[1]周新利①,迟强①,吴臣②,等.针对高海拔地区的乳化炸药的配方优化及性能研究[J].爆破器材,2026,55(02):37-41,48.[doi:10.3969/j.issn.1001-8352.2026.02.006]
 ZHOU Xinli,CHI Qiang,WU Chen,et al.Formula Optimization and Performances of PlateauType Emulsion Explosives[J].EXPLOSIVE MATERIALS,2026,55(02):37-41,48.[doi:10.3969/j.issn.1001-8352.2026.02.006]
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针对高海拔地区的乳化炸药的配方优化及性能研究()

《爆破器材》[ISSN:1001-8352/CN:32-1163/TJ]

卷:
55
期数:
2026年02
页码:
37-41,48
栏目:
爆炸材料
出版日期:
2026-04-13

文章信息/Info

Title:
Formula Optimization and Performances of PlateauType Emulsion Explosives
文章编号:
6015
作者:
周新利迟强吴臣张亮
①南京理工大学化学与化工学院(江苏南京,210094)
②西藏高争民爆股份有限公司(西藏拉萨,850000)
Author(s):
ZHOU Xinli CHI Qiang WU Chen ZHANG Liang
①School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology (Jiangsu Nanjing, 210094)
②Xizang Gaozheng Explosive Co., Ltd. (Xizang Lhasa, 850000)
关键词:
高原型乳化炸药 爆炸性能 高低温循环 黏度
分类号:
TJ51; TQ560.7
DOI:
10.3969/j.issn.1001-8352.2026.02.006
文献标志码:
A
摘要:
针对高海拔地区低气压、昼夜温差大、缺氧等极端环境对乳化炸药性能的影响及制约,通过配方优化、工艺改进及性能测试,开发了2种新型一体化油相材料,用于制备高原型乳化炸药。在-20 ℃、海拔3 600 m下,测试得到乳化炸药的爆速为4 865 m/s,殉爆距离为8 cm,猛度为17.34 mm;12次高低温循环实验后,爆速为4 563 m/s,殉爆距离为7 cm,猛度为16.02 mm。模拟高原条件,对乳化炸药的性能进行实验评估发现,制备的高原型乳化炸药在各种高海拔条件下的性能指标均符合GB 28286—2024的要求。

参考文献/References:

[1]齐秀芳, 王杰, 何俊蓉, 等. 耐低温乳胶基质的制备与性能测试[J]. 火炸药学报, 2019, 42(5): 480-484.

QI X F, WANG J, HE J R, et al. Preparation and characterization of emulsion matrix with low temperature resistance [J]. Chinese Journal of Explosives & Propellants, 2019, 42(5): 480-484.
[2]侯传议, 申夏夏, 王道阳, 等.抗冻乳化炸药专用复合蜡的实验研究[J].煤矿爆破, 2013(3): 24-27.
HOU C Y, SHEN X X, WANG D Y, et al. Experimental study on special compound wax for antifreezing emulsion explosive [J]. Coal Mine Blasting, 2013(3): 24-27.
[3] 朱可可, 邓长城, 张小宇. 油相材料黏度对乳化炸药耐低温性能的影响[J]. 火工品, 2021(3): 36-38.
ZHU K K, DENG C C, ZHANG X Y. Influence of oil phase material viscosity on low temperature resistance of emulsion explosive [J]. Initiators & Pyrotechnics, 2021(3): 36-38.
[4]程秀莲. 复合添加剂对乳化炸药水相析晶点影响的研究[J].工程爆破, 2022, 28(5): 106-111.
CHENG X L. Influences of additives on crystallizing point of water-phase in emulsion explosive[J]. Engineering Blasting, 2022, 28(5): 106-111.
[5]单艳玲. 复合油相材料对乳化炸药稳定性的影响[J].云南化工, 2015, 42(3): 21-23.
SHAN Y L. Influence of composite oil phase materials on the stability of emulsion explosive [J] . Yunnan Chemical Technology, 2015, 42(3): 21-23.
[6] 申夏夏, 吴红波, 黄文尧, 等.Span-80和T-152对乳化炸药低温稳定性的影响[J].工程爆破, 2015, 21(4): 20-23, 68.
SHEN X X, WU H B, HUANG W Y, et al. The effects of Span-80 and T-152 on the stability of emulsion explosive at low temperatures [J]. Engineering Blasting, 2015, 21(4): 20-23, 68.
[7]颜小东, 叶志文, 崔晓荣, 等. 一种新型乳化炸药专用高分子乳化剂的研发与应用[J]. 中国矿业, 2014 (12): 128-131.
YAN X D, YE Z W, CUI X R, et al. The development and application of a new polymeric emulsifier designed for emulsion explosives[J]. China Ming Magazine, 2014 (12): 128-131.
[8]王璐.乳化炸药的低温乳化研究[D].太原: 中北大学, 2014.
WANG L. Research of the emulsion explosive emulsified at low temperature[D]. Taiyuan: North University of China, 2014.
[9]杨柳. 基于蜡分子结构的耐低温乳化炸药性能研究[D]. 淮南: 安徽理工大学, 2023.
YANG L. Study on the properties of 1ow-temperature resistant emulsion explosives based on wax molecular structure [D]. Huainan: Anhui University of Science and Tecnology, 2023.
[10]ZHOU J M, JIA Y S, YAO Y K, et al. The effects of shear parameters on the stability of emulsion explosive matrices [J]. Colloid Journal, 2024, 86(1): 153-168.
[11]ZHOU J M, WANG X G, GONG M, et al. The effect of surfactant on the rheology and stability properties of emulsion explosive matrices [J]. Journal of Dispersion Science and Technology, 2022, 43(12/13/14): 2156-2164.
[12]高玉刚, 赵晓莉, 徐龙, 等. 高海拔压力环境对炸药猛度影响的实验研究[J]. 火工品, 2013(5): 36-39.
GAO Y G, ZHAO X L, XU L, et al. Experimental research on brisance of explosive in simulated high altitude environment [J]. Initiators & Pyrotechnics, 2013(5): 36-39.
[13]吴红波, 蔡心远, 高郁凯, 等.模拟高原环境下黏度对乳化炸药性能影响[J]. 工程爆破, 2023, 29(6): 16-23.
WU H B, CAI X Y, GAO Y K, et al. Effect of viscosity on emulsion explosive performance under plateau environment [J]. Engineering Blasting, 2023, 29(6): 16-23.
[14]赵晓莉, 夏斌, 刘尊义, 等.模拟高原环境对炸药爆速影响的试验研究[J]. 爆破器材, 2015, 44(2): 36-39.
ZHAO X L, XIA B, LIU Z Y, et al. Experimental research on detonation velocity of explosive in simulated plateau environment [J]. Explosive Materials, 2015, 44(2): 36-39.
[15]杨仁树, 胡坤伦. 几种表征乳化炸药稳定性方法的实验研究[J]. 煤矿爆破, 2007, 25(2): 1-4.
YANG R S, HU K L. Experimental research on several methods of characterizing the stability of emulsion explosive [J]. Coal Mine Blasting, 2007, 25(2): 1-4.

备注/Memo

备注/Memo:
收稿日期:2025-02-15
基金项目:西藏自治区科技计划项目(重点研发及转化)(XZ202201ZY0025G)
第一作者:周新利(1973—),男,博士,副研究员,主要从事民用爆破器材研究。E-mail: xinlizhou@aliyun.com
更新日期/Last Update: 2026-04-10