Assembly Production Status and Development Trend of Industrial Electric Detonator

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Abstract:

China is a country with a large production of industrial electric detonator, whose annual production capacity has reached 3.7 billion, but its level of production technology is still low especially in industrial electric detonator assembly production and most of processes are by manual operation, leading to its low techniques and poor production conditions. Through in-depth analysis of the current status of the production process of electric detonators£¬this article summed up the bottleneck problem of industrial electric detonator assembly automation, compared the degree of automation of industrial electric detonator production at home and abroad, finally this paper discusses the development trend of industrial electric detonator production.

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4714-4717

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September 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Xuguang Wang, Lijin Shen: The state of the arts of industrial detonators. Engineering blasting. Vol. 9(2003), pp.52-57.

Google Scholar

[2] Wenbo Liu, Xiaohong Cao, in: Automatic assembly technology about igniters, edited by national defence industry press, China, BJ(2010), in press.

Google Scholar

[3] Yinghua Ye, in: Pyrotechnics Technology, edited by Beijing Institute of Technology Press, China, BJ(2007), in press.

Google Scholar

[4] Hongjun Li, Wei Chen, et al , Chinese Patent: automatic crimping operation machine of a kind of electronic detonator. (2013).

Google Scholar

[5] Hongjun Li, Dongfeng Wang, Long Yan, Xing Tang, Zhiquan Xiao: Research of Shell PTDF Shrink Model. Applied Mechanics and Materials. Vol 494 – 495(2013), pp.332-336.

DOI: 10.4028/www.scientific.net/amm.494-495.332

Google Scholar

[6] Xin Tang, Hong Jun Li * , Yi Tao Chen, Dong Gui Han: Research on Multi-Task Control Model of PLC. Advanced materials research. Vol. 889 – 890(2013), pp.1236-1239.

DOI: 10.4028/www.scientific.net/amr.889-890.1236

Google Scholar

[7] S. Esen, I. Onederra, H.A. Bilgin: Modelling the size of the crushed zone around a blasthole. International Journal of Rock Mechanics & Mining Sciences. Vol . 40 (2003) , p.485–495.

DOI: 10.1016/s1365-1609(03)00018-2

Google Scholar

[8] Bezemlnitsyn A., Thiruvengadathan R., et al: Modified nanoenergetic composites with tunable combustion composites with tunable combustion characteristics for propellant applications. Propell. Explos. Pyrot., Vol. 35(2010), pp.384-394.

DOI: 10.1002/prep.200800077

Google Scholar