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Speckle Correlation Methods Applied to Ballistics and Explosives

机译:散斑相关方法适用于弹性仪和爆炸物

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Image correlation techniques developed for speckle metrology have recently been applied to a wide range of ballistics and explosives studies at the Cavendish Laboratory. White-light image correlation applied to quasi-static testing of explosives, at a range of magnifications, is discussed. High-speed ballistic measurements were performed using Digital Speckle Radiography (DSR): a combination of image correlation with flash X-rays to study the movement of a plane of X-ray opaque filings within a sample. DSR operates by capturing one image before and a second during the event, allowing the displacements on the plane to be measured to sub-mm accuracy. Varying the delay time and the depth of the seeded plane gives a full three-dimensional flow field in the sample. The use of two X-ray heads stereoscopically increases accuracy by allowing all three components of displacement to be determined. Measurements at velocities ranging from 100 m s~(-1) to 6 km s~(-1) have been achieved using this technique.
机译:最近对斑点计量开发的图像相关技术已应用于Cavendish实验室的各种弹道和爆炸物研究。讨论了应用于爆炸物的准静态测试的白光图像相关,在一系列放大率下。使用数字斑块放射仪(DSR)进行高速弹道测量:与闪光X射线的图像相关性的组合,以研究样品中X射线不透明件的平面的运动。 DSR通过在事件期间捕获一个图像和第二个图像来操作,允许将平面上的位移进行测量到子MM精度。改变延迟时间和种子平面的深度在样品中提供全三维流场。通过允许确定所有三个位移的组件,使用两个X射线头立体地提高精度。使用该技术已经实现了从100 m S〜(-1)到6km S〜(-1)的速度下的测量。

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