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Modification of microstructure and mechanical property of hypereutectic Al-Si alloy by laser surface remelting

机译:激光表面重熔的过度晶体合金微观结构和力学性能改性

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摘要

Co_2 laser irradiation has been applied to modify the surface of hypereutectic aluminum (Al-23 mass percent Si, M-30 mass percent Si) cast alloys. Laser beam, 3 mm in diameter, was irradiated on the alloy surface by moving them with constant velocity (5 mm/s) with beam oscillation of 5 mm in width and 100 Hz in frequency perpendicular to travel direction at 2.3 kW laser power. A part of alloy surface was partially remelted by laser irradiation. After laser beam passed, it was naturally quenched because stored heat was absorbed in specimen. The microstructure of the surface remelted layer consists of primary Si particle, primary #alpha# phase and #alpha#-Si eutectic phase. These all were very fine. The mean diameter of primary Si was about 12 #mu#m at Al-30 mass percent Si. The tensile strength of the surface remelted layer was 254-264 MPa, which was improved to about 1.8 times as that of as-cast material. In dry sliding wear against a steel counter surface, the wear resistance of the surface remelted layer was improved to 1.5-3.0 times as that of as-cast material.
机译:已施加CO_2激光辐射以改变过度化铝的表面(Al-23质量%Si,M-30质量%Si)铸造合金。通过在恒定速度(5mm / s)上通过恒定速度(5mm / s)在合金表面上照射激光束,直径为3mm,在宽度为5mm,垂直于行进方向的频率为5mm,垂直于2.3 kW激光功率。通过激光照射部分重新熔化合金表面的一部分。激光束通过后,它自然淬火,因为储存的热量在样品中被吸收。表面重熔层的微观结构由初级Si颗粒,初级#α#相和#α#-Si共晶相组成。这些都非常好。原发性Si的平均直径为Al-30质量%Si的约12#mu #m。表面重熔层的拉伸强度为254-264MPa,其提高至铸造材料的约1.8倍。在对钢反应面的干滑动磨损中,表面重熔层的耐磨性提高至铸造材料的1.5-3.0倍。

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