.E SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 49 U.A.E SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 50 U.A.E SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 51 U.A.E SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 52 U.A.E AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 53 U.A.E OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 54 U.A.E AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 55 U.A.E POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 56 U.A.E ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 57 SAUDI ARABIA SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 58 SAUDI ARABIA SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 59 SAUDI ARABIA SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 60 SAUDI ARABIA SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 61 SAUDI ARABIA AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 62 SAUDI ARABIA OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 63 SAUDI ARABIA AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 64 SAUDI ARABIA POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 65 SAUDI ARABIA ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 66 ISRAEL SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 67 ISRAEL SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 68 ISRAEL SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 69 ISRAEL SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 70 ISRAEL AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 71 ISRAEL OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 72 ISRAEL AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 73 ISRAEL POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 74 ISRAEL ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 75 SOUTH AFRICA SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 76 SOUTH AFRICA SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 77 SOUTH AFRICA SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 78 SOUTH AFRICA SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 79 SOUTH AFRICA AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 80 SOUTH AFRICA OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 81 SOUTH AFRICA AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 82 SOUTH AFRICA POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 83 SOUTH AFRICA ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 84 EGYPT SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 85 EGYPT SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 86 EGYPT SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 87 EGYPT SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 88 EGYPT AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 89 EGYPT OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 90 EGYPT AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 91 EGYPT POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 92 EGYPT ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 93 QATAR SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 94 QATAR SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 95 QATAR SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 96 QATAR SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 97 QATAR AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 98 QATAR OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 99 QATAR AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 100 QATAR POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 101 QATAR ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 102 OMAN SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 103 OMAN SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 104 OMAN SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 105 OMAN SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 106 OMAN AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 107 OMAN OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 108 OMAN AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 109 OMAN POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 110 OMAN ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 111 KUWAIT SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 112 KUWAIT SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 113 KUWAIT SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 114 KUWAIT SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 115 KUWAIT AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 116 KUWAIT OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 117 KUWAIT AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 118 KUWAIT POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 119 KUWAIT ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 120 BAHRAIN SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 121 BAHRAIN SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

TABLE 122 BAHRAIN SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (USD THOUSAND)

TABLE 123 BAHRAIN SUPERALLOYS MARKET, BY APPLICATION, 2022-2031 (TONS)

TABLE 124 BAHRAIN AEROSPACE AND DEFENSE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 125 BAHRAIN OIL AND GAS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 126 BAHRAIN AUTOMOTIVE IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 127 BAHRAIN POWER IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 128 BAHRAIN ELECTRICAL AND ELECTRONICS IN SUPERALLOYS MARKET, BY TYPE, 2022-2031 (USD THOUSAND)

TABLE 129 REST OF MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (USD THOUSAND)

TABLE 130 REST OF MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY PRODUCT TYPE, 2022-2031 (TONS)

Liste des figures

FIGURE 1 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET

FIGURE 2 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: DATA TRIANGULATION

FIGURE 3 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: DROC ANALYSIS

FIGURE 4 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: MIDDLE EAST AND AFRICA VS REGIONAL MARKET ANALYSIS

FIGURE 5 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: COMPANY RESEARCH ANALYSIS

FIGURE 6 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: MULTIVARIATE MODELLING

FIGURE 7 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: INTERVIEW DEMOGRAPHICS

FIGURE 8 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: DBMR MARKET POSITION GRID

FIGURE 9 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: MARKET APPLICATION COVERAGE GRID

FIGURE 10 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: VENDOR SHARE ANALYSIS

FIGURE 11 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: SEGMENTATION

FIGURE 12 THREE SEGMENTS COMPRISE THE MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, BY PRODUCT TYPE (2023)

FIGURE 13 EXECUTIVE SUMMARY

FIGURE 14 STRATEGIC DECISIONS

FIGURE 15 GROWING DEMAND FOR SUPERALLOYS FROM AEROSPACE INDUSTRY IS EXPECTED TO DRIVE THE MIDDLE EAST AND AFRICA SUPERALLOYS MARKET IN THE FORECAST PERIOD

FIGURE 16 THE NICKEL-BASED SUPERALLOYS SEGMENT IS EXPECTED TO ACCOUNT FOR THE LARGEST SHARE OF THE MIDDLE EAST AND AFRICA SUPERALLOYS MARKET IN 2024 AND 2031

FIGURE 17 PESTEL ANALYSIS

FIGURE 18 PORTER’S FIVE FORCES ANALYSIS

FIGURE 19 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET, 2022-2031, AVERAGE SELLING PRICE (USD/KG)

FIGURE 20 PRODUCTION CONSUMPTION ANALYSIS: MIDDLE EAST AND AFRICA SUPERALLOYS MARKET

FIGURE 21 DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES OF MIDDLE EAST AND AFRICA SUPERALLOYS MARKET

FIGURE 22 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: BY PRODUCT TYPE, 2023

FIGURE 23 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: BY APPLICATION, 2023

FIGURE 24 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: SNAPSHOT (2023)

FIGURE 25 MIDDLE EAST AND AFRICA SUPERALLOYS MARKET: COMPANY SHARE 2023 (%)

Voir les informations détaillées Right Arrow

Méthodologie de recherche

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La méthodologie de recherche clé utilisée par l'équipe de recherche DBMR est la triangulation des données qui implique l'exploration de données, l'analyse de l'impact des variables de données sur le marché et la validation primaire (expert du secteur). Les modèles de données incluent la grille de positionnement des fournisseurs, l'analyse de la chronologie du marché, l'aperçu et le guide du marché, la grille de positionnement des entreprises, l'analyse des brevets, l'analyse des prix, l'analyse des parts de marché des entreprises, les normes de mesure, l'analyse globale par rapport à l'analyse régionale et des parts des fournisseurs. Pour en savoir plus sur la méthodologie de recherche, envoyez une demande pour parler à nos experts du secteur.

Personnalisation disponible

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Questions fréquemment posées

The Middle East and Africa Superalloys market size was valued at USD 291.96 Million in 2023.
The Middle East and Africa Superalloys Market is projected to grow at a CAGR of 6.5% from 2024 to 2031.
The aerospace industry’s ongoing expansion and its need for high-performance, heat-resistant materials are key factors driving the growth of the super alloys market.
Outokumpu (Finland), Aperam (Luxembourg), ATI (U.S.), CRS Holdings, LLC. (U.S.), HAYNES INTERNATIONAL (U.S.), AMG ALUMINUM (U.S.), IBC Advanced Alloys (U.S.), Eramet (France).
U.A.E, Saudi Arabia, Israel, South Africa, Egypt, Qatar, Oman, Kuwait, Bahrain, Rest of Middle East and Africa