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Fatigue Fracture Model for Weak Fiber/Matrix Interface Composite within Three Point Bending Test

机译:三点弯曲试验中弱纤维/矩阵界面复合材料的疲劳裂缝模型

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The model of fiber/matrix interface degradation due to abrasive wear of fiber/matrix contact surfaces is presented. This model explains weak interface composites low cycle fatigue effect and cycle to cycle creep rate increase. The authors consider the results of experiments series carried out at the Institute of Solid State Physics located at Chernogolovka town. During this experiments series some weak interface nickel-oxide composite samples were subjected to a cyclic load in the course of a three point bending test and the samples central point set displacement rate was registered. Then there was created a fiber-matrix interface cyclic degradation model. The authors compared their theoretical assumptions to experimental data (for reference kindly see the below calculations) and evaluated low cycle fatigue influence on composite fracture.
机译:提出了由于纤维/基质接触表面的研磨磨损引起的纤维/矩阵界面劣化模型。该模型解释了薄弱的界面复合材料低周期疲劳效果和循环循环蠕变率增加。作者考虑了位于Chernogolovka镇的固态物理研究所进行了实验系列的结果。在该实验期间,在三点弯曲试验过程中,将一些弱界面镍氧化物复合材料进行循环载荷,并注册了样品中央点设定位移率。然后创建了一种光纤矩阵界面循环劣化模型。作者将其理论假设与实验数据进行了比较(参考,请参阅以下计算),并评估对复合骨折的低循环疲劳影响。

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