Method for preparing sliding bearing of nano AI2O3/polyimide friction compound material
A technology of polyimide and composite materials, which is applied in the field of preparation of new nano-friction composite sliding bearings, can solve the problems of poor high temperature resistance, can only reach 250°C, and no composite material bearings, and achieve friction coefficient and wear Low efficiency, less filler dosage, good self-lubricating performance
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Embodiment 1
[0020] The composition weight percent of the composite sliding bearing polymer layer is: PMR-15 polyimide molding powder: 70%, polytetrafluoroethylene 15%, nanometer Al 2 o 3 : 10%, the average diameter is between 30 and 50 nanometers, lead powder: 5%.
[0021] The manufacturing process of the composite material bearing is as follows: First, a layer of bronze powder is spread on the steel plate, the thickness of the bronze powder is 0.4 mm, the bronze powder and the steel plate are sintered together at 800 ° C, and then the above polyimide molding powder, PTFE, Nano Al 2 o 3 , Lead powder are fully mixed and stirred evenly. Under the pressure of 30MPa, it is rolled on the steel plate with the intermediate layer of sintered bronze powder, the thickness of the polymer layer is 10 mm, and then sintered under the condition of nitrogen protection at 400 ° C, and then it is machined and modified to remove burrs and rolled. , Welded composite material bearings with a diameter of ...
Embodiment 2
[0024] Adjust the raw material ratio of the polymer layer, the weight percentage of each component is as follows: PMR-15 polyimide molding powder: 80%, polytetrafluoroethylene: 10%, nanometer Al 2 o 3 : 5%, lead powder 5%.
[0025] The preparation process of the composite material bearing is the same as in Example 1, and its tribological properties are tested. The ultimate load is 160.5kg, the failure temperature is 360°C, and the PV value is 1.63MPa.m / s.
Embodiment 3
[0027] The weight percent of composite raw material components is: PMR-15 polyimide molding powder: 95%, polytetrafluoroethylene 2.5%, nanometer Al 2 o 3 : 1.5%, lead powder 1%.
[0028] The manufacturing process of the composite material bearing is the same as in Example 1. The ultimate load is slightly lowered to 146.7kg, but the friction coefficient is reduced, the failure temperature is 357°C, and the PV value is 1.62MPa.m / s.
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