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Simulation And Physical Modeling Of Forging Sequence Of Bj Type Outer Race

机译:BJ型外面锻造序列的仿真与物理建模

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The outer race of a constant velocity (CV) joint is an important automotive component that is difficult to be forged because its shape is very complicated and the required precision is high. Since traditional cold forging methods are not always capable of producing complexly shaped parts, such parts are often made by processes, which require intense machining operations at relatively high costs. Thus near net shape forging is an attractive option for producing of outer race. Actual problems in final ironing sequence are prevention of ductile fracture and surface defects in final product and true formation of internal ball grooves of the workpiece. In this study Cockroft&Latham failure criterion was applied to final ironing sequence. Finally physical modeling is down using lead. In order to investigate the flow of the billet material during forging, the experimentally obtained section profile of internal grooves as measured by a CMM is compared with simulation based profile.
机译:恒定速度(CV)接头的外部群体是一个重要的汽车组件,难以锻造,因为其形状非常复杂并且所需的精度高。由于传统的冷锻造方法并不总是能够产生复杂形状的部件,因此这些部件通常由过程制造,这是在相对较高的成本下需要强烈加工操作的过程。因此,近净形锻造是一种有吸引力的外部竞争选择。最终熨烫序列中的实际问题是在最终产品中预防延性骨折和表面缺陷,以及工件的内部球槽的真正形成。在本研究中,Cockroft&Latham失效标准应用于最终熨烫序列。最后使用铅的物理建模。为了在锻造期间研究坯料材料的流动,将通过CMM测量的实验获得的内部凹槽的剖面轮廓与基于模拟的曲线进行了比较。

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