Optimal Design of Pendulum in High Impact Shock Testing Machine for Middleweight

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Abstract:

Impact test of shipboard systems must be taken before navy ships take service. Only in this way can we ensure the safety and reliability of them. In middle-weight high impact testing machine which is one of main devices to test medium weight equipments, pendulum is the most important as well as the most perishable part of this machine. Good quality of pendulum should be ensured. Energy demands, reliability, service life and deformation of the pendulum must be taken into account when design pendulum of this tester part. An optimization methods to design pendulum is presented in this paper. By means of optimization of the position of mass centre, percussion centre and impact point, the reliability and service life of pendulum can be improved.

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334-337

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October 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Wang Ming-gui, Zhou Xue-bin. Review on Technology Shock-Resistance Test for Equipments of Naval Ships, China Science and Technology Information Vol. 26, No. 2, 2012).

Google Scholar

[2] Shi Jian-rong, Shi shi, Medium Weight Shock Test of Simulated Underwater Not-Touch Close Quarters Blast Environment. Equipment Environmental Engineering Vol. 7, No. 3, (2010).

Google Scholar

[3] Liu Jian-hu, Pang Jian-qiang, Comparison of Anti-Shock Criteria for Equipment in Some Primary Navy Countries. Applied Science and Technology. Vol. 37, No. 9, (2010).

Google Scholar

[4] Hang Gui-sheng. Percussion centre and vibration centre. Journal of xuzhou teachers college, Vol. 14, No. 1, (1996).

Google Scholar

[5] Sun Zhan-gang, Liu Mu-shuang, Zhang Peng-pai. Design and verification on the pendulum of impact testing machine/[J]. Machinery Design & Manufacture, Vol. 1, No. 12, (2006).

Google Scholar

[6] Gao De-lin, The Calculation of Gravity Centre and Rotation Inertial. Journal of East China Institute of Technology, No. 2, (1991).

Google Scholar

[7] Shock tests. H.I. Shipboard Machinery Equipment, and Systems, Requirements for. Military Specification. 17 March (1989).

DOI: 10.21236/ada550253

Google Scholar