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Compressive behaviour of Al-based hybrid composites reinforced with SiC whiskers and SiC nanoparticles

机译:SiC晶须和SiC纳米颗粒增强的Al基混杂复合材料的压缩行为

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摘要

The compressive behavior of (17 vol.%SiCw + 3 vol.%SiCp)/2024Al (W_(17)P_3) hybrid composites and 20vol.%SiCw/2024Al (W_(20)) composites fabricated by squeeze casting was studied in the temperatures range from 298 K to 793 K with the strain rate of 0.01 s~(-1). The peak flow stress of the W_(17)P_3 hybrid composites is higher than that of the W_(20) composites at room temperature and at elevated temperatures, which indicates that the nanoparticle is more effective on the improvement of peak flow stress of the hybrid composites by Orowan strengthen mechanism. Whisker reinforcement is more effectively reinforced the composites as temperature increasing. However, the higher flow stress of the hybrid composite deformed above the solidus is related to the formation of fine subgrains according to Hall-Petch formula. TEM observation indicates that the dynamic recrystallization for the hybrid composites occurs so as to establish the subgrain with 250-300 nm in the hybrid composites.
机译:研究了(17 vol。%SiCw + 3 vol。%SiCp)/ 2024Al(W_(17)P_3)杂化复合材料和20vol。%SiCw / 2024Al(W_(20))复合材料的压缩行为。温度范围为298 K至793 K,应变速率为0.01 s〜(-1)。在室温和升高的温度下,W_(17)P_3杂化复合材料的峰值流应力高于W_(20)复合材料的峰值流应力,这表明纳米粒子在改善杂化材料的峰值流应力方面更有效复合材料是由Orowan加强的机制。随着温度的升高,晶须增强可以更有效地增强复合材料。然而,根据Hall-Petch公式,固相线上方变形的杂化复合材料的较高流动应力与细亚晶粒的形成有关。 TEM观察表明,发生了杂化复合物的动态再结晶,从而在杂化复合物中建立了250-300nm的亚晶粒。

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