[1]蒋大勇①,白云②.某型强光爆震弹的处废方式研究[J].爆破器材,2016,45(06):26-31.[doi:10.3969/j.issn.1001-8352.2016.06.005]
 JIANG Dayong,BAI Yun.Study on Destruction Methods for Abandoned Flashbang Ammunition[J].EXPLOSIVE MATERIALS,2016,45(06):26-31.[doi:10.3969/j.issn.1001-8352.2016.06.005]
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某型强光爆震弹的处废方式研究()
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《爆破器材》[ISSN:1001-8352/CN:32-1163/TJ]

卷:
45
期数:
2016年06
页码:
26-31
栏目:
爆炸材料
出版日期:
2016-11-16

文章信息/Info

Title:
Study on Destruction Methods for Abandoned Flashbang Ammunition
文章编号:
5094
作者:
蒋大勇白云
①武警工程大学装备工程学院(陕西西安,710086)
②武警工程大学军事基础教育学院(陕西西安,710086)
Author(s):
JIANG DayongBAI Yun
①Equipment Engineering College,Engineering University of CAPF(Shaanxi Xian, 710086)
②Military Based Education Colloege, Engineering University of CAPF (Shaanxi Xian, 710086)
关键词:
安全设备工程爆震弹处废弹药销毁水射流技术
Keywords:
safety accommodation engineering flashbang destruction methods ammunition disposal water jet technology
分类号:
TJ410. 89
DOI:
10.3969/j.issn.1001-8352.2016.06.005
文献标志码:
A
摘要:
基于装备管理的特点和实际需求,对某型强光爆震弹的常规处废方式和方法进行研究。根据处废过程中爆震弹是否进行可控的能量释放,结合其组成结构和作用特征,通过理论分析和试验验证的方法,重点分析了远距离拉发法、焚烧法和机械切割法等技术的使用时机及优缺点,同时,对主装药的无害化处理进行了一定研究。结果表明,远距离拉发法对场地条件要求较高,安全性偏重于现场的指挥和调度;露天焚烧法对环境污染较大,紧急情况下方能使用;机械切割法可以对部分零部件进行回收再利用,但处废效率偏低,存在主装药的二次处理问题。所述处废方式在严格落实操作规程的前提下均能保证人员安全。在使用时机方面,应结合处废单位的自身条件和处废任务的需要而确定。
Abstract:
Based on the characteristics and the actual needs of equipment management, some conventional techniques were discussed for the disposal of a certain type of flashbang. Based on the considerations of whether the energy needs to be released in a controlled manner during the processing, combined with its composition and function characteristics, several methods were theoretically analyzed in the aspects of application, merits and drawbacks, and verified by corresponding experimental works. These include remote handling, incineration, mechanical cutting and some other techniques involving the safe disposal of main charge. Results show that remote handling has the feature of critical requirements on processing site and the process safety dependence on onsite communication and cooperation; openair incineration, introducing severe environmental pollution, is applicable to emergency situations only; mechanical cutting is suitable for the recycling of some flashbang parts, but usually has a low efficiency and needs a secondary disposal for main charge. All waste disposal methods discussed above can ensure the personnel safety under the strict implementation of the operation rules. The selection of the disposal methods should be confined to the equipment and personnel available and the amount of abandoned flashbang ammunition to be disposed.

参考文献/References:

[1]马永忠.国产RS97-2燃烧型催泪弹[J].轻兵器,2003(7):11-12.
[2]杨光.武警弹药学[M].西安:武警工程大学,2005.
[3]钟明寿,龙源,孙远征,等.导爆索爆炸拆分废弃常规弹药的初步试验研究[J].爆破器材,2008,37(2):31-34.
ZHONG M S,LONG Y,SUN Y Z, et al.Preliminary experiment on splitting the rejected conventional ammunition by detonating cord[J].Explosive Materials,2008,37(2):31-34.
[4]MACHACEK O,GILION J B, ECK G, et al. Recycling of excess and demilitarized energetic materials in commercial explosive applications[J].International Journal of Energetic Materials and Chemical Propulsion,1997,4(1/6):177-188.
[5]巩永孝.报废通用弹药处理技术[M].北京:解放军出版社,2004.
[6]MALONEY S W. Reuse of ammonium nitrate-wet air oxidation[R]. US Army Corps Engineers CERL Technical Report, 1999.
[7]HIAVAC L M,SIRNADEL B, KALICINSKY J, et al. The model of product distortion in AWJ cutting[J]. International Journal of Advanced Manufacturing Technology, 2012,62(1/4):157166.
[8]薛胜雄.高压水射流技术工程[M].合肥:合肥工业大学出版社,2006.
[9]HARADA Y,KAWAI K, SUZUKI T, et al. Evaluation of cutting process on the tensile and fatigue strength of CFRP composites[J]. Materials Science Forum, 2012,706/709(1):649654. 
[10]钟树良.水射流切割炸药的技术研究[D].绵阳:中国工程物理研究院,2006.
[11]HE Y H, WU B, MA Y F, et al. Experimental study on the expansion uniformity of armature[J]. Journal of Beijing Institute of Technology, 2009, 18(1):56-59.

备注/Memo

备注/Memo:
收稿日期:2016-05-12
基金项目:国家自然科学基金(51503224);武警工程大学基础理论研究项目(2015wxk-003)
作者简介:蒋大勇(1981~),男,博士,副教授,从事含能材料的研究。E-mail:wanghe717@163.com
更新日期/Last Update: 2016-11-16