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    • 2. 发明公开
    • 항균성 섬유 및 그 제조방법
    • 抗生素纤维及其生产方法
    • KR1020070112482A
    • 2007-11-26
    • KR1020077023898
    • 2005-11-17
    • 코아 가라스 가부시키가이샤
    • 가미야요시아키다나카겐이치가나마루시노부
    • D01F1/10D01F6/92
    • D01F1/103A01N25/12A01N25/34C03C2204/02D01F6/92A01N59/16A01N2300/00
    • Provided are an antimicrobial fiber which is excellent in the surface smoothness, transparency and the like, even when it has a diameter of about 10 to 30 Vm; and a method for producing the antimicrobial fiber. An antimicrobial fiber containing a transparent resin, a antimicrobial glass, inorganic particles as a dispersing agent for the antimicrobial glass, characterized in that the antimicrobial fiber has a diameter in the range of 10 to 30 Vm, the antimicrobial glass has an average particle diameter in the range of 0.1 to 10 Vm, the antimicrobial glass is added in an amount in the range of 0.1 to 10 wt % relative to the whole amount, the inorganic particles have an average particle diameter in the range of 1 to 15 Vm, and the inorganic particles are added in an amount in the range of 0.1 to 50 parts by weight relative to 100 parts by weight of the added amount of the antimicrobial glass.
    • 即使直径为10〜30Vm左右,表面平滑性,透明性等也优异的抗微生物纤维, 和抗微生物纤维的制造方法。 含有透明树脂的抗微生物纤维,抗微生物玻璃,作为抗微生物玻璃分散剂的无机颗粒,其特征在于,抗微生物纤维的直径在10〜30Vm范围内,抗菌玻璃的平均粒径为 0.1〜10Vm的范围内,相对于全部量,抗微生物玻璃的添加量为0.1〜10重量%,无机粒子的平均粒径在1〜15μm的范围内, 相对于100重量份的抗微生物玻璃的添加量,无机颗粒的添加量为0.1〜50重量份。
    • 10. 发明公开
    • 글라스 용기의 원 프레스 제조 방법
    • 玻璃容器一体式制造方法
    • KR1020100051661A
    • 2010-05-17
    • KR1020107003553
    • 2009-05-12
    • 코아 가라스 가부시키가이샤
    • 이시가메주지야마나카타케노리다테다이스케
    • C03B11/00
    • C03B11/10C03B9/385C03B9/3866C03B9/3875C03B11/127Y02P40/57
    • Disclosed is a glass container one press manufacturing method that can efficiently produce even a glass container in which the thickest part is greater than a specified value by using a split mold with a specific separation line. (A) a press step, in which parison in a finished shape is formed with one press using a mold that includes a mold base, that splits in two with a dividing line as a boundary, and an opening, (B) a transfer step, in which the parison in a finished shape is transferred to a cooling die, and (C) a cooling step, whereby a glass container is produced from the parison in a finished shape by a first cooling air stream being blown along the inner circumferential surface and a second cooling air stream to cool the external circumferential surface being blown thereon, are implemented, in sequence, in the glass container one press manufacturing method. In the press step (A), a mold is used in which the dividing line is positioned at the shoulder between the mouth and the body of the parison in a finished shape.
    • 公开了一种玻璃容器一冲压制造方法,其可以通过使用具有特定分离线的分模来有效地生产最厚部分大于特定值的玻璃容器。 (A)压制步骤,其中使用包括模具底座的模具以一次压制形成成形形状的型坯,该模具基座以划分线分为两部分作为边界,以及开口,(B)转印步骤 ,其中将成品形状的型坯转移到冷却模具中,(C)冷却步骤,由第一冷却空气流沿着内周面吹送由成型的型坯从玻璃制成玻璃容器 并且第一冷却空气流冷却被吹送到其上的外周面,依次在玻璃容器一按压制造方法中实施。 在压制工序(A)中,使用分割线位于型坯的口与坯体之间的肩部的成型模具。