Solid lubricating composite material and manufacturing method thereof
A composite material and solid lubrication technology, applied in lubricating compositions, base materials, petroleum industry, etc., to achieve high wear resistance coefficient, high wear resistance, and improved technical indicators
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Embodiment 1
[0025] Carbon nanotubes prepared in batches by catalytic chemical vapor deposition with iron-containing catalysts in a Tsinghua nano-agglomerate bed were ground with high-energy ball milling for 1 hour to obtain carbon nanotube segments. The volume percentage of the carbon nanotube segments was added 90% ethanol, 0.1% of the volume percentage of the surface dispersant alkylphenol polyoxyethylene ether (OP), and then ultrasonic treatment for 60 minutes to obtain carbon nano liquid.
[0026] According to the weight percentage, 3% of 300 mesh of boron oxide is added to 4% of carbon nano liquid, and the particle size is 93% of 200 mesh of PTFE. Mix the three at high speed and stir for 10 minutes. The viscous carbon nano liquid is evenly distributed in the oxidation In the matrix of boron and polytetrafluoroethylene, a mixture is obtained.
[0027] The mixture was molded into a mold, and the pressure was kept at 300 MPa for 10 minutes. The heating rate is 18min, the temperature is kept...
Embodiment 2
[0029] Carbon nanotubes prepared in batches by catalytic chemical vapor deposition with iron-containing catalysts in a Tsinghua nano-agglomerate bed were ground with high-energy ball milling for 1 hour to obtain carbon nanotube segments. The volume percentage of the carbon nanotube segments was added 90% ethanol, 0.15% by volume of the surface dispersant alkylphenol polyoxyethylene ether (OP), and then ultrasonic treatment for 60 minutes to obtain carbon nano liquid.
[0030] According to the weight percentage, add 300 mesh boron oxide 1% to 5% carbon nano liquid, and the particle size is 200 mesh PTFE 94%. Mix the three at high speed and stir for 10 min. The viscous carbon nano liquid is evenly distributed in the oxidation In the matrix of boron and polytetrafluoroethylene, a mixture is obtained.
[0031] The mixture was molded into a mold, and the pressure was kept at 300 MPa for 10 minutes. The heating rate is 18min, the temperature is kept at 380℃ for 120min, and the temperatu...
Embodiment 3
[0033] Carbon nanotubes prepared in batches by catalytic chemical vapor deposition with iron-containing catalysts in a Tsinghua nano-agglomerate bed were ground with high-energy ball milling for 1 hour to obtain carbon nanotube segments. The volume percentage of the carbon nanotube segments was added 90% ethanol, 0.15% by volume of the surface dispersant alkylphenol polyoxyethylene ether (OP), and then ultrasonic treatment for 60 minutes to obtain carbon nano liquid.
[0034] According to the weight percentage, 2% of the carbon nano liquid is added with 300 mesh of boron oxide 2%, and the particle size is 200 mesh of PTFE 96%. Mix the three at high speed and stir for 10 minutes. The viscous carbon nano liquid is evenly distributed in the oxidation In the matrix of boron and polytetrafluoroethylene, a mixture is obtained.
[0035] The mixture was molded into a mold, and the pressure was kept at 300 MPa for 10 minutes. The heating rate is 18min, the temperature is kept at 380℃ for 1...
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