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首页> 外文期刊>Journal of Pressure Vessel Technology >A Comparison of Methods for Predicting Residual Stresses in Strain-Hardening, Autofrettaged Thick Cylinders, Including the Bauschinger Effect
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A Comparison of Methods for Predicting Residual Stresses in Strain-Hardening, Autofrettaged Thick Cylinders, Including the Bauschinger Effect

机译:应变强化,自动填充厚圆柱体中残余应力的预测方法的比较,包括鲍辛格效应

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摘要

High-pressure vessels, such as gun barrels, are autofrettaged in order to increase their operating pressure and fatigue life. Autofrettage causes plastic expansion of the inner section of the cylinder, setting up residual compressive stresses at the bore after relaxation. Subsequent application of pressure has to overcome these compressive stresses before tensile stresses can be developed, thereby increasing its fatigue lifetime and safe working pressure. This paper presents the results from a series of finite element models that have been developed to predict the magnitude of these stresses for a range of end conditions: plane stress and several plane-strain states (open and closed ended, plus true plane strain). The material model is currently bilinear and allows consideration of strain hardening and the Bauschinger effect. Results are compared to an alternative numerical model and a recent analytical model (developed by Huang), and show close agreement. This demonstrates that general purpose finite element analysis software may be used to simulate high-pressure vessels, justifying further refining of the models.
机译:对高压容器(例如枪管)进行自动密封,以增加其工作压力和疲劳寿命。自增强会导致气缸内部塑性膨胀,从而在松弛后在孔内产生残余压缩应力。随后的压力施加必须克服这些压应力,然后才能产生拉应力,从而延长其疲劳寿命和安全工作压力。本文介绍了一系列有限元模型的结果,这些模型已经开发出来,可以预测一系列最终条件下这些应力的大小:平面应力和几种平面应变状态(开端和闭端状态,加上真实的平面应变)。该材料模型目前是双线性的,可以考虑应变硬化和包辛格效应。将结果与替代的数值模型和最新的分析模型(由Huang开发)进行比较,并显示出密切的一致性。这表明通用有限元分析软件可用于模拟高压容器,为进一步完善模型提供了依据。

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