首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >EXPERIMENTAL STUDY ON CRACK PROPAGATION AND STRAIN ACCUMULATION OF CRACKED STIFFENED PLATE UNDER CYCLIC LOAD
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EXPERIMENTAL STUDY ON CRACK PROPAGATION AND STRAIN ACCUMULATION OF CRACKED STIFFENED PLATE UNDER CYCLIC LOAD

机译:循环载荷下裂纹加强板裂纹传播和应变累积的实验研究

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Stiffened plates with cracked damage are often subjected to constant amplitude and/or variable amplitude cyclic loads in sea environment. Under the stress-controlled asymmetric low-cycle fatigue loads, the coupling effect of low-cycle fatigue crack propagation and accumulative plasticity contributes to the increase of accumulative mean strain of cracked structures. Low-cycle fatigue crack growth and the increase of whole strain of cracked structures will change the bearing capacity of cracked structures. In this paper, experimental study on crack propagation and strain accumulation of cracked stiffened plate under low cycle fatigue load has been conducted. AH32 steel is used to make stiffened plate specimen with crack symmetrically located about stiffener. The accumulative strain of the cracked stiffened plate specimens during low-cycle fatigue crack propagation was obtained. From the experiments for cracked stiffened plates under the low-cycle fatigue loading, it is found out that the crack propagates firstly in the weld and then also gradually takes place in the stiffener. The stress ratio of low-cycle fatigue load and stiffener stiffness have been investigated in the experimental study and it is found out that these parameters significantly affect the low-cycle fatigue crack growth life and accumulation strain of the cracked stiffened plate specimens.
机译:具有裂纹损坏的加强板通常经受海洋环境中恒定幅度和/或可变幅度循环载荷。在应力控制的不对称低循环疲劳负载下,低周期疲劳裂纹裂纹传播和累积塑性的耦合效果有助于增加裂缝结构的累积平均菌株的增加。低周期疲劳裂纹生长和整个裂缝结构菌株的增加将改变裂纹结构的承载力。本文进行了低循环疲劳负荷下裂纹加强板裂纹传播和应变累积的实验研究。 AH32钢用于制造加强板试样,其裂缝对称位于加强件。得到了在低循环疲劳裂纹膨胀期间裂化的加强板样本的累积菌株。从低循环疲劳负载下裂化加强板的实验,发现裂缝首先在焊缝中传播,然后也逐渐发生在加强件中。在实验研究中已经研究了低循环疲劳载荷和加强筋刚度的应力比,并发现这些参数显着影响裂纹加强板标本的低周疲劳裂纹生长寿命和累积应变。

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