Fig. 1. Wheel assebly(without tire)
Fig. 2. Fracture surface of bolt
Fig. 3. Schemetic of dynamic radial fatigue test
Fig. 4. Tire tread surface swelling caused by heat
Fig. 5. Shapes of SNCM439 and SCM440 bolts
Fig. 6. Serration length contacting outer rim
Fig. 7. Lock nut deformation method
Fig. 8. Schemetic of Bolt fatigue test
Fig. 9. Tensile load of bolt fatigue test
Table 1. Acceleration Factor(K) and Cycles
Table 2. Chemical components of bolt materials
Table 3. Endurance test results(unit : cycle)
Table 4. Radial fatigue test results of Model 2 bolt(unit : cycle)
References
- K. H. Suh, B. G. Song, H. S. Yoon, "Relative Road Damage Analysis with Driving Modes of a Military Vehicle", Transactions of KSAE, Vol.24, No.2, pp. 225-231, 2016. https://doi.org/10.7467/KSAE.2016.24.2.225
- KS R 4055 : Disk Wheels for Automobiles, 1996.
- G. S. Yu, N. R. Lee, Y. H. Yeo, B. C. Lee, "Accelerated Life Prediction of the Rubber for Combat Boots", Journal of the Korea Academia-Industrial cooperation Society, Vol.16, No.12 pp. 8637-8642, 2015. https://doi.org/10.5762/KAIS.2015.16.12.8637
- KS R 3894 : Road vehicles-Wheels/rims for commercial vehicles-test methods, 2009.
- KS R ISO 3006 : Road vehicles-Passenger car wheels for road use-test methods, 2013.
- S. J. Hong, H. G. Lee, "An Experimental Study of Tire Safety & Economical Efficiency with Respect to Inflation Pressure", Transactions of KSAE, Vol.18, No.1, pp. 8-13, 2010.
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