Effects of forming factors on production of wide clad aluminum alloy foils by single roll rapid solidification
Production of rapidly solidified aluminum alloy clad foils with 160mm width were attempted by use of a single roll apparatus with tandem nozzles, controlling some forming factors, ie. roll speed, thickness and width of the base foil and overlying foil, order of ejection of molten alloys from two noz...
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| Published in | Journal of Japan Institute of Light Metals Vol. 39; no. 6; pp. 423 - 430 |
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| Main Authors | , |
| Format | Journal Article |
| Language | English Japanese |
| Published |
The Japan Institute of Light Metals
1989
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0451-5994 1880-8018 1880-8018 |
| DOI | 10.2464/jilm.39.423 |
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| Abstract | Production of rapidly solidified aluminum alloy clad foils with 160mm width were attempted by use of a single roll apparatus with tandem nozzles, controlling some forming factors, ie. roll speed, thickness and width of the base foil and overlying foil, order of ejection of molten alloys from two nozzles, distance between nozzles, combination of alloys for base and overlying foils. When roll speed is low or distance between nozzles is not suitable, there are cracks and disturbed layer at interface between base and overlying foils. Sound clad foil is achieved by decreasing width and thickness of overlying foils less than those of base foils. Materials and surface condition of base foils affect the surface condition of overlying foils. Combinations of alloys for base and overlying foils affect formation of crinkles of clad foil. |
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| AbstractList | Production of rapidly solidified aluminum alloy clad foils with 160mm width were attempted by use of a single roll apparatus with tandem nozzles, controlling some forming factors, ie. roll speed, thickness and width of the base foil and overlying foil, order of ejection of molten alloys from two nozzles, distance between nozzles, combination of alloys for base and overlying foils. When roll speed is low or distance between nozzles is not suitable, there are cracks and disturbed layer at interface between base and overlying foils. Sound clad foil is achieved by decreasing width and thickness of overlying foils less than those of base foils. Materials and surface condition of base foils affect the surface condition of overlying foils. Combinations of alloys for base and overlying foils affect formation of crinkles of clad foil. Production of rapidly solidified Al alloy (Al--8Si, Al--12Si) clad foils with 160 mm width was attempted using a single roll apparatus with tandem nozzles, controlling some forming factors, i.e. roll speed, thickness and width of the base foil and overlying foil, order of ejection of molten alloys from two nozzles, distance between nozzles, combination of alloys for base and overlying foils. When roll speed is low or distance between nozzles is not suitable, there are cracks and disturbed layer at interface between base and overlying foils. Sound clad foil is achieved by decreasing width and thickness of overlying foils to less than those of base foils. Materials and surface condition of base foils affect the surface condition of overlying foils. Combinations of alloys for base and overlying foils affect formation of crinkles of clad foil. Photomicrographs. 10 ref.--AA(Alfed/UK/US). |
| Author | MOTOMURA, Mitsugu HAGA, Toshio |
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| References | 7) 本村貢, 羽賀俊雄: 軽金属, 38 (1988), 528. 3) 猪俣浩一郎, 島貫専治, 芳野久士: 日本金属学会会報, 20 (1981), 855. 2) たとえば, 岡田明, 三宅秀和, 丹羽 徹: 鋳物, 59 (1987), 596. 6) 本村貢, 羽賀俊雄: 軽金属学会第74回春期大会講演概要集. 1) たとえば, 冨田貞美, 鈴木秀夫: 日本金属学会誌, 48 (1984), 202. 4) H. Soderhjelm, L. Mandal: Rapidly Quenched Metals V, Vol. 1, (1985), 107. 10) K. Kunimasa, P. H. Shingu: The Japan Inst. Metal, 6 (1986), 454. 5) 本村貢, 羽賀俊雄: 軽金属学会第72回春期大会講演概要集. 8) 本村貢, 羽賀俊雄: 軽金属, 39 (1989), 196. 9) M. Matsuura, K. Suzuki, M. Kikuchi, M. Yagi: Japan J. Appl. Phys., 19 (1980), 1781. |
| References_xml | – reference: 4) H. Soderhjelm, L. Mandal: Rapidly Quenched Metals V, Vol. 1, (1985), 107. – reference: 9) M. Matsuura, K. Suzuki, M. Kikuchi, M. Yagi: Japan J. Appl. Phys., 19 (1980), 1781. – reference: 2) たとえば, 岡田明, 三宅秀和, 丹羽 徹: 鋳物, 59 (1987), 596. – reference: 1) たとえば, 冨田貞美, 鈴木秀夫: 日本金属学会誌, 48 (1984), 202. – reference: 10) K. Kunimasa, P. H. Shingu: The Japan Inst. Metal, 6 (1986), 454. – reference: 3) 猪俣浩一郎, 島貫専治, 芳野久士: 日本金属学会会報, 20 (1981), 855. – reference: 5) 本村貢, 羽賀俊雄: 軽金属学会第72回春期大会講演概要集. – reference: 6) 本村貢, 羽賀俊雄: 軽金属学会第74回春期大会講演概要集. – reference: 7) 本村貢, 羽賀俊雄: 軽金属, 38 (1988), 528. – reference: 8) 本村貢, 羽賀俊雄: 軽金属, 39 (1989), 196. |
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| Snippet | Production of rapidly solidified aluminum alloy clad foils with 160mm width were attempted by use of a single roll apparatus with tandem nozzles, controlling... Production of rapidly solidified Al alloy (Al--8Si, Al--12Si) clad foils with 160 mm width was attempted using a single roll apparatus with tandem nozzles,... |
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| StartPage | 423 |
| SubjectTerms | clad foil forming factor interface rapid solidification single roll method |
| Title | Effects of forming factors on production of wide clad aluminum alloy foils by single roll rapid solidification |
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