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Full-field deformation and strain measurement of vehicle body under high-speed impact

机译:高速冲击下车身的全场变形和应变测量

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摘要

A crash test is a common method to evaluate passive vehicle safety, but its full-field deformation and strain is difficult to measure due to instantaneous large deformation during the intense impact process. By means of high-speed cameras, a full-field deformation and strain measurement under high-speed impact is presented based on digital image correlation and binocular stereo vision. To deal with weak correlation in image matching caused by optical noise and large deformation, a controllable Gaussian filter and adaptive light intensity coefficients are used to suppress image intensity interference introduced by optical noise. In addition, based on deformation continuity of the neighboring states, images before and after large deformation are matched by the minimization of reference datum and transfer of deformation coefficients. Finally, full-field deformation and strain data are obtained from an impact test on an engine cover made from DC04 steel. Results show that the deformation measurement accuracy of the method can achieve 0.03 mm within a 500 x 400 mm(2) field of view. This study solves the problems of limited measurement points and low efficiency both in the contact measurement method by displacement sensors and traditional optical measurement by the detection of artificial target points, and provides a scientific basis for quantitative analysis of vehicle impact safety, vehicle body structure and material improvement, and finite element simulation of impact theory.
机译:碰撞测试是评估被动车辆安全性的常见方法,但由于在激烈的冲击过程中,由于瞬时大变形,其全场变形和应变难以测量。通过高速摄像机,基于数字图像相关和双目立体视觉,提出了高速冲击下的全场变形和应变测量。为了处理由光学噪声和大变形引起的图像匹配中的图像匹配的弱相关性,可控制的高斯滤波器和自适应光强度系数用于抑制光学噪声引入的图像强度干扰。另外,基于相邻状态的变形连续性,通过最小化参考数据和变形系数的传输匹配大变形之前和之后的图像。最后,从DC04钢制成的发动机盖上的冲击试验中获得全场变形和应变数据。结果表明,该方法的变形测量​​精度可以在500×400mm(2)视野下实现0.03 mm。本研究通过检测人工目标点,解决了通过位移传感器和传统光学测量的接触测量方法中的测量点和低效率的问题,为车辆影响安全,车身结构和车辆体结构和车辆体结构和车辆体结构的定量分析提供了科学依据。影响理论的材料改进和有限元模拟。

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