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首页> 外文期刊>American journal of applied sciences >Design Parameters Optimization Simulation of a Prototype Segmented Rubber Track Vehicle for Sepang Peat in Malaysia | Science Publications
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Design Parameters Optimization Simulation of a Prototype Segmented Rubber Track Vehicle for Sepang Peat in Malaysia | Science Publications

机译:马来西亚雪邦泥炭原型分段式橡胶履带车的设计参数优化仿真科学出版物

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摘要

> This study describes a simulation model for studying the basic design parameters of a special rubber track vehicle with rigid link tracks system on Sepang peat terrain in Malaysia. The prototype parameters for a track system, including proper track width, ground contact length, pitch and grouser height, idler diameter and location, sprocket diameter and location, road-wheel diameter and geometrical arrangement, the ratio of the road-wheel spacing to track pitch and location of the center of gravity to ensure good tractive performance. The vehicle track width significantly affects the vehicle external motion resistance. The road-wheel spacing ensures the number of road-wheels and significantly affects the vehicle external motion resistance. The vehicle traveling speed affects the vehicle engine power requirement and vehicle steerability during turning on peat terrain. The simulated performance results such as vehicle average motion resistance coefficient of 6.8 to 7.9%, drawbar pull coefficient of 25.22 to 47% and the tractive efficiency of 74 to 77% for the vehicle slippage of 5 to 20% and indicate that the vehicle can meet the peat terrain field requirement with its optimal power consumption.
机译: >本研究描述了一个仿真模型,用于研究马来西亚雪邦泥炭地带的特殊橡胶履带车辆的刚性连杆系统的基本设计参数。履带系统的原型参数,包括合适的履带宽度,地面接触长度,节距和松紧轮高度,惰轮直径和位置,链轮直径和位置,车轮直径和几何布置,车轮间距与履带的比率重心的螺距和位置可确保良好的牵引性能。车辆的履带宽度会显着影响车辆的外部运动阻力。车轮间距确保了车轮的数量,并极大地影响了车辆的外部运动阻力。车辆行驶速度会在打开泥炭地形时影响车辆发动机功率要求和车辆转向性能。仿真结果表明,车辆滑行率为5至20%时,车辆平均运动阻力系数为6.8至7.9%,拉杆拉动系数为25.22至47%,牵引效率为74至77%,表明该车辆可以满足具有最佳功耗的泥炭地形领域需求。

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