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出 处:《机床与液压》2015年第1期90-93,共4页Machine Tool & Hydraulics
基 金:国家科技支撑项目(2012BAF02B02)
摘 要:为实现油缸缸筒电刷镀修复的自动化控制,同时提供研究其最佳工艺参数的可能,设计油缸缸筒电刷镀修复实验平台。分别利用两台电机驱动镀笔进行直线进给和旋转运动,并通过控制电机可在一定范围内调节镀笔与工件的相对运动速度;同时,通过镀笔施力装置的设计,实现镀笔与工件相对压力的可调可测;最后,所设计的镀液循环控制系统实现了镀液的循环使用与流量控制。该实验平台具有操作简单、运行稳定、实用性强、自动化程度高等特点,为油缸缸筒电刷镀修复工艺参数研究提供可能。In order to achieve the hydro-cylinder-tube brush plating automation control, the hydro-cylinder-tube brush plating ex-perimental platform was designed, at the same time, the platform was made possible to provide for study those brush plating optimal pa-rameters. Line-feed and rotation motion of plating-pens were driven by two motors respectively. The relative movement velocity of the plating-pen with workpiece was adjusted by controlling the motors in a certain range. Meanwhile, a plating-pen force application device was devised to adjust and measure the relative pressure of the plating-pen with workpiece. Finally, the plating solution circulation con-trol system was designed to achieve plating solution flow controllable and recyclable. Experimental platform is straightforward in opera-tion, stable, very practical and with characteristic of high level of automation, which provides the possibility for the study on repairing process parameters of the hydro-cylinder-tube brush plating.
分 类 号:TH122[机械工程—机械设计及理论]
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