参考文献/References:
[1]陆大卫.油气井射孔技术[M].北京:石油工业出版社,2012:49.
[2]郭圣延,徐永胜.影响石油射孔弹穿孔深度的几个主要因素[J].测井技术,2005(s1):52-54.
[3]徐德惠,卢朝喜,周京风,等.枪内炸高对射孔器技术性能的影响[J].测井技术,2005(602):79-80.
[4]PAGORIA P F,LEE G S,MITCHELL AR,et al. Synthesis,scale-up and characterization of LLM-105:UCRL-JC-142918[P].2001.
[5]郭峰波,刘玉存,刘登程,等. 2,6-二氨基-3,5-二硝基-1-氧吡嗪爆炸参数的理论计算[J].火工品,2006(2):31-33.
GUO F B, LIU Y C, LIU D C, et al.Theoretical calculation of the detonation parameters of 2,6-diamino-3,5-dinitropyrazine-1-oxide[J].Initiators & Pyrotechnics,2006(2):31-33.
[6]TARVER C M,URTIEW P A,TRAN T D. Sensitivity of 2,6-diamino-3,5-dinitropyrazine-1-oxide[J].Journal of Energetic Materials,2005,23(3):183-203.
[7]TRAN T D,PAGORIA P F,HOFFMAN D M, et al. Small-scale safety and performance characterization of new plastic bonded explosive containing LLM-105[C]//12th International Detonation Symposium.San Diego,2002.
[8]张超,杨立波,皮文丰,等. 一种新型高能耐热低感度推进剂[C]//中国化学会第五届全国化学推进剂学术会议论文集.大连,2011:275-278.
[9]张超,张晓宏,马亮,等. LLM-105研究新进展[J].科学技术与工程,2015,15(23):75-86.
ZHANG C ,ZHANG X H, MA L, et al. The new progress of 2,6-diamino-3,5-dinitropyratine-1-oxide[J].Science Technology and Engineering, 2015,15(23):75-86.
[10]吴志远,胡双启.新型钝感高能炸药LLM-105国内外研究进展[J].化学工程与装备,2008(12):103-105.
[11]TRAN T D , PAGORIA P F , HOFFMAN D M , et al. Characterization of 2,6-diamino-3,5-dinitropyrazine-1-oxide (LLM-105) as an insensitive high explosive material[C]//Proceedings of 33rd International Annual Conference of ICT.Karlsruhe,Germany,2002.
[12]徐文新,李必红,李万全,等.以LLM-105为基的耐热混合炸药的应用研究[J].火工品,2012,(4):40-43.
XU W X,LI B H,LI W Q, et al.Application of LLM-105 based heat resistance explosive[J].Initiators & Pyrotechnics,2012,(4):40-43.