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    • 7. 发明申请
    • METHOD FOR FORMING AN EMBOSSED HOLOGRAPHIC PATTERN
    • 形成全息图形图案的方法
    • US20100000668A1
    • 2010-01-07
    • US12301185
    • 2007-12-05
    • Bo WuQiming JinQing Gong
    • Bo WuQiming JinQing Gong
    • B32B37/02B41M5/025B01J19/08
    • G03H1/028B44C1/175G03H1/0248G03H1/18G03H1/182G03H2001/0296G03H2250/12G03H2250/36G03H2270/21
    • A method for forming an embossed holographic pattern comprises the following steps: A. recording the required pattern onto a photo-sensitive plate by means of laser holography to produce an optical mask plate for the holographic pattern; B. duplicating the laser holographic information on the optical mask plate onto a metal plate, to produce a metal plate for the holographic pattern; C. transferring the laser holographic pattern on the metal plate onto an information layer on a water soluble film, to form an embossed holographic water transfer printing film; D. carrying out a cubic water transfer printing on the surface of a base material by using the embossed holographic water transfer printing film, to form the holographic pattern on the surface of the base material. With the method for forming the embossed holographic pattern according to the present invention, a holographic pattern can be formed on the surface of work-piece having a complex shape.
    • 用于形成压花全息图案的方法包括以下步骤:A.通过激光全息术将所需图案记录到感光板上,以产生用于全息图案的光学掩模板; B.将光学掩模板上的激光全息信息复制到金属板上,以产生用于全息图案的金属板; C.将金属板上的激光全息图转移到水溶性薄膜上的信息层上,形成压花全息水转移印刷膜; D.通过使用压花全息水转移印刷膜在基材的表面上进行立方体水转移印刷,以在基材的表面上形成全息图案。 利用根据本发明的压花全息图形成方法,可以在具有复杂形状的工件的表面上形成全息图案。
    • 8. 发明授权
    • Aqueous liquid crystal display cleaning agent compounds and their fabrication methods
    • 水性液晶显示清洗剂及其制造方法
    • US07553804B2
    • 2009-06-30
    • US11646050
    • 2006-12-26
    • Dong LiuXuegang ChenJunqing DongQing GongZhiql He
    • Dong LiuXuegang ChenJunqing DongQing GongZhiql He
    • C11D1/83C11D3/36
    • C11D11/0047C11D1/62C11D1/72C11D1/74C11D1/835C11D3/384
    • The present invention discloses aqueous LCD cleaning agent compounds and their fabrication methods. Said cleaning agent compounds comprise of double fatty acid polyethylene glycol ester, fatty alcohol polyoxyethylene ether, polyethylene(3) glycol alkyl ether tri(alkyl ethers)amine sulfate and/or polyethylene(3) glycol enyl ether tri(alkyl ethers)amine sulfate, alkyl benzenesulfonic acid, lecithins and water. In particular, the weight of the ingredients in the compounds as a weight percentage of the weight of the compounds is: double fatty acid polyethylene glycol ester (10-50 wt %), fatty alcohol polyoxyethylene ether (5-60 wt %), polyethylene(3) glycol alkyl ether tri(alkyl ethers)amine sulfate and/or polyethylene(3) glycol enyl ether tri(alkyl ethers)amine sulfate (5-20 wt %), alkyl benzenesulfonic acid (1-15 wt %), lecithins (1-10 wt %), water (5-50 wt %). Embodiments of the aqueous LCD cleaning agent compounds of the present invention can effectively remove both the crystal liquid materials in the gaps between the two glass substrates and foreign contaminate particles attached on the surfaces of the glass substrates. Moreover, the LCD cleaning agent compounds have the characteristics of low toxicity, environmental friendliness, low flammability and high cleaning capabilities for various crystal liquid materials.
    • 本发明公开了水性液体清洗剂化合物及其制备方法。 所述清洗剂化合物包括双重脂肪酸聚乙二醇酯,脂肪醇聚氧乙烯醚,聚乙烯(3)二醇烷基醚三(烷基醚)胺硫酸盐和/或聚乙烯(3)乙二醇烯基醚三(烷基醚) 烷基苯磺酸,卵磷脂和水。 特别地,作为化合物重量百分比的化合物中成分的重量是:双重脂肪酸聚乙二醇酯(10-50重量%),脂肪醇聚氧乙烯醚(5-60重量%),聚乙烯 (3)二醇烷基醚三(烷基醚)胺硫酸盐和/或聚乙烯(3)二醇烯基醚三(烷基醚)胺硫酸盐(5-20​​重量%),烷基苯磺酸(1-15重量%),卵磷脂 (1-10重量%),水(5-50重量%)。 本发明的水性液晶清洗剂化合物的实施方案可以有效地除去两个玻璃基板之间的间隙中的晶体液体材料和附着在玻璃基板表面上的外来污染颗粒。 此外,液晶清洗剂化合物具有低毒性,环保性,低燃烧性和各种液晶材料清洗能力强的特点。
    • 9. 发明申请
    • ZR-BASED AMORPHOUS ALLOY AND A PREPARING METHOD THEREOF
    • 基于ZR的非晶合金及其制备方法
    • US20090139612A1
    • 2009-06-04
    • US12275560
    • 2008-11-21
    • Kun LuLinlin JiangFaliang ZhangQing Gong
    • Kun LuLinlin JiangFaliang ZhangQing Gong
    • C22F1/16C22C45/10
    • C22C1/002C22C16/00C22C45/10
    • In one aspect, a Zr-based amorphous alloy comprises Zr, Ti, Cu, Ni, Fe, Be, and Sn. In another aspect, a Zr-based amorphous alloy comprises about 30-75 atomic percent of (ZrxTiySnz), about 10-35 atomic percent of (CumNin), about 0.1-15 atomic percent of Fe, and about 0.1-35 atomic percent of Be. Reference numerals x, y and z are atomic fractions, and x+y+z equals to 1, wherein x is about 0.6-0.85, and z is in the range of about 0.01x-0.1x. Reference numerals m and n are atomic fractions, and m+n equals to 1, and wherein m is about 0.5-0.65. In yet another aspect, a method for preparing a Zr-based amorphous alloy comprises melting a raw material comprising Zr, Ti, Cu, Ni, Fe, Be, and Sn to form an alloy mixture; and molding the alloy mixture to form the amorphous alloy.
    • 在一个方面,Zr基非晶合金包含Zr,Ti,Cu,Ni,Fe,Be和Sn。 另一方面,Zr基非晶态合金包含约30-75原子%的(Zr x Ti y Sn z z),约10-35原子%的(CumNin),约0.1-15原子%的Fe和约0.1-35原子%的 是。 附图标记x,y和z是原子级分,x + y + z等于1,其中x为约0.6-0.85,z在约0.01×0.1x的范围内。 标号m和n是原子级分,m + n等于1,其中m为约0.5-0.65。 在另一方面,一种制备Zr基非晶合金的方法包括熔化包含Zr,Ti,Cu,Ni,Fe,Be和Sn的原料以形成合金混合物; 并将该合金混合物成型以形成非晶合金。