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Reexamination of the edge crack torsion test for determining the mode III delamination toughness of laminated composites

机译:确定边缘裂纹扭转试验,用于确定层压复合材料的模式III分层韧性

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The edge crack torsion (ECT) test is reexamined to address two primary concerns with this method. The first of these relates to inconsistencies in the data reduction procedure that was originally proposed and is most commonly used to compute the mode III interlaminar fracture toughness, G(IIIc), from the experimental data. The second relates to the observation that plies neighboring the preimplanted insert in the standard ECT layup are unable to contain initiation and growth of intralaminar cracks, and that growth of these cracks contributes to errors in the apparent values of G(IIIc). To address these issues, an alternative data reduction technique, which uses a polynomial expression to represent the ECT specimen's compliance versus crack length relation, is proposed. The accuracy and potential drawbacks of this expression are investigated using FE simulations. Next, seven groups of ECT specimens are fabricated and tested. Each of these groups contains specimens with preimplanted inserts that are bounded by plies at different +theta and -theta orientations. The seven groups consist of values of theta that vary from 0 degrees to 90 degrees in 15 degrees increments. Tests on these specimens show that intralaminar cracking occurs in specimens from all batches except those for which theta equals 15 degrees or 30 degrees. However, values of G(IIIc) measured using specimens with these two ply orientations were not equal and, for theta = 30 degrees, the values of G(IIIc) that were obtained were not completely independent of initial starter crack length. Potential issues accounting for these observations and other challenges associated with measuring G(IIIc) using the ECT test are discussed.
机译:边缘裂纹扭转(ECT)测试重新审视以解决这种方法的两个主要问题。其中的第一个涉及最初提出的数据减少程序中的不一致性,并且最常用于从实验数据中计算III层间裂缝韧性G(iiic)。第二个涉及观察结果,其相邻的预扇形插入在标准ECT叠层中的帘布不含有腔内裂缝的开始和生长,并且这些裂缝的生长有助于G(iiic)的表观值中的误差。为了解决这些问题,提出了一种使用多项式表达式来表示ECT标本对裂缝长度关系的替代数据减少技术。使用FE模拟研究该表达的准确性和潜在缺点。接下来,制造和测试七组被制造的标本。这些基团中的每一个包含具有预体插入物的标本,其被不同+θ和-theta取向的层界定。七组由θ的值包括在0度到15度的增量0度到90度。对这些样本的测试表明,除了θ等于15度或30度的所有批次的标本中,胰鸡胸腔开裂会发生。然而,使用具有这两个帘布层取向的样品测量的G(IIIC)的值不等于,对于θ= 30度,所获得的G(iiic)的值并不完全独立于初始启动裂缝长度。讨论了核算这些观察结果的潜在问题以及使用ECT测试测量的G(iiic)相关的其他挑战。

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