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Effect of Lubricating Phase on Microstructure and Properties of Cu–Fe Friction Materials

机译:润滑相对铜铁摩擦材料组织和性能的影响

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摘要

Cu–Fe-based friction materials with flake graphite, granulated carbon black, and high-strength graphite as lubricating phase were prepared by the powder metallurgy method. The effects of different types and mass fraction of lubricating phase on the microstructure, mechanical properties, and tribological properties were investigated. The results show that when the mass fraction of granulated carbon black is 5 wt%, it is easy to form a good interface with the matrix, but the interface is prone to pores and cracks when its mass fraction is 10 wt%. The bending strength and compressive strength properties of the composites increased with increasing in the mass fraction of granulated carbon black and reached the maximum of 40 MPa and 70 MPa at 5 wt% granulated carbon black, after which bending strength and compressive strength all decreased. The friction coefficient and the wear loss of the materials initially decreased as the mass fraction of granulated carbon black increased and obtained minimum of 0.436 and 0.145 mm when the mass fraction of granulated carbon black was 5 wt%, then ascended. Compared with the sample with 5 wt% high-strength graphite as lubricating phase, the sample with 5 wt% granulated carbon black as lubricating phase had better sintering performance, mechanical properties, and tribological properties.
机译:通过粉末冶金法制备了以片状石墨,粒状炭黑和高强度石墨为润滑相的Cu-Fe基摩擦材料。研究了不同类型和质量分数的润滑相对组织,力学性能和摩擦学性能的影响。结果表明,当粒状炭黑的质量分数为5wt%时,容易与基体形成良好的界面,但是当其质量分数为10wt%时,该界面易于出现孔和裂纹。复合材料的弯曲强度和抗压强度性能随着颗粒状炭黑的质量分数的增加而增加,并且在颗粒状炭黑的含量为5 wt%时达到40 MPa和70 MPa的最大值,此后弯曲强度和抗压强度均下降。随着粒状炭黑的质量分数增加,材料的摩擦系数和磨损损耗最初降低,并且当粒状炭黑的质量分数为5 wt%时,获得的最小值为0.436和0.145 mm,然后上升。与以5重量%的高强度石墨作为润滑相的样品相比,以5重量%的粒状炭黑作为润滑相的样品具有更好的烧结性能,机械性能和摩擦学性能。

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