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    • 126. 发明申请
    • Microencapsulation of oxygen or water sensitive materials
    • 氧气或水敏感材料的微胶囊化
    • US20050249952A1
    • 2005-11-10
    • US10654422
    • 2003-09-04
    • Niraj VasishthaHerman SchlameusDarren Barlow
    • Niraj VasishthaHerman SchlameusDarren Barlow
    • A23L1/00B01J13/02B01J13/04B01J13/08B01J13/10B32B5/16
    • B01J13/08A23P10/30A23P20/20B01J13/02B01J13/04B01J13/10Y10T428/2985Y10T428/2989Y10T428/2991
    • A barrier coating composition includes a polymer material and a structuring agent dispersed in said polymer material, wherein the structuring agent decreases oxygen or water permeability through the polymer material. The barrier coating composition can be used to coat a core component, which can be oxygen or water sensitive, to form a microencapsulated material. The microencapsulated material can be formed by microencapsulation methods, which include atomization or coacervation methods, including forming an oil emulsion of an oil phase and an aqueous phase, the oil phase including the core component and the aqueous phase including the polymer material, adding the structuring agent to one of the oil phase and the aqueous phase, mixing the oil emulsion to form desired particle sizes of the core component, forming the shell component around the core component to form the microencapsulated material, and extracting the formed microencapsulated material from the oil emulsion.
    • 阻隔涂层组合物包括分散在所述聚合物材料中的聚合物材料和结构化剂,其中所述结构剂通过所述聚合物材料降低氧气或水的渗透性。 阻挡涂层组合物可用于涂覆可以是氧或水敏感的核心组分以形成微胶囊化材料。 微胶囊化材料可以通过包括雾化或凝聚方法在内的微囊化方法形成,包括形成油相和水相的油乳液,所述油相包括核心组分和包含聚合物材料的水相,添加结构化 将其与油相和水相之一混合,将油乳液混合以形成所需粒径的核心组分,在芯组分周围形成壳组分以形成微囊化材料,并从油乳液中提取形成的微胶囊化材料 。
    • 129. 发明申请
    • Microcapsule and its uses
    • 微胶囊及其用途
    • US20050007649A1
    • 2005-01-13
    • US10790092
    • 2004-03-02
    • Hideyuki KawaiKazuhiro AnanMakoto MatsumotoMitsuo Kushino
    • Hideyuki KawaiKazuhiro AnanMakoto MatsumotoMitsuo Kushino
    • B01J13/02B01J13/08G02F1/167G02B26/00
    • G02F1/167B01J13/02B01J13/08Y10T428/2984Y10T428/2985
    • Objects of the present invention are to provide a microcapsule which can effectively and easily achieve: the prevention and adjustment of the bleeding-out of the encapsulated liquid substance from the capsule shell; and the enhancement and adjustment of the physical strength of the microcapsule; and to further provide a sheet and an electrophoretic display, both of which involve using the above microcapsules. As means of achieving these objects, the microcapsule according to the present invention is a microcapsule comprising a shell and a liquid substance that is encapsulated in the shell, with the microcapsule being characterized in that the shell contains fine particles having particle diameters of not larger than 1 μm. And the sheet according to the present invention comprises the microcapsules according to the present invention and a binder resin or comprises the microcapsules according to the present invention and a base material. And the electrophoretic display according to the present invention has as a constitutional portion a portion which includes opposite electrode films and the microcapsules according to the present invention, wherein at least either one of the opposite electrode films is transparent, and wherein the microcapsules are disposed between the opposite electrode films.
    • 本发明的目的是提供一种微胶囊,其能够有效且容易地实现:预防和调节胶囊壳体中包封的液体物质的渗出; 以及微胶囊物理强度的增强和调整; 并进一步提供一种片和电泳显示器,它们都涉及使用上述微胶囊。 作为实现这些目的的手段,根据本发明的微胶囊是包含壳和被包封在壳中的液体物质的微胶囊,其特征在于,所述壳包含粒径不大于 1个妈妈 根据本发明的片材包含根据本发明的微胶囊和粘合剂树脂,或包含本发明的微胶囊和基材。 根据本发明的电泳显示器具有作为构成部分的部分,其包括根据本发明的相对电极膜和微胶囊,其中相对电极膜中的至少一个是透明的,并且其中所述微胶囊位于 相对电极膜。