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Fatigue Strength Assessment of Crack Flaws in Thick High Tensile Steel Plates on Large Ships

机译:大型舰船厚高强度钢板裂纹缺陷的疲劳强度评估

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The sizes of large container ship increased during the past years have accompanied by the use of thicker plate and higher steel grade. The fatigue performance of thick high strength steel plate is a problem which has to be investigated. As an example, the fatigue crack growth of the butt welds at the deck plate of a 8530 TEU container ship has been investigated. Crack growth life predication method in combination with failure assessment diagram (FAD) technology has been used to calculate the fatigue life and the critical crack length. It has been discussed the fatigue sensitivity of the steel grades, the plate thicknesses and the positions of initial defect in thickness direction. The FAD methodology used in this paper is a common approach which has been introduced in various standards, which is practical and useful in fatigue strength assessment of ship structures. Crack tip opening displacement (CTOD) tests of high tensile steel YP40 and VP 47 have been carried out to obtain the fracture toughness, which play an important role in FAD calculation. And the minimum value of the test results is used as the calculated value. It is concluded that the fatigue performance of high strength steels do not increase proportionally with the steel grades and plate thicknesses. The calculation results also have shown that there is significant decrease of fatigue performance along with the increase of plate thickness, and in the same initial conditions, the harmfulness of the near surface defects on structure detail is more serious compared to the embedded defects.
机译:在过去的几年中,大型集装箱船的尺寸增加了,同时使用了更厚的钢板和更高的钢种。厚的高强度钢板的疲劳性能是必须研究的问题。例如,已经研究了8530 TEU集装箱船甲板上对接焊缝的疲劳裂纹扩展。裂纹扩展寿命预测方法结合失效评估图(FAD)技术已被用于计算疲劳寿命和临界裂纹长度。已经讨论了钢种的疲劳敏感性,钢板厚度和厚度方向初始缺陷的位置。本文中使用的FAD方法是一种已在各种标准中引入的通用方法,该方法在评估船舶结构的疲劳强度方面是实用且有用的。为了获得断裂韧性,已经对高强度钢YP40和VP 47进行了裂纹尖端开度位移(CTOD)测试,这在FAD计算中起着重要作用。将测试结果的最小值用作计算值。结论是,高强度钢的疲劳性能不会随钢种和板厚的增加而成比例地增加。计算结果还表明,随着板厚的增加,疲劳性能显着下降,并且在相同的初始条件下,与嵌入式缺陷相比,近表面缺陷对结构细节的危害更为严重。

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