Crystallizer protecting cinder for continuous casting of crack sensitive steel and its preparation process
A mold powder and crack sensitivity technology, which is applied to mold powder for crack-sensitive steel continuous casting and its preparation, and mold powder for molten steel continuous casting, can solve the problem of reducing the productivity and production capacity of continuous casters. , casting billet bonding, deterioration and other problems, to improve production efficiency, ensure lubrication ability, reduce the effect of temperature gradient
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Embodiment 1
[0033]First, check whether the composition of raw materials meets the following conditions, and measure the chemical composition of raw materials such as wollastonite, limestone, fluorite, quartz sand, manganese carbonate, soda and carbonaceous materials. Select the raw material that meets the following conditions, namely wollastonite: SiO 2 43-53%, CaO40-49%, 02 2 >95%; fluorite: CaF 2 85-90%, 02 3 >96%; Soda: Na 2 CO 3 >95%; carbonaceous material: C>95%; otherwise, it should not be used.
[0034] Then, it is not difficult to calculate the weight of the required raw materials according to the chemical composition of mold flux as shown in Table 1, see Table 2;
[0035] The mold slag of the present invention is refined by the following process: Melt the wollastonite, limestone, fluorite, quartz sand, manganese carbonate and soda weighed in proportion in a submerged arc furnace, and cool naturally after being released from the furnace; crushing To 200 orders; After adding th...
Embodiment 2
[0045] The method is the same as in Example 1. The raw materials of mold flux are also wollastonite, limestone, fluorite, quartz sand, manganese carbonate, soda and carbonaceous materials. The chemical composition and physical properties of mold flux are shown in Table 4. The premelted raw materials The weight ratio is shown in Table 5, and the added carbonaceous materials are: 2% carbon black, 6.4% high-carbon graphite, and the corresponding steel composition is shown in Table 6.
[0046] Table 4 Chemical Composition (%) and Physical Properties of Mold Flux (1300°C)
[0047]
[0048] Table 5 weight ratio of premelted raw materials
[0049]
[0050] Table 6 corresponds to the chemical composition of steel
[0051]
[0052] The experimental conditions are: slab continuous casting, slab section: 200×1250mm, 240×1400mm, casting speed: 0.7-1.30m / min, pouring temperature: 1525-1545°C. The crystallization rate of the mold slag is about 50%. Compared with the original mold...
Embodiment 3
[0054] The method is the same as in Example 1, and the raw materials of the mold flux are also wollastonite, limestone, fluorite, quartz sand, manganese carbonate, soda and carbonaceous materials. The chemical composition and physical properties of the mold flux are shown in Table 7, and the weight ratio of raw materials is See Table 8, the added carbonaceous materials are: 2% carbon black, 5.3% high-carbon graphite, and the composition of the corresponding steel is shown in Table 9.
[0055] Table 7 Chemical composition (wt%) and physical properties (1300°C) of mold flux
[0056]
[0057] Table 8 Premelted Raw Material Weight Ratio
[0058]
[0059] Table 9 corresponds to the chemical composition of the test steel
[0060]
[0061] The test conditions are: slab continuous casting machine, slab section: 240×1400mm, 170×1000mm, 180×1000mm, casting speed: 0.7-1.3m / min; pouring temperature: 1525-1545℃, continuous During casting, it is necessary not only to avoid surfac...
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