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Effect of heat treatment on the bending behavior of tri-layered Cu/Al/Cu composite plates

机译:热处理对三层Cu / Al / Cu复合板弯曲性能的影响

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Bending and fracture behaviors of tri-layered Cu/Al/Cu composite plates were processed by roll-bonding and the effects of work hardening and displacement rate sensitivity during bending on the overall bending behavior and fracture were investigated. As-roll-bonded composite exhibited the extensive load plateau before a relatively rapid load drop. The more localized bending in the as-roll-bonded Cu/Al/Cu clad composite can be attributed to the near-zero work hardening rate in bending. For the Cu/Al/Cu composites annealed at 300 ℃ and up to 450 ℃, the pronounced work hardening during bending tends to distribute the bending deformation uniformly. For the as-roll-bonded Cu/Al/Cu composite, a fatal crack perpendicular to the Cu/Al interface through the bottom Cu layer was formed by the large tensile stress associated with the severely localized bending. A large crack parallel to the interface adjacent to the fatal crack through the bottom Cu layer appeared to have propagated in Al layer, not along the interface between Al and the bottom Cu layer, suggesting the excellent bonding between Al and Cu in the as-roll-bonded Cu/Al/Cu. For annealed clad composites at 500 ℃, the localized bending is thought to be caused by the growth of cracks along the interface reaction layer, resulting in the fracture of bottom Cu layer.
机译:通过辊压结合处理三层Cu / Al / Cu复合板的弯曲和断裂行为,研究了弯曲过程中加工硬化和位移速率敏感性对整体弯曲行为和断裂的影响。轧制粘结复合材料在相对较快的载荷下降之前就表现出了广泛的载荷平稳期。轧制结合的Cu / Al / Cu包覆复合材料中更局限的弯曲可归因于弯曲中接近零的加工硬化率。对于在300℃至450℃退火的Cu / Al / Cu复合材料,弯曲过程中明显的加工硬化趋于均匀地分布弯曲变形。对于轧制结合的Cu / Al / Cu复合材料,垂直于通过底部Cu层的Cu / Al界面的致命裂纹是由与严重局部弯曲相关的大拉伸应力形成的。平行于与致命裂纹相邻的穿过底部Cu层的界面的大裂纹似乎已经在Al层中传播,而不是沿着Al和底部Cu层之间的界面传播,这表明铸态中Al和Cu之间的出色结合键合的Cu / Al / Cu。对于500℃退火复合材料,局部弯曲被认为是由于沿界面反应层的裂纹扩展而引起的,从而导致底部Cu层断裂。

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