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Effect of the annealing process on the microstructure and mechanical properties of multilayered Zr/Ti composites

机译:退火工艺对多层Zr / Ti复合材料显微组织和力学性能的影响

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摘要

To explore the potential application of Zr-based alloys as structural materials, multilayered Zr/Ti composites were fabricated by a vacuum diffusion annealing bonding process. Scanning electron microscopy (SEM) in tandem with energy dispersive spectroscopy (EDS) and electron backscatter diffraction (EBSD) was used to characterize the microstructures and chemical elemental distributions of the Zr/Ti laminated metal composites (LMCs). Micro-hardness and in-plane compression tests were conducted to evaluate the mechanical properties of the Zr/Ti LMCs. It is revealed that the microstructure of the Zr/Ti LMCs is composed of alternating Zr layers, Ti layers and Zr-Ti mutual diffusion layers (interface layers). The width of the interface layer increases with increased annealing temperature and time. The micro-hardness test results show that the hardness distribution is uneven among the different layers and that the interface layer has the highest hardness. Compression results indicate that the strength of the Zr/Ti LMCs are higher than that of the constituent materials due to the contribution of the interface layer. The diffusion coefficient and the relation between the microstructure and yield strength are also discussed in this study.
机译:为了探索Zr基合金作为结构材料的潜在应用,通过真空扩散退火结合工艺制备了多层Zr / Ti复合材料。扫描电子显微镜(SEM)与能量色散光谱(EDS)和电子反向散射衍射(EBSD)一起用于表征Zr / Ti层压金属复合材料(LMCs)的微观结构和化学元素分布。进行了显微硬度和平面压缩试验,以评估Zr / Ti LMC的机械性能。结果表明,Zr / Ti LMCs的微观结构由交替的Zr层,Ti层和Zr-Ti互扩散层(界面层)组成。界面层的宽度随着退火温度和时间的增加而增加。显微硬度测试结果表明,不同层之间的硬度分布不均匀,并且界面层具有最高的硬度。压缩结果表明,由于界面层的作用,Zr / Ti LMC的强度高于组成材料的强度。本研究还讨论了扩散系数以及微观结构与屈服强度之间的关系。

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