A kind of high wear-resistant powder metallurgy material and preparation method thereof
A powder metallurgy, high wear-resistant technology, applied in the field of powder metallurgy, can solve the problems that the enhancement of product wear resistance cannot achieve the expected effect, the bonding interface is not good, etc., and achieve the effect of sufficient and easy high-temperature sintering, avoiding unevenness
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Embodiment 1
[0036] Precursor preparation:
[0037] In parts by weight, 20 parts of graphene oxide, 20 parts of organoaluminum, 15 parts of organosilicon, 400 parts of absolute ethanol, 40 parts of fatty acid, 1 part of nano-iron powder, 2 parts of calcium fluoride, and graphene oxide are successively taken 3% ammonium nitrate by mass;
[0038] First mix graphene oxide and absolute ethanol into the reactor, and ultrasonically disperse for 30 minutes at a temperature of 55°C and an ultrasonic frequency of 60 kHz to obtain a dispersion;
[0039] Add organosilicon, organoaluminum, fatty acid, nano-iron powder, calcium fluoride and ammonium nitrate to the dispersion in sequence, then heat and reflux for 8 hours at a temperature of 75°C, stop the reaction, filter, and collect the filter cake. And wash the filter cake with absolute ethanol for 3 times, and then wash the filter cake with deionized water for 2 times, then transfer the filter cake after washing with deionized water into an oven, a...
Embodiment 2
[0046] Precursor preparation:
[0047] In parts by weight, 25 parts of graphene oxide, 26 parts of organoaluminum, 20 parts of organosilicon, 450 parts of absolute ethanol, 60 parts of fatty acid, 2 parts of nano-iron powder, 3 parts of calcium fluoride, and graphene oxide are taken successively 4% ammonium nitrate by mass;
[0048] First, mix graphene oxide and absolute ethanol into the reactor, and ultrasonically disperse for 50 minutes at a temperature of 60°C and an ultrasonic frequency of 100 kHz to obtain a dispersion;
[0049] Add organosilicon, organoaluminum, fatty acid, nano-iron powder, calcium fluoride and ammonium nitrate to the dispersion in sequence, then heat and reflux for 9 hours at a temperature of 78°C, stop the reaction, filter, and collect the filter cake. And wash the filter cake 4 times with absolute ethanol, then wash the filter cake 3 times with deionized water, then transfer the filter cake washed with deionized water into an oven, and dry it to a c...
Embodiment 3
[0056] Precursor preparation:
[0057] In parts by weight, successively take 30 parts of graphene oxide, 30 parts of organoaluminum, 30 parts of organosilicon, 500 parts of absolute ethanol, 80 parts of fatty acid, 3 parts of nano-iron powder, 4 parts of calcium fluoride, and graphene oxide 5% ammonium nitrate by mass;
[0058] First mix graphene oxide and absolute ethanol into the reactor, and ultrasonically disperse for 60 minutes at a temperature of 65°C and an ultrasonic frequency of 120kHz to obtain a dispersion;
[0059] Add organosilicon, organoaluminum, fatty acid, nano-iron powder, calcium fluoride and ammonium nitrate to the dispersion in sequence, then heat and reflux for 10 hours at a temperature of 80°C, stop the reaction, filter, and collect the filter cake. And wash the filter cake with absolute ethanol for 5 times, and then wash the filter cake with deionized water for 4 times, then transfer the filter cake after washing with deionized water into an oven, and ...
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