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Failure mechanism of epoxy polymer: transition from ductile to brittle failure

机译:环氧聚合物的破坏机理:从韧性破坏到脆性破坏的转变

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The failure processes of an epoxy polymer (Epicote 21506) were studied by using a high speed camera evolving over a range of strain rates from 0.0001s~(-1) to 668s~(-1). The front surface of the specimen was monitored by the high speed camera to capture the deformation and cracking processes. A split Hopkinson pressure bar (SHPB) was utilized to examine the dynamic response of the material, and the uniaxial compression test was applied for its quasi-static behavior. The microstructure of the specimen fracture surface after quasi-static and dynamic compression was also investigated by using a Scanning Electron Microscope (SEM) to look insight into the failure mechanism of the material. With the coupled analysis of stress-strain curves and captured images, the behaviors of the specimen under static and dynamic loading can be determined precisely with sufficient details. The specimen under static loading displayed ductile failure, while that under dynamic loading revealed different brittle damage behaviors.
机译:利用高速相机研究了应变速率从0.0001s〜(-1)到668s〜(-1)的环氧聚合物(Epicote 21506)的破坏过程。样品的前表面由高速照相机监控,以捕获变形和破裂过程。使用裂合式霍普金森压力棒(SHPB)来检查材料的动力响应,并对其单静态压缩性能进行单轴压缩测试。还使用扫描电子显微镜(SEM)研究了准静态和动态压缩后的试样断裂表面的微观结构,以了解材料的破坏机理。通过对应力-应变曲线和捕获的图像进行耦合分析,可以充分详细地确定样品在静态和动态载荷下的行为。静态载荷下的试样表现出韧性破坏,而动态载荷下的试样表现出不同的脆性破坏行为。

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