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    • 61. 发明授权
    • Catalyst dip
    • 催化剂浸渍
    • US08551567B1
    • 2013-10-08
    • US13489216
    • 2012-06-05
    • Shane R. Parnell
    • Shane R. Parnell
    • B05D3/02
    • A63B45/00A63B37/0003A63B37/0024C08G18/0895C08G18/16C08G18/72C09D175/04
    • The present invention relates to a method for forming a golf ball. The method comprises mixing a polyisocyanate crosslinker with a base TPU cover material, wherein the polyisocyanate crossliker is aliphatic, miscible with the base TPU cover material and has functionalities greater than or equal to 2. The method further comprises dipping a golf ball in a catalyst solution, wherein the catalyst solution is allowed to absorb into a cover of the golf ball and heating the golf ball to allow continued diffusion of the catalyst solution into the cover of the golf ball.
    • 本发明涉及一种高尔夫球的形成方法。 该方法包括将多异氰酸酯交联剂与基础TPU覆盖材料混合,其中多异氰酸酯交联剂是脂族的,可与基底TPU覆盖材料混溶并具有大于或等于2的官能度。该方法还包括将高尔夫球浸入催化剂溶液 ,其中催化剂溶液被吸收到高尔夫球的盖子中并加热高尔夫球以允许催化剂溶液继续扩散到高尔夫球的盖子中。
    • 64. 发明授权
    • Urethane-forming reaction catalyst and method for producing urethane material
    • 氨基甲酸酯形成反应催化剂和聚氨酯材料的制造方法
    • US08216962B2
    • 2012-07-10
    • US13120840
    • 2009-09-16
    • Hironobu OkiYasuyuki WatanabeYouichi Abe
    • Hironobu OkiYasuyuki WatanabeYouichi Abe
    • C08G18/22B01J21/04B01J21/08B01J21/10B01J21/14
    • C08G18/16C08G18/166C08G18/222C08G18/4238C08G18/4825C08G18/672C08G18/73C08G18/7671C08G18/8116
    • The present invention provides a urethane-forming reaction catalyst which is useful for catalyzing a reaction between an isocyanate compound, in particular, an aliphatic isocyanate and a hydroxyl group-containing compound to form a urethane material, which does not affect the performance of the urethane material, and which can be easily removed from the resulting urethane material, and a method for producing a metal compound-free urethane material using the urethane-forming reaction catalyst. The catalyst of the present invention is a urethane-forming reaction catalyst for producing a urethane material by allowing a hydroxyl group-containing compound to react with an isocyanate compound, the catalyst being at least one solid acid catalyst selected from the group consisting of a (A) composite metal oxide in which a metal oxide (A-2) or a non-metal compound (A-3) is carried on a surface of a metal oxide carrier (A-1), (B) zeolite, and a (C) heteropoly acid.
    • 本发明提供一种氨基甲酸酯化反应催化剂,其可用于催化异氰酸酯化合物,特别是脂族异氰酸酯和含羟基化合物之间的反应以形成聚氨酯材料,其不影响氨基甲酸酯的性能 材料,并且可以容易地从所得的聚氨酯材料中除去,以及使用该聚氨酯形成反应催化剂制备不含金属化合物的聚氨酯材料的方法。 本发明的催化剂是通过使含羟基的化合物与异氰酸酯化合物反应来制造氨基甲酸酯材料的氨基甲酸酯形成反应催化剂,所述催化剂是选自由以下组成的组中的至少一种固体酸催化剂:( A)在金属氧化物载体(A-1),(B)沸石和(B)沸石的表面上载持金属氧化物(A-2)或非金属化合物(A-3) C)杂多酸。
    • 67. 发明授权
    • Encapsulated materials
    • 封装材料
    • US6013698A
    • 2000-01-11
    • US166299
    • 1998-10-05
    • E. C. LuptonXiaohong YuLev BrombergBarry Joseph Hand
    • E. C. LuptonXiaohong YuLev BrombergBarry Joseph Hand
    • C08G18/08C08G18/16C08G18/42C08G18/50C08G18/70C08G18/79C08K9/10C09D7/00C09D7/12C09D201/00
