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Analysis on dynamic characteristics of closed slewing system for large-scale hydraulic excavator

机译:大型液压挖掘机闭合回转系统动态特性分析

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The paper researches on the largest domestic hydraulic excavator whose bucket capacity is 15m3 and weight is 260 tons, which is developed by Tai Yuan Heavy Industry Co., Ltd. The work time and energy consumption of swing mechanism amounts to high proportion in the whole working cycle of hydraulic excavator. Consequently, it is very important to accurately grasp dynamic characteristics of slewing system for the sake of improving the performance of the machine. In order to accurately simulate the practical characteristics of rotary motion, the paper establishes the co-simulation model of the working devices and swing mechanism of hydraulic excavator with AMESim and ADAMS. By co-simulation, the paper obtains the rotational inertia curves of upper parts relative to the rotation axis during the slewing process, which are imported into the simulation model of slewing hydraulic system in order to analysis its dynamic characteristics. Furthermore, the paper simulates two conditions including the constant inertia and variable inertia respectively. By contrast, it's known that the variable inertia simulation is close to the practical condition. What's more, this is also able to provide theoretical guidance for the machine commissioning at the same time.
机译:本文研究桶容量为15米 3 和重量的最大液压挖掘机是260吨,由太原重工业有限公司开发了摇摆机制的工作时间和能源消耗在液压挖掘机的整个工作循环中达到高比例。因此,为了提高机器性能,精确地掌握回转系统的动态特性是非常重要的。为了准确模拟旋转运动的实际特性,该纸张建立了Amesim和Adams的液压挖掘机工作装置的共模模型及液压挖掘机的摆动机构。通过共模,纸张在回转过程中获得相对于旋转轴的上部的旋转惯性曲线,这在回转过程中进口到回转液压系统的仿真模型中,以分析其动态特性。此外,本文模拟了两个条件,包括恒定惯性和可变惯性。相比之下,已知变量惯性模拟接近实际情况。更重要的是,这也能够同时为机器调试提供理论指导。

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