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Experimental Investigation of the Physical Properties and Microstructure of Slate under Wetting and Drying Cycles Using Micro-CT and Ultrasonic Wave Velocity Tests

机译:用微型CT和超声波速度试验对润湿性和干燥循环下板岩物理性质和微观结构的实验研究

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摘要

Cyclic wetting and drying processes have been considered as important factors that accelerate the weathering process and have deteriorative effects on rock properties. In the present study, a fully nondestructive and noninvasive testing approach utilizing micro-CT and ultrasonic wave velocity tests was employed to investigate the microstructure of slate under wetting and drying cycles. We studied variations in the physical properties, including the dry weight and the velocities of P- and S-waves versus the number of wetting and drying cycles. The internal microstructural distributions were visualized and quantified by the 3D reconstruction and hybrid image segmentation of CT images. The degree of deterioration caused by wetting and drying cycles was reflected by exponential decreases of physical properties, including dry weight and velocities of the P- and S-waves. Parameters relating to the microfracture diameter, volume, etc. were quantified. The nondestructive and noninvasive testing approach utilizing micro-CT and ultrasonic wave velocity tests has potential for the detection and visualization of the internal microstructure of rock under wetting and drying cycles.
机译:循环润湿和干燥过程被认为是加速耐候过程的重要因素,并对岩石性质产生恶化影响。在本研究中,采用了利用微型CT和超声波速度试验的完全无损和非侵入性测试方法来研究润湿性和干燥循环下的板岩的微观结构。我们研究了物理性质的变化,包括干重和P-和S波的速度与润湿和干燥循环的数量。通过CT图像的三维重建和混合图像分割来可视化和量化内部微结构分布。通过对指数降低物理性质的指数降低反映了润湿和干燥循环的劣化程度,包括P和S波的干重和速度。定量了与微折衷直径,体积等有关的参数。利用微型CT和超声波速度试验的非破坏性和非侵入性测试方法具有润湿和干燥循环下岩石内部微观结构的检测和可视化的可能性。

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