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Hybrid Measurement of CT and Strain Distribution of Internal Crack Using Synchrotron High-Energy Monochromatic X-Rays

机译:同步加速器高能单色X射线混合测量CT和内部裂纹的应变分布

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Using high-energy monochromatic X-rays of energy 66.4keV from the synchrotron radiation source, SPring-8, we have developed a system to perform a hybrid measurement of imaging of cracks and strain distribution around cracks. This system was applied to a fatigue crack made in a round bar made of carbon steel with a diameter of 4 mm. Computed tomography of the specimen gave the three-dimensional shape of a thumb-nail crack. High tensile strain ahead of the crack was measured at the applied maximum stress, while the strain on the crack face was low because of stress relief due to crack opening. The full width at half maximum (FWHM) increased near the crack tip under loading, and then decreased after unloading. The recoverable part of FWHM by unloading was caused by the steep distribution of the applied stress in the vicinity of the crack tip. The FWHM increased by plastic deformation does not change when unloaded. The measured distributions of the lattice strain and FWHM agreed well with those of the elastic and plastic strains calculated by the finite element method, respectively.
机译:我们使用来自同步辐射源SPring-8的66.4keV能量的高能单色X射线,开发了一种用于对裂纹成像和裂纹周围应变分布进行混合测量的系统。将该系统应用于由直径为4 mm的碳钢圆棒制成的疲劳裂纹。标本的计算机断层扫描显示了拇指裂缝的三维形状。在施加的最大应力下测得了裂纹前的高拉伸应变,而裂纹面上的应变则较低,这是由于裂纹张开导致的应力释放。加载时,裂纹尖端附近的半峰全宽(FWHM)增加,然后在卸载后减小。 FWHM通过卸载而可恢复的部分是由裂纹尖端附近施加的应力的急剧分布引起的。卸载时,由塑性变形增加的FWHM不会改变。晶格应变和FWHM的测量分布分别与通过有限元方法计算的弹性应变和塑性应变的分布良好。

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