    • C08G18/0852C08G18/08C08G18/16C08G18/423C08G18/503C08G18/703C08G18/792C08K9/10C09D201/00C09D7/00C09D7/12C08G2190/00C08G2210/00C08G2220/00Y10S524/916Y10S525/936Y10S526/93Y10T428/249997Y10T428/2984Y10T428/2985Y10T428/2987Y10T428/2989Y10T428/31935
    • Methods and compositions for encapsulated polymeric gels swollen with nonaqueous reactive materials are provided. The methods include gel synthesis, swelling of a gel precursor with a first nonaqueous reactive material, and encapsulation of the swollen gel with a second nonaqueous reactive material. Gels precursors may be synthesized from crosslinking polymers, or alternatively, may be formed by crosslinking and polymerizing a monomer starting material. An accelerator may be utilized to facilitate swelling of the gel precursor with the first nonaqueous reactive material. Foams and composites may also be swollen with the first nonaqueous reactive material. The swollen gel is then contacted with a second nonaqueous reactive material such that an encapsulation layer is formed thereby. The encapsulated gels may be stored for subsequent use. The methods further include release of the first nonaqueous reactive material encapsulated within the gel under conditions which compromise the integrity of the encapsulation layer. The released first nonaqueous reactive material is then reacted with a nonaqueous reactive material, the reaction product being a useful product for a variety of applications such as coatings, adhesives, sealings, caulking, laminating materials, electrical coatings and the like.
    • 提供了用非水反应性材料溶胀的包封的聚合物凝胶的方法和组合物。 所述方法包括凝胶合成,凝胶前体与第一非水反应性物质的溶胀,以及溶胀凝胶与第二非水反应性物质的包封。 凝胶前体可以由交联聚合物合成,或者可以通过使单体原料交联和聚合而形成。 可以使用促进剂来促进凝胶前体与第一非水反应性材料的溶胀。 泡沫和复合材料也可以用第一非水反应性材料溶胀。 然后将溶胀的凝胶与第二非水反应性材料接触,从而形成包封层。 封装的凝胶可以储存以供后续使用。 所述方法还包括在损害封装层的完整性的条件下释放包封在凝胶内的第一非水反应性材料。 然后将释放的第一非水反应性材料与非水反应性材料反应,反应产物是用于各种应用的有用产品,例如涂料,粘合剂,密封剂,填缝剂,层压材料,电涂料等。
    • 69. 发明授权
    • Multi-layer coating composition incorporating migratory catalyst
    • 包含迁移催化剂的多层涂料组合物
    • US5580610A
    • 1996-12-03
    • US485226
    • 1995-06-07
    • Wynn Moy
    • Wynn Moy
    • B05D1/36B05D7/00C08G18/16B05D7/14
    • B05D7/53B05D1/36C08G18/16
    • A multi-layer composite coating composition which comprises:(a) a first coat which is substantially free of isocyanate functionality and which comprises:(i) a film-forming composition capable of curing or drying; and(ii) a metal catalyst for the reaction of isocyanate groups and active hydrogen groups;(b) a second coat which is applied to the surface of the first coat prior to the complete curing of said first coat, wherein the second coat comprises:(i) an active hydrogen functional compound; and(ii) a polyisocyanate;whereby upon the application of said second coat onto the metal catalyst containing first coat, the reaction between the polyisocyanate and the active hydrogen functional compound of-the second coat is catalyzed.
    • 一种多层复合涂料组合物,其包括:(a)基本上不含异氰酸酯官能团的第一涂层,其包含:(i)能够固化或干燥的成膜组合物; 和(ii)用于异氰酸酯基和活性氢基反应的金属催化剂; (b)第二涂层,其在所述第一涂层完全固化之前施加到所述第一涂层的表面,其中所述第二涂层包含:(i)活性氢官能化合物; 和(ii)多异氰酸酯; 由此当将所述第二涂层施加到含有第一涂层的金属催化剂上时,催化多异氰酸酯与第二涂层的活性氢官能化合物之间的反应。