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Effects of Different Heat Treatment on Microstructure, Mechanical and Conductive Properties of Continuous Rheo-Extruded Al-0.9Si-0.6Mg (wt%) Alloy

机译:不同热处理对连续流变挤压Al-0.9Si-0.6Mg(wt%)合金的组织,力学和导电性能的影响

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摘要

Al-0.9Si-0.6Mg (wt%) alloy conductive wires were designed and produced by continuous rheo-extrusion process. The effects of different heat treatment on microstructure, mechanical and conductive properties of the wires were studied. Results show that, after T6 heat treatment, conductive property of the alloy increased while elongation decreased with the higher aging temperature and longer aging time. After T8 and T9 heat treatment, acicular strengthening phase β''-Mg2Si homogeneously precipitated, which effectively improved mechanical and conductive property of the alloy. The tensile strength, elongation and resistivity of T8 heat treated alloy reached 336 MPa, 13.7% and 29.3 nΩm respectively. After T9 heat treatment, the alloy’s tensile strength, elongation and resistivity was 338 MPa, 6.0% and 30.2 nΩ·m respectively.
机译:通过连续流变挤压工艺设计生产了Al-0.9Si-0.6Mg(wt%)合金导线。研究了不同热处理对金属丝组织,力学性能和导电性能的影响。结果表明,T6热处理后,随着时效温度的升高和时效时间的延长,合金的导电性能提高,而伸长率降低。经过T8和T9热处理后,针状强化相β''-Mg 2 Si均匀析出,有效提高了合金的力学性能和导电性能。 T8热处理合金的拉伸强度,伸长率和电阻率分别达到336 MPa,13.7%和29.3nΩm。 T9热处理后,合金的拉伸强度,伸长率和电阻率分别为338 MPa,6.0%和30.2nΩ·m。

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