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Mechanical properties of wood-derived silicon carbide aluminum-alloy composites as a function of temperature

机译:木材衍生的碳化硅铝合金复合材料的机械性能随温度的变化

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摘要

The mechanical behavior [i.e., stiffness, strength, and toughness (K_(IC))] of SiC Al–Si–Mg metal–ceramic composites (50:50 by volume) was studied at temperatures ranging from 25 to 500 °C. The SiC phase was derived from wood precursors, which resulted in an interconnected anisotropic ceramic that constrained the pressure melt-infiltrated aluminum alloy. The composites were made using SiC derived from two woods (sapele and beech) and were studied in three orthogonal orientations. The mechanical properties and corresponding deformation micromechanisms were different in the longitudinal (LO) and transverse directions, but the influence of the precursor wood was small. The LO behavior was controlled by the rigid SiC preform and the load transfer from the metal to the ceramic. Moduli in this orientation were lower than the Halpin–Tsai predictions due to the nonlinear and nonparallel nature of the Al-filled pores. The LO K_(IC) agreed with the Ashby model for the K_(IC) contribution of ductile inclusions in a brittle ceramic.
机译:在25至500°C的温度范围内研究了SiC Al–Si–Mg金属陶瓷复合材料(体积比为50:50)的力学行为[即,刚度,强度和韧性(K_(IC))]。 SiC相源自木材前体,从而形成相互连接的各向异性陶瓷,从而限制了压力熔体渗入的铝合金。使用源自两种木材(沙比利木和山毛榉)的SiC制成复合材料,并在三个正交方向上进行了研究。在纵向(LO)和横向方向上,力学性能和相应的变形微观机制都不同,但是前体木材的影响很小。 LO行为由刚性SiC预制棒以及从金属到陶瓷的负载转移控制。由于铝填充孔的非线性和非平行性质,该方向上的模量低于Halpin-Tsai的预测。 LO K_(IC)同意Ashby模型对脆性陶瓷中韧性夹杂物的K_(IC)贡献。

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