子分类:
序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
121 SELF ADHERING MEMBRANE FOR ROOFING APPLICATIONS US12834330 2010-07-12 US20100279049A1 2010-11-04 Michael J. Hubbard
A preformed, self adhering single ply roofing membrane including a water impermeable membrane; a pressure sensitive, hot melt adhesive adhered to one side of the water impermeable membrane, and a release liner on the side of the pressure sensitive, hot melt adhesive opposite of the water impermeable membrane.
122 Pneumatic Tire US11838422 2007-08-14 US20090044893A1 2009-02-19 Ralf Mruk; Andreas Frantzen; Frank Schmitz; Wolfgang Albert Leo Loesslein; Serge Julien Auguste Imhoff; Georges Marcel Victor Thielen; Yves Donckels
The present invention is directed to a pneumatic tire comprising at least one component, the at least one component comprising a rubber composition contacting one or more reinforcing polyester cords, the polyester cords comprising an RFL adhesive disposed on the surface of the polyester cords, the RFL adhesive comprising from 1 to 20 weight percent of a presilanized silica.
123 Process for preparing adhesive using planetary extruder US10997827 2004-11-24 US07476416B2 2009-01-13 John Kinch Tynan, Jr.; Richard Walter St. Coeur; David Michael Kovach; Thomas Lombardo
A process for preparing a pressure sensitive adhesive using a modified planetary roller extruder is described. The process in accordance with one aspect of the invention includes introducing primary raw materials including a non-thermoplastic elastomer into a feeding section of the modified planetary roller extruder, conveying the raw materials from the feeding section to a compounding section of the modified planetary roller extruder, continuously mixing the primary raw materials in the compounding section to produce a homogeneous adhesive composition. The adhesive composition may be applied to a web-form material. The compounding section of the modified planetary roller extruder includes a main spindle surrounded by and intermeshed with a plurality of planetary spindles at least one of which is a double transversal mixing spindle having a plurality of back-cut helical flights.
124 Process for preparing adhesive using planetary extruder US11702282 2007-02-05 US20070196572A1 2007-08-23 John Tynan; Richard St. Coeur; David Kovach; Thomas Lombardo
A process for preparing a pressure sensitive adhesive using a modified planetary roller extruder is described. The process in accordance with one aspect of the invention includes introducing primary raw materials including a non-thermoplastic elastomer into a feeding section of the modified planetary roller extruder, conveying the raw materials from the feeding section to a compounding section of the modified planetary roller extruder, continuously mixing the primary raw materials in the compounding section to produce a homogeneous adhesive composition. The adhesive composition may be applied to a web-form material. The compounding section of the modified planetary roller extruder includes a main spindle surrounded by and intermeshed with a plurality of planetary spindles at least one of which is a double transversal mixing spindle having a plurality of back-cut helical flights.
125 Self Adhering Membrane For Roofing Applications US11461327 2006-07-31 US20070026183A1 2007-02-01 Michael Hubbard
A preformed, self adhering single ply roofing membrane including a water impermeable membrane; a pressure sensitive, hot melt adhesive adhered to one side of the water impermeable membrane, and a release liner on the side of the pressure sensitive, hot melt adhesive opposite of the water impermeable membrane.
126 Use of Vinylaromatic/1,3-diene copolymers stabilized with protective colloids in building adhesive formulations US09831593 2001-05-11 US06552120B1 2003-04-22 Reinhard Härzschel; Theo Mayer; Hans-Peter Weitzel
The invention relates to the utilization of aqueous polymer dispersions or of polymer powders which can be redispersed in water and which are based on protective colloid-stabilized aromatic vinyl-1,3-diene-copolymers in adhesive formulations used in the building industry, whereby the polymer dispersion and the polymer powders are produced by emulsion polymerization of a mixture containing at least one aromatic vinyl and at least one 1,3-diene in the presence of one or more protective colloids, without using an emulsifier, and by optionally drying of the aqueous polymer dispersion obtained thereby.
