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Reduction in mechanical anisotropy through high temperature heat treatment of Hastelloy X processed hy Selective Laser Melting (SLM)

机译:通过高温热处理机械各向异性降低机械各向异性,通过高温热处理Hastelloy X加工Hy选择性激光熔化(SLM)

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Selective Laser Melting (SLM) is an additive manufacturing technology used to directly produce metallic parts from thin powder layers. To evaluate the anisotropic mechanical properties, tensile test specimens of the Ni-base alloy Hastelloy X were built with the loading direction oriented either parallel (z-specimens) or perpendicular to the build-up direction (xy-specimens). Specimens were investigated in the 'as-built' condition and after high temperature heat treatment. Tensile tests at room temperature and at 850°C of 'as-built' material have shown different mechanical properties for z- and xy-specimens. The anisotropy is reflected in the Young's modulus, with lower values measured parallel to the build-up direction. It is shown that the anisotropy is significantly reduced by a subsequent recrystallization heat treatment. The characterization of microstructural and textural anisotropy was done by Electron Back Scatter Diffraction (EBSD) analysis. Predictions of Young's modulus calculated from the measured textures compare well with the data from tensile tests.
机译:选择性激光熔化(SLM)是一种添加剂制造技术,用于直接产生来自薄粉末层的金属部件。为了评估各向异性的机械性能,使用平行(Z样品)的装载方向或垂直于积聚方向(XY样本),构建了Ni基合金摇摇合金X的拉伸试样。在“竣工”条件下和高温热处理后调查标本。在室温下的拉伸试验和850°C的“竣工”材料显示出Z-和XY样本的不同机械性能。各向异性反映在杨氏模量中,具有与积聚方向平行测量的较低值。结果表明,通过随后的重结晶热处理显着降低了各向异性。通过电子背散射衍射(EBSD)分析来完成微观结构和纹理各向异性的表征。从测量纹理计算的杨氏模量的预测与来自拉伸试验的数据相比很好地比较。

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