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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Improved Calibration Coefficients for the Hole-Drilling Method Considering the Influence of the Poisson Ratio
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Improved Calibration Coefficients for the Hole-Drilling Method Considering the Influence of the Poisson Ratio

机译:校正系数的提高井孔钻进方法考虑的影响的泊松比

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摘要

For residual stress analyses with the incremental hole-drilling method adequate evaluation formalisms in order to transform the measured strains into stresses are required. The Integral Method is the most important theory used for analyses of nonlinear residual stress depth distributions. It is based on a calibration, which is carried out by Finite-Element-Analyses. For the sake of simplicity the used numerical models often represent an ideally cylindrical hole and ideal elastic material behavior with fixed elastic constants. The adaption of the calibration coefficients from the numerical simulations to the real experimental state is often performed by simple correction factors or is ignored completely. The following investigation highlights the influence of the Poisson ratio on the calibration coefficients for the most commonly used strain gage rosettes geometries, which are standardized by ASTME837-08. It comes out that the application of existing simple correction factors is only valid within a small range and better approximations can be obtained by alternative strategies.
机译:残余应力分析的增量井孔钻进方法充分的评估形式以变换测量菌株在压力是必需的。方法用于最重要的理论分析非线性残余应力深度分布。这是由Finite-Element-Analyses。为了简单起见使用数值模型通常代表一个理想圆柱形孔和理想弹性材料的行为固定的弹性常数。校正系数的数值模拟真实实验状态通常由简单的修正因素或执行完全被忽略。调查突出的影响泊松比的校准系数最常用的应变计花结几何图形,标准化ASTME837-08。现有的简单的修正因素仅仅是有效的在一个小范围内更好的近似可以通过选择策略。

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