General Cartridge Shape Detection System Design

Article Preview

Abstract:

According to present question about low precision detection of cartridge's geometric shape and not high level of automatic detection ,designer has designed multiple detection system about geometric parameters of the cartridge .Use the optical triangulation as a basic theory, and measure the cartridge's shapewall thicknessbottom thickness and so on at the same time by adopting Laser Range Finder Sensor with d high level of precision. Adopt servo motor to drive detection arm to realize the generality of all kinds of cartridge's detection. When test system collect data in real-time to make a report, it use a OPENGL tool to create the 3d graphics of objects being detected and see their defects directly as well as analysiscalculate the system's testing error. Experiment shows, that this method's fasterhigher level of detection can meet the demands of cartridge's geometric parameters.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

535-539

Citation:

Online since:

June 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Guo Kai, Xu Cheng. Evaluation method of operational effectiveness of gun system based on shooting efficiency.[J].Acta2007, 28(2):748-751.

Google Scholar

[2] Liang Yangang, Chen Lei, Tang Guojin. Effectiveness evaluation method of weapon is based on stand-off missile [J]. Acta.2008, 29(6):621-623.

Google Scholar

[3] JI Baolin, Liu Yixin, Wang Xixing. The calculation method of combat effect standardization of land weapon.[J].Acta,2005,26(1):357-359.

Google Scholar

[4] Li Zhi-Li, Li Yuhuan. Analysis of the effects of reliability on one type of antiaircraft gun weapon system effectiveness.[J].Fire control and command control, 2007, 32 (10):357-359.

Google Scholar

[5] Xu Kehu, Wang Rungang, Ma Junfeng, Zhao Yu Zhu. Research on tank fire control system simulation.[J]. Fire control and command control, 2007, 32(3):357-359.

Google Scholar

[6] Xu Jianzhi, Liu Ding Chen. Research based on anti-ship missiles application simulation of STAGE [J]. Journal of system simulation 2004, 16(5):978-980.

Google Scholar

[7] Ke Jia Shan, Chen Lang. The application of STAGE software in tactics operational laboratory construction.[J]. Fire control and command control. 2002, 27(3):63-67.

Google Scholar

[8] Zheng Peng, Shi Zhangsong, Zhao Haitao. Simulation of ship-to-air missile cooperative air defense system based on the STAGE.[J]. Command control & Simulation

Google Scholar

[9] Zhao Xiaozhe, Wang Zaizang, Sun Yong Kan. The design of warship-submarine counterwork simulation system based on STAGE.[J]. Journal of system simulation, 2006, 18 (4):832-834.

Google Scholar