Cryomacroscopy of vitrification, Part II: Experimental observations and analysis of fracture formation in vitrified VS55 and DP6.

Paul S Steif, Matthew Palastro, Chen-Rei Wan, Simona Baicu, Michael J Taylor, Yoed Rabin
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引用次数: 42

Abstract

A new imaging device, termed a "cryomacroscope", was used to observe macrofractures in the cryoprotectant cocktails DP6 and VS55. Details of the design and construction of the cryomacroscope were presented in Part I of this report, which focused on describing the apparatus and observations of crystallization. Part I and the current paper (Part II) describe events that occur as 1 mℓ of cryoprotectant contained in a glass vial is cooled from room temperature down to cryogenic temperatures (∼ -135°C). The presence of cracking, as well as patterns in their position and orientation, are found to be dependent on the cooling rate and on the specific cryoprotectant cocktail. Cracks, if present, disappear upon rewarming, although they appear to be sites for later preferential crystallization. Computations which predict temperatures and mechanical stresses are used to explain observations of cracking. In conjunction with these reports, additional photos of cryomacroscopy of vitrification, crystallization, and fracture formation are available at http://www.me.cmu.edu/faculty1/rabin/CryomacroscopyImages01.htm.

玻璃化的低温显微镜,第二部分:玻璃化VS55和DP6骨折形成的实验观察和分析。
一种新的成像设备,称为“低温显微镜”,用于观察低温保护剂DP6和VS55的大断裂。本报告第一部分详细介绍了低温显微镜的设计和构造,重点描述了结晶装置和观察结果。第一部分和当前的论文(第二部分)描述了当玻璃小瓶中含有1 μ m μ l的冷冻保护剂从室温冷却到低温(~ -135℃)时发生的事件。裂缝的存在,以及它们的位置和方向的模式,被发现取决于冷却速度和特定的冷冻保护剂混合物。裂纹如果存在,则在再加热时消失,尽管它们似乎是以后优先结晶的场所。预测温度和机械应力的计算被用来解释裂缝的观察结果。与这些报告相结合,更多的玻璃化、结晶和裂缝形成的低温显微镜照片可在http://www.me.cmu.edu/faculty1/rabin/CryomacroscopyImages01.htm上获得。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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