127 Hot melt adhesive composition containing &agr;-olefin/aromatic vinyl compound random copolymer US09355504 1999-07-29 US06235818B1 2001-05-22 Kenichi Morizono; Keiji Okada; Suguru Tokita
A hot melt adhesive composition exhibiting excellent adhesive strength and which is useful as an adhesive for styrene resins contains (B) tackifier and (C) ethylene/C3-C20 &agr;-olefin/aromatic vinyl compound random copolymer and, in some embodiments also (A) base polymer, such as polyolefin, polar group-containing polymer and aromatic vinyl compound/conjugated diene copolymer. A low molecular weight polyolefin may also be included in all embodiments. The randon copolymer (C) may be prepared by polymerizing the &agr;-olefin and aromatic vinyl compound in the presence of a metallocene containing catalyst. In addition to excellent adhesive strength the hot melt adhesives have improved workability.
128 Method of making a composite structure US540005 1983-10-07 US4486469A 1984-12-04 John Machonis, Jr.; Seymour Schmukler; Robert J. Zeitlin; Mitsuzo Shida
Compositions of matter having among other desirable characteristics strong adhesive properties to various substrates, these compositions comprising blends of a graft copolymer of a high density polyethylene and at least one unsaturated fused ring carboxylic acid anhydride blended with a polyethylene resin of one or more homopolymers of ethylene, copolymers of ethylene and alpha-olefin, ethylene-ester copolymers and one or more elastomers such as homopolymers of isobutylene, copolymers of isobutylene with isoprene, chlorinated copolymers of isobutylene and isoprene, homopolymers of isoprene, copolymers of butadiene and styrene, block copolymers of dienes and styrene where the diene is butadiene or isoprene, homopolymers of butadiene, homopolymers of chloroprene, and copolymers of acrylonitrile and butadiene.
129 Chemically-resistant adhesives and labels US100303 1979-12-07 US4313986A 1982-02-02 Frank A. Magnotta
Chemically-resistant adhesives formed using non-hydrolyzable hard and soft resins. Chemically-resistant labels are provided by using the adhesive to adhere an image-bearing film of polyvinyl chloride to a protective film, and to a carrier. The labels are particularly resistant to acids and have a reduced tendency to shrink or distort when affixed to battery surfaces at elevated temperatures.
130 Chemically-resistant adhesives and labels US9033 1979-02-05 US4217263A 1980-08-12 Frank A. Magnotta
Chemically-resistant adhesives formed using non-hydrolyzable hard and soft resins. Chemically-resistant labels are provided by using the adhesive to adhere an image-bearing film of polyvinyl chloride to a protective film, and to a carrier. The labels are particularly resistant to acids and have a reduced tendency to shrink or distort when affixed to battery surfaces at elevated temperatures.
131 Copolymers from para tertiary butyl styrene and a diolefin and method for producing same US3622551D 1969-11-17 US3622551A 1971-11-23 DAVIS BERNARD J
Copolymers are prepared from a diolefin and para tertiary butyl styrene in the presence of a Friedel-Crafts catalyst at 10*-90* C. The diolefin may be isoprene, piperylene and cyclopentadiene in a concentration ranging from about 95 percent to about 5 percent based upon the weight of the monomers. Resins thus produced are essentially colorless and have excellent color stability and show outstanding qualities when used in pressure sensitive adhesive systems.
