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Three-dimensional dynamic imaging of sand particles under wheel via gamma-ray camera system

机译:通过γ射线照相机系统对砂轮下的沙粒进行三维动态成像

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In recent years, attempts have been made to deploy robots for use in various activities such as planetary exploration, post-tsunami seashore reconnaissance, and volcano investigations. These robots may have to move on soft terrain. The movement of sand or soil particles under the wheels or tracks greatly affects the robot's ability to maneuver. There is a simple but difficult problem with measuring particle movement: the sand and soil particles beneath the surface are not visible. Only 2D visualization techniques that take a surface picture of the ground or use transparent boards are available. A nuclear 3D imaging technique called positron emission particle tracking (PEPT) was developed at the University of Birmingham for this purpose. PEPT detects pairs of gamma rays emitted by a positron-emitting radionuclide of a tracer particle, which produces an image of the tracer. Thus, the overarching goal of this study was to explore the 3D terramechanics between terrain particles and a wheel or track using PEPT. As an initial step, this paper introduces an imaging technique for standard sand under a rotating wheel using PEPT and presents some images of sand particles under various conditions. Absolute displacements along the longitudinal, vertical, and lateral axes are presented. (C) 2015 ISTVS. Published by Elsevier Ltd. All rights reserved.
机译:近年来,已尝试部署用于各种活动的机器人,例如行星探索,海啸后的海岸侦察和火山调查。这些机器人可能必须在柔软的地形上移动。车轮或履带下的沙子或土壤颗粒的运动极大地影响了机器人的操纵能力。测量颗粒的运动存在一个简单但困难的问题:表面下方的沙子和土壤颗粒不可见。仅可使用2D可视化技术来拍摄地面表面图片或使用透明板。为此,伯明翰大学开发了一种称为正电子发射粒子跟踪(PEPT)的核3D成像技术。 PEPT检测由示踪剂粒子的正电子发射放射性核素发出的伽马射线对,从而产生示踪剂的图像。因此,这项研究的总体目标是使用PEPT探索地形粒子与车轮或轨道之间的3D地形力学。作为第一步,本文介绍了使用PEPT在旋转轮下对标准砂的成像技术,并提供了在各种条件下的砂粒图像。给出了沿纵向,垂直和横向轴的绝对位移。 (C)2015年ISTVS。由Elsevier Ltd.出版。保留所有权利。

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