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An approach for the forming of large-thickness-flange components by injection forging

机译:通过注射锻造形成大厚度法兰组件的方法

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Injection forging has advantages for the nett-forming of flange-typed components. Research, however, has identified that folds occurred on material free-surfaces during the injection upsetting of flanges when the billet-diameter/flange-thickness ratio was beyond 1.2. These occurred at lower aspect ratios than that defined with reference to the stability of the billets. FE simulation and experiments were conducted to identify approaches by which the initiation of folds could be prevented and, hence, the process range of injection forging could be improved. It was recognised that, since the folds develop for conditions under which the billets are stable (no buckling or lateral sliding), it is possible to design a forming route of more than one stage to prevent the development of the flaws and, hence, to extend formability. Through the research, a preforming procedure was developed by means of which the process range of injection forging of solid components can be extended to flange-thickness/billet-diameter ratios of 1.4-1.5 using machined preforms, and to 1.50-1.64 using preformed billets. The proposed preform enabled the forming of several flange-typed components without folds.
机译:注射锻造对于法兰型组件的网状成型具有优势。然而,研究发现,当钢坯直径/法兰厚度比超过1.2时,在法兰的注射up粗过程中,材料的自由表面会发生褶皱。这些以比参考钢坯稳定性所定义的纵横比低的纵横比发生。进行了有限元模拟和实验,以确定可以防止褶皱开始的方法,因此可以改善注射锻造的工艺范围。公认的是,由于折叠是在坯料稳定的条件下发展的(不弯曲或横向滑动),因此有可能设计一个以上阶段的成形路径以防止裂纹的发展,因此,扩展可成型性。通过研究,开发了一种预成型程序,通过该程序,可以将固体成分的注射锻造工艺范围扩展到使用机加工的预成型坯的法兰厚度/坯料直径比为1.4-1.5,以及使用预成型坯料的工艺范围扩大到1.50-1.64 。所提出的预成型件使得能够形成多个没有褶皱的凸缘型部件。

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