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Encapsulation of Low Density Materials for the First Stage of Fast Ignition Realization Experiment (FIREX-I) - Control of Microstructure and Gelation Process using a Phase-Transfer Catalyst and Tailored Polymers

机译:低密度材料的封装,用于快速点火实现实验的第一阶段(FIREX-I)-使用相转移催化剂和量身定制的聚合物控制微观结构和胶凝过程

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Development of foam capsule fabrication for cryogenically cooled fuel targets is overviewed in the present paper. The fabrication development was initiated as a part of the Fast Ignition Realization Experiment (FIREX) Project at the ILE, Osaka University in the way of bilateral collaboration between Osaka University and National Institute for Fusion Science (NIFS). For the first stage of FIREX (FIREX-1), a foam cryogenic target was designed where low-density foam shells with a conical light guide will be cooled down to the cryogenic temperature and will be fueled through a narrow pipe. The required diameter and thickness of the capsule are 500 驴m and 20 驴m, respectively. The material should be low-density plastics foam. We have prepared such capsules using 1) new material of (phloroglucinolcarboxylic acid)/formalin resin to control kinematic viscosity of the precursor, 2) phase-transfer-catalyzed gelation process to keep density matching of three phases of the emulsion. 3) non-volatile silicone oil as outer oil of emulsion in order to prevent hazard halogenated hydrocarbon and flammable mineral oil. The obtained foam capsule had fine structure of 180 nm (outer surface) to 220 nm (inner surface) and uniform thickness reaching to resolution limit of optical analysis (0.5 驴m). A small hole was made before the solvent exchange and the drying process to prevent distortion due to volume changes. The density of dried foam was 0.29 g/cm3.
机译:本文概述了用于低温冷却燃料靶材的泡沫胶囊制造技术的发展。作为大阪大学与国立融合科学研究院(NIFS)的双边合作,在大阪大学ILE的快速点火实现实验(FIREX)项目的一部分中启动了制造开发。对于FIREX(FIREX-1)的第一阶段,设计了泡沫低温靶材,其中带有圆锥形光导的低密度泡沫壳将被冷却到低温温度,并通过狭窄的管道供油。胶囊的所需直径和厚度分别为500驴米和20驴米。该材料应为低密度塑料泡沫。我们使用1)(间苯三酚羧酸)/福尔马林树脂的新材料来控制前驱体的运动粘度,2)相转移催化的胶凝过程以保持乳液的三个相的密度相匹配来制备这种胶囊。 3)非挥发性硅油作为乳液的外部油,以防止危害卤代烃和易燃矿物油。所获得的泡沫胶囊具有180nm(外表面)至220nm(内表面)的精细结构,并且均匀的厚度达到光学分析的分辨率极限(0.5驴米)。在溶剂交换和干燥过程之前打了一个小孔,以防止由于体积变化而变形。干燥泡沫的密度为0.29g / cm 3。

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