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A critical review of powder-based additive manufacturing of ferrous alloys: Process parameters, microstructure and mechanical properties

机译:铁合金粉末基增材制造的一项重要评论:工艺参数,显微组织和机械性能

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摘要

Additive manufacturing (AM) is an advanced manufacturing technology, enabling production of complex shapes by adding material layer-upon-layer, as distinct from conventional subtractive, forming and other manufacturing approaches. Thus far, several metallic materials including different types of ferrous alloys have been additively manufactured to full density with better or equivalent properties compared to counterparts made by conventional methods. In this perspective, this review article presents different powder-based additive manufacturing processes deployed to ferrous alloys, their key process parameters, phase transformation and microstructure development during solidification, all of which impact on mechanical behavior. The article enlightens the basics of Laser Powder-Bed (LPB, also known as selective laser melting), Laser Powder-Fed (LPF) and Binder Jetting (BJ) AM processes. These processes involve a sequence of complex/rapid thermal cycle and solidification behavior that influence the development of microstructure and eventually control the mechanical properties. A thorough discussion on mechanical behaviors, i.e., hardness, tensile, and cyclic/fatigue properties of AM manufactured steels is also presented based on several combined process parameters. (C) 2018 Elsevier Ltd. All rights reserved.
机译:增材制造(AM)是一项先进的制造技术,与传统的减法,成形和其他制造方法不同,通过在层上添加材料来实现复杂形状的生产。迄今为止,与通过常规方法制造的金属材料相比,已经包括具有不同类型的铁合金的几种金属材料以具有更好或等效性能的全密度相加制造。从这个角度来看,这篇综述文章介绍了部署到铁合金的不同粉末基增材制造工艺,其关键工艺参数,凝固过程中的相变和微结构发展,所有这些都会影响机械性能。这篇文章启发了Laser Powder-Bed(LPB,也称为选择性激光熔化),Laser Powder-Fed(LPF)和Binder Jetting(BJ)AM工艺的基础知识。这些过程涉及一系列复杂/快速的热循环和凝固行为,这些行为影响微观结构的发展并最终控制机械性能。还基于几个组合的工艺参数,对AM制造的钢的机械性能,即硬度,拉伸性和循环/疲劳性能进行了详尽的讨论。 (C)2018 Elsevier Ltd.保留所有权利。

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