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首页> 外文期刊>Journal of Microscopy >The integration of experimental in-situ EBSD observations and numerical simulations: a novel technique of microstructural process analysis.
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The integration of experimental in-situ EBSD observations and numerical simulations: a novel technique of microstructural process analysis.

机译:实验原位EBSD观测和数值模拟的集成:一种微结构过程分析的新技术。

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摘要

The combination of subgrain- and grain-scale microstructural data collected during in-situ heating experiments and numerical simulations of equivalent microstructural development offers an innovative and powerful tool in the advancement of the understanding of microstructural processes. We present a system that fully integrates subgrain- to grain-scale crystallographic data obtained during in-situ observations during heating experiments in a scanning electron microscope and the two-dimensional hybrid numerical modelling system Elle. Such a system offers the unique opportunity to test and verify theories for microstructural development, as predictions made by numerical simulations can be directly coupled to appropriate physical experiments and, conversely, theoretical explanations of experimental observations should be testable with numerical simulations. Discrepancies between data obtained with both techniques suggest the need for an in-depth investigation and thus open up new avenues of theory development, modification and verification. In addition, because in numerical models it is possible to select the processes modelled, the effect of individual processes on the microstructural development of a specific material can be quantified. To illustrate the potential and methodology of the so-called EBSD2Elle system, two in-situ experiments and their equivalent numerical experiments are presented. These are static heating experiments of (a) an annealed Ni-foil coupled with a front tracking model for grain growth and (b) a cold deformed rock salt with kinetic Monte Carlo simulations for subgrain growth.
机译:在原位加热实验中收集的亚晶粒和晶粒级微观结构数据与等效微观结构发展的数值模拟相结合,为提高对微观结构过程的理解提供了一种创新而强大的工具。我们提出了一个系统,该系统完全整合了在扫描电子显微镜和二维混合数值建模系统Elle的加热实验过程中在原位观察过程中获得的亚晶粒度至晶粒度的晶体学数据。这样的系统为检验和验证微观结构发展的理论提供了独特的机会,因为数值模拟所做的预测可以直接与适当的物理实验耦合,相反,实验观察的理论解释也可以用数值模拟进行检验。两种技术获得的数据之间的差异表明需要进行深入研究,从而开辟了理论发展,修改和验证的新途径。另外,因为在数值模型中可以选择建模的过程,所以可以量化单个过程对特定材料的微结构发展的影响。为了说明所谓的EBSD2Elle系统的潜力和方法,提出了两个原位实验及其等效的数值实验。这些是静态加热实验,其中(a)退火的镍箔与用于晶粒生长的前跟踪模型耦合,以及(b)带有动力学Monte Carlo模拟的亚晶生长的冷变形岩盐。

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