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Microstructure and Flexural Properties of Z-Pinned Carbon Fiber-Reinforced Aluminum Matrix Composites

机译:Z钉碳纤维增强铝基复合材料的组织和弯曲性能

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Z-pinning can significantly improve the interlaminar shear properties of carbon fiber-reinforced aluminum matrix composites (Cf/Al). However, the effect of the metal z-pin on the in-plane properties of Cf/Al is unclear. This study examines the effect of the z-pin on the flexural strength and failure mechanism of Cf/Al composites with different volume contents and diameters of the z-pins. The introduction of a z-pin leads to the formation of a brittle phase at the z-pin/matrix interface and microstructural damage such as aluminum-rich pockets and carbon fiber waviness, thereby resulting in a reduction of the flexural strength. The three-point flexural test results show that the adding of a metal z-pin results in reducing the Cf/Al composites’ flexural strength by 2–25%. SEM imaging of the fracture surfaces revealed that a higher degree of interfacial reaction led to more cracks on the surface of the z-pin. This crack-susceptible interface layer between the z-pin and the matrix is likely the primary cause of the reduction of the flexural strength.
机译:Z钉扎可以显着改善碳纤维增强铝基复合材料(Cf / Al)的层间剪切性能。然而,金属z-销对Cf / Al的面内特性的影响尚不清楚。本研究探讨了Z钉对Cf / Al复合材料的挠曲强度和破坏机理的影响,Cf / Al复合材料的Z钉的体积含量和直径不同。 z销的引入导致在z销/矩阵界面处形成脆性相,并破坏了微观结构,例如富含铝的凹穴和碳纤维波纹,从而导致弯曲强度降低。三点弯曲试验结果表明,添加金属Z形销会导致Cf / Al复合材料的弯曲强度降低2–25%。断裂表面的SEM图像显示,较高程度的界面反应导致z销表面上出现更多裂纹。 z销和基体之间的裂纹敏感界面层可能是弯曲强度降低的主要原因。

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