Transactions of Nonferrous Metals Society of China The Chinese Journal of Nonferrous Metals

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中国有色金属学报

ZHONGGUO YOUSEJINSHU XUEBAO

第27卷    第4期    总第217期    2017年4月

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文章编号:1004-0609(2017)-04-0766-10
嵌入式铝/钢带材轧制复合铝层和钢层厚度的变化规律
王春阳1,姜雁斌1, 2,谢建新1, 2,毛晓东1,周德敬3,张小军3

(1. 北京科技大学 材料先进制备技术教育部重点实验室,北京 100083;
2. 北京科技大学 现代交通金属材料与加工技术北京实验室,北京 100083;
3. 银邦金属复合材料股份有限公司 江苏省金属层状复合材料重点实验室,无锡 214145
)

摘 要: 采用冷轧复合法制备嵌入式铝/钢复合带材,研究了嵌入式铝/钢带材冷轧复合压下率、铝带初始厚度对轧制复合变形区内铝层和钢层厚度比变化的影响规律;采用切片法计算变形区内界面剪切应力分布,分析了铝层和钢层厚度比变化的原因。结果表明:在特定压下率(rcon)条件下,从轧制入口到出口变形区铝层与钢层厚度比呈先减小后保持基本不变的变化趋势;当压下率r<rcon或r>rcon时,铝层和钢层厚度比(RA/S)呈先减小后增加的变化趋势;当初始铝带厚度由0.50 mm减小至0.10 mm时,rcon由45%减小至30%;随着压下率的增加,变形区界面剪切应力增大,该剪切应力使铝层与钢层之间发生相对滑动(r<rcon)、无相对滑动(r=rcon)和粘着流动(r>rcon);仅当压下率r>rcon时,拉伸断口铝层与钢层不分层,复合带材具有良好的界面结合状态。

 

关键字: 嵌入式铝/钢复合带材;轧制复合;厚度比;结合性能

Thickness variation of aluminum layer-steel layer of embedded aluminum-steel composite strip during cold roll bonding
WANG Chun-yang1, JIANG Yan-bin1, 2, XIE Jian-xin1, 2, MAO Xiao-dong1, ZHOU De-jing3, ZHANG Xiao-jun3

1. Key Laboratory for Advanced Materials Processing, Ministry of Education, University of Science and Technology Beijing, Beijing 100083, China;
2. Beijing Laboratory of Metallic Materials and Processing for Modern Transportation, University of Science and Technology Beijing, Beijing 100083, China;
3. Jiangsu Key Laboratory for Clad Materials, Yinbang Clad Material Company Limited, Wuxi 214145, China

Abstract:The embedded aluminum-steel composite sheet was prepared by cold roll bonding (CRB) process. The influences of rolling reduction and initial thickness of aluminum strip on the thickness ratio of aluminum-steel in the deformation zone were investigated. The interfacial shear stress distribution in the deformation zone was calculated and the thickness variation of aluminum layer and steel layer was explained. The results show that the thickness ratio of aluminum-steel (RA/S) in the deformation zone from entrance to exit initially decreases and then remains unchanged under certain reduction rcon. While the reduction is higher or lower than rcon, RA/S initially decreases, and then increases. When the initial thickness of aluminum strip reduces from 0.50 mm to 0.10 mm, rcon decreases from 45% to 35%. With the increase of reduction, the interfacial shear stress increases, resulting in that relative sliding (reduction<rcon), non-relative sliding (reduction=rcon) and adhesive shearing (reduction>rcon) occur successively on the interface of the aluminum and steel layer. The composite strip has a good interfacial bonding quality, and there are no delamination of aluminum layer and steel layer on the tensile fracture when the reduction is higher than rcon.

 

Key words: embedded aluminum-steel composite sheets; cold roll bonding; thickness ratio; bonding property

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

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