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市場調査レポート
商品コード
1743314
形状記憶合金(SMA)の市場規模、シェア、成長分析:繊維タイプ別、製造プロセス別、最終用途産業別、地域別 - 産業予測、2025-2032年Shape Memory Alloys Market Size, Share, and Growth Analysis, By Fiber Type (Nickel-Titanium Alloys, Copper-Based Alloys), By Manufacturing Process, By End Use Industry, By Region - Industry Forecast 2025-2032 |
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形状記憶合金(SMA)の市場規模、シェア、成長分析:繊維タイプ別、製造プロセス別、最終用途産業別、地域別 - 産業予測、2025-2032年 |
出版日: 2025年06月03日
発行: SkyQuest
ページ情報: 英文 194 Pages
納期: 3~5営業日
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形状記憶合金(SMA)の世界市場規模は、2023年に139億4,000万米ドルと評価され、2024年の155億2,000万米ドルから2032年には365億4,000万米ドルに成長し、予測期間(2025-2032年)のCAGRで11.3%の成長が予測されています。
形状記憶合金(SMA)の世界市場は、超弾性や生体適合性などの顕著な特性により、生体医療機器での使用が増加していることに大きな影響を受けています。このような特性により、SMAはステント、整形外科用インプラント、歯科装具への応用に理想的であり、特に低侵襲手術の需要が高まっています。人口の高齢化と慢性疾患の増加は、革新的なヘルスケアソリューションの必要性をさらに高め、SMAの採用を促進しています。同時に、積層造形や熱機械加工を含む材料科学の進歩は、疲労寿命や柔軟性といったSMAの特性を向上させ、航空宇宙、ロボット工学、自動車などの産業への応用を広げています。製造プロセスのコスト効率が高まるにつれ、SMA市場は確固たるものとなり、スマート材料における将来の革新への道が開かれます。
Global Shape Memory Alloys Market size was valued at USD 13.94 billion in 2023 and is poised to grow from USD 15.52 billion in 2024 to USD 36.54 billion by 2032, growing at a CAGR of 11.3% during the forecast period (2025-2032).
The global market for shape memory alloys (SMAs) is significantly influenced by their rising use in biomedical devices, owing to their remarkable properties such as superelasticity and biocompatibility. These characteristics make SMAs ideal for applications in stents, orthopedic implants, and dental braces, particularly as demand for minimally invasive surgeries grows. The aging population and increasing prevalence of chronic diseases further amplify the necessity for innovative healthcare solutions, driving SMA adoption. Concurrently, advancements in material science, including additive manufacturing and thermomechanical processing, enhance SMA attributes like fatigue life and pliability, broadening their application across industries such as aerospace, robotics, and automotive. As manufacturing processes become more cost-effective, the SMA market solidifies, paving the way for future innovation in smart materials.
Top-down and bottom-up approaches were used to estimate and validate the size of the Global Shape Memory Alloys market and to estimate the size of various other dependent submarkets. The research methodology used to estimate the market size includes the following details: The key players in the market were identified through secondary research, and their market shares in the respective regions were determined through primary and secondary research. This entire procedure includes the study of the annual and financial reports of the top market players and extensive interviews for key insights from industry leaders such as CEOs, VPs, directors, and marketing executives. All percentage shares split, and breakdowns were determined using secondary sources and verified through Primary sources. All possible parameters that affect the markets covered in this research study have been accounted for, viewed in extensive detail, verified through primary research, and analyzed to get the final quantitative and qualitative data.
Global Shape Memory Alloys Market Segments Analysis
Global Shape Memory Alloys Market is segmented by Fiber Type, Manufacturing Process, End Use Industry and region. Based on Fiber Type, the market is segmented into Nickel-Titanium Alloys (Nitinol), Copper-Based Alloys, Iron-Manganese-Silicon Alloys and Others. Based on Manufacturing Process, the market is segmented into Melting and Casting, Powder Metallurgy and Others. Based on End Use Industry, the market is segmented into Biomedical, Aerospace and Defence, Automotive, Consumer Electronics and Home Appliances and Others. Based on region, the market is segmented into North America, Europe, Asia Pacific, Latin America and Middle East & Africa.
Driver of the Global Shape Memory Alloys Market
The increasing inclination towards minimally invasive medical procedures is significantly boosting the demand for shape memory alloys, especially Nitinol. These materials are highly biocompatible and possess the unique ability to revert to predefined shapes, making them ideal for various medical uses, including stents and guidewires. Their application in cardiovascular and orthopedic surgeries has been linked to improved patient outcomes and faster recovery times, contributing to the overall growth of the Shape Memory Alloys market. As healthcare continues to prioritize less invasive solutions, the utilization of SMAs in medical devices is expected to rise, further propelling market expansion.
Restraints in the Global Shape Memory Alloys Market
The Global Shape Memory Alloys market encounters certain limitations due to the performance constraints of these materials in extreme environmental scenarios. Specifically, issues arise when exposed to very high or low temperatures, as well as aggressive chemical environments, which can hinder their functionality. Such restrictions significantly affect their applicability in specialized sectors like aerospace and various industrial applications, where components are regularly subjected to intense stress and challenging operating conditions. This can ultimately influence the overall reliability and effectiveness of shape memory alloys in these critical fields, thus posing a challenge to their widespread adoption and utilization.
Market Trends of the Global Shape Memory Alloys Market
The global shape memory alloys (SMAs) market is witnessing a notable upward trend, driven by the increased adoption of these advanced materials in the medical devices sector. With their remarkable biocompatibility, flexibility, and ability to revert to a predetermined shape under specific conditions, SMAs are becoming integral to minimally invasive surgical instruments, stents, and guidewires. This shift is enhancing patient outcomes through improved precision and reduced recovery times, leading to a growing preference among healthcare providers for innovative treatment options. As the demand for advanced medical technologies rises, the SMAs market is poised for significant expansion, reflecting broader trends in healthcare and material science advancements.