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用于块状透明体系原位观察的凝固炉及图像分析方法。

Solidification furnace for in situ observation of bulk transparent systems and image analysis methods.

作者信息

Mota F L, Medjkoune M, Littles L Strutzenberg, Karma A, Bergeon N

机构信息

Aix Marseille University, Université de Toulon, CNRS, IM2NP, Marseille, France.

Marshall Space Flight Center, Alabama, Huntsville 35808, USA.

出版信息

Rev Sci Instrum. 2023 Jun 1;94(6). doi: 10.1063/5.0150391.

Abstract

This paper aims to describe the experimental framework of the Directional Solidification Insert, installed onboard the International Space Station, dedicated to the in situ and real-time characterization of the dynamic selection of the solid-liquid interface morphology in bulk samples of transparent materials under diffusive growth conditions. The in situ observation of the solid-liquid interface is an invaluable tool for gaining knowledge on the time evolution of the interface pattern because the initial morphological instability evolves nonlinearly and undergoes a reorganization process. The result of each experiment, characterized by the sample concentration, a thermal gradient, and a pulling rate, is a large number of images. The interpretation of these images necessitates a robust identification of each cell/dendrite's position and size during the entire solidification. Several image analysis methods have been developed to reliably achieve this goal despite varying contrast and noise levels and are described in detail. Typical solidification experiments are presented, and the dynamics of the pattern formation are analyzed to illustrate the application of the image analysis methods.

摘要

本文旨在描述安装在国际空间站上的定向凝固插件的实验框架,该框架致力于在扩散生长条件下对透明材料块状样品中固液界面形态的动态选择进行原位实时表征。固液界面的原位观察是了解界面图案随时间演变的宝贵工具,因为初始形态不稳定性会非线性演化并经历重组过程。每个实验的结果以样品浓度、热梯度和提拉速率为特征,是大量的图像。要解释这些图像,就需要在整个凝固过程中对每个晶胞/枝晶的位置和尺寸进行可靠识别。尽管对比度和噪声水平各不相同,但已经开发了几种图像分析方法来可靠地实现这一目标,并将对其进行详细描述。文中展示了典型的凝固实验,并分析了图案形成的动力学,以说明图像分析方法的应用。

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