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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of nano-sized ceramic particles on the coefficients of thermal expansion of short SiC fiber-aluminum hybrid composites
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Effects of nano-sized ceramic particles on the coefficients of thermal expansion of short SiC fiber-aluminum hybrid composites

机译:纳米尺寸陶瓷颗粒对短SiC纤维 - 铝杂交复合材料热膨胀系数的影响

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摘要

Coefficients of thermal expansion (CTE) for short SiC fiber-reinforced aluminum matrix hybrid composites (AMHCs) containing nano-sized SiC particles are predicted through a novel multi-step micro-mechanics approach. The thermo-mechanical properties of aluminum matrix filled with SiC nanoparticles are extracted utilizing an analytical micromechanics model as a first step. These effective properties are then used in the Mori-Tanaka method to obtain the effective CTEs of AMHCs. The modeling of nanoparticle agglomeration often formed in real engineering situations, is accomplished using a nested method. The predictions of the developed micromechanical model are compared to experimental measurements available in the literature, and an acceptable agreement is observed between them. The effects of the volume fraction, diameter and agglomerated degree of SiC nanoparticles, and also the volume fraction and aspect ratio of SiC short fibers on the AMHC CTEs are investigated. In addition to randomly oriented fiber-reinforced AMHCs, modeling of the effective CTEs of aligned short fiber-reinforced AMHCs is performed. The results reveal that addition of nano-sized SiC particles reduces the CTE of short SiC-fiber-reinforced AMHCs. The decrease of particle size and increase of fiber aspect ratio also assist in improving the overall thermo-elastic properties of AMHCs. However, the presence of the ceramic nanoparticle agglomeration leads to increase the AMHC CTEs. According to the micromechanical analysis, it is found that the alignment of short fibers is an efficient method to reduce the AMHC CTEs. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过新的多步微型机械方法预测含有纳米尺寸SiC颗粒的短SiC纤维增强铝基质杂种复合材料(AMHC)的热膨胀系数(AMHC)。填充有SiC纳米颗粒的铝基质的热力学性能用分析微机械模型提取作为第一步。然后在Mori-Tanaka方法中使用这些有效性质以获得AMHC的有效CTE。使用嵌套方法完成通常在实际工程情况下形成的纳米颗粒集聚的建模。将开发的微机械模型的预测与文献中可用的实验测量进行比较,并且在它们之间观察到可接受的协议。研究了SiC纳米颗粒的体积分数,直径和附聚度,以及SiC短纤维的体积分数和AMHC CTES上的体积分数和纵横比。除了随机取向的纤维增强AMHC之外,还进行对准的短纤维增强AMHC的有效CTE的建模。结果表明,添加纳米SiC颗粒的添加降低了短SiC纤维增强AMHC的CTE。粒度的降低和纤维纵横比的增加也有助于改善AMHC的总热弹性。然而,陶瓷纳米颗粒附聚的存在导致增加AMHC CTES。根据微机械分析,发现短纤维的对准是减少AMHC CTE的有效方法。 (c)2019 Elsevier B.v.保留所有权利。

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