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Comparison of methods to determine CTOD for SENB specimens in different strain hardening steels

机译:不同应变硬化钢中SENB试样的CTOD测定方法的比较

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摘要

Methods for determining crack tip opening displacement (CTOD) given in national and international standards are compared for steels with a range of strain hardening characteristics. Crack tip opening displacement measurements were made from single-edge notched bend notches using a silicone rubber casting method. The finite element model produced good agreements with predictions of these CTOD measurements. The versatility of the finite element model enabled CTOD from the original crack tip and the 45° intercept method to be compared. The 45° CTOD generally underestimates the original crack tip CTOD, and is less useful for conditions with stable crack extension. Apart from the high strain hardening material, CTOD calculated using BS 7448-1, WES 1108 (JWES), and ASTM E1820 was slightly lower than the values determined from silicone measurements and modelling, which is conservative. ASTM E1820 gave the largest underestimation of CTOD, whilst BS 7448-1 may be unsuitable for higher strain hardening steels, where the standard predicts higher CTOD than measured from the replica. JWES gives the most consistent estimation of CTOD for steels with a wide range of strain hardening values.
机译:比较了具有一系列应变硬化特性的钢在国家和国际标准中给出的确定裂纹尖端开口位移(CTOD)的方法。裂纹尖端开口位移的测量是使用硅橡胶铸造法从单边凹口弯曲弯口进行的。有限元模型与这些CTOD测量值的预测产生了良好的一致性。有限元模型的多功能性使原始裂纹尖端的CTOD和45°截距方法得以比较。 45°CTOD通常会低估原始裂纹尖端的CTOD,并且在裂纹扩展稳定的条件下不太有用。除了高应变硬化材料外,使用BS 7448-1,WES 1108(JWES)和ASTM E1820计算得出的CTOD值也比通过硅酮测量和建模确定的值略低,这是保守的。 ASTM E1820给出了CTOD的最大低估,而BS 7448-1可能不适用于更高应变硬化的钢,其中标准预测的CTOD高于复制品中的CTOD。对于具有广泛应变硬化值的钢,JWES给出了最一致的CTOD估计。

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