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Additively manufactured Haynes-282 monoliths containing thin wall struts of varying thicknesses

机译:增材制造的 Haynes-282 整体式,包含不同厚度的薄壁支柱

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Magnitude and distribution of residual stresses in additively manufactured Ni-based superalloys may impact the mechanical performance of as-fabricated parts. Though electron beam powder bed fusion (E-PBF) can produce components with minimal defects and residual stresses compared to laser powder bed fusion and directed energy deposition, variations of them may occur within the complex geometry of a component, due to inherent variations of thermal signatures and the evolution of section modulus along the build direction. This work reveals the residual stress distribution, characterised from neutron diffraction, of an as-fabricated Haynes 282 monolith containing internal cube voids and thin wall struts of varying thicknesses. Complementary local hardness measurements and multi-scale microscopy were used to investigate the geometry-structure-property relationships. Observed variations in hardness were attributed to a combination of type I macro-scale residual stresses and variations in bimodal γ' precipitation behaviour. The results highlight the influence of residual stresses and microstructure on the mechanical properties of E-PBF Haynes 282.
机译:残余应力的大小和分布加法制造镍基超合金力学性能的影响纯属捏造部分。床上融合(E-PBF)可以产生组件最小的缺陷和残余应力激光粉末床融合和定向能量沉积,其中变化可能发生在组件的复杂几何形状,由于热签名和固有的差异演化剖面模数的构建方向。从中子分布特征衍射,纯属捏造的海恩斯282年庞然大物立方体包含内部空洞和薄不同厚度的墙struts。当地的硬度测量和多尺度显微镜是用来调查geometry-structure-property关系。硬度的变化主要是由于观察到大规模的残余的组合类型压力和变化双峰γ’降水的行为。和残余应力的影响微观结构的力学性能282年E-PBF海恩斯。

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