Root bushing for a wind turbine rotor blade, a wind turbine rotor blade, a wind turbine and a method for manufacturing a wind turbine rotor blade for a wind turbine
US-2015354541-A1 · Dec 10, 2015 · US
US9340002B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9340002-B2 |
| Application number | US-201113640331-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 12, 2011 |
| Priority date | Apr 12, 2010 |
| Publication date | May 17, 2016 |
| Grant date | May 17, 2016 |
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A method of manufacturing wet wipes includes a step of continuously conveying a plurality of sheets by a conveyor, a step of folding each of the sheets toward a conveyor non-contact surface side of the sheets, a step of impregnating each of the folded sheets with the predetermined chemical solution, from a conveyor contact surface side of the sheets a step of laminating each of the sheets impregnated with the predetermined chemical solution, and a step of cutting the laminated sheets.
Opening claim text (preview).
The invention claimed is: 1. A manufacturing apparatus configured to manufacture wet wipes including a laminated body of sheets impregnated with a predetermined chemical solution, the apparatus comprising: a conveyor device configured to continuously convey a plurality of sheets, each of the sheets having a first side configured to be in contact with a surface of the conveyor device and a second side configured to be not in contact with the surface of the conveyor device; a folding unit configured to fold each of the sheets toward the second side of the sheet; an impregnating unit configured to impregnate each of the folded sheets with the predetermined chemical solution at a predetermined rate of impregnation from the first side of the sheet; a lamination unit configured to laminate together the sheets that have been folded and impregnated with the predetermined chemical solution; and a cutting unit configured to cut the laminated sheets, wherein the predetermined rate of impregnation is more than a rate of impregnation necessary for the sheets to stick to the surface of the conveyor device and for one of the sheets to stick onto another of the sheets. 2. The manufacturing apparatus according to claim 1 , further comprising: an upper conveyor belt and a lower conveyor belt configured to continuously convey the laminated sheets in a conveyance direction while sandwiching the laminated sheets between the upper conveyor belt and the lower conveyor belt, wherein the upper conveyor belt and the lower conveyor belt are arranged in a zone between the lamination unit and the cutting unit, the lower conveyor belt has an upper side configured to contact with a lowermost sheet among the laminated sheets, the upper conveyor belt has a lower side configured to contact with an uppermost sheet among the laminated sheets, and at least one of the lower side of the upper conveyor belt and the upper side of the lower conveyor belt includes concave and convex portions which are alternately arranged in a crossing direction crossing the conveyance direction and continuously extend in the conveyance direction. 3. The manufacturing apparatus according to claim 2 , wherein the lower side of the upper conveyor belt includes said concave and convex portions, and the upper side of the lower conveyor belt is smooth. 4. The manufacturing apparatus according to claim 1 , wherein the conveyor device comprises a conveyance roller and a holding roller configured to sandwich the sheets that have been folded and impregnated with the predetermined chemical solution, the conveyance roller and the holding roller are arranged in a zone between the impregnating unit and the lamination unit, and the holding roller has a surface including convex portions. 5. The manufacturing apparatus according to claim 1 , wherein the folding unit is configured to fold each of the sheets by: folding a region including one side edge of the sheet, along a first fold line in a conveyance direction, toward the second side of the sheet; then, folding the region including said one side edge of the sheet, along a second fold line in the conveyance direction, toward the second side of the sheet; and then, folding the region including said one side edge of the sheet, along a third fold line in the conveyance direction, toward the second side of the sheet. 6. The manufacturing apparatus according to claim 5 , wherein the folding unit is further configured to fold each of the sheets by folding another region including another side edge of the sheet along a fourth fold line in the conveyance direction, toward the first side of the sheet, wherein the side edges of the sheet are opposite to each other in a cross direction crossing the conveyance direction.
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