Analysis demonstrates temperature significantly impacts fatigue life prediction in rubber bushings, highlighting model accuracy in durability assessment.
This study investigates a specific powertrain rubber suspension bushing using an N60 rubber material to develop dumbbell‐shaped specimens. Uniaxial tensile fatigue tests were conducted at 23°C, 60°C, and 90°C. Fatigue life prediction models were developed using four damage parameters: peak Green–Lagrange strain ; peak Almansi–Euler strain , peak engineering strain , and peak logarithmic strain . The model based on the Green–Lagrange strain showed the highest fitting accuracy. The study also investigated the impact of elevated temperature on rubber fatigue behavior, including a high‐temperature fatigue test on the bushing. A simulation using ABAQUS replicated actual operating conditions, and results were combined with the fatigue life prediction model. The predicted fatigue life, with the Green–Lagrange strain as the damage parameter, deviated from the experimental value by only 11.92%, demonstrating the model's effectiveness for evaluating durability under high temperature and reducing testing cost and time.
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Wang et al. (2025) studied this question.
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