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FE Analysis of Size Effect on Deformation Behavior of Metal Microtube Considering Surface Roughness in Flaring Test

机译:扩口试验中考虑表面粗糙度的尺寸对金属微管变形行为的有限元分析

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摘要

Reliable test results that show the material characteristics of a micromaterial are necessary for the accurate analysis and design of microforming processes. The size effects in the microforming are predicted to have a significant impact on the material behavior. Two size effects are explored in metallic materials. One is the grain size effect, and the other is the feature/specimen size effect. In this study, the feature size effect on the smoothing process with the consideration of tool surface roughness is investigated numerically for metal microtubes by the flaring test. Stainless-steel (SUS 316L) microtubes with the same outer diameter of 500 um and different wall thicknesses of 50, 25 and 10 urn were used in the FE analysis to study the feature size effect on the microscale by the flaring test. The surface roughnesses of the inner and outer surfaces of the microtube, as well as the surface asperity of the conical tool, were modeled in the cyclic concave-convex configuration. It is found, in the flaring test with using rough and fine tools, that the smoothing process on the inner surface of the microtube (ISM), as well as the plastic strain in the wall thickness of microtube, is affected owing to the rigidity of the microtube, which decreases as the wall thickness of the microtube decreases. These results suggest that the feature size affects the flaring test results for the metal microtube.
机译:显示微材料的材料特性的可靠测试结果对于精确分析和设计微成形工艺是必需的。预计微成型中的尺寸效应会对材料性能产生重大影响。在金属材料中探索了两种尺寸效应。一个是晶粒尺寸效应,另一个是特征/试样尺寸效应。在这项研究中,通过扩口试验,对金属微管的特征尺寸对考虑工具表面粗糙度的平滑过程的影响进行了数值研究。有限元分析中使用具有相同外径500 um,壁厚分别为50、25和10 um的不锈钢(SUS 316L)微管,通过扩口试验研究特征尺寸对微尺度的影响。微管的内,外表面的表面粗糙度以及圆锥形工具的表面粗糙度在循环凹凸结构中建模。在使用粗糙和精细工具进行的扩口试验中,发现微管内表面的平滑过程(ISM)以及微管壁厚中的塑性应变均会受到硬度的影响。微管,它随着微管壁厚的减小而减小。这些结果表明,特征尺寸会影响金属微管的扩口测试结果。

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