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    • 161. 发明授权
    • Display device and manufacturing method therefor
    • 显示装置及其制造方法
    • US06542284B2
    • 2003-04-01
    • US09962222
    • 2001-09-26
    • Akiko Ogawa
    • Akiko Ogawa
    • G02B2600
    • B01J13/08G02F1/167
    • A display device for use in a microcapsule type electrophoretic display apparatus and a manufacturing method therefor is provided, in which microcapsules can be aligned so as to form a monolayer, and accordingly, the microcapsules can be efficiently used. In addition, a display device is provided in which a color display can be created, positioning of the microcapsules can be easily performed, and accordingly, the contrast is improved, and a manufacturing method therefor is also provided. The display device includes a substrate, an insulating liquid, charged color particles dispersed therein, a first electrode formed on the substrate, and a second electrode, wherein a display is created by causing the migration of the charged color particles toward the first electrode or the second electrode by a voltage applied therebetween. The microcapsules are each formed by enclosing the insulating liquid and the charged color particles in a transparent container, and the microcapsules are aligned and are enclosed in fibers composed of a light transmissive resin.
    • 提供了一种用于微胶囊型电泳显示装置的显示装置及其制造方法,其中微胶囊可以排列成单层,因此可以有效地使用微胶囊。 此外,提供了可以产生彩色显示的显示装置,可以容易地进行微胶囊的定位,因此提高了对比度,并且还提供了其制造方法。 显示装置包括基板,绝缘液体,分散在其中的带电色粒子,形成在基板上的第一电极和第二电极,其中通过使带电色粒子向第一电极或第 第二电极通过施加在其间的电压。 微胶囊各自通过将透明容器中的绝缘液体和带电色粒子包围而形成,并且微胶囊被对准并被包含在由透光树脂组成的纤维中。
    • 165. 发明授权
    • Vitamin encapsulation
    • 维生素包封
    • US4389419A
    • 1983-06-21
    • US205340
    • 1980-11-10
    • Franklin LimRichard D. Moss
    • Franklin LimRichard D. Moss
    • A61K9/16A61K9/50A61K9/66B01J13/08A23L1/30B01J13/02
    • A61K9/1652A61K9/5036B01J13/08
    • Disclosed is a process for encapsulating oils and oil-soluble substances in multi-compartmentalized, mechanically stable microcapsules. The process comprises the steps of first forming an emulsion consisting of a continuous phase comprising an aqueous solution of an alkali metal alginate and optionally a water-soluble, alcohol-insoluble filler such as a polysaccharide, and a dispersed phase of an oleophilic substance such as one or more vitamins dissolved in an oil. The emulsion is then formed into droplets which are thereafter immersed in an alcoholic solution of multivalent cations, to produce a shape-retaining alginate matrix filled with precipitated polysaccharide and enclosing plural oil droplets. The vitamins are thereby protected from oxidative degradation and can be handled like conventional crystalline solids.
    • 公开了一种将油和油溶性物质包封在多室化机械稳定的微胶囊中的方法。 该方法包括以下步骤:首先形成由包含碱金属藻酸盐的水溶液和任选的水溶性,不溶于醇的填料如多糖的连续相组成的乳液,以及亲油性物质如 溶解在油中的一种或多种维生素。 然后将乳液形成液滴,然后将其浸入多价阳离子的醇溶液中,以产生填充有沉淀多糖并包围多个油滴的形状保持藻酸盐基质。 因此,维生素被保护免受氧化降解,并且可像常规结晶固体一样处理。
    • 166. 发明授权
    • Microencapsulation process and resulting microcapsules
    • 微胶囊化方法和微胶囊
    • US4269729A
    • 1981-05-26
    • US59733
    • 1979-07-23
    • Hitoshi MaruyamaKoichi KajitaniMakoto Shiraishi
    • Hitoshi MaruyamaKoichi KajitaniMakoto Shiraishi
    • B41M5/165B01J13/08B01J13/02
    • B01J13/08Y10S428/914Y10T428/2987Y10T428/2989
    • Microcapsules having walls formed from polyvinyl alcohol are prepared by dispersing a substantially water insoluble nuclear material in an aqueous solution of a polyvinyl alcohol polymer, which solution has a cloud point, phase separating and depositing a concentrated aqueous solution of the polyvinyl alcohol polymer as a separated phase around said nuclear material from the bulk continuous phase by maintaining the temperature of the system above the cloud point of the aqueous polyvinyl alcohol polymer solution, and subjecting the phase separated solution to conditions which substantially solidify or gel said polyvinyl alcohol polymer in said concentrated aqueous solution of said separated phase around said nuclear material but which do not substantially solidify or gel the polyvinyl alcohol in the diluted aqueous solution of the continuous phase.
    • 通过将基本上不溶于水的核材料分散在聚乙烯醇聚合物的水溶液中制备具有由聚乙烯醇形成的壁的微胶囊,该溶液具有浊点,相分离和沉积作为分离的聚乙烯醇聚合物的浓缩水溶液 通过将系统的温度保持在聚乙烯醇聚合物水溶液的浊点以上,并使相分离的溶液进行基本上固化或凝胶化所述聚乙烯醇聚合物在所述浓缩水溶液中的条件 所述分离相在所述核材料周围的溶液,但是在连续相的稀释水溶液中基本上不固化或凝胶化聚乙烯醇。