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首页> 外文期刊>Journal of Manufacturing Processes >Improvement of mechanical properties of dissimilar spot-welded joints of additively manufactured stainless steels
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Improvement of mechanical properties of dissimilar spot-welded joints of additively manufactured stainless steels

机译:含有不锈钢的不同点焊接接头的机械性能的提高

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摘要

The dissimilar resistance spot welding of additively manufactured steel to conventional automotive steel has attracted significant attention from automotive manufacturer. However, the mechanical properties of dissimilar spot welds could be affected by the printed properties of additively manufactured steels, limiting the further application of 3D printing process in auto-body assembly line. This paper proposed an approach to improve the mechanical properties of spot-welded joints of additive manufactured steels by the design of binder jetting printed steels with the addition of nanoparticles. Cu-Sn nanoparticles have been injected to the stainless steel via binder jetting process, aiming to fill the voids between steel particles and reduce the microstructure heterogeneity in the spot welds. The microstructure evolution, sintering behavior of nanoparticles and mechanical properties of resistance spot welded stainless steel were characterized and analyzed. The sintering behavior of Cu-Sn nanoparticles during welding process attributes to the formation of transition zone with homogenous microstructure, resulting to the improvement of hardness property and lap-shear strength of spot-welded joints. Compared to the spot welds of selective laser melting printed stainless steels, the resistance spot welded stainless steel via binder jetting process shows better mechanical properties with 48 % increase of energy absorption and 19 % increase of peak load.
机译:换钢到常规汽车钢的不相似性电阻点焊引起了汽车制造商的重大关注。然而,不同的点焊的机械性能可能受到加载钢的印刷性质的影响,限制了在自动体组装线中的3D印刷过程的进一步应用。本文提出了一种通过添加纳米颗粒的粘合剂喷射印刷钢改善添加剂制造钢的点焊接头的机械性能的方法。已经通过粘合剂喷射过程注射到不锈钢中的Cu-Sn纳米粒子,旨在填充钢颗粒之间的空隙并降低点焊中的微观结构异质性。纳米颗粒的微观结构演化,烧结行为和电阻点焊接不锈钢的力学性能进行了特征和分析。 Cu-Sn纳米粒子在焊接过程中的烧结行为在焊接过程中与均匀组织形成过渡区的形成,导致点焊接头的硬度性能和搭接剪切强度的改善。与选择性激光熔化印刷不锈钢的点焊相比,通过粘合剂喷射过程的电阻点焊接不锈钢显示出更好的机械性能,能量吸收增加48%,峰值载荷增加了19%。

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