首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >EXPERIMENTAL AND NUMERICAL INVESTIGATION OF ALUMINUM ALLOY PLATES WITH INITIAL CRACK UNDER REPEATED DYNAMIC IMPACT LOADS
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EXPERIMENTAL AND NUMERICAL INVESTIGATION OF ALUMINUM ALLOY PLATES WITH INITIAL CRACK UNDER REPEATED DYNAMIC IMPACT LOADS

机译:反复冲击载荷下带初始裂纹的铝合金板的实验与数值研究。

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Ships and offshore structures are often exposed to various types of repeated impact loads, such as wave slamming, floating ice impacts and ship collisions which will cause large deformation or even fracture. With imperfections due to the process of construction or damage caused by accidents, the load carrying capacity of structures will decrease. This paper investigates the load carrying capacity of aluminum alloy plate with an initial crack under repeated impact loads by means of experiments and numerical simulations. In the experiments, the prepared specimens with crack and without crack are impacted repeatedly up to plate perforation by releasing a hemispherical-headed cylindrical hammer. Numerical simulations are carried out with ABAQUS/Explicit software. The numerical models are built according to the actual experimental conditions. Comparison of the numerical predictions with the experimental results shows reasonable agreement. It is found that aluminum alloy plates under repeated impacts are sensitive to initial cracks. The fracture mode and plastic deformation of aluminum alloy plates can also be affected.
机译:船舶和近海结构经常承受各种类型的重复冲击载荷,例如波浪猛击,浮冰冲击和船舶碰撞,这些碰撞会导致大的变形甚至破裂。由于施工过程的不完善或事故造成的损坏,结构的承载能力将下降。本文通过实验和数值模拟研究了在反复冲击载荷下具有初始裂纹的铝合金板的承载能力。在实验中,通过释放一个半球形的圆柱锤,反复冲击准备好的有裂纹和无裂纹的试样直至板穿孔。数值模拟是使用ABAQUS / Explicit软件进行的。数值模型是根据实际实验条件建立的。数值预测与实验结果的比较表明合理的一致性。发现在反复冲击下的铝合金板对初始裂纹敏感。铝合金板的断裂模式和塑性变形也会受到影响。

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