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Effect of Al–Mg Alloy Infiltration on Mechanical and Electrical Properties for Carbon/Carbon Composites

机译:Al-Mg合金渗透对碳/碳复合材料的机电性能的影响

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摘要

Under vacuum Al–Mg alloy, liquids were successfully infiltrated into carbon/carbon (C/C) composites at high temperatures. Then, the mechanical properties, the metallographics, the scanning electron microscope images, the transmission electron microscope images, the X-ray diffraction images, and the energy dispersive spectroscopy results of C/C–Al–Mg composites were analyzed. The result showed that the bending property of C/C–Al–Mg composites reached 183 MPa whereas that of C/C composites totaled 165 MPa. The compressive strength of C/C–Al–Mg measured 206 MPa whereas that of C/C composites amounted to 142 MPa. The flexural strength and compressive strengths of the steeped metal sliders measured 121 and 104 MPa, respectively. The alloy liquid infiltrated into the matrix by forming a “network conduction” structure which reduced the resistivity and improved the conductivity of the composites. The resistivity of C/C–Al–Mg totaled 1.63 µΩm whereas that of C/C was 3.56 μΩm. During infiltration, an excellent wettability was observed between Al and the carbon matrix due to the existence of Al4C3. The friction coefficients of C/C, the steeped metal slide, and C/Al–Mg were 0.152, 0.068, and 0.189, respectively. The properties of C/C–Al–Mg composites meet the performance requirements of locomotive pantograph sliders.
机译:在真空下Al-Mg合金,液体被成功渗入碳/碳(C / C)在高温下复合材料。然后,机械性能,所述metallographics,扫描电子显微镜图像,所述透射电子显微镜图像,所述X射线衍射图像,和C / C-Al-Mg系复合材料的能量色散谱的结果进行分析。结果表明,C / C-Al-Mg复合的弯曲加工性达到183兆帕,而该C / C复合材料的总计为165兆帕。 C / C-Al-Mg系的抗压强度测量206兆帕,而该C / C复合材料的总额为142兆帕。的弯曲强度和浸泡金属滑块的抗压强度分别测量121和104兆帕。合金液体渗透到通过形成“网络传导”结构,该结构降低了电阻率和改进的复合材料的导电性基质。 C / C-Al-Mg系的电阻率总计为1.63μΩm而但是C / C为3.56μΩm。在浸润,Al和碳基体之间观察到极好的润湿性因的Al4C3的存在。 C / C中,浸泡金属滑动,和C / Al-Mg系的摩擦系数分别为0.152,0.068,和0.189,分别。 C / C-Al-Mg系复合材料的性能满足机车受电弓滑块的性能要求。

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