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首页> 外文期刊>Journal of engineering materials and technology >Hole-Drilling Strain-Gauge Method: Residual Stress Measurement With Plasticity Effects
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Hole-Drilling Strain-Gauge Method: Residual Stress Measurement With Plasticity Effects

机译:钻孔应变计方法:具有塑性效应的残余应力测量

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摘要

When measuring residual stresses using the hole-drilling strain-gauge method, plasticity effects arise if the residual stress level exceeds about 60% of the material yield strength. In this case the classical methods, which are based on the linear elastic material behavior, do not work properly and residual stresses are overestimated. This paper presents a numerical study of the influence of plasticity on residual stress measurement by using the hole-drilling strain-gauge method in those cases in which stress does not vary with depth. The study investigates the effects of the most important loading, measuring, geometry, and material variables. An iterative method, which can be applied to obviate these errors, is then presented. The method was implemented in ANSYS using the APDL macrolanguage (ansys Parametric Design Language Guide, Documentation for ansys 11.0) to automatically execute the procedure steps. A finite element model of the hole, which allows for plasticity, is requested. Employing the readings of a standard three elements strain-gauge rosette, the method makes it possible to extend the measurement limit in comparison to that of the ASTM E837 standard (ASTM E837-08, "Standard Test Method for Determining Residual Stresses by the Hole-Drilling Strain-Gauge Method").
机译:当使用钻孔应变仪方法测量残余应力时,如果残余应力水平超过材料屈服强度的60%,则会产生可塑性效应。在这种情况下,基于线性弹性材料行为的经典方法无法正常工作,并且残余应力被高估了。本文介绍了在应力不随深度变化的情况下,采用钻孔应变法测量塑性对残余应力的影响的数值研究。该研究调查了最重要的载荷,测量,几何形状和材料变量的影响。然后介绍了一种可用于消除这些错误的迭代方法。该方法是在ANSYS中使用APDL宏语言(ansys参数化设计语言指南,ansys 11.0文档)实现的,以自动执行过程步骤。需要一个允许塑性的孔的有限元模型。与标准ASTM E837标准(ASTM E837-08,“通过孔确定残余应力的标准测试方法”)相比,该方法利用标准的三元素应变计玫瑰花结的读数,可以扩展测量范围钻孔应变计法”)。

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