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MODELING AND SIMULATION OF HYDROMECHANICALLY CONSTANT POWER CONTROLLED SWASH PLATE PUMPS

机译:水力恒定功率控制冲水泵的建模与仿真

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摘要

This paper presents a theoretical study of the performance of constant power operated swash plate pumps equipped with hydromechanical controllers incorporating either pivoted levers or two feedback springs. Mathematical models of these controllers are derived and used to simulate the static and dynamic characteristics of a small pump of 40 cc/rev geometric volume. Results show that the controller with the pivoted lever renders better static and dynamic characteristics compared to the controllers with feedback springs. Results also show that changing the power through varying the lever arm length is preferable than varying the valve spring initial compression, when the dynamic characteristics of the pumps with controllers of pivoted levers are considered. The effect of the valve spring initial compression on the static performance of a pump incorporating a controller with two feedback springs is also investigated.
机译:本文介绍了配备有液压机械控制器的恒功率斜盘泵性能的理论研究,该液压机械控制器装有枢转杆或两个反馈弹簧。推导了这些控制器的数学模型,并将其用于模拟几何体积为40 cc / rev的小型泵的静态和动态特性。结果表明,与带有反馈弹簧的控制器相比,带有枢转杆的控制器具有更好的静态和动态特性。结果还表明,当考虑带有枢转杆控制器的泵的动态特性时,通过改变杆臂长度来改变动力比改变阀弹簧初始压缩力更可取。还研究了气门弹簧初始压缩对带有两个反馈弹簧的控制器的泵的静态性能的影响。

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