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Residual Stress in Tools and Components in Case of Thermo-Mechanical Metal Forming Processes

机译:热机械金属成型过程中工具和组件中的残余应力

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Residual stresses play a key role in thermo-mechanically coupled forming processes for industrial mass production. They are an unavoidable consequence of the alternating inhomogeneous fields of temperature and mechanical stress developing in tools and components dependent on the process parameters applied. Because of their influence on the behavior of the components produced, a great interest exists to get reliable information about origin and distribution of the relevant residual stress fields and to understand the basic principles of their formation. In this paper the development of residual stress in tools (steel AISI H11) used for the thermo-mechanical forming operation of cylindrical flange shafts (steel SAE 6150) is outlined. The loading situation of the tool is simulated by thermal fatigue tests, providing information about cyclic stress and plastic deformation during the manufacturing process. Furthermore the residual stress states of the flange shafts manufactured are presented and discussed. Chip forming manufacturing operations are challenging tasks and tensile residual stresses can be avoided using adapted process parameters.
机译:残余应力在工业批量生产的热机械耦合成型过程中起着关键作用。它们是不可避免的结果,取决于所应用的工艺参数,工具和组件中出现的温度场和机械应力场交替变化。由于它们会影响所生产部件的性能,因此人们非常有兴趣获得有关相关残余应力场的起源和分布的可靠信息,并了解其形成的基本原理。本文概述了用于圆柱法兰轴(钢SAE 6150)的热机械成形操作的工具(钢AISI H11)中的残余应力的发展。通过热疲劳测试来模拟工具的加载情况,从而提供有关制造过程中的循环应力和塑性变形的信息。此外,还介绍并讨论了所制造的法兰轴的残余应力状态。切屑成型制造操作是一项艰巨的任务,使用合适的工艺参数可以避免拉伸残余应力。

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