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    • 3. 发明授权
    • Coating composition
    • 涂料组成
    • US06797328B2
    • 2004-09-28
    • US10349906
    • 2003-01-23
    • Albert Benner BrownRalph Craig EvenDennis Paul LorahAlvin Michael MauriceRobert Victor SloneXun Tang
    • Albert Benner BrownRalph Craig EvenDennis Paul LorahAlvin Michael MauriceRobert Victor SloneXun Tang
    • B05D300
    • C08F4/34C08F20/12
    • An aqueous composition suitable for use, when dry, as an improved coating is provided including an aqueous emulsion polymer, the polymer having a glass transition temperature (Tg) from greater than 20° C. to 80° C., formed by the free radical polymerization of at least one ethylenically unsaturated nonionic acrylic monomer and 0-7.5%, by weight based on the total weight of the polymer, ethylenically unsaturated acid monomer in the presence of 0.01-1.0%, by weight based on the total weight of the polymer, t-alkyl hydroperoxide, t-alkyl peroxide, or t-alkyl perester wherein the t-alkyl group includes at least 5 Carbon atoms and, optionally, at least one other oxidant. A method of preparing the emulsion polymer, a method for providing a coated substrate wherein the coating contains the emulsion polymer having a Tg from −20° C. to 80° C., and a method for improving the scrub resistance of a coating by including the emulsion polymer having a Tg from −20° C. to 80° C. are also provided.
    • 提供适用于干燥时作为改进涂层的水性组合物,包括水性乳液聚合物,所述聚合物的玻璃化转变温度(Tg)大于20℃至80℃,由自由基形成 至少一种烯键式不饱和非离子丙烯酸单体的聚合,基于聚合物的总重量,基于聚合物总重量的0.01-1.0%的烯键式不饱和酸单体的总重量为0-7.5% 叔烷基过氧化氢,叔烷基过氧化物或叔烷基过酸酯,其中叔烷基包括至少5个碳原子和任选的至少一种其它氧化剂。 一种制备乳液聚合物的方法,一种提供涂覆基质的方法,其中该涂层含有-20℃至80℃的Tg的乳液聚合物,以及一种通过包括以下步骤改善涂层的耐擦洗性的方法: 还提供了具有-20℃至80℃的Tg的乳液聚合物。
    • 9. 发明授权
    • Nanocomposite compositions and methods for making and using same
    • 纳米复合组合物及其制备和使用方法
    • US06914095B2
    • 2005-07-05
    • US09954135
    • 2001-09-17
    • Dennis Paul LorahRobert Victor Slone
    • Dennis Paul LorahRobert Victor Slone
    • C09K3/10C08F2/00C08F2/44C08F265/06C08F292/00C08K9/04C08K9/08C08K3/34
    • B82Y30/00C08F2/00C08F2/44C08F265/06C08F292/00C08K9/04C08K9/08C08K2201/011
    • The present invention is directed, in part, to improved nanocomposite compositions and processes for preparing same. In one embodiment, there is provided a process for preparing an aqueous nanocomposite dispersion, wherein the process comprises: providing at least one first ethylenically unsaturated monomer; providing an aqueous clay dispersion comprising an at least partially exfoliated aqueous clay having a first exchangeable cation and, optionally, at least one second ethylenically unsaturated monomer; adding a second cation to said aqueous clay dispersion, wherein at least a portion of the second cation exchanges with at least a portion of the first cation to form a modified aqueous clay dispersion; combining the first ethylenically unsaturated monomer and the modified aqueous clay dispersion; and polymerizing at least a portion of the first or second monomer to form the aqueous nanocomposite dispersion wherein at least one of the first or the second monomers comprises a polar monomer.
    • 本发明部分地涉及改进的纳米复合材料组合物及其制备方法。 在一个实施方案中,提供了一种制备水性纳米复合物分散体的方法,其中所述方法包括:提供至少一种第一烯属不饱和单体; 提供一种含水粘土分散体,其包含至少部分剥离的水性粘土,其具有第一可交换阳离子和任选的至少一种第二烯属不饱和单体; 向所述含水粘土分散体中加入第二阳离子,其中至少一部分第二阳离子与第一阳离子的至少一部分交换以形成改性的含水粘土分散体; 将第一烯属不饱和单体和改性含水粘土分散体结合; 并聚合第一或第二单体的至少一部分以形成水性纳米复合物分散体,其中第一或第二单体中的至少一种包含极性单体。