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Small Size Hydraulic Pumps with Low Heat Generation for Electro Hydrostatic Actuation of Humanoid Robots

机译:小型发热量小的液压泵,用于仿人机器人的电动静液压驱动

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In this research, we suggest a method to reduce the loss of the pump aiming to develop small and high-pressure pump for EHA. To reduce the loss of the pump, we focused on the internal leakage loss and the viscous friction loss. We formulated each loss and found that it is effective for loss reduction to make gaps inside the pump narrower and increase the discharge amount per 1 rad making the radius of the gear small. Based on the above, we developed the improved involute external gear pump. Compared with conventional trochoid pump, the internal leakage loss of developed pump is reduced by 22.4% at 10MPa and the viscous friction loss is reduced by 85.6% at 10MPa. Also, there is a problem that internal leakage increases when the internal pressure becomes high. This problem is caused by the deformation of the pump-casing under high pressure. We developed highly rigid ceramics-casing to reduce the increase of the internal leakage. Compared with the pump using aluminum-casing, the pump using ceramics-casing reduced 56.2% in internal leakage loss when the internal pressure increased from 3MPa to 6MPa.
机译:在这项研究中,我们提出了一种减少泵损失的方法,旨在开发用于EHA的小型高压泵。为了减少泵的损失,我们集中在内部泄漏损失和粘性摩擦损失上。我们对每种损失进行了表述,发现对于减小损失有效的方法是使泵内的间隙变窄,每增加1 rad的排放量,从而减小齿轮的半径。基于以上所述,我们开发了改进的渐开线外齿轮泵。与传统的次摆线泵相比,已开发的泵在10MPa时的内部泄漏损失减少了22.4%,在10MPa时的粘滞摩擦损失减少了85.6%。另外,存在当内部压力变高时内部泄漏增加的问题。该问题是由于泵壳在高压下变形而引起的。我们开发了高刚性的陶瓷外壳,以减少内部泄漏的增加。与使用铝制壳体的泵相比,使用陶瓷壳体的泵在内部压力从3MPa增加到6MPa时减少了56.2%的内部泄漏损失。

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