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首页> 外文期刊>Journal of Manufacturing Processes >Design of Profile Ring Rolling by Backward Simulation Using Upper Bound Element Technique (UBET)
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Design of Profile Ring Rolling by Backward Simulation Using Upper Bound Element Technique (UBET)

机译:使用上界元技术(UBET)向后仿真的型材环轧设计

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The upper bound element technique (UBET) is used to determine the optimum intermediate shape for profile ring rolling using backward simulation. The lowest energy rate is the key issue in achieving the optimal intermediate shape as well as the backward simulation of the process. The plastic flow of material in ring rolling is assumed to be a sequence of successive closed-die forging processes. The ring is divided into features, which provide an approximated profile consisting of a number of rectangular elements. The simulation of the profile ring rolling was tested with different profiles of rolls, and two such cases are presented here. The present method was validated using an experimental radial ring rolling mill designed and fabricated in the Dept. of Mechanical Engineering at Ohio University for the investigation of both cold and hot ring rolling processes. As the results show, this technique is capable of solving the backward simulation of profile ring rolling problems in a much shorter time compared to the finite element method (FEM), which cannot easily simulate profile ring rolling. Moreover, as an engineering tool, this approach can be applied effectively to the profile ring rolling process and can serve as a useful tool in industrial applications.
机译:使用后向仿真,上限元素技术(UBET)用于确定型材环轧的最佳中间形状。最低的能量速率是获得最佳中间形状以及过程的向后仿真的关键问题。假定环轧过程中材料的塑性流动是一系列连续的闭模锻造过程的序列。环分为多个特征,这些特征提供了由多个矩形元素组成的近似轮廓。异型环轧制的模拟用不同的辊型进行了测试,这里介绍了两种情况。本方法通过在俄亥俄州大学机械工程系设计和制造的用于研究冷,热环轧工艺的实验性径向环轧机进行了验证。结果表明,与有限元方法(FEM)相比,该技术能够在更短的时间内解决型材环锭轧制问题的后向仿真问题,而有限元方法无法轻松地模拟型材环锭轧制。此外,作为一种工程工具,这种方法可以有效地应用于型材环轧工艺,并且可以用作工业应用中的有用工具。

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