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乳化炸药损伤对爆炸性能的影响

Influence of the Damage of Emulsion Explosive on Detonation Property

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【作者】 郑思友夏斌何振刘磊

【Author】 ZHENG Siyou①,XIA Bin①,HE Zhen①,LIU Lei② ①Institute of Blasting Technlogy,Central Coal Mining Research Institute(Anhui Huaibei,235000) ②Faculty of Land Resource Engineering,Kunming University of Science and Technology(Yunnan Kunming,650093)

【机构】 煤炭科学研究总院爆破技术研究所昆明理工大学国土资源学院

【摘要】 对化学敏化、珍珠岩敏化、玻璃微球敏化的3种乳化炸药进行静空气压力、静水压力和机械摩擦模拟损伤试验研究。在0.6MPa静空气压力作用下,3种乳化炸药的作功能力分别下降了1.89%、3.92%、1.64%,爆速分别下降4.72%、4.84%、3.15%;在0.6MPa静水压力作用下,3种乳化炸药的作功能力分别下降了21.05%、27.57%、23.16%,爆速分别下降11.16%、14.36%、12.15%;在机械摩擦作用15min后,作功能力分别下降了1.12%、4.97%、3.74%,爆速分别下降1.87%、7.56%、6.91%。结果表明,在静空气压力及机械摩擦作用下,3种乳化炸药爆炸性能衰减较小,作功能力衰减幅度小于爆速;在静水压力作用下,3种乳化炸药爆炸性能衰减较大,作功能力衰减幅度大于爆速。

【Abstract】 The experimental research by means of static air pressure,hydrostatic pressure and mechanical friction was conducted on the damage simulation of three types of emulsion explosives sensitized by chemical,perlite and glass microballon sensitization,respectively.Under the static air pressure of 0.6MPa,the power of three types emulsion explosives reduced by 1.89%,3.92% and 1.64%,respectively,and the detonation velocity reduced by 4.72%,4.84% and 3.15%,respectively.Under the hydrostatic pressure of 0.6MPa,the power of three types emulsion explosives reduced by 21.05%,27.57% and 23.16%,respectively,and the detonation velocity reduced by 11.16%,14.36% and 12.15%,respectively.After mechanical friction of 15min,the power of three types emulsion explosives reduced by 1.12%,4.97% and 3.74%,respectively,and the detonation velocity reduced by 1.87%,7.56% and 6.91%,respectively.Results showed that,under static pressure and mechanical friction,the loss of detonation property of three types emulsion explosive was small,and the loss of power was less than that of detonation velocity;and under hydrostatic pressure,the loss of detonation property of three types emulsion explosive was large,and the loss of power was more than that of detonation velocity.

【基金】 “煤炭科学研究总院爆破技术研究所青年创新基金”资助项目(Q1003)
  • 【文献出处】 爆破器材 ,Explosive Materials , 编辑部邮箱 ,2013年02期
  • 【分类号】TQ560.1
  • 【被引频次】4
  • 【下载频次】97
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