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Recent advances in residual stress measurement

机译:残余应力测量的最新进展

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Until recently residual stresses have been included in structural integrity assessments of nuclear pressure vessels and piping in a very primitive manner due to the lack of reliable residual stress measurement or prediction tools. This situation is changing the capabilities of newly emerging destructive (i.e. the contour method) and non-destructive (i.e. magnetic and high-energy synchrotron X-ray strain mapping) residual stress measurement techniques for evaluating ferritic and austenitic pressure vessel components are contrasted against more well-established methods. These new approaches offer the potential for obtaining area maps of residual stress or strain in welded plants, mock-up components or generic test-pieces. The mapped field may be used directly in structural integrity calculations, or indirectly to validate finite element process/structural models on which safety cases for pressurised nuclear systems are founded. These measurement methods are complementary in terms of application to actual plant, cost effectiveness and measurements in thick sections. In each case an exemplar case study is used to illustrate the method and to highlight its particular capabilities.
机译:直到最近残余应力被核压容器和管道的结构完整性评估,以非常原始的方式,由于缺乏可靠的残余应力测量或预测工具,以非常原始的方式。这种情况正在改变新出现的破坏性(即轮廓方法)和非破坏性(即磁性和高能量同步X射线应变映射)的剩余应力测量技术,用于评估铁素体和奥氏体压力容器组分的残余应力测量技术与更多相反成熟的方法。这些新方法提供了在焊接植物,模拟组件或通用测试件中获取残留应力或菌株的区域地图。映射的字段可以直接用于结构完整性计算,或间接地用于验证有限元处理/结构模型,在该结构模型上建立了哪些加压核系统的安全情况。这些测量方法在应用于实际植物,成本效益和厚段测量方面是互补的。在每种情况下,使用示例性案例研究来说明该方法并突出显示其特定功能。

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