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Iterative preform design technique by tracing the material flow along the deformation path: Application to piston forging

机译:通过跟踪沿着变形路径的​​材料流的迭代瓶坯设计技术:在活塞锻造中的应用

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摘要

Purpose - In the finite element analysis of a hot forging process, it is difficult to design an optimal preform because of highly nonlinear characteristics of design variables. In this paper, a new preform design method which can reduce the forming load and the die wear by removing the flash is developed and applied to the pre form design of a piston. Design/methodology/approach - After finite element analyses of hot forging processes, if the final product is found to have excessive flash and cause high die wear, a new preform design technique, so-called iterative preform design technique is applied to obtain an optimal preform design. From the results of FE simulations, a boundary region at the outlet of the flash is first selected. Then, by tracing the section along the deformation path to the initial billet, it is possible to obtain a mapped section boundary in the initial billet. After updating the initial shape by removing the exterior region of the mapped section boundary, a finite element simulation is carried out with the updated initial shape. Iterations should be continued until a desired result is obtained. Findings - It has been confirmed that the proposed preform design technique has a negligible effect on the initial forgeability of the workpiace. It is expected that the tool life will be increased, because the forming load and die wear are reduced as the number of iterations are increased. Moreover, because the preform design reduces the flash, it thereby reduces the waste of material. Originality/value - In the 3D finite element analysis of a hot forging process, several optimal preform design techniques have been developed. However, it is difficult to use the techniques in general problems because it is difficult to formulate cost functions, which mainly depend on the experience and physical insight of the designer. In addition, tremendous time is consumed in optimizing a problem as a large number of iterations are required in minimizing the objective function. The proposed preform design technique is simple enough to apply to general hot forging problems involving excessive flash. The proposed preform design technique is an offline method and easy to apply to any other analysis program, including commercial programs.
机译:目的-在热锻过程的有限元分析中,由于设计变量的高度非线性特性,很难设计出最佳的预成型坯。本文提出了一种新的瓶胚设计方法,该方法可以通过去除毛边来减少成型负荷和减少模具磨损,并将其应用于活塞的瓶胚设计中。设计/方法/方法-对热锻工艺进行有限元分析后,如果发现最终产品有过多的飞边并导致较高的模头磨损,则采用一种新的瓶坯设计技术,即所谓的迭代瓶坯设计技术,以获得最佳效果。瓶坯设计。根据有限元模拟的结果,首先选择闪光灯出口处的边界区域。然后,通过沿着变形路径追踪到初始坯料的截面,可以在初始坯料中获得映射的截面边界。通过删除映射截面边界的外部区域来更新初始形状后,使用更新后的初始形状进行有限元模拟。应该继续进行迭代,直到获得期望的结果。发现-已经证实,所提出的瓶坯设计技术对工作台的初始可锻性的影响可忽略不计。可以预期,由于随着迭代次数的增加,成形负荷和模具磨损会减少,因此刀具寿命会增加。此外,由于预成型件设计减少了飞边,因此减少了材料浪费。原创性/价值-在热锻工艺的3D有限元分析中,已经开发了几种最佳的瓶坯设计技术。然而,由于通常难以设计成本函数,而成本函数主要取决于设计者的经验和物理见识,因此难以在一般问题中使用这些技术。另外,优化问题要花费大量时间,因为要使目标函数最小化需要大量的迭代。所提出的预成型件设计技术非常简单,可以应用于涉及过多飞边的一般热锻问题。拟议的瓶坯设计技术是一种离线方法,可轻松应用于任何其他分析程序,包括商业程序。

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