风电制动器用铜基粉末冶金摩擦材料的制备及性能研究

    Preparation and Properties of Copper Based Powder Metallurgy Friction Materials for Wind Power Brake

    • 摘要: 利用粉末冶金技术制备了适用于风力发电机制动器的铜基粉末冶金材料,研究了不同石英砂含量对铜基粉末冶金材料性能的影响,并对烧结后样品的物理性能、摩擦磨损性能进行表征。结果表明:试样的密度、硬度和抗压强度随着石英砂含量的增加先升高后降低。当石英砂含量为7%时,性能达到最优,密度为5.782 g/cm3、硬度为9.8 HRF、抗压强度为161 MPa。在Mm3000摩擦磨损试验台上对各样品分别进行了40次试验,当石英砂含量为7%时,平均摩擦系数和磨损量的综合性能表现较优。

       

      Abstract: Copper-based powder metallurgy materials suitable for wind power brake were prepared by powder metallurgy technology, and the influence of different quartz sand content on the properties of copper-based powder metallurgy materials was studied. The physical properties, friction and wear properties of the sintered samples were characterized. The results show that the density, hardness and compressive strength of the samples first increase and then decrease with the increase of quartz sand content. When the quartz sand content is 7%, the performance is optimal,with a density of 5.782 g/cm3, hardness of 9.8 HRF and compressive strength of 161 MPa. Each sample is tested for 40 times on Mm3000 friction and wear testing machine,and when the quartz sand content is 7%, the comprehensive performance of the average friction coefficient and wear quantity is superior.

       

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