How much is the nickel-based superalloys market worth, and how is it expected to expand?
The nickel-based superalloys market size has grown strongly in recent years. It will grow from $8.79 billion in 2024 to $9.65 billion in 2025 at a compound annual growth rate (CAGR) of 9.8%. The growth in the historic period can be attributed to a rise in the automotive industry, increasing demand for electric vehicles, increased aviation fuel efficiency, increasing demand for lngot metallurgy in various industries, and increasing fuel economy and performance.
The nickel-based superalloys market size is expected to see strong growth in the next few years. It will grow to $13.84 billion in 2029 at a compound annual growth rate (CAGR) of 9.4%. The growth in the forecast period can be attributed to growing demand from aerospace for lightweight alloys, growing focus on renewable energy, growing need for high-performance materials, growing use of gas turbines in the power generation industry, and growing need for sophisticated materials. Major trends in the forecast period include technological advancements, advancements in 3D printing for complex superalloy components, the development of complicated geometries, the development of next-generation aircarft, and advancements in alloy design.
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Which industry factors have accelerated the nickel-based superalloys market’s expansion?
The expansion of the aerospace industry is expected to propel the growth of the nickel-based superalloy markets going forward. The aerospace industry refers to businesses involved in designing, developing, producing, and maintaining aircraft, spacecraft, and related systems and equipment. The demand for the aerospace industry is rising due to increasing global air travel, driven by expanding middle-class populations and the push for next-generation fuel-efficient aircraft to meet stricter environmental regulations. Nickel-based superalloys are essential in the aerospace industry due to their exceptional properties, enabling high performance in extreme environments. For instance, in September 2023, according to the Aerospace Industries Association (AIA), a US-based trade association representing manufacturers and suppliers of civil, military, and business aircraft, in 2022, the American aerospace and defense industry saw a 6.7% increase in sales, reaching over $952 billion compared to 2021. Therefore, the expansion of the aerospace and power industries is driving the growth of the nickel-based superalloys market.
What are the primary segments of the nickel-based superalloys market?
The nickel-based superalloysmarket covered in this report is segmented –
1) By Type: Nickel-Copper, Nickel-Chromium, Nickel-Molybdenum, Other Types
2) By Form: Cast, Wrought
3) By Base Element: Cobalt, Rhenium, Tantalum, Tungsten
4) By Distribution Channel: Direct Sales, Distributors And Traders
5) By End-Use Industry: Aerospace, Electronics, Industrial, Automotive, Oil And Gas, Other End Use Industries
Subsegments:
1) By Nickel-Copper: Monel Alloys, K-500 Alloys
2) By Nickel-Chromium: Inconel Alloys, Hastelloy Alloys
3) By Nickel-Molybdenum: Hastelloy B, Alloy C-276
4) By Other Types: Nickel-Iron, Nickel-Titanium
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Which firms are leading the nickel-based superalloys market?
Major companies operating in the nickel-based superalloys market are CMK Corporation, BaoSteel, Thyssenkrupp Aerospace, Sandvik Materials Technology, Outokumpu Oyj., Aperam S.A., Fushun Special Steel Co Ltd., Precision Castparts Corp., Howmet Aerospace Inc., Walsin Lihwa Corporation, Eramet S.A., Allegheny Technologies Incorporated, Beijing Cisri-Gaona Materials and Technology Co Ltd., Carpenter Technology Corporation, AMG Advanced Metallurgical Group, Nippon Yakin Kogyo Co Ltd., VSMPO-AVISMA Corporation, Special Metals Corporation, Haynes International Inc., Doncasters Group, Smiths Metal Centres Limited, AEETHER Inc., Mishra Dhatu Nigam Limited, Rosswag GmbH, QuesTek Innovations
Which market trends are set to define the future of the nickel-based superalloys market?
Major companies operating in the nickel-based superalloy market are focusing on developing technologically advanced solutions, such as nickel ultra-high-temperature superalloy, to meet the growing demand for enhanced performance in critical applications like aerospace and power generation. Nickel ultrahigh-temperature superalloys are advanced materials that withstand extreme temperatures and harsh environments. For instance, in July 2024, Alloyed and Aubert & Duval, a France-based metallurgical company, launched a new nickel superalloy named ABD-1000AM, specifically designed for additive manufacturing and capable of withstanding temperatures exceeding 1000°C in its age-hardened state. This ultra-high-temperature alloy boasts a relative density greater than 99.9%, a significant gamma prime phase fraction of 55%, and comparable stress rupture life to the cast alloy Ni247LC. The development utilized Alloyed’s Alloys-by-Design platform, with Aubert & Duval providing the necessary powder feedstock.
Which geographic trends are shaping the nickel-based superalloys market, and which region has the highest market share?
Asia-Pacific was the largest region in the nickel-based superalloys market in 2024. The regions covered in the nickel-based superalloys market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa.
What Does The Nickel-Based Superalloys Market Report 2025 Offer?
The nickel-based superalloys market research report from The Business Research Company offers global market size, growth rate, regional shares, competitor analysis, detailed segments, trends, and opportunities.
A nickel-based superalloy is a type of high-performance material primarily composed of nickel, designed to maintain its strength and stability at extremely high temperatures, often more than 1,000°C (1,832°F). These alloys are known for their exceptional mechanical strength, resistance to thermal creep deformation, and excellent corrosion and oxidation resistance. Nickel-based superalloys are widely used in demanding applications where materials are exposed to harsh environments and high stresses, such as gas turbine engines, jet engines, and power generation.
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