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首页> 外文期刊>Journal of Materials Science >Experimental studies on process-induced morphological characteristics of macro- and microstructures in laser consolidated alloys
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Experimental studies on process-induced morphological characteristics of macro- and microstructures in laser consolidated alloys

机译:激光固结合金中宏观和微观结构的过程诱导形态特征的实验研究

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Laser consolidation (LC) developed by National Research Council's Industrial Materials Institute (NRC-IMI-London) since mid-1990s, is a laser cladding based rapid manufacturing and material additive process that could fabricate a "net-shape" functional metallic shape through a "layer-upon-layer" deposition directly from a computer aided design model without using molds or dies. In order to evaluate the LC processability of different materials, some representative nickel-based superalloys (IN-625, IN-718, IN-738, and Waspaloy), stainless steels (austenitic SS316L and martensitic SS420), and lightweight alloys (Ti-6Al-4V titanium alloy and Al-4047 aluminum alloy) have been investigated. Like other laser cladding based processes, due to process-induced rapid directional solidification, the LC alloys have demonstrated certain unique morphological characteristics. Moreover, the "as-consolidated" LC alloys, in nature, are in the "as-quenched" state, and some precipitation processes from their matrices, which are sometimes critical to the development of mechanical performance of the materials, could be effectively suppressed or retarded. Post-heat treatments, therefore, could necessarily facilitate the process of achieving their required operational microstructures. In this article, a comprehensive investigation was performed including metallurgical soundness and process-induced morphological characteristics of the LC materials, and microstructure development brought by post-LC heat treatments using optical microscope, scanning electron microscope, and X-ray diffraction. The implications on the mechanical performance of the LC materials were discussed as well in order to provide essential information for potential industrial applications of the LC materials.
机译:自1990年代中期以来,由美国国家研究委员会工业材料研究所(NRC-IMI-London)开发的激光固结(LC)是一种基于激光熔覆的快速制造和材料添加工艺,可以通过激光熔接来制造“网状”功能性金属形状。直接从计算机辅助设计模型“逐层沉积”,而无需使用模具或模具。为了评估不同材料的LC可加工性,一些代表性的镍基高温合金(IN-625,IN-718,IN-738和Waspaloy),不锈钢(奥氏体SS316L和马氏体SS420)和轻质合金(Ti-已经研究了6Al-4V钛合金和Al-4047铝合金)。与其他基于激光熔覆的工艺一样,由于工艺引起的快速定向凝固,LC合金也表现出某些独特的形态特征。此外,“固结” LC合金本质上处于“淬火”状态,可以有效地抑制某些从其基体析出的过程,这些过程有时对材料的机械性能的发展至关重要。或智障。因此,后热处理可能必定有助于实现其所需的操作微观结构的过程。在本文中,进行了全面的研究,包括LC材料的冶金学可靠性和过程诱发的形态特征,以及使用光学显微镜,扫描电子显微镜和X射线衍射进行的后LC热处理带来的显微组织发展。还讨论了对LC材料机械性能的影响,以便为LC材料的潜在工业应用提供必要的信息。

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