Abstract

To enhance the vibration-damping performance of orchard transport trailers and reduce the damage rate during fruit transportation, this study constructed a D-level simulation pavement analyzed trailer's vibration-damping system, and optimized design of two types of three-stage vibration-damping transport trailers. The vibration mechanical properties of Fuji apples were experimentally evaluated, revealing a positive correlation between damage rate and vibratior acceleration. By utilizing vibration acceleration as a vibration-damping parameter, Adams software was employed to simulate the trailer's vibration-damping performance. The results demonstrate that the three-stage trailer with rubber vibration-damping pads in the horizontal direction exhibits superior vibration-damping effectiveness compared to existing trailers.

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