Stiffener Design to Maintain Line Heating Efficiency during the Lifting Process Considering Phase Transformation

转化(遗传学) 过程(计算) 直线(几何图形) 相(物质) 材料科学 结构工程 汽车工程 工程类 机械工程 计算机科学 数学 物理 化学 几何学 生物化学 量子力学 基因 操作系统
作者
Hong-Jun Noh,Hun-Bong Lim,Hee-Chan Yoon,Young‐Hwan Han,Hyun-Ik Yang
出处
期刊:Materials [MDPI AG]
卷期号:15 (1): 119-119 被引量:3
标识
DOI:10.3390/ma15010119
摘要

In the shipbuilding industry, welding is the main technique used to join steel structures. There is a lifting process, post-welding, that can eliminate the correction effect of line heating. Line heating is reperformed after the lifting process. This can significantly delay the ship assembly process. Herein, we present a design method for installing a permanent stiffener to avoid the disappearance of the line heating effect during the lifting process. The change in physical properties due to heating and cooling of the line heating is calculated. The limiting stress, at which the effect of the line heating completely disappears, based on the inherent strain theory, is obtained. The phase fraction by the cooling rate is calculated using the continuous cooling transformation diagram and the Kiustinen–Marburgerm equation. Physical properties affected by the phase transformation are calculated, considering the physical properties and fraction of each phase. The square plate theory and superposition principle are used to construct a local model, with a stiffener, of the ship block. The stress caused by the shape of the stiffener and the distance between the stiffeners were calculated for the local model. The calculated stress and the limiting stress were compared to determine, for the expected line heating efficiency, the most acceptable stiffener design. Finally, to confirm the elimination of the problem, the designed stiffener is analyzed using the finite element method.
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