奥氏体不锈钢进给和凹槽旋转挤压残余应力的形成

H. Hoche, F. Jaeger, A. Franceschi, M. Oechsner, P. Groche
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引用次数: 5

摘要

由于奥氏体不锈钢1.4307和1.4404具有较高的加工硬化能力,因此冷成形效果显著。通过优化成形工艺链,在关键部件区域产生特定的残余应力,有望极大地改善部件的疲劳性能。本文对旋转锻压过程中残余应力的形成进行了分析。通过这种渐进成形工艺,工件产生了高应变硬化和复杂的材料流动历史。因此,提出了利用sin2Ψ-method对冷变形奥氏体钢进行x射线衍射残余应力测量的方法。在这里,特别是1.4307是一种具有挑战性的材料,因为冷成型诱导马氏体形成。尽管发生了相变,但两种冷成形材料都表现出各向异性的显微组织和粗晶区。此外,通过旋转锻压在工件上产生特殊的缺口几何形状。进一步发展了这些复杂几何形状的测量技术,并对残余应力进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation of Residual Stresses in Austenitic Stainless Steels by Infeed and Recess Rotary Swaging
The austenitic stainless steels 1.4307 and 1.4404 significantly benefit from cold forming, due to their high work hardening capability. Great potential to improve the component's fatigue properties is expected by optimizing the forming process chain such that specific residual stresses are induced in critical component areas. In this work, an analysis of the formation of residual stresses during rotary swaging is carried out. Through this incremental forming process, high strain hardening and a complex material flow history are induced in the workpieces. Therefore, measuring strategies for the residual stress measurement of cold de-formed austenitic steels by X-Ray diffraction, using the sin2Ψ-method, were developed. Here, especially the 1.4307 is a challenging material due to cold forming induced martensite formation. Despite phase changes, both cold formed materials exhibit anisotropic microstructures as well as coarse grained areas. Moreover, particular notched geometries are produced on the workpieces by rotary swaging. The measuring techniques are further developed for these complex geometries and the residual stresses are investigated.
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