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WELD REPAIR OF SHELL PLATES DURING SEAGOING OPERATIONS

机译:海上作业期间对壳板的焊接修复

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摘要

An algorithm to estimate the cooling rate of welding seams on the shell plating of a ship, below the waterline, while it is on voyage has been derived. The demand for this technique has arisen from the wish of ship operators to make it possible for the safe repair of ship structures without taking them out of operation. The strength of the shell plating after welding is determined by its metallurgic structure, which is dependent on the cooling rate, its chemical composition and the original grain size of the base material. The cooling rate for this type of welding seam depends on the velocity of the water flow, the distance from the bow, the thickness of the plate, and the heat from the heat input of the welding. The algorithm makes it possible to calculate the cooling rate for a base material affected by a forced flow of fluid by means of Rosenthal's equation and thus enabling suitable welding parameters to be determined. As the welding parameters can be chosen to fit the specific repair to be made, it is now possible to determine the suitability of a welding procedure in advance. The algorithm is applicable when determining welding parameters at Hot-Tapping operations as well, where the base material is affected by a forced flow of fluid. A number of experiments have been performed and the results support the theoretical model. The research project continues with the aim of finding an algorithm to include the enhanced cooling rate due to the layer of boiling fluid on the back of the base material. A method to improve the measurements of the most important parameter in the algorithm has been developed and makes it possible to build up a quantitative database of typical values for various configurations.
机译:推导了一种算法,该算法可估算出在航行中水线以下的船壳板上焊缝的冷却速度。对这种技术的需求源于船舶运营商的希望,即可以在不使船舶结构停工的情况下安全地修理船舶结构。焊接后外壳镀层的强度取决于其冶金结构,该结构取决于冷却速率,其化学成分和基材的原始晶粒尺寸。这种类型的焊缝的冷却速度取决于水流​​的速度,与弓的距离,板的厚度以及来自焊接热输入的热量。该算法可以通过Rosenthal方程计算受流体强迫流动影响的基材的冷却速率,从而可以确定合适的焊接参数。由于可以选择焊接参数以适合要进行的特定维修,因此现在可以预先确定焊接程序的适用性。该算法也适用于在热攻操作中确定焊接参数的情况下,在这种情况下,基材会受到流体的强制流动的影响。已经进行了许多实验,结果支持了理论模型。该研究项目的目的是寻找一种算法,该算法包括由于基材背面的沸腾流体层而导致的冷却速度提高。已经开发出一种改进算法中最重要参数的测量值的方法,并使建立各种配置的典型值的定量数据库成为可能。

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