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首页> 外文期刊>Welding International >Effect of toughness distribution in the thickness direction on long brittle crack propagation/arrest behaviour of heavy gauge shipbuilding steel
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Effect of toughness distribution in the thickness direction on long brittle crack propagation/arrest behaviour of heavy gauge shipbuilding steel

机译:韧性分布在厚度方向上对重型造船钢长脆性裂纹传播/捕杀行为的影响

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摘要

Brittle crack arrestability of the heavy gauge steel plates for shipbuilding is now an important issue for the recent mega container ships. In the present work, the brittle crack arrestability of the steel plate with different toughness distributions in thickness is examined in ultra-wide duplex ESSO tests. It is examined whether a running long brittle crack arrests or not in flat temperature condition in ultra-wide duplex ESSO test that are harder mechanical conditions similar to an actual ship hull condition. Test temperatures are selected at which arrest toughness, Kca, evaluated by temperature gradient type standard ESSO test is the same for two test plates. The steel plate with higher toughness in mid-thickness (t/2) than that in quarter thickness (t/4) could arrest a running long brittle crack although the plate with lower toughness in mid-thickness than that in quarter thickness could not arrest it. The typical split-nail shape appeared at the arrested crack front in the plate with higher toughness in mid-thickness than that in quarter thickness. The numerical analyses also demonstrate that the local stress intensity factor at the arrested crack tip is changing sensitively to the crack front shape. It suggests that the higher brittle crack arrestability appears due to the split-nail shape of the arrested crack front enhanced by the inhomogeneous toughness in thickness.
机译:船舶钢板钢板的脆性裂纹抑制性现在是最近的大型集装箱船舶的重要问题。在本作工作中,在超广泛的双相索引试验中检查厚度不同的韧性分布的钢板的脆性裂缝阻止。检查是否在超宽双工索诺试验中进行平坦温度条件的运行长脆性裂缝,这是较难的机械条件,类似于实际的船体情况。选择试验温度在该试板的温度梯度型标准ESSO试验中捕获韧性KCA,对于两个测试板相同。中厚度(T / 2)具有较高韧性(T / 2)的钢板可以捕获运行的长脆性裂缝,尽管板中厚的韧性较低而不是四分之一厚度无法逮捕它。典型的分裂钉形状在板中的被动裂缝前面出现,在中间厚度的韧性较高而不是四分之一厚度。数值分析还表明,被动裂纹尖端处的局部应力强度因子敏感地改变为裂缝前形状。它表明,由于厚度的不均匀韧性增强了被动裂缝前部的分裂钉形状,出现了较高的脆性裂纹衰退。

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