Design, Research and Application of Complete Equipment for High Temperature and Large Capacity Ultra Long Distance Belt Conveyor

Authors

  • Jun Lu
  • Yong Gao
  • Weixing Wang
  • Xudong Jiao

DOI:

https://doi.org/10.54097/hset.v20i.3945

Keywords:

High Temperature Resistance; Large Capacity; Ultra Long Distance.

Abstract

The complete set of equipment technology for high temperature and large transport capacity ultra long distance belt conveyor has innovatively developed new technologies and devices such as rapid maintenance and replacement technology of idler, high temperature resistant idler, special conveyor belt and joint form, intelligent dynamic controllable double tension double storage belt device, multi drive point dynamic balance motor synchronous control technology, which has solved the problem that the high temperature resistant belt conveyor technology is short distance, low belt speed and small transport capacity, Its conveying system is composed of multiple conveyors, with many system failure points, large transfer station area and high system investment. It has created a new road for the development of high efficiency and low energy consumption belt conveyor in China, and accumulated valuable experience in design, manufacturing, installation and commissioning.

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References

Wang Wenbin et al. Mechanical design manual [M]. Beijing: China Machine Press, 2008.

GB 5431-2008, code for design of belt conveyor engineering [S]. Beijing: China Planning Press, 2008.

Beijing lifting and Transportation Machinery Research Institute, DT (Ⅱ) a belt conveyor design manual [S]. Beijing: Metallurgical Industry Press, 2003.

Song Weigang, design of belt conveyor for bulk materials [M]. Shenyang: Northeast University Press, 2004.

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Published

30-12-2022

How to Cite

Lu, J., Gao, Y., Wang, W., & Jiao, X. (2022). Design, Research and Application of Complete Equipment for High Temperature and Large Capacity Ultra Long Distance Belt Conveyor. Highlights in Science, Engineering and Technology, 20, 148-155. https://doi.org/10.54097/hset.v20i.3945