首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Stress partitioning behavior of an AlSi10Mg alloy produced by selective laser melting during tensile deformation using in situ neutron diffraction
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Stress partitioning behavior of an AlSi10Mg alloy produced by selective laser melting during tensile deformation using in situ neutron diffraction

机译:原位中子衍射在拉伸变形过程中通过选择性激光熔化制备的AlSi10Mg合金的应力分配行为

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摘要

Micromechanical stress partitioning between Al and Si constituents in an AlSi10Mg alloy fabricated by selective laser melting was determined during uniaxial tensile loading. In situ neutron diffraction method was utilized for the measurements of the lattice strains from a set of Al and Si grains separately and the strain components were correlated to the stress evolution of each alloy constituent. The elastic strain of the Al matrix saturated at about 3800 mu epsilon while it continuously increases up to 9000 mu epsilon in the plastic deformation region of the Si particles. The stress partitioning was estimated as 260 MPa for the Al matrix and 680 MPa for the Si particles on fracture. Microstructure of the fracture surface shows a number of large voids and cracks propagated along the soft Al matrix. (C) 2016 Elsevier B.V. All rights reserved.
机译:在单轴拉伸载荷过程中,确定了通过选择性激光熔化制备的AlSi10Mg合金中Al和Si成分之间的微机械应力分配。利用原位中子衍射法分别测量了一组Al和Si晶粒的晶格应变,应变分量与每种合金成分的应力演化相关。 Al基体的弹性应变在约3800με的范围内饱和,而在Si颗粒的塑性变形区域中则连续增加至9000με。对于断裂时的Al基体,应力分配估计为260 MPa,对于Si粒子,应力分配估计为680 MPa。断裂表面的微观结构显示出许多大的空隙和沿软质Al基体传播的裂纹。 (C)2016 Elsevier B.V.保留所有权利。

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