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Testing an Injection Forging Process for the Production of Automotive Fasteners

机译:测试用于生产汽车紧固件的注射锻造工艺

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Competition in the automotive fasteners production has been fierce and there are needs for higher quality, lower manufacturing-cost and fast delivery. To meet such needs, injection forging of automotive fasteners for possible industrial production has been investigated, considering its potential of forming complex-shaped components with shorter process chains. Initially, a comparison study on existing multi-stage forming and injection forging was conducted, supported by FE simulations, through which the feasibility of using injection forging for producing one type of fasteners was established preliminarily. The process was then tested through forming experiments based on which component accuracy, formed-material hardness and grain-flow lines were examined to evaluate the quality of the fasteners formed. Further, a manufacturing trial was carried out in the industry to examine the process feasibility in the industrial environment. Besides the parts with good quality having been achieved, the requirement for higher forming-force and the consequence as larger die-deflections were also identified through these studies. Based on the results obtained, improvements on the process and tool-design were proposed, focusing on the forming-force reduction and higher part-dimension accuracy.
机译:比赛在汽车紧固件生产已经非常激烈,并有更高的品质,更低的制造成本和快速交货的需要。为了满足这种需求,用于可能的工业生产汽车紧固件的注射锻造已经研究,考虑到其具有较短的流程链形成复杂形状的部件的电势。最初,在现有的多级成形和注射锻造的比较研究进行,通过有限元模拟,通过该初步建立利用注射锻造用于生产一种类型的紧固件的可行性支撑。然后,该过程是通过形成在此基础上进行了检查部件精度,形成的材料的硬度和晶粒流线来评价所形成的紧固件的质量实验中测试。此外,制造试验在行业内进行了检查在工业环境的过程可行性。除了已经取得了良好的品质部件,形成高动力的要求和后果的大模具变形通过这些研究还查明。基于获得的结果,对过程和工具设计的改进提出,着眼于形成动力缩减和较高部分的尺寸精度。

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