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Adjusting the Residual Stress State in Wire Drawing Products via In-Process Modification of Tool Geometries

机译:通过工艺几何形状的过程改造在线拉丝产品中调整残余应力状态

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摘要

After conventional forming processes, the residual stress distribution in wires is frequently unfavorable for subsequent processes, such as bending operations. High tensile residual stresses typically occur near the wire surface and normally limit further processability of the material. Additional heat treatment operations or shot peening are often used to influence the residual stress distribution in the material after conventional manufacturing, which is time- and energy-consuming. This paper presents an approach for influencing the residual stress distribution by modifying the forming process, especially regarding die geometry. The aim is to reduce the resulting tensile stress levels near the surface. Specific forming elements are integrated into the dies to achieve this residual stress reduction. These modifications in the forming zone have a significant influence on process properties, such as plastic strain and deformation direction, but typically do not influence product geometry. This paper describes the theoretical approach and model setup, the FE simulation, and the results of the experimental tests. The characterization of the residual stress states in the specimen was carried out through X-ray diffraction using the sin2Ψ method.
机译:在传统的形成过程之后,导线中的残余应力分布通常不利于随后的过程,例如弯曲操作。高拉伸残余应力通常在线表面附近发生,并且通常限制材料的进一步加工性。额外的热处理操作或射击喷丸通常用于影响常规制造后材料中的残余应力分布,这是时间和能量的。本文提出了一种通过改变成形过程来影响残留应力分布的方法,特别是关于模具几何形状。目的是将所得拉伸应力水平降低到表面附近。具体的形成元件集成到模具中以实现这种残余应力。在成形区域中的这些修改对工艺性能的显着影响,例如塑料应变和变形方向,但通常不会影响产品几何形状。本文介绍了理论方法和模型设置,FE模拟和实验测试的结果。通过使用SIN21法通过X射线衍射进行样品中残留应力状态的表征。

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