岩石力学与工程学报
巖石力學與工程學報
암석역학여공정학보
CHINESE JOURNAL OF ROCK MECHANICS AND ENGINEERING
2013年
z1期
2642-2649
,共8页
卢强%王占江%门朝举%李进%郭志昀%文潮
盧彊%王佔江%門朝舉%李進%郭誌昀%文潮
로강%왕점강%문조거%리진%곽지윤%문조
爆炸力学%地下爆炸%应力波%屏蔽沟槽%微药量爆炸
爆炸力學%地下爆炸%應力波%屏蔽溝槽%微藥量爆炸
폭작역학%지하폭작%응력파%병폐구조%미약량폭작
explosion mechanics%underground explosion%stress wave%shielding gap%mini-chemical explosion
设置在爆破塑性区内的屏蔽沟槽对爆炸应力波具有一定的阻隔效应.为在实验室模拟研究地下爆炸塑性区沟槽对爆炸应力波的屏蔽作用,采用0.125 gTNT当量的微型炸药球作为爆炸源,在?1370 mm×1200 mm的黄土化爆试验平台上进行沟槽阻隔爆炸应力波的微药量化爆模拟试验.从理论及试验结果分析等方面研究沟槽深度H对爆炸应力波的屏蔽作用.结果表明:(1)塑性区沟槽对爆炸应力波屏蔽效应的力学机制不同于弹性区沟槽;(2)以粒子速度、位移幅值度量的屏蔽系数在沟槽屏蔽区域内存在极大值;(3)塑性区沟槽对爆炸应力波有延迟效应;(4)试验结果定性地验证沟槽屏蔽爆炸应力波的理论分析,两者结论一致.
設置在爆破塑性區內的屏蔽溝槽對爆炸應力波具有一定的阻隔效應.為在實驗室模擬研究地下爆炸塑性區溝槽對爆炸應力波的屏蔽作用,採用0.125 gTNT噹量的微型炸藥毬作為爆炸源,在?1370 mm×1200 mm的黃土化爆試驗平檯上進行溝槽阻隔爆炸應力波的微藥量化爆模擬試驗.從理論及試驗結果分析等方麵研究溝槽深度H對爆炸應力波的屏蔽作用.結果錶明:(1)塑性區溝槽對爆炸應力波屏蔽效應的力學機製不同于彈性區溝槽;(2)以粒子速度、位移幅值度量的屏蔽繫數在溝槽屏蔽區域內存在極大值;(3)塑性區溝槽對爆炸應力波有延遲效應;(4)試驗結果定性地驗證溝槽屏蔽爆炸應力波的理論分析,兩者結論一緻.
설치재폭파소성구내적병폐구조대폭작응력파구유일정적조격효응.위재실험실모의연구지하폭작소성구구조대폭작응력파적병폐작용,채용0.125 gTNT당량적미형작약구작위폭작원,재?1370 mm×1200 mm적황토화폭시험평태상진행구조조격폭작응력파적미약양화폭모의시험.종이론급시험결과분석등방면연구구조심도H대폭작응력파적병폐작용.결과표명:(1)소성구구조대폭작응력파병폐효응적역학궤제불동우탄성구구조;(2)이입자속도、위이폭치도량적병폐계수재구조병폐구역내존재겁대치;(3)소성구구조대폭작응력파유연지효응;(4)시험결과정성지험증구조병폐폭작응력파적이론분석,량자결론일치.
The gap in plastic zone has been proved to be one of the most effective techniques for shielding against blasting stress wave. Based on the mini-chemical explosive technique,0.125 g TNT mini-spherical explosive charges was used as the explosive source for the laboratory researches of the gap shielding against blasting stress wave on the ?1 370 mm×1 200 mm loess samples. The shielding effects of gap on blasting stress wave were studied through the analysis of theory and experimental results. The results show that:(1) The gap in plastic zone is destroyed and the principle of the gap shielding against the blasting stress wave is different from that in elastic zone. (2) The shielding factors based on the amplitudes of the particle velocities and displacements exist maximum value in the shielding zone of gap. (3) The gap in plastic zone has delay effect for the blasting stress wave. (4) The experimental results qualitatively validate the theoretical analysis of the gap shielding against the blasting stress wave.