首页> 外文会议>International conference on advanced meterials;ICAM'96 >IN-SITU INVESTIGATION ON THE EVOLUTION OF FAILURE PROCESSES OF A SiCp/2124AI METAL-MATRIX COMPOSITE UNDER TENSILE DEFORMATION
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IN-SITU INVESTIGATION ON THE EVOLUTION OF FAILURE PROCESSES OF A SiCp/2124AI METAL-MATRIX COMPOSITE UNDER TENSILE DEFORMATION

机译:拉伸变形下SiCp / 2124Al金属基复合材料破坏过程演化的原位研究

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Using scanning electron microscope (SEM), in-situ observation was conducted on a metal-matrix composite (MMC, 20wt% SiCp/2124Al) under static tensile deformation at room temperature. The evolution of both micro-damage and macro-fracture is observed. It is found that micro-cracking dominates over the damage processes and interfacial debonding between SiC particales and Al-alloy matrix plays an important role in controlling the whole failure processes. In addition, automatic image analysis on the micrographs shows that the length of micro-cracks tends to follow a stable statistical distribution ranging from 10μm to 50μm after 1.2% strain but opening of micro-crack continues to result in an increase in the porous area of micro-cracks with stress. This damage behavior looks very similar to strain-stress curve. Some insights into the workability can be gained from the present results.
机译:使用扫描电子显微镜(SEM),在室温下在静态拉伸变形下对金属基复合材料(MMC,20wt%SiCp / 2124Al)进行原位观察。观察到了微观损伤和宏观断裂的演变。发现微裂纹在损伤过程中占主导地位,SiC颗粒与铝合金基体之间的界面剥离在控制整个破坏过程中起着重要作用。此外,显微照片上的自动图像分析表明,在1.2%应变后,微裂纹的长度趋于遵循从10μm到50μm的稳定统计分布,但微裂纹的打开继续导致孔的孔隙面积增加。有压力的微裂纹。这种破坏行为看起来与应变-应力曲线非常相似。从目前的结果中可以得出一些关于可加工性的见解。

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