Analysis on the Steady-state Performance and Losses of a Bent-axis Type Hydraulic Motor Used in Heavy Earth Moving Machinery

IF 0.7 Q4 ENGINEERING, MECHANICAL International Journal of Fluid Power Pub Date : 2021-07-10 DOI:10.13052/IJFP1439-9776.2231
A. K. Pandey, Ajay Kumar, Nitish Kumar
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Abstract

Hydraulic components play a significant role in the mining and construction equipment. It is responsible for smooth change in the output speed, torque, and power of the machine. The hydrostatic drive powered by a constant speed electric motor is widely used in the propel system of the mining equipment. Regulation of the displacements of the pump and the hydro-motor of the drive facilitates the control of the straight running and steering of the machines. In the present scenario, better efficiency and ease of control are the critical aspects to be considered in the design and selection of the hydraulic pump and motor used in underground mining operations. The bent axis hydro-motor is one such equipment that is an electro-hydraulic component that can work in an adverse working environment. The present study deals with the performance analysis of fixed displacement bent axis hydro-motor at different operating parameters such as different temperatures, sizes, viscosity at different loads, and drive speed. For analysis, the hydraulic drive consists of a variable displacement pump rotated by a constant speed electric motor and a fixed displacement hydro-motor. The regulation of the pump displacement controls the speed of the drive. Manually controlled hydrostatic drive propels the said machine against variable load demands. The present work investigates the performances of the hydro-motor used in the mining and construction machine through detailed modeling and experimentations. The steady-state performances are analyzed in terms of slip, torque losses and efficiency of the hydro-motor. The study finds the design guideline to operate the hydrostatic drive using such motors in a reasonable efficiency zone. The model is validated for various operating conditions of the equipment by comparing the predicted results with the test results. The outcome of the present work will be expedient for the preliminary design and assortment of similar hydraulic component used in the mobile, mining equipment.
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重型土方机械用弯轴式液压马达稳态性能及损耗分析
液压元件在采矿和建筑设备中发挥着重要作用。它负责机器输出速度、扭矩和功率的平稳变化。由恒速电动机驱动的静液压驱动器广泛应用于采矿设备的推进系统中。调节泵和驱动装置的液压马达的排量有助于控制机器的直行和转向。在目前的情况下,在设计和选择地下采矿作业中使用的液压泵和马达时,需要考虑的关键方面是更好的效率和易于控制。弯轴液压马达就是这样一种设备,它是一种可以在不利的工作环境中工作的电液部件。本研究对固定排量弯轴液压马达在不同温度、不同尺寸、不同负载下的粘度和驱动速度等不同操作参数下的性能进行了分析。为了进行分析,液压驱动装置由一个由恒速电动机旋转的可变排量泵和一个固定排量液压马达组成。泵排量的调节控制驱动的速度。手动控制的静液压驱动装置克服可变负载需求推动所述机器。本工作通过详细的建模和实验研究了采矿和工程机械中使用的液压马达的性能。从滑差、转矩损失和效率等方面分析了液压马达的稳态性能。该研究找到了在合理的效率区内使用此类电机操作静液压驱动器的设计指南。通过将预测结果与测试结果进行比较,对设备的各种操作条件下的模型进行了验证。本工作的结果将有利于移动采矿设备中使用的类似液压部件的初步设计和分类。
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来源期刊
International Journal of Fluid Power
International Journal of Fluid Power ENGINEERING, MECHANICAL-
CiteScore
1.60
自引率
0.00%
发文量
16
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