Production method of ultrafine crystalline alloy ribbon
US-9224527-B2 · Dec 29, 2015 · US
US9409229B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9409229-B2 |
| Application number | US-201414892234-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 18, 2014 |
| Priority date | Jun 20, 2013 |
| Publication date | Aug 9, 2016 |
| Grant date | Aug 9, 2016 |
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A main purpose of the present invention is to provide a continuous casting method for a slab satisfying reductions of center segregation and center porosity, and inhibitions of surface cracks and internal cracks of a slab. The method includes a step of carrying out reduction on a slab having an unsolidified part by horizontal rolls and a step of alternatively carrying out reduction on the slab completely solidified by horizontal rolls and vertical rolls, wherein in the former step, reduction ratio of the slab is more than 0.5% and no more than 3% and a ratio of a width of the unsolidified part at the cross section of the slab to a width of a contact part of the slab and the rolls is 0 to 7.15, and in the latter step, each reduction ratio of the slab by the rolls is 5.4% to 6.8%.
Opening claim text (preview).
The invention claimed is: 1. A method for continuously casting a slab, the method comprising a series of: a step 1 of casting a slab having a round cross section with a casting mold; a step 2 of carrying out reduction on the slab by a plurality of pairs of rolls consisting of cylindrical rolls whose axes are arranged in a horizontal direction until there is no unsolidified portion inside the slab, to form a pair of parallel surfaces on the slab; a step 3 of carrying out reduction on the slab completely solidified after reduction in the step 2, by using an alternating pair of cylindrical horizontal rolls whose axes are arranged in the horizontal direction and a pair of cylindrical vertical rolls whose axes are arranged in a vertical direction, to form a pair of parallel surfaces which are vertical to the pair of parallel surfaces formed in the step 2 on the slab, wherein: in the step 2, a reduction ratio of the slab by each pair of the plurality of pairs of rolls is more than 0.5% and no more than 3% and a ratio of a width of the unsolidified portion on a cross section of the slab at a reduction position of said each pair of rolls to a width of a part of the slab where the rolls have contact is from 0 to 7.15; and in the step 3, each of a reduction ratio of the slab by the horizontal rolls and a reduction ratio of the slab by the vertical rolls is from 5.4% to 6.8%. 2. The method for continuously casting a slab according to claim 1 , wherein a cross section of an inner wall surface of the casting mold is 400 to 600 mm in diameter. 3. The method for continuously casting a slab according to claim 2 , wherein in the step 3, a central temperature of the slab is higher than a surface temperature by 150° C. or more. 4. The method for continuously casting a slab according to claim 3 , wherein at a completion of the step 3, two pairs of the parallel surfaces have a same interval of 235 to 270 mm. 5. The method for continuously casting a slab according to claim 2 , wherein at a completion of the step 3, two pairs of the parallel surfaces have a same interval of 235 to 270 mm. 6. The method for continuously casting a slab according to claim 1 , wherein in the step 3, a central temperature of the slab is higher than a surface temperature by 150° C. or more. 7. The method for continuously casting a slab according to claim 6 , wherein at a completion of the step 3, two pairs of the parallel surfaces have a same interval of 235 to 270 mm. 8. The method for continuously casting a slab according to claim 1 , wherein at a completion of the step 3, two pairs of the parallel surfaces have a same interval of 235 to 270 mm.
Rolls; Lubricating, cooling or heating rolls while in use · CPC title
for plastic shaping of strands (rolling mills B21B1/46) · CPC title
containing aluminium · CPC title
for aligning the guide rolls · CPC title
of specific alloys · CPC title
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