A metal-toughened ceramic matrix composite for 3D printing
A technology for toughening ceramics and composite materials, applied in the field of 3D printing manufacturing, can solve the problems of uneven structure, reduced plasticity and toughness of ceramic products, and poor uniform crystal structure.
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Embodiment 1
[0032] 1) Add 80 parts by weight of titanium nitride ceramic microspheres with a sphericity greater than 90 and a particle size of 50 mesh sieve and 1 part by weight of interface modifier water glass with a modulus of 2 into the high-speed disperser, and set the high-speed disperser The temperature is 90-100°C, the vacuum pressure is 0.1MPa, and the speed is 5000rpm for 10 minutes to obtain ceramic microspheres modified by interface erosion;
[0033] 2) The modified ceramic microspheres obtained in step 1), 5 parts by weight of stainless steel fibers with an aspect ratio greater than 20 and a diameter of less than 50 microns, and 0.2 parts by weight of the active agent sodium dodecylsulfonate are placed in a disc grinding Machine grinding, through the rolling between the grinding discs, the metal fibers are embedded on the surface of the ceramic microspheres whose interface has been eroded, and passed through a 20-mesh sieve to obtain spherical metal toughened ceramic matrix co...
Embodiment 2
[0037] 1) Add 85 parts by weight of alumina ceramic microspheres with a sphericity greater than 90 and a particle size of 50 mesh sieve and 1.5 parts by weight of interface modifier water glass with a modulus of 2.5 into the high-speed disperser, and set the high-speed disperser The temperature is 90-100°C, the vacuum pressure is 0.2MPa, and the speed is 8000rpm for 15 minutes to obtain ceramic microspheres modified by interface erosion;
[0038] 2) The modified ceramic microspheres obtained in step 1), 6 parts by weight of aluminum fibers with an aspect ratio greater than 20 and a diameter of less than 50 microns, and 0.3 parts by weight of the active agent sodium hexametaphosphate are placed in a disc grinder for grinding, and passed The rolling between the grinding discs makes the metal fibers embedded on the surface of the ceramic microspheres whose interface has been eroded, and passes through a 20-mesh sieve to obtain spherical metal-toughened ceramic matrix composite par...
Embodiment 3
[0041] 1) Add 90 parts by weight of silicon carbide ceramic microspheres with a sphericity greater than 90 and a particle size of 50 mesh sieve and 1.5 parts by weight of an interface modifier water glass with a modulus of 2 into the high-speed disperser, and set the high-speed disperser The temperature is 90-100°C, the vacuum pressure is 0.3MPa, and the speed is 10000rpm, and the high-speed dispersion is performed for 20min to obtain interface erosion modified ceramic microspheres;
[0042] 2) The modified ceramic microspheres obtained in step 1), 10 parts by weight of nickel fibers with an aspect ratio greater than 20 and a diameter of less than 50 microns, and 0.4 parts by weight of active agent polyacrylamide are placed in a disc grinder for grinding, and through grinding The rolling between the disks makes the metal fibers embedded on the surface of the ceramic microspheres whose interface has been eroded, and passes through a 20-mesh sieve to obtain spherical metal-toughe...
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Abstract
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