A Casting Process of Thick-walled Cast Steel Exhaust Manifold
A technology of exhaust manifold and casting process, which is applied in the field of casting process of thick-walled cast steel exhaust manifold, which can solve the problems of not being suitable for automobile exhaust manifolds and not being able to meet the high temperature resistance of thick-walled cast steel exhaust manifolds , to achieve the effect of reducing the risk of cold insulation, good mechanical properties and stable performance
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Embodiment 1
[0041] This embodiment provides a thick-wall cast steel exhaust manifold casting mold including sand mold, riser, sand core and pouring system; refer to figure 2 , the sand core is provided with two sand injection openings, that is, the number 5 and the number 6 in the figure; refer to figure 1, the pouring system includes a straight pouring rod 1 and a runner, the straight pouring rod 1 is vertically connected to the runner, a filter 2 is set in the middle of the runner, and a filter 2 is set at the end of the runner into the riser. The sand core is matched with the sand mold, the sprue connected with the runner is set in the sprue 1, the riser includes four large surface risers 3-4, two triangular flanges Riser 3-1, a fire inlet riser 3-3 and a thermal insulation riser 3-2. Fire inlet riser 3-3 and insulation riser 3-2 are all provided with riser neck, and riser neck is provided with easily broken groove. The fire inlet riser 3-3 and the inner runner are of an integrated...
Embodiment 2
[0044] The casting process of a thick-walled cast steel exhaust manifold provided in this embodiment adopts the casting model of Embodiment 1 and includes the following steps:
[0045] S1: Core making:
[0046] Hot core making: Use coated sand doped with 30% chromite sand as the raw material of the cavity core, heat the core box to 200°C, shoot sand into the core box for 4-6 seconds through two sand injection ports, and the shell will form. Curing, vibrating to pour out the uncured coated sand in the inner cavity of the sand core. After 180 seconds, the sand core is cured and taken out of the core box to ensure that the thickness of the sand shell is 6-8mm;
[0047] Cold core: heat and mix the dried sand, liquid phenolic resin, and liquid polyisocyanate resin according to the weight ratio of dry sand: liquid phenolic resin: liquid polyisocyanate resin at a ratio of 98:1:1, at a temperature of 20°C, and then Add a cold core machine to form under the catalysis of triethylamine,...
Embodiment 3
[0054] The casting process of a thick-walled cast steel exhaust manifold provided in this embodiment adopts the casting model of Embodiment 1 and includes the following steps:
[0055] S1: Core making:
[0056] Hot core making: Use coated sand doped with 30% chromite sand as the raw material of the cavity core, heat the core box to 230°C, shoot sand into the core box for 4-6 seconds through two sand injection ports, and the shell will form. Curing, vibrating to pour out the uncured coated sand in the inner cavity of the sand core. After 180 seconds, the sand core is cured and taken out of the core box to ensure that the thickness of the sand shell is 6-8mm;
[0057] Cold core: heat and mix the dried sand, liquid phenolic resin, and liquid polyisocyanate resin according to the weight ratio of dry sand: liquid phenolic resin: liquid polyisocyanate resin at a ratio of 123:1:1, and the temperature is 40°C. Then add a cold core machine to form under the catalysis of triethylamine,...
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