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Effect of Graphene Size and Distribution on Crack Growth of Graphene/Aluminum Matrix Composites
Jiangsu Provincial Key Laboratory of Advanced Food Manufacturing Equipment and Technology, Jiangnan University National Laboratory of Computational Fluid Dynamics, China Aerodynamic Research and Development Center Jiangsu Special Equipment Safety Supervision and Inspection Institute Abstract: Aluminum matrix composite is one of the most important materials in mechanical industry and aerospace engineering due to its light weight and high strength Because of its excellent mechanical properties and high specific surface area, graphene is an ideal reinforcement for metal matrix composites However, the mechanism of the effect of graphene on crack growth in aluminum matrix composites is still unclear, which restricts the design and application of graphene in aluminum matrix composites In this paper, the effect of the size and distribution of graphene on the crack growth in aluminum matrix composites was studied by molecular dynamics simulation. The results showed that when the size of graphene l ≤ 3.35 nm, the sub cracks generated in the tensile process promoted the crack growth. It is worth noting that this promotion effect decreases with the increase of the distance between graphene and the crack. When the graphene size l>3.35 nm, graphene blocks the crack growth and subcrack dislocation slip. In addition, the distribution and angle of graphene can effectively change the crack growth path The results of this study are helpful to understand the role of graphene in the failure of its aluminum matrix composites, and provide some reference for the design of high-performance graphene/aluminum matrix composites
Author:
Jiangsu Provincial Key Laboratory of Advanced Food Manufacturing Equipment and Technology, Jiangnan University National Laboratory of Computational Fluid Dynamics, China Aerodynamic Research and Development Center Jiangsu Special Equipment Safety Supervision and Inspection Institute
Abstract: Aluminum matrix composite is one of the most important materials in mechanical industry and aerospace engineering due to its light weight and high strength Because of its excellent mechanical properties and high specific surface area, graphene is an ideal reinforcement for metal matrix composites However, the mechanism of the effect of graphene on crack growth in aluminum matrix composites is still unclear, which restricts the design and application of graphene in aluminum matrix composites In this paper, the effect of the size and distribution of graphene on the crack growth in aluminum matrix composites was studied by molecular dynamics simulation. The results showed that when the size of graphene l ≤ 3.35 nm, the sub cracks generated in the tensile process promoted the crack growth. It is worth noting that this promotion effect decreases with the increase of the distance between graphene and the crack. When the graphene size l>3.35 nm, graphene blocks the crack growth and subcrack dislocation slip. In addition, the distribution and angle of graphene can effectively change the crack growth path The results of this study are helpful to understand the role of graphene in the failure of its aluminum matrix composites, and provide some reference for the design of high-performance graphene/aluminum matrix composites
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