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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Analysis of recrystallization behavior of shot peened graphene reinforced Al composites during isothermal annealing by X-ray diffraction method
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Analysis of recrystallization behavior of shot peened graphene reinforced Al composites during isothermal annealing by X-ray diffraction method

机译:X射线衍射法在等温退火过程中射击喷射石墨烯增强Al复合材料的重结晶行为分析

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摘要

Graphene reinforced Al matrix composites (G/Al) with high mechanical property was successfully reported. However, there are quite limited studies about the recrystallization behavior of these new composites after plastic deformation. Here, the recrystallization behaviors of shot-peened surface layer of G/Al composites and Al during isothermal annealing were investigated by using X-ray diffraction line profile analysis method. The microstrain, domain size, dislocation density at different annealing conditions were calculated. The results revealed that besides annealing temperature and time, the existence of graphene reinforcement also played an important role for its microstructure evolution. Based on the results of X-ray diffraction line profile analysis, the microstrain relaxation energy and recrystallization activation energy of G/Al composites and Al were calculated by computer regression analysis, respectively. It showed that microstrain relaxation energy and recrystallization activation energy of G/Al composites were higher than that of Al, which can be ascribed to the reinforcement's impeding movement of dislocations, grain and subgrain boundaries in the process of recrystallization. The effect of graphene reinforcement on the variation of relative texture coefficient and microhardness was also distinct. Based on above results, it can be concluded that the existence of graphene reinforcement may enhance the thermostablity of deformed G/Al composites. (C) 2018 Elsevier B.V. All rights reserved.
机译:成功地报道了具有高机械性能的石墨烯增强Al基复合材料(G / Al)。然而,塑性变形后这些新复合材料的重结晶行为存在相当有限的研究。这里,通过使用X射线衍射线谱分析方法研究了在等温退火期间G / Al复合材料和Al的射击喷射表面层的重结晶行为。计算微陶器,域大小,不同退火条件下的位错密度。结果表明,除了退火温度和时间之外,石墨烯增强件的存在也为其微观结构演变起着重要作用。基于X射线衍射线谱分析的结果,通过计算机回归分析计算了G / Al复合材料和Al的微纹状弛豫能量和再结晶活化能量。结果表明,G / Al复合材料的微纹状弛豫能量和再结晶活化能量高于Al的弛豫能量,其可以归因于在重结晶的过程中的脱位,晶粒和子质边的障碍物的受阻运动。石墨烯增强对相对纹理系数和微硬度变化的影响也是如此。基于上述结果,可以得出结论,石墨烯增强件的存在可以增强变形的G / Al复合材料的热稳定性。 (c)2018年elestvier b.v.保留所有权利。

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