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Grounding Characteristics of a Non-Pneumatic Mechanical Elastic Tire in a Rolling State with a Camber Angle

机译:具有拐角角度的滚动状态下非气动机械弹性轮胎的接地特性

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摘要

A non-pneumatic mechanical elastic tire (ME wheel) was introduced, and the grounding characteristics of the ME wheel under a rolling condition with a camber angle were investigated with the combination of finite element simulation and experimental research. According to the ME wheel structure and material characteristics, a numerical simulation model of the ME wheel was established using the finite element (FE) method. The stiffness tests were carried out to verify the accuracy of the simulation model of the ME wheel. To highlight the advantages of the ME wheel, an inflatable tire was selected as the reference tire, and the grounding characteristics of these two tires with different camber angles were compared and analysed in free rolling, braking, and driving conditions. Different slip ratio values for the ME wheel and inflatable tire were applied in driving conditions to analyse the influence of the slip ratio on the grounding characteristics. The obtained results indicated that both the ME wheel and inflatable tire will gradually suffer partial wear of the tread surface as the camber angle increases, but the pressure concentration of the inflatable tire is more serious. The research can provide a basis for structural optimization and comprehensive mechanical performance analysis of the ME wheel.
机译:引入了非充气机械弹性轮胎(ME车轮),并在有限元模拟和实验研究的组合中研究了带有弯角角度的滚动条件下的ME轮的接地特性。根据ME车轮结构和材料特性,使用有限元(FE)法建立了ME轮的数值模拟模型。进行刚度测试以验证ME轮的模拟模型的准确性。为了突出ME轮的优点,选择充气轮胎作为参考轮胎,并将这两个轮胎的接地特性进行了比较,并在自由轧制,制动和驱动条件下进行分析。将ME轮和充气轮胎的不同的滑动比值应用于驱动条件,以分析滑移比对接地特性的影响。所获得的结果表明,随着弯角的角度增加,ME车轮和充气轮胎将逐渐遭受胎面表面的部分磨损,但充气轮胎的压力浓度更严重。该研究可以为ME轮提供结构优化和综合机械性能分析的基础。

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