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Research on lateral stability and rollover mechanism of articulated wheel loader

机译:铰接式轮式装载机的侧向稳定性和倾覆机理研究

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摘要

A seven-degrees-of-freedom (DOF) dynamic model was established based on the Lagrange equation to analyse the lateral stability and instability mechanism of an articulated wheel loader. A scale wheel loader was designed and manufactured to validate the dynamic model in two conditions, namely turning on slopes and passing over obstacles. Experimental data and simulated data fitted well on the whole, so the developed dynamic model was proved to be useful and could serve as an important tool to analyse the stability of wheel loaders. At last, the lateral stability of one ZL50 wheel loader was analysed by using this dynamic model. The results showed that there is a phenomenon of sudden stability losing during the wheel loader cornering due to the relative rotation between the subframe and the rear axle. The subframe can enhance the stability when the wheel loader is passing over obstacles but reduces the stability when it is turning.
机译:基于拉格朗日方程建立了七自由度动力学模型,以分析铰接式轮式装载机的横向稳定性和不稳定性机理。设计并制造了一种秤式轮式装载机,以在两个条件下验证动力学模型,即打开坡度和越过障碍物。实验数据和模拟数据总体上吻合良好,因此开发的动力学模型被证明是有用的,并且可以用作分析轮式装载机稳定性的重要工具。最后,利用该动力学模型对一台ZL50轮式装载机的横向稳定性进行了分析。结果表明,由于副车架和后桥之间的相对旋转,在轮式装载机转弯过程中会突然失去稳定性。当轮式装载机越过障碍物时,副车架可以提高稳定性,但在转弯时,副车架会降低稳定性。

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