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Effect of Hybrid Post-Sinter Treatment on Sinter Hardened (SH) Structural Parts from PM Steels

机译:杂交后烧结处理对PM钢烧结硬化(SH)结构部件的影响

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With the introduction of high hardenability alloying additives such as chromium, manganese, molybdenum and nickel prealloyed into an iron matrix, the technique of sinter hardening (SH) in powder metallurgy (PM) enables the combination of both the sintering and heat treatment of structural PM parts into one processing step. Standard MPIF SH grade materials typically provide tensile strengths in the range of 450-1250 MPa (70-185 ksi). However, for demanding strength applications, the SH process also utilizes the method of copper infiltration (CI) during sintering to ensure sufficient mechanical properties. While CI generally enhances tensile strength, fatigue and ductility of the PM part, it can result in corrosion sensitivity, dimensional inconsistency, and is also costly. Conversely, a newly developed hybrid processing method, which comprises partial CI with subsequent post sinter vacuum impregnation by an inorganic sealant (IS) compound has proven to be a cost-efficient alternative to sealing residual porosity of the SH parts while simultaneously improving final mechanical characteristics and corrosion properties .
机译:通过引入高淬透性的合金添加剂,例如铬,锰,钼和镍预合金成铁矩阵,烧结在粉末冶金(PM)硬化(SH)使结构PM的烧结和热处理两者的组合的技术的份在一个处理步骤。标准MPIF SH级材料通常提供在450-1250兆帕(70-185 KSI)的范围内的拉伸强度。然而,对于要求苛刻的强度的应用中,SH过程也烧结,以确保足够的机械性能期间利用渗铜(CI)的方法。虽然CI通常提高拉伸强度,疲劳和PM部分的延展性,其可导致腐蚀的敏感性,尺寸不一致,也是昂贵的。相反,新开发的混合处理方法,该方法包括用随后的后烧结真空浸渍部分CI通过无机密封剂(IS)化合物已被证明是一种成本有效的替代密封SH部分的残余孔隙,同时提高最终的机械特性和腐蚀特性。

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