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Study of Metal Flow of Tee Joint Valve Body by Multidirectional Extrusion Deformation and recrystallization

机译:三通接头阀体多方向挤压变形再结晶的金属流动研究

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The effect of different deformation temperature, different deformation degree and different deformation rate on the recrystallized degree and grain size of copper tee joint valve body after Multidirectional extrusion deformation were Investigated. The results shows that the recrystallization structure is Homogeneous and fine (stick or needle shape) after Multidirectional active loading by half closed mould cavity at more than 720 °C and higher deformation rate (1~5s-1) when average deformation degree is above 50%. Through choose reasonable accurate processing routing, multidimensional active loading can make each deformation zone deformed simultaneously, which could significantly reduce the non-uniform deformation. Compared to the ordinary extrusion process, deformation dead zone obviously decreased and the microstructure of workpiece is more homogeneous and the deformation force is decreased greatly.
机译:研究了不同变形温度,不同变形程度和不同变形速率对多向挤压变形后三通接头阀体的再结晶度和晶粒尺寸的影响。结果表明:半封闭型腔在高于720°C且变形速率较高(1〜5s -1 )下进行多向主动加载后,再结晶组织均匀且细密(棒状或针状)。当平均变形度高于50%时。通过选择合理,准确的加工路径,多维有效载荷可以使每个变形区同时变形,从而可以大大减少变形不均匀。与普通挤压工艺相比,变形死区明显减少,工件的微观结构更加均匀,变形力大大降低。

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