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316L不锈钢块状圆柱形3D打印样品的应变速率依赖性压缩性能

Strain Rate-Dependent Compressive Properties of Bulk Cylindrical 3D-Printed Samples from 316L Stainless Steel.

作者信息

Neuhäuserová Michaela, Koudelka Petr, Fíla Tomáš, Falta Jan, Rada Václav, Šleichrt Jan, Zlámal Petr, Mauko Anja, Jiroušek Ondřej

机构信息

Department of Mechanics and Materials, Faculty of Transportation Sciences, Czech Technical University in Prague, Na Florenci 25, 110 00 Prague 1, Czech Republic.

Czech Academy of Sciences, Institute of Theoretical and Applied Mechanics, Prosecká 809/76, 190 00 Prague 9, Czech Republic.

出版信息

Materials (Basel). 2022 Jan 26;15(3):941. doi: 10.3390/ma15030941.

Abstract

The main aim of the study was to analyse the strain rate sensitivity of the compressive deformation response in bulk 3D-printed samples from 316L stainless steel according to the printing orientation. The laser powder bed fusion (LPBF) method of metal additive manufacturing was utilised for the production of the samples with three different printing orientations: 0∘, 45∘, and 90∘. The specimens were experimentally investigated during uni-axial quasi-static and dynamic loading. A split Hopkinson pressure bar (SHPB) apparatus was used for the dynamic experiments. The experiments were observed using a high-resolution (quasi-static loading) or a high-speed visible-light camera and a high-speed thermographic camera (dynamic loading) to allow for the quantitative and qualitative analysis of the deformation processes. Digital image correlation (DIC) software was used for the evaluation of displacement fields. To assess the deformation behaviour of the 3D-printed bulk samples and strain rate related properties, an analysis of the true stress-true strain diagrams from quasi-static and dynamic experiments as well as the thermograms captured during the dynamic loading was performed. The results revealed a strong strain rate effect on the mechanical response of the investigated material. Furthermore, a dependency of the strain-rate sensitivity on the printing orientation was identified.

摘要

该研究的主要目的是根据打印方向分析316L不锈钢块状3D打印样品压缩变形响应的应变率敏感性。采用金属增材制造的激光粉末床熔融(LPBF)方法制备具有三种不同打印方向(0°、45°和90°)的样品。在单轴准静态和动态加载过程中对试样进行了实验研究。使用分离式霍普金森压杆(SHPB)装置进行动态实验。使用高分辨率(准静态加载)或高速可见光相机以及高速热成像相机(动态加载)观察实验,以便对变形过程进行定量和定性分析。使用数字图像相关(DIC)软件评估位移场。为了评估3D打印块状样品的变形行为和应变率相关特性,对来自准静态和动态实验的真应力-真应变图以及动态加载过程中捕获的热成像图进行了分析。结果表明,应变率对所研究材料的力学响应有强烈影响。此外,还确定了应变率敏感性与打印方向的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0116/8838664/ed316132f5ac/materials-15-00941-g001.jpg

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