缓冲
下降(电信)
跌落试验
跌落冲击
缓冲垫
损害赔偿
材料科学
加速度
计算机科学
环境科学
汽车工程
法律工程学
工艺工程
复合材料
机械工程
工程类
结构工程
政治学
法学
润湿
物理
经典力学
标识
DOI:10.1061/41139(387)472
摘要
In view of the sudden increase in damages encountered in the logistics transportation, drop simulation analysis of sanitary ware packages was carried out in this study by using foam-in-place material as cushioning packaging. By comparing the drops in face, side and corner directions, the impact value, as well as the achieved maximum acceleration was calculated. The results were that the highest absorption takes place during the face drop. The absorbed energy of the cushion differed little from the reducing kinetic energy during the drop process; and the maximum acceleration values of the product in different drop forms were all lower than its inherent value of frailty, indicating that the foam-in-place packaging was fully capable of providing good protection for the product.
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