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首页> 外文期刊>Journal of Mechanical Science and Technology >A novel performance model given by the physical dimensions of hydraulic axial piston motors: Model derivation
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A novel performance model given by the physical dimensions of hydraulic axial piston motors: Model derivation

机译:由液压轴向柱塞马达的物理尺寸给出的新型性能模型:模型推导

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摘要

Since Wilson (1948) had firstly developed steady-state flow rate and moment loss model for hydraulic piston machines, several authors tried to make precise performance models. However, Huhtala (1997) discussed the strength and weakness of some existing models comparing with measurement data and concluded unfortunately that any model is not accurate enough for wide operating ranges. For a hydraulic axial piston motor of swash plate design with rotating cylinder, new performance formula is derived in this paper through theoretical study on leakages and friction losses of three facing gaps and other non-negligible losses. And efficiency surface of an example motor is estimated and extension of the formula for hydraulic pumps is discussed. A novel feature of the derived model is that all coefficients are given by the physical dimensions of a motor, hence allowing calculation and analysis of the performance of a motor in mind.
机译:自从Wilson(1948)首次开发出用于液压活塞机的稳态流量和力矩损失模型以来,几位作者试图建立精确的性能模型。但是,Huhtala(1997)讨论了一些现有模型与测量数据的优缺点,并不幸地得出结论,任何模型都不能在宽范围的操作范围内提供足够的精度。对于带有旋转缸的斜盘设计的液压轴向柱塞马达,本文通过对三个面对的间隙的泄漏和摩擦损失以及其他不可忽略的损失进行理论研究,得出了新的性能公式。并估算了示例电动机的效率面,并讨论了液压泵公式的扩展。导出模型的一个新颖特征是,所有系数均由电动机的物理尺寸确定,因此可以考虑到电动机的性能进行计算和分析。

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