Thermal Conductivity of AlSi12/Al2O3-Graded Composites Consolidated by Hot Pressing and Spark Plasma Sintering: Experimental Evaluation and Numerical Modeling

放电等离子烧结 材料科学 复合材料 热导率 热压 烧结 等离子体 紧迫的 量子力学 物理
作者
Anil Antony Sequeira,Witold Węglewski,Kamil Bochenek,Thomas Hutsch,Amrita Jain,Thomas Weissgaerber,Michał Basista
出处
期刊:Metallurgical and Materials Transactions [Springer Science+Business Media]
卷期号:55 (9): 3706-3723
标识
DOI:10.1007/s11661-024-07506-5
摘要

Abstract Functionally graded metal matrix composites have attracted the attention of various industries as materials with tailorable properties due to spatially varying composition of constituents. This research work was inspired by an application, such as automotive brake disks, which requires advanced materials with improved wear resistance on the outer surface as combined with effective heat flux dissipation of the graded system. To this end, graded AlSi12/Al 2 O 3 composites (FGMs) with a stepwise gradient in the volume fraction of alumina reinforcement were produced by hot pressing and spark plasma sintering techniques. The thermal conductivities of the individual composite layers and the FGMs were evaluated experimentally and simulated numerically using 3D finite element (FE) models based on micro-computed X-ray tomography (micro-XCT) images of actual AlSi12/Al 2 O 3 microstructures. The numerical models incorporated the effects of porosity of the fabricated AlSi12/Al 2 O 3 composites, thermal resistance, and imperfect interfaces between the AlSi12 matrix and the alumina particles. The obtained experimental data and the results of the numerical models are in good agreement, the relative error being in the range of 4 to 6 pct for different compositions and FGM structure. The predictive capability of the proposed micro-XCT-based FE model suggests that this model can be applied to similar types of composites and different composition gradients.

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