首页> 外文会议>International Conference on 3D Materials Science >3D MICROSTRUCTURAL ARCHITECTURES FOR METAL AND ALLOY COMPONENTS FABRICATED BY 3D PRINTING/ADDITIVE MANUFACTURING TECHNOLOGIES
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3D MICROSTRUCTURAL ARCHITECTURES FOR METAL AND ALLOY COMPONENTS FABRICATED BY 3D PRINTING/ADDITIVE MANUFACTURING TECHNOLOGIES

机译:3D 3D打印/添加剂制造技术制造的金属和合金部件的微结构架构

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The layer-by-layer building of monolithic, 3D metal components from selectively melted powder layers using laser or electron beams is a novel form of 3D printing or additive manufacturing. Microstructures created in these 3D products can involve novel, directional solidification structures which can include crystallographically oriented grains containing columnar arrays of precipitates characteristic of a microstructural architecture. These micro structural architectures are advantageously rendered in 3D image constructions involving light optical microscopy and scanning and transmission electron microscopy observations. Microstructural evolution can also be effectively examined through 3D image sequences which, along with x-ray diffraction (XRD) analysis in the x-y and x-z planes, can effectively characterize related crystallographic/texture variances. This paper compares 3D microstructural architectures in Co-base and Ni-base superalloys, columnar martensitic grain structures in 17-4 PH alloy, and columnar copper oxides and dislocation arrays in copper.
机译:从选择性地熔化粉末层使用激光或电子束的单片,3D金属成分的层 - 层建筑是3D印刷或添加剂制造的新形式。在这些3D产品创建的微结构可涉及新颖,定向凝固结构,该结构可以包括含有析出物微观结构架构的特征的柱状阵列晶体取向的晶粒。这些微结构架构在涉及光光学显微镜和扫描和透射电子显微镜观察的3D图像的结构有利地呈现。组织演变也可以通过其与在X-Y X射线衍射(XRD)分析和X-Z平面一起可以有效检定相关晶体/纹理方差3D图像序列被有效地检测。本文三维微观结构的体系结构在Co基和Ni基高温合金,在17-4 PH合金柱状马氏体晶粒结构,和柱状铜氧化物和位错列在铜进行比较。

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