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Determination of multi-direction loading path based on analytical method in forming of multi-cavity parts by considering folding defect

机译:考虑折叠缺陷,基于分析方法的多向负载路径的确定

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摘要

In the forming of multi-cavity parts by multi-direction loading, the loading path greatly affects the material flow, the cavity filling, and folding defect generation, which is prone to occur and restricts the realization of forming process and guarantee of forming quality. How to determine the reasonable loading path related to part structures is urgent and of challenges. In this paper, the design principle of loading path is proposed, and aiming at the complex structures (different diameters and angles of main and branch pipes, different structures and dimensions) of the formed multi-cavity parts, the initial loading displacement of main punch is quickly determined by a new analytical method and further the overall reasonable loading path, where the volume transfer law and invariance principle are considered. The application in quick determination of loading path in 316LN stainless steel cross valve shows that the analytical method proposed in this paper is reliable and practical. Consequently, the method can provide a scientific basis for the quick determination of the reasonable loading path for diverse and complex multi-cavity parts.
机译:在多腔份的多方向加载成形,装载路径极大地影响材料流动,空腔填充,和折叠缺陷产生,这是易于发生并限制实现形成过程和成形质量的保证。如何确定相关的部件结构合理的加载路径是紧迫和挑战。在本文中,加载路径的设计原则提出,并且在复杂结构瞄准(不同直径和的主角度和支管,不同的结构和尺寸)所形成的多腔的部分,主冲头的初始加载位移很快被一种新的分析方法,并进一步全面合理的加载路径,其中体积传递规律和不变性原理被认为是确定的。在316LN不锈钢横阀表明,在本文提出的分析方法中快速确定加载路径的应用的可靠性和实用性。因此,该方法可以提供用于快速确定对于多样化和复杂的多腔份合理加载路径的科学依据。

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