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Effects of casting and heat treatment processes on the thermal conductivity of an Al-Si-Cu-Fe-Zn alloy

机译:铸造和热处理工艺对Al-Si-Cu-Fe-Zn合金导热系数的影响

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摘要

In this study, the effects of casting processes and heat treatments on the thermal conductivity of an Al-10 wt% Si-0.6 wt% Cu-0.9 wt% Fe-0.7 wt% Zn aluminum alloy were studied. Both gravity- and die-casting processes were used. The porosity in die castings was controlled by varying the injection pressure and plunger velocity. The porosity, microstructures, and thermal and electrical conductivities of the die castings were characterized. The thermal conductivity of gravity-cast material achieved 143.4 W m~(-1) K~(-1), whereas those of die-cast materials ranged from 110.8 to 126.8 W m~(-1) K~(-1). The die-cast aluminum alloys demonstrated considerably finer interconnecting precipitates than did the gravity castings. The closely spaced precipitates acted as barriers for thermal conduction, leading to reduced thermal conductivity. Die-casting pressures and velocities were controlled to form die castings with up to 3.73% porosity, which led to a 12.6% decrease in thermal conductivity. The die-cast Al alloys were then subject to solutioniza-tion (T4) and aging treatments (T6). The silicon precipitates were spheroidized, thus widening the paths for heat conduction. The thermal conductivity was greatly enhanced, increasing from 126.8 W m~(-1) K~(-1) in the die-cast condition to 151.6 W m~(-1) K~(-1) after 550 ℃ solutionizing and 4 h of aging at 200 ℃. The thermal conductivity of the gravity-cast materials remained unchanged after the same heat treatments. Improving the thermal conductivity of die castings through proper heat treatments is crucial for aluminum alloys in rigorous heat-dissipating applications.
机译:在这项研究中,研究了铸造工艺和热处理对Al-10 wt%Si-0.6 wt%Cu-0.9 wt%Fe-0.7 wt%Zn铝合金的热导率的影响。重力铸造和压铸过程均被使用。压铸件的孔隙率是通过改变注射压力和柱塞速度来控制的。表征了压铸件的孔隙率,微结构以及热导率和电导率。重力铸造材料的导热系数达到143.4 W m〜(-1)K〜(-1),而压铸材料的导热系数在110.8至126.8 W m〜(-1)K〜(-1)之间。与重力铸造相比,压铸铝合金显示出更精细的互连析出物。紧密间隔的沉淀物充当热传导的屏障,导致热传导率降低。控制压铸压力和速度以形成具有高达3.73%孔隙率的压铸件,从而导致热导率降低12.6%。然后对压铸铝合金进行固溶处理(T4)和时效处理(T6)。硅沉淀物被球化,从而拓宽了热传导路径。在550℃固溶和4℃下,热导率从压铸条件下的126.8 W m〜(-1)K〜(-1)提高到151.6 W m〜(-1)K〜(-1)。 h在200℃下老化。在相同的热处理之后,重力铸造材料的热导率保持不变。通过严格的热处理来提高压铸件的导热性对于在严格的散热应用中的铝合金至关重要。

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  • 作者单位

    National Taipei University of Technology, Institute of Materials Science and Engineering, Taipei, Taiwan,No. 1, Sec. 3, Zhong-Xiao E. Rd., Taipei 10608, Taiwan;

    National Taipei University of Technology, Institute of Materials Science and Engineering, Taipei, Taiwan;

    National Taipei University of Technology, Institute of Materials Science and Engineering, Taipei, Taiwan;

    Metal Industries Research and Development Centre, Kaohsiung, Taiwan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aluminum alloys; Die casting; Gravity casting; Heat treatment; Thermal conductivity;

    机译:铝合金;压铸;重力铸造;热处理;导热系数;

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