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Laser additive manufacturing of metallic components: materials, processes and mechanisms

机译:金属部件的激光增材制造:材料,工艺和机理

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摘要

Unlike conventional materials removal methods, additive manufacturing (AM) is based on a novel materials incremental manufacturing philosophy. Additive manufacturing implies layer by layer shaping and consolidation of powder feedstock to arbitrary configurations, normally using a computer controlled laser. The current development focus of AM is to produce complex shaped functional metallic components, including metals, alloys and metal matrix composites (MMCs), to meet demanding requirements from aerospace, defence, automotive and biomedical industries. Laser sintering (LS), laser melting (LM) and laser metal deposition (LMD) are presently regarded as the three most versatile AM processes. Laser based AM processes generally have a complex non-equilibrium physical and chemical metallurgical nature, which is material and process dependent. The influence of material characteristics and processing conditions on metallurgical mechanisms and resultant microstructural and mechanical properties of AM processed components needs to be clarified. The present review initially defines LS/LM/LMD processes and operative consolidation mechanisms for metallic components. Powder materials used for AM, in the categories of pure metal powder, prealloyed powder and multicomponent metals/alloys/ MMCs powder, and associated densification mechanisms during AM are addressed. An in depth review is then presented of material and process aspects of AM, including physical aspects of materials for AM and microstructural and mechanical properties of AM processed components. The overall objective is to establish a relationship between material, process, and metallurgical mechanism for laser based AM of metallic components.
机译:与传统的材料去除方法不同,增材制造(AM)基于新颖的材料增量制造理念。增材制造意味着通常使用计算机控制的激光将粉末原料逐层成形和固结为任意配置。 AM的当前发展重点是生产复杂形状的功能金属部件,包括金属,合金和金属基复合材料(MMC),以满足航空航天,国防,汽车和生物医学行业的苛刻要求。目前,激光烧结(LS),激光熔化(LM)和激光金属沉积(LMD)被认为是三种最通用的增材制造工艺。基于激光的增材制造工艺通常具有复杂的非平衡物理和化学冶金性质,这取决于材料和工艺。需要澄清材料特性和加工条件对AM加工部件的冶金机理以及所得显微组织和机械性能的影响。本综述最初定义了LS / LM / LMD工艺和金属零件的操作性固结机制。讨论了用于AM的粉末材料,包括纯金属粉末,预合金粉末和多组分金属/合金/ MMCs粉末,以及AM期间的相关致密化机理。然后对AM的材料和工艺方面进行了深入的审查,包括AM的材料的物理方面以及AM加工组件的微观结构和机械性能。总体目标是建立金属部件的基于激光的AM的材料,工艺和冶金机制之间的关系。

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