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Vibration frequency vibratory roller stepless design and analysis of the hydraulic system

机译:振动频率振动压路机液压系统无级设计与分析

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This paper studies on vibratory roller. Through designing and analyzing the return circuit of hydraulic pump and the main circuit of stepless frequency vibration system, the paper explains that the frequency control of vibration roller adopts pump-controlled system consisting of variable pump and hydraulic motor. By changing the input current of electrical hydraulic servo valve, the pump swashplate angle can be changed. Thus, the displacement of variable pump can be changed and the purpose of changing the motor's rotate speed is achieved. The vibration frequency of hydraulic vibration system can be regulated steplessly among the designed range in accordance with the operating requirements. Furthermore, based on known conditions, to compute and selecte the main components of hydraulic pump and hydraulic motor, to check the relevant parameters of the hydraulic system, and to test and verify whether the selected hydraulic pump and hydraulic motor meet the system requirements.
机译:本文对振动压路机进行了研究。通过对液压泵的返回回路和无级变频振动系统主回路的设计分析,说明振动辊的频率控制采用由变量泵和液压马达组成的泵控制系统。通过改变电动液压伺服阀的输入电流,可以改变泵的斜盘角度。因此,可以改变可变泵的排量,并且达到改变电动机转速的目的。液压振动系统的振动频率可以根据使用要求在设计范围内无级调节。此外,根据已知条件,计算和选择液压泵和液压马达的主要部件,检查液压系统的相关参数,并测试和验证所选液压泵和液压马达是否满足系统要求。

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