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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Investigation of the joining zone displacement of cross-wedge rolled serially arranged hybrid parts
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Investigation of the joining zone displacement of cross-wedge rolled serially arranged hybrid parts

机译:交叉楔形交叉卷绕串联杂交零件的连接区位移研究

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Within the Collaborative Research Centre (CRC) 1153 "Tailored Forming "the manufacturing of hybrid bulk components is investigated. Therefore, a process chain consisting of joining, forming, milling and quality control has been established by multiple subprojects. Within subproject B1 of the CRC forming of hybrid parts by the incrementally forming cross-wedge rolling (CWR) process is investigated. The superior aim is to determine process limits and capabilities, when forming parts consisting of different materials joined by varying technologies. In this paper, the investigation of cross-wedge rolling of serially arranged hybrid parts made of steel and aluminium is described. The focus of the research presented in this publication is the displacement of the joining zone of hybrid parts due to the cross-wedge rolling process. Therefore, finite element simulations have been developed, that allow the investigations of hybrid solid components. After simulation of various variations of the cross-wedge rolling process, i.e. differently shaped tools and forming velocities, experimental trials were carried out with identical parameter sets. A comparison of simulation and experiment, showed that the simulation model is capable of describing the cross-wedge rolling process of hybrid parts. The standard deviation of the displacement of the joining zone between simulation and experimental trials is 8.8% with regard to all investigated cases.
机译:在协作研究中心(CRC)1153“定制成型”中,调查了混合体组分的制造。因此,已经通过多个子项目建立了由连接,形成,研磨和质量控制组成的过程链。研究了通过递增形成的交叉楔形滚动(CWR)工艺对混合零件的CRC形成的子项目B1。当通过不同技术连接的不同材料组成时,优越的目的是确定过程限制和能力。本文描述了由钢和铝串联布布式零件的交叉楔形轧制的研究。本出版物中提出的研究的重点是由于交叉楔形轧制工艺引起的混合件的连接区域的位移。因此,已经开发了有限元模拟,其允许研究杂化固体组分。在模拟交叉楔形轧制过程的各种变型之后,即用相同的参数集进行实验试验的不同形状的工具和形成速度。模拟和实验的比较,表明仿真模型能够描述混合零件的交叉楔形轧制过程。关于模拟和实验试验之间的连接区位移的标准偏差对于所有研究病例为8.8%。

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