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A short-beam shear fracture approach to measure the mode II fracture toughness of materials with preferred interfaces

机译:一种短梁剪切断裂方法,用于测量具有优选界面的材料的II型断裂韧性

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摘要

A short-beam shear fracture approach is developed to characterize the mode II fracture toughness, (K IIC) of materials with preferred interfaces such as wood, fiber composite materials and bonded materials. This approach is easy to implement using the Iosipescu shear fixture and is free of friction between the cracked faces thereby offering a more reasonable value of K IIC than previous methods. Another feature of our new approach is the measurement of accurate crack initiation load due to a clear load drop. Additionally, calibration charts for bonded polymers and composite materials are generated. Finite element analysis along with cohesive elements is used to validate experimental load-displacement curves which are obtained by testing bonded polymers. This new approach is compared with the four-point bending fracture experiment, and the measured fracture toughnessess of the same bonded materials of two kinds of approaches are shown to be close (15–25% difference).
机译:开发了一种短梁剪切断裂方法,以表征具有优选界面的材料(如木材,纤维复合材料和粘结材料)的II型断裂韧性(K IIC )。这种方法使用Iosipescu剪切夹具很容易实现,并且在开裂面之间没有摩擦,因此比以前的方法提供了更合理的K IIC 值。我们的新方法的另一个功能是测量由于明显的载荷下降而产生的准确的裂纹萌生载荷。此外,还会生成粘合聚合物和复合材料的校准图。有限元分析与内聚元一起用于验证通过测试粘结聚合物获得的实验载荷-位移曲线。将该新方法与四点弯曲断裂实验进行了比较,两种方法的相同粘结材料的实测断裂韧性均接近(相差15-25%)。

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