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首页> 外文期刊>Materials Characterization >In situ EBSD observation of grain boundary character distribution evolution during thermomechanical process used for grain boundary engineering of 304 austenitic stainless steel
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In situ EBSD observation of grain boundary character distribution evolution during thermomechanical process used for grain boundary engineering of 304 austenitic stainless steel

机译:原位EBSD对304奥氏体不锈钢晶界工程热机械过程的晶界性状分布演化观察

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摘要

Electron backscatter diffraction (EBSD) was used to examine the microstructural evolution in a one-step thermomechanically processed 304 austenitic stainless steel specimen during the thermomechanical process of grain boundary engineering. Solution-treated materials were cold-rolled to 3% reduction and subsequently annealed at 1220 K for different annealing times. The EBSD observation of the specimen showed an increase in the frequency of coincident site lattice (CSL) boundaries and a decrease in the percolation probability of random boundaries. Additionally, the specimen exhibited heterogeneous growth of clusters of grains that contained a high frequency of CSL boundaries. These clusters of grains were developed in the entire observed area by strain induced grain growth according to the results of grain orientation spread analysis. The details of the growth of the clusters and the disconnection of random boundaries were successfully observed in situ using EBSD and a heating stage. The frequency of CSL boundaries increased with the growth of the clusters. Disconnection of random boundaries between the dusters was achieved by the formation of annealing twins through the impingement of the growing clusters during the thermomechanical process. Twin variant selection to introduce CSL boundaries into a random boundary network was observed by the in situ EBSD observation.
机译:电子反向散射衍射(EBSD)用于在晶界工程热机械过程中进行一步热机械加工的304奥氏体不锈钢试样中的微观结构演化。将溶液处理的材料冷轧至3%的减少,随后在1220K下退火,以进行不同的退火时间。标本的EBSD观察显示重合部位晶格(CSL)边界的频率增加,以及随机边界的渗透概率的降低。另外,样本表现出含有高频率的CSL边界的颗粒的异质生长。根据晶粒取向展开分析的结果,通过应变诱导的晶粒生长在整个观察区域中开发了这些晶粒。使用EBSD和加热阶段以原位成功地观察到簇的生长和随机边界的断开的细节。 CSL边界的频率随着簇的生长而增加。通过在热机械过程中形成退火双胞胎,通过形成退火孪晶来实现除尘器之间的随机边界的断开。通过原位EBSD观察观察到Twin Variant选择以将CSL边界引入随机边界网络。

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