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DGZ-150B型旋喷钻机提升系统稳定性分析及改进
引用本文:刘旭光,白祖卫,吕佩东,张鹏鹏.DGZ-150B型旋喷钻机提升系统稳定性分析及改进[J].探矿工程,2019,46(9):88-93.
作者姓名:刘旭光  白祖卫  吕佩东  张鹏鹏
作者单位:陕西西探地质装备有限公司,陕西西探地质装备有限公司,陕西西探地质装备有限公司,陕西西探地质装备有限公司
摘    要:钻机提升系统在开启和关闭时存在着严重的液压冲击现象,因而会造成钻机运行的不平稳。产生液压冲击主要是由换向阀开启和关闭时液压油和负载的动能瞬时转化为压力能而造成的。本文结合DGZ-150B型多管全方位旋喷钻机,主要介绍了通过改进提升液压系统回路和选择合理的提升速度来降低液压冲击的影响。通过利用AMESim 软件对改进前后的提升液压系统建模仿真,可以看出改进后的液压系统对液压冲击有明显的控制,系统稳定性大大提高。按照改进后的提升液压系统对钻机的提升系统进行改造,钻机在步进提升时基本感觉不到液压冲击,钻机的震动大大减轻,稳定性增强。

关 键 词:旋喷钻机  提升系统  液压冲击  AMESim仿真
收稿时间:2019/4/17 0:00:00
修稿时间:2019/5/11 0:00:00

Analysis and improvement on the stability of the hoisting system ofDGZ-150B jet-grouting drilling rig
LIU Xuguang,BAI Zuwei,LV Peidong and ZHANG Pengpeng.Analysis and improvement on the stability of the hoisting system ofDGZ-150B jet-grouting drilling rig[J].Exploration Engineering(Drilling & Tunneling),2019,46(9):88-93.
Authors:LIU Xuguang  BAI Zuwei  LV Peidong and ZHANG Pengpeng
Institution:Shaanxi Xitan Geological Equipment Co., Ltd.,Shaanxi Xitan Geological Equipment Co., Ltd.,Shaanxi Xitan Geological Equipment Co., Ltd.,Shaanxi Xitan Geological Equipment Co., Ltd.
Abstract:The drilling rig does not run smoothly because of serious hydraulic shock when the hoisting system starts and closes. The main reason of hydraulic shock is that when the reversing valve is opened and closed, the kinetic energy of hydraulic oil and load is converted into pressure energy instantly. In this paper, the impact of hydraulic shock is reduced by improving the circuit of the hoisting hydraulic system and selecting a reasonable lifting speed. Theoretical and AMESim modeling and simulation of the hoisting hydraulic system befero and after improvement indicates that the improved hydraulic system has obvious control over hydraulic shock, and the system stability is greatly improved. After reforming the hoisting system of the drilling rig, hydraulic shock disappeared during stepping up, and vibration of the drilling rig was greatly reduced with stability enhanced.
Keywords:jet-grouting drilling rig  hoisting system  hydraulic shock  AMESim simulation
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