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首页> 外文期刊>International Journal of Automotive Technology >EFFICIENCY SENSITIVITY ANALYSIS OF A HYDROSTATIC TRANSMISSION FOR AN OFF-ROAD MULTIPLE AXLE VEHICLE
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EFFICIENCY SENSITIVITY ANALYSIS OF A HYDROSTATIC TRANSMISSION FOR AN OFF-ROAD MULTIPLE AXLE VEHICLE

机译:越野多轴车辆静液压传动的效率灵敏​​度分析

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摘要

There is a large variety of multiple driven axle vehicles. Some of the most common are the 3-axle rigid vehicles and the 4-axle articulated vehicles, which can in some cases have different steering mechanisms, adaptive suspension, etc. This last kind of vehicles usually have very complex transmission configurations. Moreover, the required torques in each of the wheels can be very different, especially when the vehicle is working in rough terrains. The aim of this work is to study and model the driveline of this kind of vehicles, when using a hydrostatic transmission, from the performance and efficiency point of view, by analysing the influence of the operating conditions in the transmission efficiency. A global model is used to quantify the power flow in each of the transmission elements and the overall performance of the entire vehicle driveline, given the operating conditions thereof. A sensitivity analysis has also been done showing the influence of vehicle speed, rolling resistance, terrain slope and hydraulic motors displacement in the overall transmission efficiency. The interest of this work is also to make a contribution to the literature in the field of global modelling of drivelines under variable operating conditions and its application to ATVs. One important aspect is the influence of different actuation requirements that occur in different wheels at the same time. The results show that the overall performance of the transmission is highly dependent on operating conditions, on the selected transmission configuration and on the used components.
机译:存在多种多样的多驱动轴车辆。最常见的一些是3轴刚性车辆和4轴铰接车辆,它们在某些情况下可以具有不同的转向机构,自适应悬架等。后一种车辆通常具有非常复杂的变速箱配置。此外,每个车轮中所需的扭矩可能会非常不同,尤其是当车辆在崎terrain的地形中工作时。这项工作的目的是从性能和效率的角度,通过分析操作条件对传动效率的影响,研究使用静液压传动装置的这类车辆的传动系统并建模。在给定其工作条件的情况下,使用全局模型来量化每个变速器元件中的动力流和整个车辆传动系统的整体性能。还进行了灵敏度分析,显示了车速,滚动阻力,地形坡度和液压马达排量对整体传动效率的影响。这项工作的兴趣还在于为可变操作条件下的传动系统的全局建模及其在ATV中的应用领域的文献做出贡献。一个重要方面是在不同的车轮上同时发生的不同致动要求的影响。结果表明,变速器的整体性能在很大程度上取决于运行条件,所选择的变速器配置和所使用的组件。

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