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首页> 外文期刊>Journal of Materials Processing Technology >Formation mechanism of dynamic multi-neutral points and cross shear zones in corrugated rolling of Cu/Al laminated composite
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Formation mechanism of dynamic multi-neutral points and cross shear zones in corrugated rolling of Cu/Al laminated composite

机译:Cu / Al层压复合材料波纹轧制动态多中性点和交叉剪切区的形成机理

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摘要

Corrugated rolling technology is a new method to produce metal laminated composite. Compared with flat rolling, the corrugated rolling can effectively promote the deformation of hard-deformed metal, refine metal grains and obtain laminated composite with superior mechanical properties. A three-dimensional simulation model of Cu/Al laminated composite produced by the corrugated rolling process is set up through finite element method, and its accuracy is verified by experiments. The friction stress of contact surfaces between the plate and the roll are obtained to analyze the dynamic multiple neutral points and the distributions of the cross shear zones at different moments. Corrugated rolling greatly increases the friction stress values and cross shear zone areas without the changing of rolling mill equipment capacity, and the microstructure characteristics in different position of deformation zone reflect the fact. The stress state of whole rolling process is further analyzed by stress triaxiality and Lode parameter plane in which the cross shear zones are close to considerable shear state, and greater shear deformation makes the rupture of the oxide layer and hardened layer at the bonding interface easier. Therefore, the corrugated rolling can coordinate the deformation of metals with different resistances and then improve the composite quality.
机译:波纹轧制技术是一种生产金属复合材料的新方法。与平轧相比,波纹轧制能有效促进硬变形金属的变形,细化金属晶粒,获得力学性能优越的层状复合材料。采用有限元方法建立了波纹轧制铜铝复合材料的三维仿真模型,并通过实验验证了模型的准确性。通过计算中厚板与轧辊接触面的摩擦应力,分析了动态多中性点和不同时刻横向剪切带的分布。在不改变轧机设备能力的情况下,瓦楞材轧制极大地增加了摩擦应力值和横向剪切区面积,变形区不同位置的显微组织特征反映了这一事实。通过应力三轴性和洛德参数平面进一步分析了整个轧制过程的应力状态,其中横向剪切带接近于相当大的剪切状态,较大的剪切变形使粘结界面处的氧化层和硬化层更容易断裂。因此,波纹轧制可以协调不同阻力金属的变形,从而提高复合材料的质量。

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