1 |
Shear Bands of a Non-Pneumatic tire - Investigation of Contact Pressure", SAE International.
|
2 |
Abd El-Sayed, F. K., Jones, R., and Burgess, I. W. (1979), A Theoretical Approach to the Deformation of Honeycomb Based Composite Materials, Composites, Vol. 10, No. 4, pp. 209-214.
DOI
ScienceOn
|
3 |
Gibson, L. J., Ashby, M. F., Schajer, G.S. and Robertson, C. I. (1982), The Mechanics of Two-Dimensional Cellular Materials, Proceedings of The Royal Society A, 382, pp. 25-42.
DOI
|
4 |
Masters, I. G. and Evans, K. E., (1996), "Models for the Elastic Deformation of Honeycombs", Composite Structures, Vol. 35, No. pp. 403-22.
DOI
ScienceOn
|
5 |
Julien Cesbron, Fabienne Anfosso-Ledee, Denis Duhamel, (2009), "Experimental study of tyre/road contact forces in rolling conditions for noise prediction", Journal of sound and vibration, Vol. 320, No. pp. 125-144.
DOI
ScienceOn
|
6 |
Akasaka, T., Katoh, M., Nihei, S., Hiraiwa, M., "Two-Dimensional Contact Pressure Distribution of a Radial tire", Tire Science and Technology, TSTCA, Vol. 18, No. 2, April-June, 1990, pp. 80-103.
DOI
|
7 |
Kim, D.M., Park, I.J., Yoo, H.S., Seong, K.J., Kim, S.N., "Effect of Shearing Force on the Contact Stresses of the Tread Rubber Block with Slip", 21th Annual Meeting Conference on Tire Science & Technology, Paper No. 2. 2002. 9.
|
8 |
Alfredo, R.V., 1967, Airless Tire, U.S. Patent, US 3,329192.
|
9 |
Kubica, W. and Schmidt, O., 1979, Self-Supporting Motor Vehicle Tire, U.S. Patent, US 4,169,494.
|
10 |
Manesh, A., Terchea, M., Anderson, B., Meliska, B., Ceranski, F, Tension-Based Non-Pneumatic tire, 2008, World Intellectual Property Organization, WO 2008/118983 A1.
|
11 |
Rhyne, T. and Cron, S. M., 2006, "Development of a Non-Pneumatic Wheel", Tire Science and Technology, Vo1. 34, pp. 150-169.
DOI
|
12 |
Gent, A.N, and Walter, J.D. 1985, The Pneumatic tire, National Highway Traffic Safety Administration, Washington DC.
|
13 |
Ju,J., Ananthasayanam, B, Summers, J.D., and Joseph, P., 2010, Design of Cellular Shear Bands of a Non-Pneumatic tire - Investigation of Contact Pressure, SAE International Journal of Passenger Cars - Mechanical Systems, 3(1):598-606.
DOI
|
14 |
J. Ma, J. Ju, J.D. Summers*, and P. Joseph, Effects of Cellular Shear Bands on Interaction between a Non-Pneumatic tire and Sand, In Proceedings of the SAE 2010 World Congress and Exhibition, 10AC-0108, Detroit, MI.
|
15 |
Jaehyung Ju, Balajee Ananthasayanam, Joshua Summers, and Paul Joseph, 2010, "Design of Cellular.
|
16 |
Gough V.E., (1958), "Tyre-To-Ground Contact Stress", Stress Analysis Group Conference on Contact Stress, Vol. 2, No. pp. 126-59.
|
17 |
Cho J.R., Kim K.W., Yoo W.S., and Hong S.I., (2004), "Mesh generation considering detailed tread blocks for reliable 3D tire analysis", Advances in engineering software, Vol. 35, No. pp. 105-113.
DOI
ScienceOn
|
18 |
Manuel J. Fabela-Gallegos, Ricardo Hernandez-Jimemez, Alberto Reyes- Vidales, (2007), "Effect of Load and Inflation Pressure on contact Force and Pressure Distribution for Two Types of Light Duty Truck Tires", Society of Automotive Engineers Inc, Vol. 2146, No. pp. 15-22.
|
19 |
Jeong H.S., Kim N.J., and Kim K.W., (2002), "Tread Shape Optimization for Optimum Contact Pressure", Korea Society of Automotive Engineers, Vol. 5, No. pp. 63-68.
|
20 |
Mohsenimanesh A., Ward S.M., and Gilchrist M.D., (2009), "Stress analysis of a multi-laminated tractor tyre using nonlinear 3D finite element analysis", Materials and Design, Vol. 30, No. pp. 1124-1132.
DOI
ScienceOn
|
21 |
Kim S.H., (2002), "A Comprehensive analytical model for Pneumatic tires", The University of Arizona, Ph.D. Dissertation.
|