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Modeling of the influence of admixing and prealloying on the optimisation of compressibility and sinter-hardenability of steel powders

机译:混合和预合金化对钢粉压缩性和烧结硬化性优化影响的建模

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The automotive industry applies pressure on the PM industry to produce components with superior mechanical properties at minimum cost. In this regard, sinter-hardenable powders are particularly well suited since they allow direct quenching of components at the end of the sintering cycle, thus eliminating the extra steps required for heat treating. This paper presents the results of the modeling of the influence of admixing and/or prealloying on the optimization of compressibility and hardenability of sinter-hardenable steel powders. A first design of experiments (DOE) was used to optimize the chemical composition and to study the interactions between prealloyed elements (Nickel, Chromium, Molybdenum and Manganese) and admixed elements (Nickel, Chromium, Manganese and Copper) on hardenability and compressibility. A second DOE was generated based on the results obtained in the first series. Results show that among all of the examined alloying elements, only prealloyed nickel, chromium and molybdenum had a significant effect on compressibility and hardenability. Moreover, within the range of concentrations under study, the optimum sinter-hardenable powder had the following (prealloyed) chemistry: 1.5 wt-% Ni, 0.55 wt-%Cr and 1.25 wt-%Mo.
机译:汽车行业对PM行业施加压力,以最低的成本生产出具有优异机械性能的组件。在这方面,可烧结硬化的粉末特别适合,因为它们允许在烧结周期结束时直接淬火组件,从而消除了热处理所需的额外步骤。本文介绍了混合和/或预合金化对可烧结硬化钢粉可压缩性和淬透性优化影响的建模结果。实验的第一个设计(DOE)用于优化化学成分并研究预合金元素(镍,铬,钼和锰)与混合元素(镍,铬,锰和铜)之间的可淬性和可压缩性之间的相互作用。基于在第一系列中获得的结果,生成了第二个DOE。结果表明,在所有检验的合金元素中,只有预合金化的镍,铬和钼对可压缩性和淬透性具有显着影响。此外,在研究的浓度范围内,最佳的可烧结硬化粉末具有以下(预合金化)化学性质:1.5 wt%的Ni,0.55 wt%的Cr和1.25 wt%的Mo。

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