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DEVELOPMENT OF DIAGNOSTICS EVALUATION METHOD FOR SHELL-TO-ANNULAR JOINT OF THE OIL TANK UNDER ULTRA LOW CYCLE FATIGUE

机译:超低循环疲劳下油箱壳-环形接头诊断评价方法的发展

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Since the past decade, diagnostics evaluation method for the oil tank under ultra low cycle fatigue was continuously discussed through several committees in Japan High Pressure Institute (JHPI). It has been supposed that the shell-to-annular joints of the oil tank would suffer from large cyclic plastic strains of several percentages by the effect of bending moments caused by large earthquake. Few studies have been reported about fatigue crack growth estimation for such large plastic strain region. In order to assess the structural integrity of the oil tank, extensive efforts are required to establish the estimation technique of the fracture behaviors and the criterion of maintenance under cyclic plastic strains to prevent or minimize fatal accidents. The JHPI committee aims to establish the Fitness-for-Service procedure for national large oil tank. This paper reports the summary of the activity of the committees toward the establishment of the method to estimate crack growth life under repeated large plastic loading. Crack growth behaviors under large cyclic plastic strains were examined experimentally under both axial loadings and bending loadings of a plate with a surface flaw. A series of three-dimensional FEM analyses was also carried out to obtain J-integral value for shell-to-annular joint with various crack sizes. A diagnostics evaluation method for shell-to-annular joint of the oil tank under supposed large earthquakes were developed by using these results with taking into account of the accompanied various extra phenomena such as new micro-cracks initiation, irregular crack growth due to crack coalescence, crack initiation and growth at the back surface of the specimen, etc.
机译:在过去的十年中,日本高压研究所(JHPI)的多个委员会不断讨论油箱在超低周疲劳下的诊断评估方法。可以认为,由于大地震引起的弯矩的作用,油箱的壳-环形接头会遭受数个百分比的大循环塑性应变。对于如此大的塑性应变区域,关于疲劳裂纹扩展估算的研究很少。为了评估油箱的结构完整性,需要付出大量的努力来建立断裂行为的估算技术和在周期性塑性应变下的维护准则,以防止或减少致命事故的发生。 JHPI委员会旨在为国家大型油罐建立适合服务的程序。本文总结了委员会活动的总结,以建立在反复大塑性载荷下估算裂纹扩展寿命的方法。在具有表面缺陷的板的轴向载荷和弯曲载荷下,通过实验研究了在大循环塑性应变下的裂纹扩展行为。还进行了一系列的三维有限元分析,以获得具有不同裂纹尺寸的壳-环形接头的J积分值。利用这些结果,考虑到伴随的各种额外现象,如新的微裂纹引发,裂纹聚结引起的不规则裂纹扩展,开发了一种在假定的大地震下油箱壳-环形接头的诊断评估方法。 ,试样背面的裂纹萌生和扩展等。

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