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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Prediction of creep rupture in unidirectional composite: Creep rupture model with interfacial debonding and its propagation
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Prediction of creep rupture in unidirectional composite: Creep rupture model with interfacial debonding and its propagation

机译:单向复合材料蠕变破裂的预测:具有界面剥离的蠕变破裂模型及其传播

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摘要

This paper describes a creep rupture model that takes into account the interfacial debonding and its propagation around broken fibers in unidirectional fiber-reinforced polymers. The interfacial debonding is accompanied by fiber breaks under a longitudinal tensile load. and the, interfacial debonding length depends oil both the fiber stress at the moment of the fiber breaks and the properties of the interfacial adhesion. In this paper, the interfacial debonding length, its propagation as a function of time. the probability of fiber breaks and an interfacial shear Stress are investigated by fragmentation tests with a single glass fiber embedded in each vinylester resin specimen. Subsequently, it was found that a relationship between the fiber strength and the. fiber effective length, the length of the debonding length and stress recovery length subtracted from from fiber length, was log linear, and that the larger the fiber stress, the longer was the interfacial debonding length. Next, creep tests were performed to investigate the creep constants of the vinylester resin. and interfacial debonding propagation tests were also performed to identify the interfacial debonding-propagation behavior as a function of time using single fiber composites subjected to constant strains. We modified the creep rupture model by taking into account the interfacial debonding length, which has a time-dependent characteristic. into a conventional Curtin-McLean creep rupture. model. It was found that the predicted creep rupture time of the modified model was shorter than that of the conventional model and that there was no threshold creep stress in the modified model unlike in the, conventional model because the interfacial debonding propagation makes the prediction creep rupture time lower as time progresses.
机译:本文描述了一种蠕变断裂模型,该模型考虑了界面剥离作用及其在单向纤维增强聚合物中在断裂纤维周围的传播。界面剥离在纵向拉伸载荷下伴随纤维断裂。并且,界面剥离长度取决于油在纤维断裂时的纤维应力和界面粘合性。在本文中,界面剥离长度,其传播随时间变化。通过碎裂试验研究了纤维断裂的可能性和界面剪切应力,其中每个乙烯基酯树脂样品中都嵌有一根玻璃纤维。随后,发现纤维强度与纤维强度之间的关系。纤维有效长度,从纤维长度中减去的剥离长度和应力恢复长度的长度呈对数线性,纤维应力越大,界面剥离长度越长。接下来,进行蠕变测试以研究乙烯基酯树脂的蠕变常数。使用单纤维复合材料承受恒定应变,还进行了界面剥离粘结扩展测试,以识别界面剥离粘合扩展行为随时间的变化。我们通过考虑界面剥离长度来修改蠕变断裂模型,该模型具有时间依赖性。变成常规的Curtin-McLean蠕变破裂。模型。发现改进模型的预测蠕变破裂时间比常规模型短,并且与常规模型不同,在改进模型中没有阈值蠕变应力,因为界面脱粘传播使得预测蠕变破裂时间随着时间的推移降低。

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