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Research on the Model and Finite Element Analysis of Vehicle Chassis Detection System Based on COSMOS Works

机译:基于宇宙作品的车辆底盘检测系统模型及有限元分析研究

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The value of the chassis gap has an important impact on driving safety and handling stability of vehicle. Focusing on the efficiency and accuracy of the detection equipment for testing chassis gap, the controlling performance influenced by chassis gap and a novel tester model is presented. The finite element analysis is adopted to ensure the reliability of the tester proposed the Coulomb criterion and COSMOS/Works is selected to determine the safety factor as the time of the complex engineering analysis can be shorted by FFE technology which can minimize the design cycle, reduce the testing costs and improve product quality. Simulation results show that the dangerous place of the base assembly is the nearby regions of the double-rocker's fixing holes where the limit stress is 2.398E+7N/m2 and the safety factor is about 26. The problem of detecting chassis gap accurately is resolved.
机译:底盘差距的价值对驾驶车辆的安全性和处理稳定性产生了重要影响。专注于检测设备用于测试底盘间隙的效率和准确性,提出了受底盘间隙和新型测试仪模型的控制性能。采用有限元分析来确保测试仪的可靠性提出了选择库仑标准和宇宙/作品,以确定安全系数,因为复杂工程分析的时间可以通过FFE技术,可以最大限度地减少设计周期,减少测试成本并提高产品质量。仿真结果表明,基座组件的危险地点是双摇杆定影孔的附近区域,其中极限应力为2.398e + 7n / m2,安全系数约为26.解析检测机箱间隙的问题。

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