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The effects of adding silicon carbide SiCp on aluminum alloy and analyzing the fatigue parameters and mechanical properties for metal matrix composites

机译:添加碳化硅SiCp对铝合金的影响以及分析金属基复合材料的疲劳参数和力学性能

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The low cycle fatigue (LCF) resistance of two different metal matrix composite (MMC) of AA6063 with 2% and 8% by volume silicon carbide (SiCp) particles having particulate size of 37 micron (400 mesh) at room temperature condition has been evaluated under fully reversed strain control testing. The influence of volume fraction (2 and 8 vol%) and strain ratio (R= -1) are examined. Increasing the content of SiCp results in the degradation of strain control fatigue properties while the transition fatigue life increases. Fatigued samples are examined using scanning electron microscopy in order to understand the failure mechanism (SEM). Microstructural features and failure mechanisms studied through scanning electron microscopy (SEM) confirmed low cycle fatigue failure nature.
机译:已评估了两种AA6063的两种不同金属基复合材料(MMC)在室温条件下具有2%和8%体积比的碳化硅(SiCp)颗粒的低循环疲劳强度(LCC),颗粒尺寸为37微米(400目)在完全反向应变控制测试下。考察了体积分数(2和8体积%)和应变比(R = -1)的影响。 SiCp含量的增加导致应变控制疲劳性能下降,而过渡疲劳寿命增加。使用扫描电子显微镜检查疲劳样品,以了解其失效机理(SEM)。通过扫描电子显微镜(SEM)研究的微观结构特征和失效机理证实了低周疲劳失效性质。

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