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Fabrication and mechanical properties of ultrafine structured dissimilar laminated metal composite sheets (LMCS)

机译:超细结构异种层压金属复合板(LMCS)的制备和力学性能

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The ultrafine grain structure is very difficult to fabricate by severe plastic deformation (SPD) for metals with poor formability. In this paper, a fabrication technology of ultrafine structured dissimilar laminated metal composite sheets (LMCS) was developed for poor plastic metals which have low elongation by hot accumulative roll bonding (ARB) in conjunction with cold rolling. The hot ARBed 1100/7075 LMCS was cold rolled at room temperature after recrystallization annealing treatment. An ultrafine structured dissimilar LMCS was obtained without undergoing severe cold rolled deformation. The mechanical properties were enhanced and optimized by using heat treatment technology. The accelerated refining mechanism of grain was revealed by microstructure characterization of the composite sheet. The enhanced strength was mainly derived from the fine layers, refined grains, increased dislocation accumulation, and abundant dispersoids. The results of the research are helpful in improving the mechanical properties of dissimilar LMCS and optimizing the preparation technology.
机译:对于成型性差的金属,很难通过严重的塑性变形(SPD)来制造超细晶粒结构。在本文中,开发了一种超细结构的异种层压金属复合板(LMCS)的制造技术,该技术通过热累积滚焊(ARB)结合冷轧而具有低伸长率的不良塑性金属。在重结晶退火处理之后,将热的ARBed 1100/7075 LMCS在室温下冷轧。获得了没有经历严重的冷轧变形的超细结构异种LMCS。通过使用热处理技术来增强和优化机械性能。复合片材的微观结构表征揭示了晶粒的加速细化机理。增强的强度主要来自细小层,细化的晶粒,增加的位错积累和丰富的弥散体。研究结果有助于改善异种LMCS的力学性能,优化制备工艺。

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