会议论文详细信息
7th National Conference on Processing and Characterization of Materials
Effect of alumina on grain refinement of Al-Si hypereutectic alloys
Majhi, J.^1 ; Sahoo, S.K.^1 ; Patnaik, S.C.^1 ; Sarangi, B.^1 ; Sachan, N.K.^1
Metallurgical and Materials Engineering, IGIT, Sarang, Odisha
759146, India^1
关键词: Al Si hypereutectic alloy;    Dry sliding wear test;    Hypereutectic Al-Si alloys;    Interfacial bonding;    Pouring temperatures;    Sliding velocities;    Specific wear rates;    Varying parameters;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/338/1/012048/pdf
DOI  :  10.1088/1757-899X/338/1/012048
来源: IOP
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【 摘 要 】

The size, volume fraction and distribution of primary as well as eutectic silicon affect the mechanical properties of the Al-Si hypereutectic alloys. It is very difficult for the simultaneous refinement and modification of primary and secondary Si particles in hypereutectic Al-Si alloys through traditional processes. This paper explores the role of γ-Al2O3nanoparticles on Si particles in the course of solidification in hypereutectic Al-Si alloys at particular pouring temperature. The present study involves incorporation of varying contents dispersed γ-Al2O3nanoparticles into a molten base metal during stir casting and followed by solidification. It has been reported that the synthesized composites having good interfacial bonding (wetting) between the dispersed phase and the liquid matrix was achieved in order to provide improved mechanical properties of the composite. The cast product of hypereutectic Al-16Si alloy with the reinforcement of nanoparticles, illustrated a significant improvement in both wear behaviour and hardness. The dry sliding wear test has been performed on a group of specimens with varying parameters (different loads and sliding velocities) in a pin on disc wear testing machine. Moreover, the wear rate and specific wear rate also affected in different load and different sliding velocities. However in XRD analysis of the samples, the enhancement of wear resistance as well as hardness was due to the formation of brittle phases like SiO2, Al2O3and Al-rich intermetallic compounds. The hardness value of the materials increases nearly 6% in addition to increase in the density of only 0.8%. As per literature, the large plate eutectic Si particles were modified in to the fine core particles and it acquires enough potential for various applications.

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