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首页> 外文期刊>Materials & design >The effect of notch depth on J-integral and critical fracture load in plates made of functionally graded aluminum-silicone carbide composite with U-notches under bending
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The effect of notch depth on J-integral and critical fracture load in plates made of functionally graded aluminum-silicone carbide composite with U-notches under bending

机译:缺口深度对功能梯度铝型碳化硅复合材料弯曲时U形缺口板的J积分和临界断裂载荷的影响

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摘要

The present paper deals with the effect of notch depth on J-integral and critical fracture load in a plate made of functionally graded aluminum-silicone carbide composite (Al-SiC) with U-notch under bending. The weight fraction of SiC particles varies from 0% to 20% through the specimen width. Using three criteria namely mean stress (MS), point stress (PS), and averaged strain-energy density (ASED), the critical fracture load has been predicted and its variation with respect to the notch depth has been studied. A comparison of the J-integral between functionally graded and homogeneous Al-SiC composite were made, where the notch tip in the functionally graded material is situated in a layer with same mechanical properties as the homogeneous composite. The results indicated that in the case where the notch scene is toward brittleness increment the critical J-integral in functionally graded material (FGM) is larger than that of in homogeneous material with the same mechanical properties at the notch tip. Therefore, FGM is more convenient than homogeneous material against fracture.
机译:本文研究了在弯曲下具有U型缺口的功能梯度铝-碳化硅复合材料(Al-SiC)制成的板中,缺口深度对J积分和临界断裂载荷的影响。整个样品宽度中,SiC颗粒的重量分数在0%到20%之间变化。使用平均应力(MS),点应力(PS)和平均应变能密度(ASED)这三个标准,可以预测临界断裂载荷,并研究其相对于切口深度的变化。比较了功能梯度材料和均质Al-SiC复合材料的J积分,其中功能梯度材料中的缺口尖端位于与均质复合材料具有相同机械性能的层中。结果表明,在缺口趋于脆性增加的情况下,功能梯度材料(FGM)中的临界J积分大于缺口尖端处具有相同机械性能的均质材料的临界J积分。因此,FGM比均质材料更容易断裂。

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