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DEVELOPMENT AND DESIGN OF A COST-EFFICIENT TIRE MECHANICS TESTING APPARATUS

机译:一种成本高效的轮胎力学检测装置的开发与设计

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Most tire models need experimentally obtained data as input for simulation purposes. The study of tire mechanics requires the accuracy and repeatability of a controlled environment. However, the accessibility and cost of tire testing machines make it prohibitive for exploring tire mechanical properties for academic studies. Moreover, most industrial tire testing machines are designed for general tire testing, and would require an extensive amount of time and resources to adapt for academic research. To study tire mechanical behavior for modeling purposes, a tire mechanics test apparatus has been developed at the Center for Vehicle Systems and Safety (CVeSS), Virginia Tech. The tire mechanics test apparatus has been designed as an interchangeable attachment to an existing modular quarter car test rig developed at the Institute for Advanced Learning and Research (IALR) in Danville, Virginia, to save on cost, as well as to maintain repeatability of testing. The physical limitations of maximum tire vertical load for various tire testing machines are also among the main motivations for developing the tire mechanics test apparatus. The current configuration of the tire mechanics test apparatus provides the capability to study the vertical load -deflection characteristics of the tire, as well as the static footprint of the tire under various vertical loads. Future planned enhancements to the setup include the addition of a soil bin and an instrumented rolling drum for tire shear force studies.
机译:大多数轮胎模型需要通过实验获得的数据作为用于仿真目的的输入。轮胎力学的研究需要受控环境的准确性和可重复性。然而,轮胎试验机的可访问性和成本使其对学术研究进行了探索轮胎机械性能。此外,大多数工业轮胎试验机专为一般轮胎测试设计,需要广泛的时间和资源来适应学术研究。为了研究用于建模目的的轮胎力学行为,在弗吉尼亚科技的车辆系统和安全(CVESS)中心开发了轮胎力学测试设备。轮胎力学测试设备被设计为在弗吉尼亚州丹维亚州丹维尔高级学习和研究(IALR)研究所开发的现有模块化四分之一汽车试验室的可互换附件,以节省成本,并保持测试的可重复性。各种轮胎试验机的最大轮胎垂直载荷的物理限制也是开发轮胎力学试验装置的主要动机之一。轮胎力学试验装置的电流配置提供了研究轮胎的垂直载荷特性的能力,以及在各种垂直载荷下轮胎的静态占地面积。对设置的未来计划增强包括添加土箱和用于轮胎剪切力研究的仪表滚动鼓。

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