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Interface Shear Actions and Mechanical Properties of Nanostructured Dissimilar Al Alloy Laminated Metal Composites

机译:纳米结构异种铝合金层合金属复合材料的界面剪切作用和力学性能

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The laminated metal composites (LMCs) of dissimilar metals (aluminium alloys: AA1100/AA7075) were fabricated using the accumulative roll bonding technique in conjunction with cold rolling. The LMCs of ultrafine grained AA1100 and nanostructured precipitates of AA7075 achieved metallurgical bonding. The microstructure of the bonding interfaces and constituent metals was investigated using scanning electron microscopy and transmission electron microscopy for the LMCs with different layers. The deformation incompatibility and shear actions were analyzed using the microanalysis of dissimilar bonding interfaces. The mechanism of grain refinement of LMCs was investigated and described based on the microstructure characterization. The mechanical properties, strengthening mechanism, and fracture mechanism of LMCs were also investigated. The research results showed that the strengthening mechanism of LMCs is the recombination action of grain refinement, dislocation, and laminated interfacial strengthening. The coordinated deformation of dissimilar metals and the layer thickness are important in improving the mechanical properties of LMCs consisting of dissimilar metals.
机译:使用累积辊压结合冷轧技术制造了异种金属(铝合金:AA1100 / AA7075)的层压金属复合材料(LMC)。超细晶粒AA1100的LMC和AA7075的纳米结构沉淀物实现了冶金结合。对于具有不同层的LMC,使用扫描电子显微镜和透射电子显微镜研究了键合界面和组成金属的微观结构。使用不同键合界面的微观分析来分析变形不相容性和剪切作用。基于显微组织表征,研究和描述了LMCs的晶粒细化机理。还研究了LMC的力学性能,增强机理和断裂机理。研究结果表明,LMCs的强化机制是晶粒细化,位错和层状界面强化的复合作用。异种金属的协调变形和层厚度对于改善由异种金属组成的LMC的机械性能很重要。

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