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Progress in cold roll bonding of metals

机译:金属冷轧粘接研究进展

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摘要

Layered composite materials have become an increasingly interesting topic in industrial development. Cold roll bonding (CRB), as a solid phase method of bonding same or different metals by rolling at room temperature, has been widely used in manufacturing large layered composite sheets and foils. In this paper, we provide a brief overview of a technology using layered composite materials produced by CRB and discuss the suitability of this technology in the fabrication of layered composite materials. The effects of process parameters on bonding, mainly including process and surface preparation conditions, have been analyzed. Bonding between two sheets can be realized when deformation reduction reaches a threshold value. However, it is essential to remove surface contamination layers to produce a satisfactory bond in CRB. It has been suggested that the degreasing and then scratch brushing of surfaces create a strong bonding between the layers. Bonding mechanisms, in which the film theory is expressed as the major mechanism in CRB, as well as bonding theoretical models, have also been reviewed. It has also been showed that it is easy for fcc structure metals to bond compared with bcc and hcp structure metals. In addition, hardness on bonding same metals plays an important part in CRB. Applications of composites produced by CRB in industrial fields are briefly reviewed and possible developments of CRB in the future are also described. Corrections were made to the abstract and conclusion of this article on 18 June 2008. The corrected electronic version is identical to the print version.
机译:层状复合材料已经成为工业发展中越来越有趣的话题。作为通过在室温下轧制来粘结相同或不同金属的固相方法,冷轧粘结(CRB)已被广泛用于制造大层复合板和箔。在本文中,我们简要概述了使用CRB生产的层状复合材料的技术,并讨论了该技术在层状复合材料制造中的适用性。分析了工艺参数对粘结的影响,主要包括工艺和表面制备条件。当变形减少达到阈值时,可以实现两片之间的结合。但是,必须去除表面污染层以在CRB中产生令人满意的粘结。已经建议对表面进行脱脂,然后进行刮擦,在各层之间形成牢固的结合。还研究了将薄膜理论表达为CRB的主要机理的结合机理,以及结合理论模型。还已经表明,与bcc和hcp结构金属相比,fcc结构金属易于结合。另外,结合相同金属的硬度在CRB中起着重要的作用。简要回顾了CRB生产的复合材料在工业领域中的应用,并描述了CRB未来可能的发展。在2008年6月18日对本文的摘要和结论进行了更正。更正后的电子版本与印刷版本相同。

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