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Influence of experimental parameters on determination of residual stress using the incremental hole-drilling method

机译:实验参数对增量钻孔法测定残余应力的影响

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摘要

The incremental hole-drilling method is an effective semi-destructive technique for determining the profile and magnitude of residual stresses in composite laminates. This method provides access to the residual stress profile of the intra and inter plies in the through thickness of the laminate. Correct application of the method requires optimisation of the relevant experimental parameters. Tests were performed to investigate the influence of two experimental parameters-the depth of each drilled increment and the influence of the relative position of the strain gages compared with the radius of the hole drilled. The development of a rapid automatic method for numerical calculation of the calibration coefficients enhanced the interest of the method while extending the experimental data range being investigated. The results clearly show that these parameters have an appreciable effect on determination of the residual stress gradient, and especially the magnitude and stability of the residual stress.
机译:增量钻孔法是一种有效的半破坏技术,用于确定复合材料层压板的残余应力分布和大小。该方法提供了内部和中间层的残余应力分布的途径,该残余应力分布在层压件的贯穿厚度中。正确应用该方法需要优化相关实验参数。进行测试以研究两个实验参数的影响-每个钻孔增量的深度以及应变仪相对位置与钻孔半径的影响。快速自动方法用于标定系数的数值计算的发展增强了该方法的兴趣,同时扩展了正在研究的实验数据范围。结果清楚地表明,这些参数对确定残余应力梯度,尤其是残余应力的大小和稳定性具有显着影响。

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