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Interfacial Characterization and Bonding Properties of Copper/Aluminum Clad Sheets Processed by Horizontal Twin-Roll Casting, Multi-Pass Rolling, and Annealing

机译:水平双辊连铸,多道次轧制和退火处理的铜/铝复合板的界面特性和结合性能

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The copper/aluminum (Cu/Al) clad sheets were produced on a horizontal twin-roll caster and then were multi-pass rolled and annealed. The thickness of the as-cast clad sheet was 8 mm. Rolling was performed with total reductions of 12.5%, 25%, 37.5%, 50%, and 62.5%, separately. The effects of the rolling and annealing processes on the interface and peel strength of the Cu/Al clad sheets were investigated. The evolution of the interface and crack propagation were studied. The interface thickness of the as-cast clad sheet reached 9 μm to 10 μm. The average peel strength (APS) was only 9 N/mm. After multi-pass rolling, the peel strength first slightly increased and then gradually decreased with the increase of the rolling pass number. After annealing, the peel strength remarkably improved. The APS reached 25 N/mm when the rolled thickness was 7 mm. The improvement in the peel strength was due to the following three factors: (1) mechanical locking formed in the Cu/Al direct contact region after rolling, (2) the region of the Al matrix fracture, and (3) mechanical biting from the Cu/Al direct contact region.
机译:在卧式双辊连铸机上生产铜/铝(Cu / Al)复合板,然后进行多道次轧制和退火。浇铸的覆层板的厚度为8mm。轧制分别进行了12.5%,25%,37.5%,50%和62.5%的总压下率。研究了轧制和退火工艺对Cu / Al复合板的界面和剥离强度的影响。研究了界面的演变和裂纹扩展。铸态复合板的界面厚度达到9μm至10μm。平均剥离强度(APS)仅为9 N / mm。多道次轧制后,剥离强度随着轧制道次的增加而先略有增加,然后逐渐降低。退火后,剥离强度显着提高。当轧制厚度为7 mm时,APS达到25 N / mm。剥离强度的提高归因于以下三个因素:(1)轧制后在Cu / Al直接接触区域中形成机械锁定;(2)Al基体断裂区域;以及(3)发生机械咬合。 Cu / Al直接接触区。

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