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Machining characteristics of 18Ni-300 steel in additive/subtractive hybrid manufacturing

机译:18Ni-300钢加加加工特性/减肥混合制造

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摘要

Additive manufacturing (AM) possesses capability of building complicated parts that are otherwise difficult to manufacture by the conventional methods. However, the dimensional and geometric accuracies as well as surface quality of an AM-produced part are inferior to the conventionally machined part, which hinders the AM applications. Thus, an additive/subtractive hybrid manufacturing (ASHM) method is developed to take advantage of both the AM and precision subtractive manufacture (SM). However, the microstructures of the AMed parts are different from those of the conventional metallic parts. In addition, the residual stress induced by the AM stages influences the machined residual stress reconstruction in the subtractive stages. In order to investigate the effect of microstructure and the AM-induced residual stress on the machining characteristics, a milling experiment is conducted on AMed and wrought samples. The results of the cutting force, machined residual stress, and surface roughness are compared. It is found that the machining characteristics of AMed samples are different from those of wrought samples due to different microstructures and residual stress evolutions. The paper provides a guidance to the optimization of the processing parameters in the ASHM.
机译:添加剂制造(AM)具有构建复杂部件的能力,否则通过常规方法难以制造。然而,尺寸和几何精度以及am制成部分的表面质量差不多到常规加工的部分,其阻碍了AM应用。因此,开发了一种添加剂/减去混合制造(ASHM)方法以利用AM和精密减法制造(SM)。然而,amed部分的微观结构与传统金属部件的微观结构不同。此外,AM级诱导的残余应力影响减法阶段的加工残余应力重建。为了探讨微观结构的效果和AM-诱导的残余应力对加工特性的影响,对搅拌和锻造样品进行了研磨实验。比较切割力,加工的残余应力和表面粗糙度的结果。结果发现,由于不同的微观结构和残余应力演化,琥珀色样品的加工特性与锻造样品不同。本文提供了对ASHM中的处理参数的优化的指导。

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