首页> 外文会议>The 1998 ASME International Mechanical Engineering Congress and Exposition November 15-20, 1998 Anaheim, California >Fatigue-life Prediction of SiC Particulate Reinforced Aluminum Aloy 6061 Matrix Composite Using a Weibull Distribution Model
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Fatigue-life Prediction of SiC Particulate Reinforced Aluminum Aloy 6061 Matrix Composite Using a Weibull Distribution Model

机译:用威布尔分布模型预测SiC颗粒增强铝合金6061基复合材料的疲劳寿命

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This paper presents the feasibility of acoustic emission technique in predicting the residual fatigue life prediction of 6061-T6 aluminum matrix composite reinforced with 15 vol. percent SiC particulates (SiC_p). Fatigue damages corresponding to 40percent, 60percent and 80percent of total fatigue life were stimulated at a cyclic stress amplitude. The specimens with and without fatigue damage were subjected to tensile tests. The acoustic emission activities were monitored during tensile tests. The number of the cumulative AE events increased exponentially with the increase of strain during tensile tests. This exponential increase occurred when the material was in the plastic regime and was attributed mainly to SiC particulate/matrix interface decohesion. The cumulative events duirng post fatigue tensile tests reduced with the decrease of the fatigue residual life. Based on the high cycle fatigue damage accumulation model, a Weibull probability distribution model is developed to explain the post fatigue AE activity of specimens during tensile test. Using the model, the residual fatigue life can be predicted by testing the specimen in tension and monitoring the AE events. In high cycle fatigue, it was observed that the residual tensile strengths of the material did not change significantly with prior cyclic loading damages since the high cycle fatigue life was dominated by the crack initiation phase.
机译:本文介绍了声发射技术在预测15 vol增强的6061-T6铝基复合材料的剩余疲劳寿命预测中的可行性。百分比的SiC颗粒(SiC_p)。在循环应力振幅下,分别刺激了分别占总疲劳寿命40%,60%和80%的疲劳损伤。对具有和不具有疲劳损伤的样品进行拉伸测试。在拉伸试验期间监测声发射活动。在拉伸试验过程中,累积AE事件的数量随应变的增加呈指数增加。当材料处于塑性状态时会发生这种指数增加,这主要归因于SiC颗粒/基体界面的脱粘作用。疲劳拉伸试验后的累积事件随着疲劳剩余寿命的减少而减少。基于高周疲劳损伤累积模型,建立了威布尔概率分布模型来解释拉伸试验过程中样品的疲劳后AE活性。使用该模型,可以通过在张力下测试样本并监视AE事件来预测剩余疲劳寿命。在高周疲劳中,观察到材料的残余拉伸强度不会因先前的循环载荷破坏而显着变化,因为高周疲劳寿命由裂纹萌生阶段决定。

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