A Preparation Technology of Artificial Lignumvitae

Article Preview

Abstract:

For the purpose of preparing stern bearings adapted to water-lubricating environment to replace natural lignumvitae, preparing bearings with solid lubricant of electromechanical equipment applied in some industries such as textile, food and healthcare to replace sintered bronze, and preparing advanced automotive upholstery, appliance and artware to replace natural rosewood and ox bone, three published patents including “a preparation method of artificial lignumvitae” were used to prepare artificial lignumvitae with a better wear resistance than natural lignumvitae. As the materials for sliding bearing, the main performance of artificial lignumvitae meets the requirement for sintered bronze FZ2365. It explores a new way to develop functional biomass materials with wood waste in urban and rural area while ensure its high quality and cleanness.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

273-277

Citation:

Online since:

March 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Q.D. Wu, The Principle and Technology About Warm Compaction of the Woody Powder, Hunan University Press, Changsha, (2012).

Google Scholar

[2] Q.D. Wu,S. Liang S.L. Xiang,and W.X. Peng,Bonding mechanism analysis on woody powder high-density sliding bearing by self-bonding warm compaction, China Powder Science and Technology. 18 (2012) 1-6.

Google Scholar

[3] Z.Q. Hu, Q.D. Wu, S. Liang, Self-bonding warm compaction and characterization of reed powder high density materials, China Powder Science and Technology. 18 (2012) 53-60.

Google Scholar

[4] R. Vie, L.G. Hampson, Grand princess: water lubricated bearings, The Institute of Marine Engineers. 112 (2000) 11-25.

Google Scholar

[5] I.K. Kim , H.G. Kang , K. Onohara. Ultimate strength of composite laminates with free-edge delamination, KSME International Journal. 13 (2010) 569-574.

DOI: 10.1007/bf03186447

Google Scholar

[6] F.L. Han, C.C. Jia, Sintering Metal Oilness Bearing: Principle, Design, Manufacture and Application, Chemical Industry Press, Beijing, (2004).

Google Scholar

[7] Q.D. Wu, Chinese Patent 201110029282. 4. (2011).

Google Scholar

[8] Q.D. Wu, Chinese Patent 201110029275. 4 (2011).

Google Scholar

[9] Q.D. Wu, Chinese Patent 201210534753. 1 (2013).

Google Scholar

[10] J. Huang, J.L. Chen, Q.D. Wu, Optimization of technical parameters for self-bonding mold forming of poplar powder, Journal of Northeast Forestry University. 40 (2012) 81-84.

Google Scholar