材料科学
极限抗拉强度
断口学
维氏硬度试验
复合材料
延展性(地球科学)
拉伸试验
微观结构
合金
变形(气象学)
产量(工程)
压痕硬度
数字图像相关
表面粗糙度
各向异性
蠕动
物理
量子力学
作者
Ahmad Serjouei,Tomasz Libura,Adam Brodecki,J. Radziejewska,Paula Broniszewska-Wojdat,P. Pawłowski,Tadeusz Szymczak,Mahdi Bodaghi,Zbigniew L. Kowalewski
标识
DOI:10.1016/j.msea.2022.144345
摘要
In this work, significant strength and ductility variations are reported for AlSi10Mg parts fabricated at different orientations using laser powder bed fusion (LPBF). Hardness and surface roughness of the specimens at different orientations were measured. Tensile testing together with digital image correlation technique were conducted on the specimens. XY specimens showed the highest yield stress and ultimate tensile strength while XZ specimens showed the highest ductility. Hardness measurements for different specimens were in accordance with the tensile test results, following the same order as the UTS values, XY specimens being the highest and XY-45° (out-of-plane) specimens being the lowest. Fractography of the broken surfaces of the specimens under tensile testing revealed the microstructural features and various defects in the tensile fracture. The anisotropy in mechanical properties is attributed to the microstructural anisotropy as well as presence of various types of defects induced by the AM process, which affects the deformation and failure mechanism of the parts. Linear relationships between experimental Vickers hardness versus yield stress and UTS measurements were developed. In case of material selection for different applications, these relationships can be used as a simple tool for converting hardness and yield stress (or UTS) values to each other. An equivalent strain-hardness relationship was also proposed which can be used for health monitoring of parts subject to tensile loading.
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