基于超短脉冲激光成像的脆性材料数字图像关联技术

Muao Shen, Mingyuan Zhang, Longfei Chang, Yingjun Li, Dejian Li
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摘要

基于超短脉冲激光的极窄半高宽(FWHM)特性,结合传统的数字图像相关(DIC)技术,提出了一种可实现皮秒级时间分辨率的 DIC 成像技术。这种方法可以解决脆性材料断裂过程中裂纹突然萌发和快速扩展所造成的散射图像模糊和拖影问题。同时,还可获得脆性材料开裂瞬间的裂纹开口位移(COD)和样品的全场位移。此外,使用这种方法还可以大大降低使用连续光源的传统 DIC 技术在空间分辨率上的误差。本文采用这种方法记录了含有 I 型预制裂纹的凝灰岩样品在半圆盘三点弯曲(SCB)实验条件下的顶端位移场。实验结果表明,使用该方法可以记录皮秒量级的裂纹扩展行为,并能更精确地计算脆性材料断裂的关键参数。
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Digital image correlation of brittle materials based on ultrashort pulse laser imaging
Based on the extremely narrow half-height width (FWHM) characteristics of ultrashort pulsed lasers, a DIC imaging technique that can realize picosecond time resolution is proposed by combining the traditional digital image correlation (DIC) technique with it. This method can solve the problems of blurring and dragging of scattering images caused by the sudden crack initiation and fast crack expansion in the fracture process of brittle materials. The crack opening displacement (COD) and the full-field displacement of the sample at the instant of cracking of brittle materials can also be obtained. In addition, the error in spatial resolution of the traditional DIC technique using a continuous light source can be greatly reduced by using this method. In this paper, this method is used to record the tip displacement field of a tuff sample containing a type I prefabricated crack under semicircular disk three-point bending (SCB) experimental conditions. The experimental results show that the recording of crack extension behavior on the order of picoseconds can be achieved using this method, and the key parameters of fracture of brittle materials are calculated more accurately.
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