Finite Element Analysis of the Cylindrical Helical Torsional Spring

Article Preview

Abstract:

Stress of the cylindrical helical torsion spring is researched with finite element method when torsional degree changes. For spring has great resilience, large deformation effect is considered in the simulations. Analysis on the stiffness shows that the model built is credible, although torsional stiffness is not constant for large torsional angle, the strength is enough whose variation trend is consistent with the spring stiffness with different working torsional angle.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

633-636

Citation:

Online since:

September 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Hu zhiwei. Finite element analysis of the torsional spring. Design Research. Vol. 30(2010), p.141.

Google Scholar

[2] Han zeguang. Reliability optimization design of helical torsion spring. Mechanical research and application, Vol. 4 (2000), p.25.

Google Scholar

[3] Yao wenbin, He tianchun. Optimum design of combination cylinder torsion helical spring. Machinery Design and Manufacture, Vol. 3(2000), p.38.

Google Scholar

[4] He tianchun, Yao wenbin. Calculation of strength and stiffness of flexible shaft subjected to a twisting moment. Journal of Kunming university of science and technology, Vol. 43 (2000), p.50.

Google Scholar

[5] Li baofu, Liu pingfang, Fang junwei. A revised solution for moment–deflection relation of torsion spring. China Mechanical Engineering, Vol. 19-21(2010), p.2318.

Google Scholar

[6] Li hongyan, Gang xianyue,Chai shan. Finite element analysis of the valve spring with different engine speed. Advanced Materials Research, Vol. 382 (2012), p.224.

DOI: 10.4028/www.scientific.net/amr.382.224

Google Scholar