Preparation method for cast iron cylinder liner based on inner surface coating
An inner surface and coating technology, which is applied in the direction of coating, casting molding equipment, metal material coating technology, etc., can solve the problem that it is difficult to meet the requirements of cylinder liner strength, wear resistance and cost, the high production cost of cylinder liner, the use of Short service life and other problems, to achieve the effect of low manufacturing cost, convenient processing, and extended service life
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Embodiment 1
[0032] 1) 100 parts by mass of silicon micropowder with a particle size of 325-400 mesh, 25 parts by mass of sodium bentonite with a particle size of 325-400 mesh, 23 parts by mass of high-alumina bauxite with a particle size of 325-400 mesh, and 1.1 parts by mass of Add sodium stearate, 33 parts by mass and benzoxazine resin with a particle size of 325 to 400 meshes, and 1.2 parts by mass of copper chloride in the wheel-type sand mixer, and mix and grind for 25 minutes; pour the rolled material into After adding 200 parts by mass of water into the mixing tank, the mixture was stirred at a speed of 200 rpm for 3 hours to prepare the coating.
[0033] 2) Dosing according to the following chemical composition percentage: C: 3.0%~3.2%, Si: 2.5%~3.0%, S: ≤0.1%, P: ≤0.2%, Cr: 0.5%~0.6%, Ni : 0.1%~0.2%, Mo: 0.2%~0.3%, Cu: 0.4%~0.5%, Ti: ≤0.03%, rare earth ferrosilicon alloy inoculant: 0.8%, the rest is Fe, pour the above ingredients into the medium frequency induction furnace Melti...
Embodiment 2
[0039] 1) 100 parts by mass of silicon micropowder with a particle size of 325-400 mesh, 28 parts by mass of sodium bentonite with a particle size of 325-400 mesh, 25 parts by mass of high-alumina bauxite with a particle size of 325-400 mesh, and 1.2 parts by mass of Add sodium stearate, 35 parts by mass of benzoxazine resin with a particle size of 325 to 400 meshes, and 1.2 parts by mass of copper chloride in a wheel-type sand mixer, and mix and grind for 30 minutes; pour the rolled material into After adding 210 parts by mass of water into the mixing tank, the mixture was stirred at a speed of 220 rpm for 3 hours to prepare the coating.
[0040] 2) Dosing according to the following chemical composition percentage: C: 3.0%~3.2%, Si: 2.5%~3.0%, S: ≤0.1%, P: ≤0.2%, Cr: 0.5%~0.6%, Ni : 0.1%~0.2%, Mo: 0.2%~0.3%, Cu: 0.4%~0.5%, Ti: ≤0.03%, rare earth ferrosilicon alloy inoculant: 0.8%, the rest is Fe, pour the above ingredients into the medium frequency induction furnace Melting ...
Embodiment 3
[0046] 1) 100 parts by mass of silica powder with a particle size of 325-400 mesh, 30 parts by mass of sodium bentonite with a particle size of 325-400 mesh, 25 parts by mass of high-alumina bauxite with a particle size of 325-400 mesh, and 1.2 parts by mass of Add sodium stearate, 35 parts by mass and benzoxazine resin with a particle size of 325 to 400 meshes, and 1.3 parts by mass of copper chloride in the wheel-type sand mixer, and mix and grind for 30 minutes; pour the rolled material into In the mixing bucket, after adding 220 parts by mass of water, the mixture was stirred at a speed of 230 rpm for 4 hours to prepare the coating.
[0047] 2) Dosing according to the following chemical composition percentage: C: 3.0%~3.2%, Si: 2.5%~3.0%, S: ≤0.1%, P: ≤0.2%, Cr: 0.5%~0.6%, Ni : 0.1%~0.2%, Mo: 0.2%~0.3%, Cu: 0.4%~0.5%, Ti: ≤0.03%, rare earth ferrosilicon alloy inoculant: 0.8%, the rest is Fe, pour the above ingredients into the medium frequency induction furnace Melting is...
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