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Plasticity and stress heterogeneity influence on mechanical stress relaxation residual stress measurements

机译:可塑性和应力异质性对机械应力松弛残余应力测量的影响

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Two common problems of mechanical strain relaxation (MSR) residual stress measurement methods are investigated in this work: (1) assumption of stress uniformity and (2) the effect of plasticity at relaxation. A new MSR technique, designed specifically for highly non-uniform in-plane residual stress fields, is applied in this work to measure the residual stress field resulted from pure bending of an A17075 alloy. The method involves introducing a straight cut across the whole part in a single increment, and collecting full field displacement fields from the side surface. Application of a 2D high resolution digital image correlation (DIC) method proved successful in this work. The reconstructed residual stress agrees well with that predicted by FE modelling. It is shown that the direction of the propagation of the slit has a major influence on plastic flow during relaxation. The major conclusion from this work is that it is possible to substantially reduce, or completely eliminate, plastic flow on relaxation by careful planning of the slit orientation and the cutting schedule.
机译:在这项工作中研究了两种机械应变弛豫(MSR)残留应力测量方法的常见问题:(1)应力均匀性的假设和(2)可塑性在松弛时的效果。在该工作中应用专门用于高度不均匀的面内残余应力场的新MSR技术,以测量由A17075合金的纯弯曲产生的残余应力场。该方法涉及以单个增量在整个部件上穿过整个部分的直切,并从侧表面收集完整的场位移场。在这项工作中证明了2D高分辨率数字图像相关(DIC)方法的应用。重建的残余压力与通过FE造型预测的剩余压力很好。结果表明,狭缝的传播方向对弛豫期间对塑性流动的主要影响。这项工作的主要结论是,通过仔细规划狭缝取向和切割时间表,可以大大减少或完全消除塑性流动。

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