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Study on Microstructure and Mechanical Properties of the Al-25Cr-5Si (at%) Alloy Powder Using Gas-Atomization and SPS Process

期刊

METALS AND MATERIALS INTERNATIONAL
卷 27, 期 7, 页码 2014-2022

出版社

KOREAN INST METALS MATERIALS
DOI: 10.1007/s12540-020-00674-0

关键词

Gas-atomization; Powder; Al-Cr-Si alloy; Spark plasma sintering (SPS); Microstructure; Mechanical properties

资金

  1. Korea Institute of Industrial Technology-Production Technology Industry Leading Core Technology Development Project [KITECH EO-20-0009]

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In this study, Al-25Cr-5Si alloy powder was prepared using gas atomization and densified via spark plasma sintering process. The alloy powder showed enhanced compressive strength and hardness compared to the mixed powder, and maintained its alloy phase even at high temperatures. The improvement in mechanical properties is attributed to the sintering process of AlCrSi, Al13Cr4Si4, and Al8Cr5 phases.
In order to investigate the microstructure and mechanical properties on Al-25Cr-5Si (at%) alloy, a mixed powder with pure elements and an alloy powder using a gas atomization process were used. Fine and high purity Al-25Cr-5Si (at%) alloy powder was successfully prepared by gas atomization and densified using a spark plasma sintering (SPS) process. The overall powder size distribution of the mixed Al, Cr, and Si elemental powders was in the range of 10-15 mu m. The atomized Al-Cr-Si alloy powder was fine and spherical in morphology and difficult to be formed by intermetallic formation. Densification was clearly confirmed at 1000 degrees C, with almost isolated pores formed, by clear removal of pores between particles, deformation of particles, an increase in the number of contacts, and a change in size between particles. As a result of XRD analysis of the sintered compacts, single phase was observed using the mixed powder, but the compact using gas atomization remained the alloy phase even at the process temperature. The Vickers hardness of the compacts by mixed powder was observed at 59.70 Hv and the compact using gas atomized powders on the temperature 1000 degrees C of the Vickers hardness increased to 702.6 Hv. The compressive yield strength of the compact with mixed powder was 195.24 MPa and the compressive strength of the compact with gas atomized powder increased to 802.07 MPa. It is considered not to be decomposed by the AlCrSi, Al13Cr4Si4 and Al8Cr5 phases sintering process, resulting from the improvement of mechanical properties.

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