Effects of braking by sliding friction against rail on runaway behavior of gantry cranes for container handling receiving wind gust

Author:

TAKAHASHI Kengo1,ABE Masajiro1,FUJINO Toshikazu2

Affiliation:

1. Department of System Safety, Nagaoka University of Technology

2. Department of Mechanical Engineering, Tokyo University of Marine Science and Technology

Publisher

Japan Society of Mechanical Engineers

Reference24 articles.

1. Abe, M., Takahashi, K., Fujino, T. and Kaiga, T., Dynamic simulation analysis on running away of gantry cranes by steady wind, Proceedings of 48th Hokuriku Branch General Meeting of Japan Society of Mechanical Engineers, Vol.48 (2011a), pp.379-380 (in Japanese).

2. Abe, M., Takahashi, K., Fujino, T. and Misawa, K., Simulation analysis of dynamic behavior of gantry cranes in running away situation under steady wind, Proceedings of Transportation and Logistics Division of Japan Society of Mechanical Engineers, Vol.20 (2011b), pp.77-80 (in Japanese).

3. Abe, M., Kanagawa, Y., Fujino, T., Takahashi, K. and Kudara, K., Experimental analysis of frictional characteristics between wheel of gantry cranes and rail in the longitudinal direction of rail under dry condition, Proceedings of 52th Hokuriku Branch General Meeting of Japan Society of Mechanical Engineers, Vol.52 (2015), Program No.1007 (USB flash drive) (in Japanese).

4. Accident investigation board of runaway container crane at the Port of Omaezaki, Investigative report of runaway accident of container crane at port of Omaezaki (2010), available from<http://www.pref.shizuoka.jp/kensetsu/ke-410/documents/omaezaki_hokokusyo.pdf>, (accessed on 14th March, 2020) (in Japanese).

5. Azuma, Y., Prevention techniques of runaway for gantry cranes and others -for preventing to runaway of outside traveling cranes caused by wind, Crane, Vol.54, No.7 (2016), pp.10-14 (in Japanese).

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Dynamic Simulation Analysis of Effects of Cabin Position on Behavior of Gantry Cranes by Operation of Rail Brakes;2023 IEEE International Symposium on Safety, Security, and Rescue Robotics (SSRR);2023-11-13

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