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工业乳化炸药中包药卷码夹装置的故障机理分析
引用本文:肖雪,黄志平,肖开文,张国全,巫纯辉,林泽梅. 工业乳化炸药中包药卷码夹装置的故障机理分析[J]. 工程爆破, 2009, 15(1)
作者姓名:肖雪  黄志平  肖开文  张国全  巫纯辉  林泽梅
作者单位:1. 武汉工业学院机械工程系,武汉,430023
2. 梅州振声机械设备研究所,广东梅州,514000
3. 武汉工业学院机械工程系,武汉,430023;梅州振声机械设备研究所,广东梅州,514000
4. 合肥通用机械研究院,合肥,230088
摘    要:基于对民爆器材行业生产技术的现状分析,提出了制约中包药卷包装技术发展的瓶颈——中包药卷码夹技术。在介绍了码夹的对象和其结构组成的基础上,探讨了药卷变形机理,即引起药卷变形的几个因素,包括作用力与作用的距离、储料仓中药量的控制、料槽通道宽度的尺寸、药卷与料槽通道间的摩擦阻力、药卷间的挤压及药卷下落过程中产生的倾斜,并给出了解决办法;最后建立了码夹效率的优化模型。

关 键 词:工业炸药药卷  中包  码夹装置  故障机理  码夹效率  优化模型

ANALYSIS ON FAULT MECHANISM OF CARTRIDGE STACKING DEVICE FOR INDUSTRIAL EMULSIFICATION EXPLOSIVE
XIAO Xue,HUANG Zhi-ping,XIAO Kai-wen,ZHANG Guo-quan,WU Chun-hui,LIN Ze-mei. ANALYSIS ON FAULT MECHANISM OF CARTRIDGE STACKING DEVICE FOR INDUSTRIAL EMULSIFICATION EXPLOSIVE[J]. Engineering Blasting, 2009, 15(1)
Authors:XIAO Xue  HUANG Zhi-ping  XIAO Kai-wen  ZHANG Guo-quan  WU Chun-hui  LIN Ze-mei
Affiliation:XIAO Xue1,HUANG Zhi-ping2,XIAO Kai-wen2,ZHANG Guo-quan1,2,WU Chun-hui2,LIN Ze-mei3(1.Mechanical Engineering Department,Wuhan Polytechnic University,Wuhan 430023,China,2.Meizhou Zhensheng Machinery Research Institute,Meizhou 514000,Guangdong,3.Hefei General Machinery Research Institute,Hefei 230088,China)
Abstract:Status analysis of manufacturing technology of industrial explosive showed that the technology of explosive cartridge stacking was the bottleneck restricting the development of mid-package packing technology.The present paper,based on the introduction of stacking′s object and its structure,discussed in detail the distortional mechanism of explosive cartridge in terms of several factors of causing the distortion,including acting force and its range,the amount control in store hopper,the dimension of channel,the frictional resistance between cartridge and channel,the squeeze between cartridges and the incline during the falling.The paper also discussed the solutions to the problems and established an optimized model of the algorithm for efficiency of stacking device.
Keywords:Industrial explosive cartridge  Mid-package  Cartridge stacking device  Fault mechanism  Stacking efficiency  Optimized model  
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