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《Journal of Vibration and Shock》 2015-22
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Experimental simulation of dynamic friction characteristics of interface between diamond drill and rock under impact-rotational loading

LI Ji-yang;TAN Zhuo-ying;LI Wen;YUE Peng-jun;Civil and Environmental Engineering School,University of Science and Technology Beijing;Key Laboratory of Ministry of Education of China for Efficient Mining and Safety of Metal Mines;  
In rotary drilling process,the estimation of dynamic friction characteristics between interfaces of drill bit and concrete samples is an important issue for studying the rock crushing mechanism. Based on a self-developed drilling simulation system,the key parameters of friction were measured accurately and repeatedly by making use of stress waves.The axial pressure and friction force were obtained directly,and the relative sliding speed,sliding displacement as well as friction coefficient were further calculated. The results show that the relative sliding speed and sliding displacement between diamond drill and rock interfaces are highly related to the rotary loading rate. They will increase with the increase of rotational speed. The interfacial dynamic friction coefficient will increase with the rise of impact velocity. In each impact-rotation loading process,the experimental dynamic friction coefficient keeps almost constant and is not affected by the loading-unloading process of axial impact,the duration of stable dynamic friction is nearly equal to that of stress wave peak,and is gradually shortened with the increase of impact velocity,which reveals the characteristics of dynamic friction between drill bit and rock under impact-rotation loading.
【Fund】: 国家自然科学基金(51174013)
【CateGory Index】: P634.1
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