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节理岩体爆生裂纹扩展动态焦散线模型实验研究
引用本文:肖同社,杨仁树,庄金钊,李清.节理岩体爆生裂纹扩展动态焦散线模型实验研究[J].爆炸与冲击,2007,27(2):159-164.
作者姓名:肖同社  杨仁树  庄金钊  李清
作者单位:1.中国矿业大学力学与建筑工程学院,北京 100083;
基金项目:高等学校博士学科点专项基金项目(20020290010),教育部优秀青年教师资助计划项目
摘    要:应用动态焦散线测试系统,模拟含节理岩体断裂爆破过程,进行了PMMA模型透射式动态焦散线实验,着重研究了爆炸初始裂纹与节理面夹角不同的情况下,裂纹尖端动态强度因子的变化规律、裂纹穿过节理面的扩展规律、以及炮孔与节理距离不同时裂纹穿过节理扩展的规律。实验结果分析表明,爆生裂纹穿过节理面时,裂纹尖端的动态强度因子和裂纹扩展速度显著下降,穿过节理面后,强度因子又增强;裂纹穿过节理面时,裂纹会沿节理面偏离一段距离后沿原方向继续扩展。实验结果还表明,炮孔与节理间距适宜的情况下,裂纹才会穿过节理继续扩展,间距太小和过大都不利于裂纹的扩展。

关 键 词:固体力学    裂纹扩展规律    动态焦散线    节理岩体    应力强度因子    爆炸加载
文章编号:1001-1455(2007)02-0159-06
修稿时间:12 8 2005 12:00AM

Dynamic caustics model experiment of blasting crack developing on sandwich rock
XIAO Tong-she,YANG Ren-shu,ZHUANG Jin-zhao,LI Qing.Dynamic caustics model experiment of blasting crack developing on sandwich rock[J].Explosion and Shock Waves,2007,27(2):159-164.
Authors:XIAO Tong-she  YANG Ren-shu  ZHUANG Jin-zhao  LI Qing
Institution:1.School of Mechanics & Civil Engineering, China University of Mining &Technology, Beijing 100083, China;2.Collage of Water Conservancy & Civil Engineering, China Agriculture University, Beijing 100083, China
Abstract:Using the dynamic caustic-test system,the PMMA model transmission-type experiment of dynamic caustics was carried out to simulate the blasting process of rock with joints.Varieties of dynamic intensity factors in the crack-tip field,extensions of cracks going through the joint planes for different distances between hole and joint were analyzed especially under the condition that the initial cracks and joint planes had different separation angles.Experimental results show that the dynamic intensity factor of the crack-tip and the extension speed decrease dramatically while the cracks go through joint planes but afterwards the intensity factor increases,that when the crack goes through the joint plane,it can deviate a short distance along the joint,and then continues to develop in its initial direction with respect to the appropriate distance between hole and joint.
Keywords:solid mechanics  crack extension regularity  dynamic caustics  sandwich rock  stress intensity factor  blasting loading
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