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Li Xiaohuo Yang Zjjia Shi Shangwei Liu Hailiang Liu Yan Liu Lina, . Study on features and improvement of loading sensitive control system applied to hydraulic breaking hammer[J]. COAL SCIENCE AND TECHNOLOGY, 2017, (3).
Citation: Li Xiaohuo Yang Zjjia Shi Shangwei Liu Hailiang Liu Yan Liu Lina, . Study on features and improvement of loading sensitive control system applied to hydraulic breaking hammer[J]. COAL SCIENCE AND TECHNOLOGY, 2017, (3).

Study on features and improvement of loading sensitive control system applied to hydraulic breaking hammer

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  • Available Online: April 02, 2023
  • Published Date: March 24, 2017
  • In order to study the features of load sensitive control system for hydraulic breaking hammer of impact and breaking rock roadheader, a power bond grap h method was applied to establish a system model and a state equation. Based on the circumstances, an Amesim was applied to set up the simulation model of system and simulation results showed there were pressure and flow impacts in the system. In order to improve the application performances of the hydraulic breaking hammer and to improve the efficiency and the service life of the impact and rock breaking roadheader, an load sensitive control system of the breaking hammer was improved. T he simulation analysis showed that the improved system had improved the pressure impact of the piston and valve core as well as the output flow impact of the pump.A mong them, the fluctuation frequency of the pump output flow was reduced by 50% in average and the pressure peak of the valve core for the pressure limited valve wa s reduced from 1.8 MPa to 0.3 MPa. The impact energy and impact frequency of hydraulic breaking hammer to be adjusted at any time could be realized and the simula tion verified load sensitive features of system.
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    1. 李刚,刘航,迟国铭,石占山,范永君. 大柳塔煤矿沿空留巷柔模砼墙支护阻力核定及失稳判据研究. 工矿自动化. 2025(01): 145-155 .
    2. 宋敏. 大采高工作面切顶卸压沿空留巷技术应用. 江西煤炭科技. 2024(01): 70-72+75 .
    3. 韩森,刘萍,王沉,康向涛. 贵州沿空留巷支护技术的分析与改进. 贵州大学学报(自然科学版). 2024(01): 72-77 .
    4. 贾靖,卢志敏,任伟,杨洪增. 巷旁充填留巷顶板结构分析与围岩控制技术. 煤炭工程. 2024(01): 41-48 .
    5. 徐军,孟宁康,柏建彪. 切顶沿空留巷充填体—矸石协同承载机理及控制技术研究. 矿业安全与环保. 2024(01): 140-146 .
    6. 程睿贤. 华阳二矿151204工作面巷旁充填沿空留巷工艺研究. 煤矿现代化. 2024(02): 77-81 .
    7. 郭玉,马庆华,王玮,院龙. 松软围岩高水充填沿空留巷巷旁充填体参数确定研究. 山西能源学院学报. 2024(01): 13-16 .
    8. 高守文,韩关桥,张余成. 综放工作面沿空留巷围岩稳定控制技术研究. 山西能源学院学报. 2024(01): 17-19+34 .
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    10. 奚守仲,刘宇轩,金宏宇,崔建博,赵俊鹏,唐家瑞. 不同沿空留巷开采工艺比选研究及工程应用. 煤炭工程. 2024(05): 8-17 .
    11. 史卫平,李照迎,柳昌涛,吕艳伟,张浩然,杨涛. 倾斜煤层厚硬顶板切顶留巷关键参数优化研究. 煤炭科学技术. 2024(05): 11-24 . 本站查看
    12. 曹锋,王峰,马强,张红卫,侯荣彬,张凯. 大采高松软煤层柔性充填沿空留巷技术应用研究. 科技通报. 2024(06): 57-62+79 .
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    14. 王克强,侯荣彬,张凯. 梁北矿松软大采高工作面高水充填沿空留巷技术研究. 煤炭技术. 2024(08): 120-124 .
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