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Material and residual stress considerations associated with the autofrettage of weld clad components

机译:与焊接复合件的自动强化有关的材料和残余应力注意事项

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摘要

A fatigue-resistant cladding concept confirms the presence of compressive residual stresses in a cylinder weld clad with 17-4 PH stainless steel while tensile residual stresses exist in an Inconel 625 clad layer. In this study, autofrettage of an Inconel 625 thick-walled clad cylinder is investigated with modified residual stress distributions obtained indicating that tensile residual stresses throughout the clad layer are transformed to compressive in nature, discontinuity stresses at the clad/substrate interface are almost entirely eliminated and compressive residual stresses exist to a depth of around 18 mm. An alternative clad material, 17-4 PH stainless steel, is investigated resulting in compressive residual stresses in the clad layer without the need for autofrettage. The complexity of modelling a martensitic stainless steel is discussed and sensitivity studies undertaken to illustrate the influence of coefficient of thermal expansion on resulting residual stresses. Strain hardening effects and the assumption of an idealised interface are discussed. Contour method measurements prove that discontinuity stresses are reduced in reality due to alloying and diffusion effects, highlighting also the need for further characterisation of 17-4 PH. Additional considerations such as the weld clad profile and process parameters are briefly discussed.
机译:耐疲劳的包层概念证实了在17-4 PH不锈钢的圆筒焊层中存在压缩残余应力,而在Inconel 625包层中存在拉伸残余应力。在这项研究中,对Inconel 625厚壁包层圆柱体进行了自动强化,研究了残余应力分布的变化,表明整个包层的拉伸残余应力实际上已转化为压缩应力,几乎消除了包层/基体界面处的不连续应力残余压缩应力的深度约为18 mm。研究了一种替代的复合材料17-4 PH不锈钢,无需使用自动强化就可以在复合层中产生压缩残余应力。讨论了对马氏体不锈钢进行建模的复杂性,并进行了敏感性研究,以说明热膨胀系数对所得残余应力的影响。讨论了应变硬化效应和理想界面的假设。轮廓法测量结果证明,由于合金化和扩散效应,不连续应力实际上已降低,这也凸显了进一步表征17-4 PH的必要性。简要讨论了其他考虑因素,例如堆焊轮廓和工艺参数。

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    Benghalia G.; Wood J.;

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  • 年度 2016
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