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The Friction Between Car Tires and Decks Under Ship Motions

机译:船舶运动下汽车轮胎与甲板之间的摩擦

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摘要

For roll-on/roll-off (RO/RO) ships, when transporting more cars within the same deck area on board, it is necessary to adjust or take away the current lashing system. Furthermore, this operation may also decrease the cost and time of operation as well as cargo damages due to lashing. This requirement, combined with the safety consideration on cargo shifting, may lead to concepts of lashing-free deck design. One of the lashing-free concepts suggests that in some conditions cars can be secured without using lashings, mainly depending on the friction between the tire and the deck without lashings. By doing a series of parametric studies of vehicle securing without lashings under roll and pitch motions, it was found that the value of the maximum required friction coefficient between the tires and the deck is highly relevant to the roll and pitch amplitude, pitch period, orientation of vehicles on decks, and the vertical location of vehicles from the baseline of the vessel.
机译:对于滚装(RO / RO)船,在船上同一甲板区域内运输更多汽车时,有必要调整或拆除当前的绑扎系统。此外,该操作还可以减少操作的成本和时间以及由于绑扎造成的货物损坏。这项要求与货物转移的安全考虑相结合,可能导致无绑扎甲板设计的概念。无绑扎的概念之一表明,在某些情况下,不使用绑扎就可以固定汽车,这主要取决于轮胎与甲板之间没有绑扎的摩擦。通过对在侧倾和俯仰运动下不打滑的车辆固定进行一系列参数研究,发现轮胎与甲板之间所需的最大摩擦系数值与侧倾和俯仰幅度,俯仰周期,方向有关。甲板上车辆的数量以及车辆相对于船舶基线的垂直位置。

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