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Formulation and Characterization of Functionally Graded Materials Comprising SS316L and Inconel625 for En-hanced Performance in High-Pressure Pneumatic Tools
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1.Department of Mechanical Engineering, Faculty of Engineering, Karpagam Academy of Higher Education, Coimbatore 641 021, India;2.Karpagam Innovation and Incubation Council, Coimbatore 641 021, India

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    Abstract:

    SS316L alloy coupled with Inconel625 alloy were combined with Ti6Al4V or Inconel718 alloy through wire arc additive manufacturing technique to manufacture functionally graded materials (FGMs). Two FGMs, namely 60% SS316L+20% Inconel625+20% Ti6Al4V composite and 60% SS316L+20% Inconel625+20% Inconel718 composite, were prepared. The tensile strength, elongation, yield strength, hardness, cross section area of the parent material, and composition were analysed. Results illustrate that the 60% SS316L+20% Inconel625+20% Inconel718 composite has better mechanical properties than 60% SS316L+20% Inconel625+20% Ti6Al4V composite, and the comprehensive properties of 60% SS316L+20% Inconel 625+20% Ti6Al4V composite are better than those of the parent material SS316L. Hence, the composite of 60% SS316L+20% Inconel625+20% Inconel718 is optimal. Due to its high strength, the 60% SS316L+20% Inconel625+20% Inconel718 composite has great application potential in the field of high pressure pneumatic tool and defence tool.

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[Sainath Krishna Mani Iyer, Karuppasamy Ramasamy, Prabagaran Subramaniam. Formulation and Characterization of Functionally Graded Materials Comprising SS316L and Inconel625 for En-hanced Performance in High-Pressure Pneumatic Tools[J]. Rare Metal Materials and Engineering,2025,54(2):363~376.]
DOI:10.12442/j. issn.1002-185X.20240782

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History
  • Received:December 03,2024
  • Revised:December 11,2024
  • Adopted:December 18,2024
  • Online: February 25,2025
  • Published: February 20,2025