Equivalent Vertical Stiffness Design of Modular Deformable Wheel
Author:
Publisher
Springer Science and Business Media LLC
Subject
Automotive Engineering
Link
http://link.springer.com/content/pdf/10.1007/s12239-021-0009-3.pdf
Reference18 articles.
1. Abrosimov, N. A., Elesin, A. V. and Igumnov, L. A. (2019). Numerical simulation of the process of loss of stability of composite cylindrical shells under combined quasi-static and dynamic actions. Mechanics of Composite Materials 55,1, 41–52.
2. Bae, J. J., You, Y., Suh, J. B. and Kang, N. (2019). Calculation of the structural stiffness of run-flat and regular wheels by considering strain energy. Int. J. Automotive Technology 20,5, 979–987.
3. Cavina, V., Mari, A. and Giovannetti, V. (2017). Slow dynamics and thermodynamics of open quantum systems. Physical Review Letters 119,5, 050601.
4. Goryacheva, I. G. and Zobova, A. A. (2019). Deceleration of a rigid cylinder sliding along a viscoelastic foundation. Mechanics of Solids 54,2, 278–288.
5. Deng, K. and Zeng, L. (2019). A modular deformable wheel: China, 201910717463.2.
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