首页> 外文期刊>International Journal of Fatigue >Effect of notches on the deformation behavior and damage evolution of additively manufactured 316L specimens under uniaxial quasi-static and cyclic loading
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Effect of notches on the deformation behavior and damage evolution of additively manufactured 316L specimens under uniaxial quasi-static and cyclic loading

机译:缺口对单轴准静态和循环载荷下增材制造的316L试样变形行为和损伤演化的影响

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摘要

Powder bed based additive manufacturing techniques enable for fabrication of filigree and geometrically complex structures. These structures typically are characterized by many cross section transitions, leading to notch induced stress concentration. Furthermore, the process induced surface roughness cannot be always mechanically removed as the surfaces are not accessible using conventional tools. Although these factors are critical for many different applications and materials, previous works mainly focused on notch effects in brittle materials, such as the common Ti-6Al-4V alloy. Systematic examination of notch induced stresses in ductile materials, especially under the constraints of process induced surface roughness and small part dimensions, was not conducted. Thus, the present study addresses these issues by evaluation of the mechanical performance of notched samples made of 316L stainless steel under quasi-static and cyclic loading. By means of digital image correlation insights into the local deformation mechanisms and the damage evolution, respectively, were obtained. Microstructural analysis by electron backscatter diffraction provided profound explanation for the phenomena observed.
机译:基于粉末床的增材制造技术可用于制造花丝和几何形状复杂的结构。这些结构通常以许多横截面过渡为特征,导致缺口引起的应力集中。此外,由于使用常规工具不能接近表面,因此不能总是机械地去除过程引起的表面粗糙度。尽管这些因素对于许多不同的应用和材料至关重要,但先前的工作主要集中在脆性材料(例如常见的Ti-6Al-4V合金)中的缺口效应。没有对延性材料中的缺口引起的应力进行系统检查,尤其是在过程引起的表面粗糙度和较小零件尺寸的约束下。因此,本研究通过评估由316L不锈钢制成的缺口样品在准静态和循环载荷下的机械性能来解决这些问题。通过数字图像相关性,分别获得了局部变形机理和损伤演化的见解。电子反向散射衍射的微观结构分析为观察到的现象提供了深刻的解释。

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