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首页> 外文期刊>Production Engineering: Research and Development >Engineering the residual stress state of the metastable austenitic stainless steel (MASS) disc springs by incremental sheet forming (ISF)
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Engineering the residual stress state of the metastable austenitic stainless steel (MASS) disc springs by incremental sheet forming (ISF)

机译:通过增量板形成(ISF)通过工程用亚稳奥氏体不锈钢(质量)圆盘弹簧的剩余应力状态

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The paper presents a novel methodology to form disc springs made of metastable austenitic stainless steel using incremental sheet forming (ISF), which is also used to generate compressive residual stresses. The research aims at replacing the shot peening process which has various disadvantages such as a change in disc spring geometry and replacing it with a method that allows a better control of spring properties. Two different methodologies were developed. Firstly, ISF was used to selectively induce the residual stresses in conventionally formed disc springs. Secondly, ISF was used to form the disc spring and to induce the residual stresses during the actual forming process. Residual stresses were measured using bore-hole-drilling. For both methodologies, ISF induces higher compressive residual stresses in the disc spring and a higher spring force in comparison to conventional disc springs. The changes in the spring properties is due to the formation of deformation-induced martensite, which is characterized by using metallurgical investigations and disc compression test. Hence, the strategies developed using ISF can be employed as an alternative forming process for disc springs with integrated surface treatment.
机译:本文介绍了一种新的方法,可以使用增量板形成(ISF)形成由亚稳奥氏体不锈钢制成的圆盘弹簧,其也用于产生压缩残余应力。该研究旨在更换具有各种缺点的喷丸喷丸过程,例如圆盘弹簧几何形状的变化,并用允许更好地控制弹簧性能的方法更换。开发了两种不同的方法。首先,ISF用于选择性地诱导常规形成的圆盘弹簧中的残余应力。其次,使用ISF来形成圆盘弹簧并在实际形成过程中诱导残余应力。使用钻孔钻孔测量残留应力。对于两种方法,ISF与传统的圆盘弹簧相比,ISF在盘弹簧中引起更高的压缩残余应力和更高的弹簧力。弹簧性质的变化是由于形成变形诱导的马氏体,其特征在于使用冶金研究和盘压缩测试。因此,使用ISF开发的策略可以作为具有集成表面处理的圆盘弹簧的替代成型过程。

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