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首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >First-order correction to counter the effect of eccentricity on the hole-drilling integral method with strain-gage rosettes
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First-order correction to counter the effect of eccentricity on the hole-drilling integral method with strain-gage rosettes

机译:一阶校正以抵消偏心对应变计玫瑰花结的钻孔整体方法的影响

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摘要

The offset between the hole and the centre of the strain-gage rosette is unavoidable, although usually small, in the hole-drilling technique for residual stress evaluation. In this article, we revised the integral method described in the ASTM E837 standard and we recalculated the calibration coefficients. The integral method was then extended by taking into account the two eccentricity components, and a more general procedure was proposed including the first-order correction. A numerical validation analysis was used to consolidate the procedure and evaluate the residual error after implementing the correction. The values of this error resulted limited to a few percentage points, even for eccentricities larger than the usual experimental values. The narrow eccentricity limit claimed by the standard, to keep the maximum error lower than 10%, can now be considered extended by approximately a factor of 10, after implementing the proposed correcting procedure, proving that the effect of the eccentricity is mainly linear within a relatively large range.
机译:尽管通常很小,但在孔与应变仪花环的中心之间的偏移是不可避免的,尽管这种钻孔方法用于评估残余应力。在本文中,我们修改了ASTM E837标准中描述的积分方法,并重新计算了校准系数。然后,通过考虑两个偏心分量来扩展积分方法,并提出了一种更通用的程序,包括一阶校正。进行校正后,使用数值验证分析来巩固程序并评估残留误差。即使偏心率大于通常的实验值,该误差的值也限制在几个百分点。在实施建议的校正程序后,该标准要求的窄的偏心极限(以使最大误差保持在10%以下)现在可以认为扩大了大约10倍,证明了偏心的影响主要是线性的。范围比较大。

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