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Simulation and Test on Virtual Prototype of Heavy-duty Truck with Full-floating Cab and Air Suspension

机译:具有全浮烟机和空气悬架的重型卡车虚拟原型的仿真与测试

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Based on multi-body dynamic method, a rigid-flexible coupling model of a heavy-duty truck with full-floating cab mount system, air suspension system with four airbags and taper-leaf-spring system was built. Some simulation calculations were performed in ADAMS software environment to analyze ride comfort on B-class road surface and steady-state steering characteristic with full load. Validity of the model was verified by comparing the simulation results with experiment data. The results show that the rigid-elastic coupling model established in this paper is accurate. So it is feasible to analyze and optimize the dynamic performance of a heavy-duty truck using virtual prototyping technology in production R&D stage.
机译:基于多体动态方法,建立了具有全浮型驾驶室安装系统的重型卡车的刚性柔性耦合模型,建造了具有四个安全气囊和锥形叶弹簧系统的空气悬架系统。在ADAMS软件环境中进行了一些仿真计算,分析了B级路面和稳态转向特性的速度舒适。通过将模拟结果与实验数据进行比较来验证模型的有效性。结果表明,本文建立的刚性耦合模型是准确的。因此,在生产研发台中使用虚拟原型制作技术,可以分析和优化重型卡车的动态性能是可行的。

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