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A 4-D dataset for validation of crystal growth in a complex three-phase material, ice cream

机译:用于验证复杂的三相材料中晶体生长的4-D数据集,冰淇淋

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Four dimensional (4D, or 3D plus time) X-ray tomographic imaging of phase changes in materials is quickly becoming an accepted tool for quantifying the development of microstructures to both inform and validate models. However, most of the systems studied have been relatively simple binary compositions with only two phases. In this study we present a quantitative dataset of the phase evolution in a complex three-phase material, ice cream. The microstructure of ice cream is an important parameter in terms of sensorial perception, and therefore quantification and modelling of the evolution of the microstructure with time and temperature is key to understanding its fabrication and storage. The microstructure consists of three phases, air cells, ice crystals, and unfrozen matrix. We perform in situ synchrotron X-ray imaging of ice cream samples using in-line phase contrast tomography, housed within a purpose built cold-stage (-40 to +20°C) with finely controlled variation in specimen temperature. The size and distribution of ice crystals and air cells during programmed temperature cycling are determined using 3D quantification. The microstructural evolution of three-phase materials has many other important applications ranging from biological to structural and functional material, hence this dataset can act as a validation case for numerical investigations on faceted and non-faceted crystal growth in a range of materials.
机译:四维(4D或3D加时间)材料中相位变化的X射线断层摄影成像正在迅速成为量化的可接受的工具,用于量化微观结构的发展,以通知和验证模型。然而,研究的大多数系统已经具有相对简单的二元组合物,只有两个阶段。在这项研究中,我们在复杂的三相材料,冰淇淋中呈现了相位演化的定量数据集。冰淇淋的微观结构是情感感知方面的一个重要参数,因此,使用时间和温度的微观结构的演化的量化和建模是理解其制造和储存的关键。微观结构由三相,空气细胞,冰晶和未冷却基质组成。我们使用在线相位对比度断层扫描的冰淇淋样品的原位同步X射线成像进行,该冰淇淋样品内置在一个目的内,该目的内置冷级(-40至+ 20°C),具有精细控制的样品温度的变化。使用3D量化确定编程温度循环期间冰晶和空气电池的尺寸和分布。三相材料的微观结构演化具有许多从生物学到结构和功能材料的其他重要应用,因此该数据集可以作为验证案例,以便在一系列材料中对刻面和非刻面晶体生长的数值研究。

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