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On the validity of the J-integral as a measure of the transverse intralaminar fracture energy of glass fiber-reinforced polyurethanes with nonlinear material behavior

机译:关于玻璃纤维增强聚氨酯横坐标间骨折能量的J-Integral的有效性,非线性材料行为

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The determination of the fracture toughness of fiber-reinforced polymers (FRPs) exhibiting significant nonlinear material behavior requires the use of methods that take into account the contribution of nonlinear phenomena on the computation of the crack driving force. While the J-integral method has been standardized (ASTM E1820) and extensively used to quantify the fracture toughness of homogeneous nonlinear materials, its validity to unidirectional FRPs remains uncertain. This work addresses this issue by comparing different methods to quantify the energy dissipation during fracture of glass fiber-reinforced polymers with a nonlinear polyurethane matrix. To this end, the J-integral under mode I transverse intralaminar crack growth is evaluated for the first time by directly computing J versus load-line displacement curves using strain maps obtained around the crack tip with digital image correlation. This direct approach is then compared with 2 established data reduction methods and data obtained from virtual tests to determine the suitability of standardized procedures to quantify the fracture energy of such heterogeneous materials. The results show that the best agreement among the values obtained with the different experimental methods is reached when the initial crack length accounts for 40 to 50% of the specimen's width. Accounting for the experimental uncertainties, the procedure described in the standard ASTM E1820 is suitable to quantify the fracture energy of unidirectional laminates displaying nonlinear mechanical response. (C) 2018 Elsevier Ltd. All rights reserved.
机译:纤维增强聚合物(FRPS)的裂缝韧性的测定需要使用考虑非线性现象对裂纹驱动力计算的贡献的方法。虽然J-Integral方法已经标准化(ASTM E1820)并广泛用于量化均匀非线性材料的断裂韧性,但其对单向FRP的有效性仍然不确定。这项工作通过比较不同方法来解决该问题,以量化玻璃纤维增​​强聚合物与非线性聚氨酯基质的玻璃纤维增​​强聚合物的骨折中的能量耗散。为此,通过使用围绕裂纹尖端围绕数字图像相关的应变映射直接计算j与负载线位移曲线,首次评估横腔内曲线脉冲曲线的J-Integrate10。然后将这种直接方法与来自虚拟测试的2个建立的数据减少方法和数据进行比较,以确定标准化程序的适用性量化这种异质材料的裂缝能量。结果表明,当初始裂缝长度占标本宽度的40%至50%时,达到了用不同实验方法获得的值的最佳协议。占实验性的不确定性,标准ASTM E1820中描述的程序适用于量化显示非线性机械反应的单向层压板的断裂能量。 (c)2018年elestvier有限公司保留所有权利。

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