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Simplified estimate of elastic-plastic J-integral of cracked components subjected to secondary stresses by the enhanced reference stress method and elastic follow-up factors

机译:利用增强的参考应力法和弹性随动因子简化估算承受二次应力的裂纹组件的弹塑性J积分

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摘要

This paper describes simplified methods to estimate the elastic-plastic J-integral, J, related to the crack growth rate in elastic-plastic situations. Estimating this parameter under general conditions entails costly detailed elastic-plastic FEA modelling of the cracked component concerned, and thus, some simplified methods that do not involve complex numerical calculations are required, particularly, for use in situations where plastic strains are produced by secondary stresses. For mechanical primary stresses, the reference stress method may provide reasonable estimates of J. The direct use of the reference stress method for secondary stresses, however, has not yet been fully established. The method presented in this paper is based on the enhanced reference stress method, which leads to more accurate estimates of J than the original method, and elastic follow-up factors for approximating the inelastic response of the component from the elastic FEA. The present method has been validated by performing detailed elastic -plastic FEA of cracked plates subjected to displacement-controlled loading and of a circumferentially cracked cylinder subjected to thermal loads.
机译:本文介绍了估算与弹塑性情况下裂纹扩展速率有关的弹塑性J积分J的简化方法。在一般条件下估算该参数需要对破裂的零件进行昂贵的详细的弹塑性FEA建模,因此,需要一些不涉及复杂数值计算的简化方法,尤其是在次级应力产生塑性应变的情况下。对于机械主应力,参考应力方法可以提供合理的J估计值。但是,对于次应力的参考应力方法的直接使用尚未完全确定。本文提出的方法基于增强的参考应力方法,与原始方法相比,该方法可以更准确地估算J值,并且可以使用弹性随动因子来估算弹性FEA中组件的非弹性响应。通过对承受位移控制载荷的裂纹板和承受热载荷的圆周裂纹缸进行详细的弹塑性有限元分析,验证了本方法的有效性。

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