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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Residual stress analyses of re-autofrettaged thick-walled tubes
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Residual stress analyses of re-autofrettaged thick-walled tubes

机译:自重封厚壁管的残余应力分析

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摘要

In this paper the effect of the re-autofrettage process on the residual stress distribution at the wall of a thick-walled tube is considered. For accurate material behavior modeling, it is assumed that the yield surface is a function of all the stress invariants. Also for estimating the behavior of the material under loading-unloading process, a modified Chaboche's hardening model is applied. For evaluation of this unloading behavior model a series of loading - unloading tests are conducted on specimens that are made of the high strength steel, DIN1.6959. In addition the finite element simulations are implemented to simulate the re-autofrettage process and to estimate the residual stresses. The numerical results show that the re-autofrettage process without heat treatment only improves the residual stress distribution in high autofrettage percentage and for low autofrettage percentage this method is not beneficial. However, the re-autofrettage process with "heat soak" treatment generally improves the residual stress distribution.
机译:本文考虑了再自强化工艺对厚壁管壁残余应力分布的影响。对于精确的材料行为建模,假定屈服面是所有应力不变量的函数。另外,为了估计材料在装卸过程中的行为,使用了改进的Chaboche硬化模型。为了评估此卸荷行为模型,对由高强度钢DIN1.6959制成的样品进行了一系列的卸荷测试。此外,还进行了有限元模拟,以模拟再自强化过程并估算残余应力。数值结果表明,不进行热处理的二次自强化工艺仅在高自强化百分比下改善了残余应力分布,而对于低自强化百分比,该方法无益。但是,采用“热浸”处理的再自玻璃工艺通常会改善残余应力分布。

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