Casting infiltration method for enhancing hardness and abrasive resistance of surface layer of low-carbon alloy cast steel
A low-carbon alloy and surface layer technology, which is applied in the field of cast infiltration to enhance the hardness and wear resistance of the surface layer of low-carbon alloy cast steel
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Embodiment 1
[0025] (1) Mix iron powder and aluminum powder evenly according to the molar ratio of 1:1.5, on this basis, add tungsten concentrate powder accounting for 0.5% of the total mass of iron powder and aluminum powder, and mix the three powders evenly;
[0026] (2) According to the mass percentage, mix 65% of the above uniformly mixed powder with 35% of polyvinyl alcohol, and add water to prepare a paste coating;
[0027] (3) Apply the coating evenly on the inner wall of the mold, and then apply it for the second time after drying, and then dry it after coating for 3 times, pour the smelted Q295 low-carbon alloy cast steel liquid into the mold for casting, and wait until the casting is completed The casting is completely solidified and cooled, and the casting is removed from the mold.
[0028] After testing, the thickness of the alloy layer on the surface of the workpiece obtained by the cast infiltration method of this embodiment reaches 4mm, the surface hardness is 58HRC, the wea...
Embodiment 2
[0030] (1) Mix iron powder and aluminum powder evenly according to the molar ratio of 1:1.5, on this basis, add tungsten concentrate powder accounting for 1.5% of the total mass of iron powder and aluminum powder, and mix the three powders evenly;
[0031] (2) According to the mass percentage, mix 70% of the above uniformly mixed powder with 30% of polyvinyl alcohol, and add water to prepare a paste coating;
[0032] (3) Apply the coating evenly on the inner wall of the mold, and then apply it for the second time after drying, and then dry it after coating 4 times, pour the smelted Q345 low-carbon alloy cast steel liquid into the mold for casting, and wait until the casting is completely After solidification and cooling, the casting is removed from the mold.
[0033] After testing, the thickness of the alloy layer on the surface of the workpiece obtained by the casting infiltration method of this embodiment reaches 3.9mm, the surface hardness is 60HRC, the wear resistance is a...
Embodiment 3
[0035] (1) Mix iron powder and aluminum powder evenly according to the molar ratio of 1:1.5, on this basis, add tungsten concentrate powder accounting for 3% of the total mass of iron powder and aluminum powder, and mix the three powders evenly;
[0036] (2) According to the mass percentage, mix 80% of the above uniformly mixed powder with 20% of polyvinyl alcohol, and add water to prepare a paste coating;
[0037] (3) Apply the coating evenly on the inner wall of the mold, and then apply it for the second time after drying. After coating for 5 times, dry it, pour the melted Q390 low-carbon alloy cast steel liquid into the mold for casting, and wait until the casting is completed. After the casting has completely solidified and cooled, the casting is removed from the mold.
[0038] After testing, the thickness of the alloy layer on the surface of the workpiece obtained by the casting infiltration method of this embodiment reaches 3.95mm, the surface hardness is 63HRC, the wear...
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