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Effect of spool side chambers on dynamic response of contactless electro-operated pneumatic directional control valve

机译:阀芯侧室对非接触式电动气动方向控制阀动态响应的影响

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摘要

The synchronization of feeding paper drums in the offset printing machines are carefully design. The actuators themselves are controlled by a contactless electro-operated pneumatic directional control valve (EOPDCV). In this paper, a mathematical model for the double acting pneumatic actuator controlled by EOPDCV has been developed. Such these drums are controlled through a series of actuators to produce the appreciated speed necessary to perform the printing job accurately. Effect of the valve spool side chambers ratio of the EOPDCV on the pneumatic actuators and the EOPDCV dynamic performances was introduced. Experimental setup has been conducted to study the actuator inlet pressure for EOPDCV operating conditions. The mathematical model was validated by the results from the mathematical test rig and a good agreement has been achieved. The mathematical results showed that the valve spool side chambers volume ratio (V~*) has a significant effect on the dynamic response of the actuator and hence, the timing of paper feeding in the printing machine. By comparing experimental and mathematical results, it has been found that the designed dynamic performance of the pneumatic system under study is at (V~* = 0.6).
机译:胶印机中送纸鼓的同步设计经过精心设计。执行器本身由非接触式电动方向控制阀(EOPDCV)控制。本文建立了由EOPDCV控制的双作用气动执行器的数学模型。这些鼓通过一系列致动器控制,以产生准确执行打印作业所需的欣赏速度。介绍了EOPDCV的阀芯侧室比对气动执行器的影响以及EOPDCV的动态性能。已经进行了实验设置,以研究EOPDCV操作条件下的执行器入口压力。数学模型已通过数学测试装置的结果进行了验证,并取得了良好的协议。数学结果表明,阀芯侧室容积比(V〜*)对执行器的动态响应有很大影响,因此对打印机的进纸时间也有很大的影响。通过比较实验和数学结果,发现所研究的气动系统的设计动态性能为(V〜* = 0.6)。

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