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市場調查報告書
商品編碼
1702267
金屬射出成型市場規模、佔有率、趨勢及預測(依材料類型、最終用途產業及地區),2025 年至 2033 年Metal Injection Molding Market Size, Share, Trends and Forecast by Material Type, End Use Industry, and Region, 2025-2033 |
2024 年全球金屬射出市場規模價值 46 億美元。展望未來, IMARC Group估計到 2033 年市場規模將達到 95 億美元,2025 年至 2033 年的複合年成長率為 8.21%。 2024年,美國佔據北美金屬射出成型市場83.38%的佔有率。由於電子和醫療保健領域對微型組件的需求不斷增加、汽車行業對輕量化部件的需求不斷增加、醫療和牙科應用的需求不斷擴大、人們對該技術在大規模生產中的成本效益的認知不斷提高以及材料科學的快速進步,市場正在快速成長。
金屬注射成型 (MIM) 是一種先進、經濟高效的金屬加工工藝,其中將細粉狀金屬與黏合劑材料混合以製造原料的輸出。這些原料在註塑成型的幫助下進一步固化並精確成型。成型後,將成品原料調理操作,以燒結、去除堵塞物和使粉末緻密化。 MIM 為小型成品金屬產品提供耐腐蝕、熱穩定性、高機械強度和尺寸穩定性,因此廣泛應用於各種工業應用。
推動金屬注塑市場成長的主要關鍵因素之一是汽車產業廣泛採用該產品來大量生產精密、輕量、高品質的機動零件。這些零件進一步用於製造各種車輛零件,例如轉向器、變速箱、鎖定機構和渦輪增壓器。同時,金屬注射成型技術在製造手術設備(包括消融電極、內視鏡抓取器、剪刀、矯形外科工具和創傷板)中的廣泛應用是另一個促進成長的因素。此外,製造商對 MIM 解決方案而非傳統成型程序的傾向轉變也促進了市場的成長。金屬射出成型有助於以可負擔的價格完成操作,並減少生產原料所花費的生產時間和原料的浪費。其他因素,例如快速的城市化和工業化(特別是在新興經濟體中)、主要參與者之間的戰略合作以及為引入先進的 MIM 進行大規模設計複雜形狀的金屬部件而不斷增加的研發 (R&D) 活動投資,正在為市場創造積極的前景。
推動金屬注塑市場成長的主要關鍵因素之一是汽車產業廣泛採用該產品來大量生產精密、輕量、高品質的機動零件。這些零件進一步用於製造各種車輛零件,例如轉向器、變速箱、鎖定機構和渦輪增壓器。同時,金屬注射成型技術在製造手術設備(包括消融電極、內視鏡抓取器、剪刀、矯形外科工具和創傷板)中的廣泛應用是另一個促進成長的因素。此外,製造商對 MIM 解決方案而非傳統成型程序的傾向轉變也促進了市場的成長。金屬射出成型有助於以可負擔的價格完成操作,並減少生產原料所花費的生產時間和原料的浪費。其他因素,例如快速的城市化和工業化(特別是在新興經濟體中)、主要參與者之間的戰略合作以及為引入先進的 MIM 進行大規模設計複雜形狀的金屬部件而不斷增加的研發 (R&D) 活動投資,正在為市場創造積極的前景。
The global metal injection molding market size was valued at USD 4.6 Billion in 2024. Looking forward, IMARC Group estimates the market to reach USD 9.5 Billion by 2033, exhibiting a CAGR of 8.21% from 2025-2033. In 2024, United States accounted for 83.38% of the metal injection modeling market share in North America. The market is growing rapidly due to the increasing requirement for miniaturized components in electronics and healthcare sectors, rising demand for lightweight parts in the automotive industry, expanding need in medical and dental applications, heightened awareness about the technique's cost-efficiency in mass production, and rapid advancements in material science.
Metal injection molding (MIM) refers to an advanced, cost-effective, metalworking procedure, wherein finely powdered metal is mixed with binder material to manufacture the output of feedstocks. These raw materials are further solidified and shaped accurately with the assistance of injection molding. After formation, conditioning operations are executed on finished feedstocks for sintering, removing blinders, and densifying the powders. MIM offer corrosion, thermal stability, high mechanical strength, and dimensional stability to small, finished metal products, due to which they are extensively employed across various industrial applications.
One of the key factors primarily driving the metal injection molding market growth is the widespread product adoption in the automotive sector for producing precise, lightweight, and high-quality motorized parts in large quantity. These components are further used to manufacture various vehicular parts, such as steering, gearbox, locking mechanisms and turbochargers. In line with this, the extensive deployment of metal injection molding technology for manufacturing surgical equipment, including ablation electrodes, endoscopic graspers, scissors, orthopedic tools, and trauma plates is acting as another growth-inducing factor. Moreover, the shifting inclination of manufacturers toward MIM solutions over conventional molding procedures is contributing to the market growth. Metal injection molding assists in completing operations at affordable prices and reducing the production time and wastage of raw materials used in the production of feedstocks. Other factors, such as rapid urbanization and industrialization, particularly in emerging economies, strategic collaborations amongst key players and the rising investments in research and development (R&D) activities to introduce advanced MIM for mass designing complex shaped metal components are creating a positive outlook for the market.
One of the key factors primarily driving the metal injection molding market growth is the widespread product adoption in the automotive sector for producing precise, lightweight, and high-quality motorized parts in large quantity. These components are further used to manufacture various vehicular parts, such as steering, gearbox, locking mechanisms and turbochargers. In line with this, the extensive deployment of metal injection molding technology for manufacturing surgical equipment, including ablation electrodes, endoscopic graspers, scissors, orthopedic tools, and trauma plates is acting as another growth-inducing factor. Moreover, the shifting inclination of manufacturers toward MIM solutions over conventional molding procedures is contributing to the market growth. Metal injection molding assists in completing operations at affordable prices and reducing the production time and wastage of raw materials used in the production of feedstocks. Other factors, such as rapid urbanization and industrialization, particularly in emerging economies, strategic collaborations amongst key players and the rising investments in research and development (R&D) activities to introduce advanced MIM for mass designing complex shaped metal components are creating a positive outlook for the market.
The competitive landscape of the industry has also been examined along with the profiles of the key players being Amphenol Corporation, ARC Group Worldwide Inc., ATW Companies Inc., CMG Technologies, CN Innovations Ltd., Dean Group International Ltd, Ernst Reiner GmbH & Co. KG, Metal Powder Products LLC, Parmaco Metal Injection Molding AG, Sintex a/s, Smith Metal Products and Tanfel Metal.