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Thermal expansion behaviour of squeeze-cast aluminium matrix composites reinforced with PAN- and Pitch-based carbon fibres

机译:用泛沥青碳纤维增强挤压铝基基复合材料的热膨胀行为

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摘要

Aluminium composites reinforced with the PAN-and pitch-based short carbon fibres were fabricated by squeeze casting, then the thermal expansion behaviour of the composites was investigated. Optical microscopy revealed that the fibres were in a random arrangement on the plane parallel to the pressed plane during the melt infiltration process. TEM observation and hardness test revealed that the PAN-based fibre bonds strongly with the aluminium matrix while the pitch-based fibre bonds poorly. The difference in the bonding strength affected the thermal strain response; the heating and cooling curve approximately traced the same paths during the heating-cooling cycles for the PAN-based fibre composite, while the curve did not trace the same path for the pitch-based fibre composite. The fibre-reinforcement decreased the coefficient of the thermal expansion (CTE) of matrices in the direction parallel to the pressed plane. For example, the CTE of the pure aluminium and its composite at 333 K were 23.0 and 19.0 x 10(-6)/K, respectively.
机译:通过挤压铸造制造铝合金复合材料,通过挤压铸造制造了基于锅和俯仰的短碳纤维,然后研究了复合材料的热膨胀行为。光学显微镜显示,在熔体渗透过程中,纤维在平行于压制平面的平面上的随机布置。 TEM观察和硬度测试显示,泛的纤维与铝基质强烈键合,而沥青基纤维键差。粘接强度的差异影响了热应变响应;加热和冷却曲线在加热冷却循环中大致跟踪了泛基纤维复合材料的加热冷却循环,而曲线没有追踪基于沥青基纤维复合材料的相同路径。纤维增强件在平行于压制平面的方向上降低了矩阵的热膨胀(CTE)的系数。例如,纯铝的CTE及其在333k的复合材料分别为23.0和19.0×10(-6)/ k。

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