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首页> 外文期刊>Journal of Materials Processing Technology >Analysis and design of body jack case stamping for fewer production steps
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Analysis and design of body jack case stamping for fewer production steps

机译:车身千斤顶外壳冲压的分析和设计可减少生产步骤

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Formability analysis is an important step in design of successful sheet metal forming processes before a physical tryout can be carried out. This paper presents a design process in an industrial practice for a forming process of a new body jack case. The design needs to conform to the functionalities and reduce production steps, especially the welding step, which is required in the previous design. The part is then produced by stamping a flat steel sheet and needs no further welding. The stamping process is consistently analyzed by using a nonlinear finite element method (FEM). The formability is verified by using a forming limit diagram (FLD) as the main key performance index (KPI). In addition to the formability, other manufacturing aspects (i.e., trim line, and cost) are also taken into account. In order to determine an optimal process condition, major parameters (i.e., part configuration, blank configuration, and blank material) are explored. A blank configuration from inverse analysis (IA) results in an acceptable stamped part according to FLD. However, it requires extra trimming cost and causes the stamped part's perimeter to be too close to the trim line. A simpler blank configuration has shown in this study that it can meet the design requirement. It is also seen that a material selection plays an important role in the formability of the part. In this study, JIS SPCE is chosen over JIS SPCC and JIS SPCEN due to its formability and cost merit, respectively.
机译:可成形性分析是在成功进行物理试模之前设计成功的钣金成形过程中的重要步骤。本文介绍了一种工业实践中用于新型车身顶盖箱体成型过程的设计过程。设计需要符合功能并减少生产步骤,尤其是先前设计中所需的焊接步骤。然后通过冲压平板钢板来生产零件,无需进一步焊接。使用非线性有限元方法(FEM)始终对冲压过程进行分析。通过使用成形极限图(FLD)作为主要关键性能指标(KPI)来验证可成形性。除了可成形性之外,还考虑了其​​他制造方面(即,修边线和成本)。为了确定最佳的工艺条件,探索了主要参数(即,零件构造,毛坯构造和毛坯材料)。根据FLD,逆分析(IA)的空白配置会生成合格的冲压件。但是,这需要额外的修边成本,并使冲压零件的周长太靠近修边线。一项更简单的空白配置表明该研究可以满足设计要求。还可以看出,材料的选择在零件的可成型性中起着重要的作用。在本研究中,分别由于其可成形性和成本优势,分别选择了JIS SPCE和JIS SPCC和JIS SPCEN。

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