ISSN   1004-0595

CN  62-1095/O4

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郭俊德, 何世权, 马文林, 孟军虎, 王静波, 陆龙. Fe-Mo-Ni-Cu-石墨高温自润滑复合材料的摩擦学性能研究[J]. 摩擦学学报, 2014, 34(6): 617-622.
引用本文: 郭俊德, 何世权, 马文林, 孟军虎, 王静波, 陆龙. Fe-Mo-Ni-Cu-石墨高温自润滑复合材料的摩擦学性能研究[J]. 摩擦学学报, 2014, 34(6): 617-622.
GUO Jun-de, HE Shi-quan, MA Wen-lin, MENG Jun-hu, WANG Jing-bo, LU Long. Tribological Characteristics of Fe-Mo-Ni-Cu-Graphite High Temperature Self-Lubricating Composites[J]. TRIBOLOGY, 2014, 34(6): 617-622.
Citation: GUO Jun-de, HE Shi-quan, MA Wen-lin, MENG Jun-hu, WANG Jing-bo, LU Long. Tribological Characteristics of Fe-Mo-Ni-Cu-Graphite High Temperature Self-Lubricating Composites[J]. TRIBOLOGY, 2014, 34(6): 617-622.

Fe-Mo-Ni-Cu-石墨高温自润滑复合材料的摩擦学性能研究

Tribological Characteristics of Fe-Mo-Ni-Cu-Graphite High Temperature Self-Lubricating Composites

  • 摘要: 采用粉末冶金工艺,在Fe-Mo-石墨自润滑复合材料的基础上,制备了添加Ni、Cu两种元素的Fe-Mo-Ni-Cu-石墨高温自润滑复合材料,并在栓-盘式高温摩擦试验机上考察了其在室温、320和450 ℃下的摩擦学性能;采用金相显微镜、XRD和SEM等表征方法,分析了材料金相组织、物相成分和摩擦表面形貌.结果表明:Fe-Mo-石墨自润滑复合材料中添加Ni和Cu元素,可以强化基体,增强材料的力学性能,改善材料的摩擦学性能.在高温摩擦过程中,Fe-Mo-Ni-Cu-石墨高温自润滑复合材料摩擦表面生成的由石墨+CuFe5O8 +Fe3O4+Fe2.6Ni0.4O4组成的复合润滑膜是导致其具有良好高温润滑性的主要原因.

     

    Abstract: Fe-Mo-Ni-Cu-graphite high temperature self-lubricating composites which were derived from Fe-Mo-graphite self-lubricating composites were fabricated by powder metallurgy technology. Tribological properties were investigated on a high temperature tribometer with a pin-on-disc configuration at room temperature, 320 ℃ and 450 ℃. Metallography microscopy, scanning electron microscopy and X-ray diffraction were utilized to characterize the microstructure, morphologies and phase composition of the composite. Experimental results show that the addition of Ni and Cu strengthened the matrix, enhanced mechanical properties, and improved the tribological properties of materials. The black composite lubricating film on the worn surface of Fe-Mo-Ni-Cu-graphite high temperature self-lubricating composites was responsible for the good tribological property at elevated temperature.

     

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