阀体孔板
工程类
扭矩
控制阀
执行机构
流量控制阀
流量控制(数据)
联轴节(管道)
机械工程
挖掘机
可控性
孔板
控制工程
控制理论(社会学)
计算机科学
控制(管理)
人工智能
物理
电气工程
热力学
电信
数学
应用数学
作者
Karem Abuowda,Ivan Okhotnikov,Siamak Noroozi,P. Brighten Godfrey
摘要
© 15th International Conference on Condition Monitoring and Machinery Failure Prevention Technologies, CM 2018/MFPT 2018. All rights reserved. High flow rate control is very important for different applications ranging from constructional, industrial, military and aerospace. Generally, hydraulic control relies on different types of valves. For example, poppet and spool valves have been implemented in Independent Metering (IM) system which is usually installed in mobile hydraulic machines such as excavators. Recently, a novel rotary flow control orifice has been developed to design a control valve for high flow rate applications, and a stepper motor was selected as the main actuator for this orifice to grant more accuracy and controllability. The coupling between these two main components requires analysis of the internal dynamical interactions and their effect on the performance. Friction torque is an important parameter to be considered in this design. The paper includes analysis and modelling of the friction torque in the orifice which affects the coupling, also it contains a model validation and evaluation resulted from friction practical measurements.
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