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Effect of heat treatment on microstructure and mechanical properties of a selective laser melted Cu-15Ni-8Sn alloy

机译:热处理对选择性激光熔融Cu-15Ni-8Sn合金的组织和力学性能的影响

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摘要

As a high strength wearproof alloy, Cu-15Ni-8Sn alloy structures were fabricated by selective laser melting (SLM), while they possessed poor mechanical properties due to the absence of precipitated phase, and thus they are on the halfway to industrial application. SLM-processed Cu-15Ni-8Sn alloy subjected to heat treatments is studied to further improve the performance. Microstructure evolutions and mechanical properties variations were investigated, and the strengthening mechanisms are discussed. SLM-processed matrix is a supersaturated solid solution with fine grains, leading to important yield strength contributions from solid solution strengthening. The incremental strength for heat-treated samples aged at 400 degrees C is mainly due to the DO22 ordering and the spinodal decomposition. The precipitation strengthening increased from 1.4% to above 70% after heat treatment. Among the three aging methods, directly aging (DA) samples showed highest strength than the other two methods. The directly aged samples exhibit fine grains and high dislocation density, resulting in high grain boundary strengthening and dislocation strengthening. Moreover, direct aging treatment is an economical and environment-friendly way to improve mechanical properties of SLM-processed precipitation-hardened alloy, which is a high strength conductive elastic material.
机译:作为高强度耐磨合金,Cu-15Ni-8Sn合金结构是通过选择性激光熔化(SLM)制成的,但由于没有析出相而具有较差的机械性能,因此已进入工业应用的一半。为了进一步改善性能,对经SLM处理的Cu-15Ni-8Sn合金进行了热处理。研究了组织的演变和力学性能的变化,并讨论了强化机理。 SLM处理的基体是具有细晶粒的过饱和固溶体,通过固溶体强化可产生重要的屈服强度贡献。对于400℃时效的热处理样品,其增加的强度主要归因于DO22有序化和旋节线分解。热处理后,析出强化从1.4%增加到70%以上。在这三种时效方法中,直接时效(DA)样品显示出比其他两种方法最高的强度。直接时效样品表现出细晶粒和高位错密度,从而导致高的晶界强化和位错强化。此外,直接时效处理是一种经济且环保的方法,可以改善SLM处理的沉淀硬化合金的机械性能,该合金是高强度导电弹性材料。

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