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Densification treatment and properties of carbon fiber reinforced contact strip

机译:碳纤维增强接触带的致密化处理及性能

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The high temperature caused by current-carrying wear could affect the thermal reliability of resin-based contact strip greatly. This study adopted liquid-phase impregnation-carbonization (IC) technique to improve the thermal stability and densification of carbon fiber reinforced contact strip (CFRCS). The influence of this method was investigated by scanning electron microscopy, Fourier transform infrared spectrometry, thermal gravimetric analysis and energy-dispersive spectrometry; meanwhile, specimen composition and friction and mechanism properties were also analyzed. The results show that heat treatment is helpful in improving the material’s temperature tolerance. When specimens undergo IC treatment four times, resistivity and wear rate would reduce gradually under impregnating conditions of carbonization temperature (800°C), dipping liquid concentration (60%), and dipping temperature (60°C). IC treatment is effective in reducing material porosity and improving the impact resistance performance compared with only carbonized sample. Densification treatment can also improve the samples’ compressive strength and bending strength. The main wear mechanisms of CFRCS-25 and CFRCS-800 against copper with electrical current are similar; these are arc erosion wear and oxidation wear accompanied by adhesive wear. Adhesive wear and oxidative wear is more severe for CFRCS-25 than CFRCS-800.
机译:载流磨损引起的高温会极大地影响树脂基接触带的热可靠性。本研究采用液相浸渍碳化(IC)技术来提高碳纤维增强接触带(CFRCS)的热稳定性和致密化。通过扫描电子显微镜,傅里叶变换红外光谱,热重分析和能量色散光谱研究了该方法的影响。同时,还分析了试样的成分,摩擦和力学性能。结果表明,热处理有助于提高材料的温度耐受性。当样品进行4次IC处理时,在碳化温度(800°C),浸渍液浓度(60%)和浸渍温度(60°C)的浸渍条件下,电阻率和磨损率将逐渐降低。与仅碳化的样品相比,IC处理可有效降低材料的孔隙率并提高抗冲击性能。致密化处理还可以提高样品的抗压强度和弯曲强度。 CFRCS-25和CFRCS-800对铜带电流的主要磨损机理是相似的。这些是电弧腐蚀磨损和氧化磨损,以及粘着磨损。 CFRCS-25的粘着磨损和氧化磨损比CFRCS-800严重。

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