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Effects of T6 Treatment Tensile Temperature and Mass Fraction of SiC on the Mechanical Properties of SiCp/6061Al Composites

机译:T6处理SiC拉伸温度和质量分数对SiCp / 6061Al复合材料力学性能的影响

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摘要

SiCp/6061Al composites have been developed and widely applied in many fields, such as automobile, aerospace, shipping, and so on. Considering heat treatment, service environment, and strength of composites, this paper comprehensively studies the mechanical properties of SiCp/6061Al composites with a large range of SiC mass fractions under T6 treatments and different tensile temperatures. SiCp/6061Al composites were successfully prepared by hot press sintering at various SiC mass fractions (0–30%), and the influences of SiC concentration and T6 treatment on the mechanical properties of composites were characterized via tensile tests at room temperature, 100, and 200 °C. Microstructure and fracture surfaces of composites with various SiC concentrations were further analyzed by optical microscope and SEM. The formula for the biggest critical reinforcement concentration for the saturated distribution of SiC is proposed to reveal the strengthening rule of different SiC concentrations. Results show that the effect of T6 treatment on the mechanical properties of composites is a marked increase in tensile strength and an obvious decrease in elongation. The increase in the SiC mass fraction, except at 30%, is able to bring an increase in tensile strength and a decrease in elongation, and the change of the elongation is insignification in T6-treated specimens. The tensile strength of T6-treated specimens decreases as temperature increases, and the composite has a maximum elongation at 100 °C.
机译:SiCp / 6061Al复合材料已被开发并广泛应用于许多领域,例如汽车,航空航天,航运等。考虑到热处理,使用环境和复合材料的强度,本文对T6处理和不同拉伸温度下具有较大SiC质量分数的SiCp / 6061Al复合材料的力学性能进行了综合研究。 SiCp / 6061Al复合材料是通过在各种SiC质量分数(0-30%)下热压烧结成功制备的,并通过在室温,100和100℃下的拉伸试验表征了SiC浓度和T6处理对复合材料力学性能的影响。 200℃。用光学显微镜和SEM进一步分析了不同SiC含量的复合材料的显微组织和断裂表面。提出了SiC饱和分布的最大临界补强浓度公式,揭示了不同SiC浓度下的补强规律。结果表明,T6处理对复合材料力学性能的影响是抗拉强度的显着提高和伸长率的明显降低。 SiC质量分数的增加(除30%以外)能够带来拉伸强度的增加和伸长率的降低,并且在T6处理的样品中伸长率的变化不明显。经T6处理的试样的拉伸强度随温度的升高而降低,并且该复合材料在100°C时具有最大伸长率。

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