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首页> 外文期刊>Journal of Materials Processing Technology >FE analysis of size effect on deformation and heat transfer behavior in microtube dieless drawing
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FE analysis of size effect on deformation and heat transfer behavior in microtube dieless drawing

机译:尺寸对微管无模具拉伸变形和传热行为的有限元分析

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In this study, size effect on the deformation and heat transfer behavior of microtubes in a dieless drawing process is investigated using finite element (FE) analysis. A FE simulation with coupled thermo-mechanical analysis is performed by considering the strain rate sensitivity of the tubular materials. Tubes with outer diameters of 50, 5 and 0.5 mm were used in the FE analysis to investigate the size effect of drawing speed on the deformation and heat transfer behavior in dieless drawing. We found that heat is not conducted from the outside surface to the inside of a macroscale tube in the case of very high-speed drawing. In contrast, the temperature of the outside surface and the inside of microtubes can be increased rapidly due to the size effect at the microscale. Therefore, high-speed drawing can be realized for the dieless drawing of microtubes. From the above results, the effectiveness of dieless drawing for microtube has been demonstrated.
机译:在这项研究中,使用有限元(FE)分析研究了尺寸对无管拉伸过程中微管变形和传热行为的影响。考虑到管状材料的应变率敏感性,可以进行有限元模拟和热力学分析。有限元分析中使用外径分别为50、5和0.5 mm的管,以研究拉伸速度对无模拉伸中变形和传热行为的尺寸影响。我们发现,在高速拉伸的情况下,热量不会从宏观管的外表面传导到内部。相反,由于微尺度的尺寸效应,微管的外表面和内表面的温度可以迅速升高。因此,可以实现微管的无模拉伸的高速拉伸。根据以上结果,已经证明了微管无模拉拔的有效性。

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