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Investigation of residual stresses in thick-walled vessels with combination of autofrettage and wire-winding

机译:自紧与钢丝缠绕相结合的厚壁容器残余应力研究

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Wire-winding and autofrettage processes can be used to introduce beneficial residual stress in the cylinder of thick-walled pressure vessels. In both techniques, internal residual compressive stress will increase internal pressure capacity, improve fatigue life and reduce fatigue crack initiation. The purpose of this paper is to analyze the effects of wire-winding on an autofrettaged thick-walled vessel. Direct method which is a modified Variable Material Properties (VMP) method has been used in order to calculate residual stresses in an autofrettaged vessel. Since wire-winding is done after autofrettage process, the tangent and/or Young's modulus could be changed. For this reason, a new wire-winding method based on Direct Method is introduced. The obtained results for wire-wound autofrettaged vessels are validated by finite element method. The results show that by using this approach, the residual hoop stresses in a wire-wound autofrettaged vessel have a more desirable distribution in the cylinder.
机译:绕线和自动强化工艺可用于在厚壁压力容器的气缸中引入有益的残余应力。在这两种技术中,内部残余压缩应力将增加内部压力能力,延长疲劳寿命并减少疲劳裂纹的产生。本文的目的是分析绕线对自组装厚壁容器的影响。为了计算自动密封容器中的残余应力,已使用直接方法,该方法是改进的可变材料特性(VMP)方法。由于绕线是在自动强化过程之后完成的,因此可以更改切线和/或杨氏模量。因此,提出了一种基于直接法的新型绕线方法。绕线式自动包装容器的所得结果通过有限元方法进行了验证。结果表明,通过使用这种方法,绕线式自动装罐容器中的残余环向应力在圆柱体内具有更理想的分布。

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