132 Rubber and epoxy resin adhesive compositions and method of manufacture US8521761 1961-01-27 US3171821A 1965-03-02 SHERMAN ROBERT J; TOTH RICHARD H
133 Method of preparing an adhesive for bonding wood US32164252 1952-11-20 US2758953A 1956-08-14 COTTLE DELMER L; YOUNG DAVID W; FRANKLIN HENRY J
134 Rubber-to-metal adhesives and method of making same and use thereof US11620749 1949-09-16 US2619445A 1952-11-25 KALAFUS EDWARD F
135 Manufacture of butadiene-styrene copolymer cements US53199044 1944-04-20 US2461954A 1949-02-15 BARGMEYER ERNEST G
136 レゾール型変性フェノール樹脂組成物、その製造方法および接着剤 JP2017510174 2016-03-31 JPWO2016159218A1 2018-02-01 身深 元
本発明によれば、ジメチルフェノール類によって変性された下記一般式(1)で表される構造単位Aと、下記一般式(2)で表される構造単位Bと、を有するレゾール型変性フェノール樹脂を含むレゾール型変性フェノール樹脂組成物が提供される。【化1】(式(1)において、mは、1以上の整数である。mが1である場合、Rは、メチロール基である。mが2以上である場合、Rは独立して、原子またはメチロール基であり、かつ少なくとも1つのRがメチロール基である。)【化2】(式(2)において、nは、1以上の整数である。nが1である場合、Rは、メチロール基である。nが2以上である場合、Rは独立して、水素原子またはメチロール基であり、かつ少なくとも1つのRがメチロール基である。)
137 後硬化性ゴム系感圧性接着剤 JP2017525069 2015-11-05 JP2018500404A 2018-01-11 メッヒャーニッヒ, シルケ; リヒター, マレイケ; ビーバー, ピエール アール.; シュテークマイヤー, ペトラ
本開示は、a)ゴム系エラストマー材を含む(コ)ポリマー材と、b)多官能性アジリジン硬化剤と、c)酸発生剤とを含む感圧性接着剤の硬化性前駆体を目的とする。本開示はまた、かかる感圧性接着剤を製造する方法及びその使用を目的とする。【選択図】なし
138 木材用接着剤 JP2016112524 2016-06-06 JP2017057372A 2017-03-23 陳曼玲; 林顯光; ▲せん▼徳照; 陳素梅
【課題】高い接着および耐性を有し、かつ、ホルムアルデヒドガスの放出および環境汚染の問題を解決することができる木材用接着剤の提供。
【解決手段】分子量が15,000〜500,000の範囲にあり、かつ、ナトリウム塩の置換度が0.4〜2.00であるカルボキシメチルセルロースナトリウム、及び、スチレン・ブタジエンゴム重合体を含んでいる、第一の薬剤と、第四級アミンの重合体を含んでいる、第二の薬剤と、を含んでいる、木材用接着剤であって、上記スチレン・ブタジエンゴム重合体と、上記カルボキシメチルセルロースナトリウム及び上記第四級アミンの重合体の総重量と、の重量比が、0.05:1〜1:0.1である、木材用接着剤。
【選択図】なし
139 自己粘着性表面保護フィルム JP2015511233 2014-04-03 JPWO2014168069A1 2017-02-16 茂知 山本; 大木 祐和; 祐和 大木; 松田 明; 明 松田
ポリプロピレン系樹脂からなる基材層の片面に粘着層を、反対面に離形層を共押出により積層させてなり、粘着層がスチレン含有量が5〜40重量%である、スチレン系重合体ブロックとブタジエン重合体ブロックとのブロック共重合体の素添加体であるスチレン系エラストマーAとスチレン含有量が40〜70重量%である、スチレンとブタジエンのランダム共重合体の水素添加体であるスチレン系エラストマーBを含有し、これら2種類のスチレン系エラストマーの和に対するスチレン系エラストマーAの重量比が5重量%以上、80重量%以下であり、これら2種類のスチレン系エラストマーの和、100重量部に対し粘着付与樹脂が5〜25重量部混合されていることを特徴とする自己粘着性表面保護フィルム。
140 積層体、保護フィルム及び積層体の製造方法 JP2015508268 2014-03-12 JPWO2014156651A1 2017-02-16 佐々木 啓光; 啓光 佐々木; 陽介 上原; 田中 祐介; 祐介 田中
糊残りが生じ難くかつ粘着を有する粘着層と基材層とを含む積層体、積層体を含む保護フィルム、及び積層体の製造方法に関する。粘着層及び基材層を含む積層体であって、前記粘着層は、芳香族ビニル化合物由来の構造単位(a)及び共役ジエン由来の構造単位(b)を含む共重合体の素添加物を含み、前記共役ジエン由来の構造単位(b)の総量中における、ファルネセン由来の構造単位(b1)の含有量が1〜100質量%であり、ファルネセン以外の共役ジエン由来の構造単位(b2)の含有量が0〜99質量%であり、前記共役ジエン由来の構造単位(b)中の炭素−炭素二重結合の水素添加率が50モル%以上である、積層体。
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