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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
41 自己架橋型フィブリル化セルロースから作製された、低い感湿性を有する酸素及び蒸気バリアフィルム JP2016540850 2014-09-05 JP2016532610A 2016-10-20 ラーション ペール; ウォグバリ ラーシュ
酸素バリアポリマーフィルムを含む包装材料であって、当該フィルムが以下のステップ:a)最終的に架橋セルロースを得るためにセルロース繊維を酸化すること;及びb)1nm〜150nmの範囲の幅のフィブリルを得るために、ステップa)の生成物をホモジナイズすること、を含む方法によって得られるポリマーを含む包装材料が提供される。対応する使用も提供される。
42 Transparent thermoplastic film and its manufacturing method JP2007088851 2007-03-29 JP2007301978A 2007-11-22 HASHIMOTO NARIKAZU
<P>PROBLEM TO BE SOLVED: To reduce the irregularity at the time of black display developed when a stretched transparent thermoplastic film is incorporated in a liquid crystal display plate to apply a temperature change. <P>SOLUTION: The manufacturing method of a transparent thermoplastic film includes a process wherein the transparent thermoplastic film is laterally stretched by 1-200% within a range wherein the ratio (L<SP>2</SP>/L<SP>1</SP>) of a laterally stretched zone length (L<SP>2</SP>) and a preheating zone length (L<SP>1</SP>) is 0.5-30. <P>COPYRIGHT: (C)2008,JPO&INPIT
43 Adsorption filter material with high adsorption capacity and low breakthrough behavior JP2004100062 2004-03-30 JP2004314064A 2004-11-11 BLUECHER HASSO VON; OUVRY LUDOVIC; KAEMPER STEFAN; MOSKOPP MICHAEL; RUITER ERNEST DE DR; BOEHRINGER BERTRAM
PROBLEM TO BE SOLVED: To provide an adsorption filter material or a surface filter material suitable for producing every kind of protective material such as a protective clothing, an NBC protective clothing in particular, protective gloves, protective cover, and for other filtering use, e.g., an air filter or medical use, or surface filter material, i.e., flat type filter material. SOLUTION: This adsorption filter material 1 is used for producing all kinds of protective adsorption materials, and is provided with a first layer 2, a second layer 3 and an adsorption layer 4 disposed between the first and second layers 2, 3. The adsorption layer 4 has a first activated carbon layer 5 having granular and/or spherical activated carbon. The first activated carbon layer 5 further contains activated carbon of activated carbon fiber form. The adsorption layer 4 contains a second activated carbon layer 6 having activated carbon of activated carbon fiber form. COPYRIGHT: (C)2005,JPO&NCIPI
44 Relief-forming method, and tissue restoration relief forming panel JP27355493 1993-11-01 JP3339028B2 2002-10-28 卓磨 原田
45 Plastic material glass added with overmolding plastic material JP2000554537 1999-06-17 JP2002518207A 2002-06-25 ドユクルソ,フアブリス; ビユロー,ベルナール; ブラベ,ジヤン−ルイ; ベニヤイア,リム
(57)【要約】 本発明は少なくとも一部が透明であり、外面の少なくとも一部が付加オーバーモールドプラスチック材料により構成されるほぼ平坦なプラスチック材料製品に関する。 本発明は更に、射出成形技術を使用した前記製品の2種の製造方法と、輸送車両又は建築用ガラスとしての前記製品の使用にも関する。
46 Relief forming method and tissue-restoring type relief forming panel JP27355493 1993-11-01 JPH07125498A 1995-05-16 HARADA TAKUMA
PURPOSE:To enjoy an easy manufacture of a relief work at low cost by a method wherein sheet-like compression molded layer is obtained by solidifying spongy tissual body under compressed state so as to apply solidification releasing treatment to the defined region of the surface of the compression molded layer in order to control the rising height of the region. CONSTITUTION:The tissue restoring type relief forming panel concerned has compression molded layer 11, which is produced by thermally compressing cellulose-based resin spongy tissual body so as to squash the voids in tissue, dehydrate and solidify in order to be made into sheet, and board layer 12, which supports and restrains the rear surface of the compression molded layer 11. At the formation of relief, firstly printing pattern, which guides water when water is fed, is formed on the surface of the compression molded layer 11. Then, non-water permeable masking pattern is placed on the portion, in which water-absorption is to be avoided, of the surface of the compression molded layer 11 and fixed. Further, the portion, which is wanted to rise resin in a relief work, of the surface of the layer 11 is covered with water permeable and elastic sheet. In the state just mentioned above, water feeding treatment is applied to the surface of the layer 11 so as to form the bulging having the predetermined height in order to obtain relief.
47 PACKAGING MATERIALS PCT/IN2006000072 2006-03-02 WO2006117801B1 2007-06-14 PATEL SHILPAN PRAVINCHANDRA
A biodegradable packaging material and methods of manufacturing the same are provided in which a biodegradable substrate and a biodegradable polymer film are laminated together without the use of an adhesive interlayer. The film may be made of material that is soluble in water or which swells when exposed to moisture and is biodegradable. Off-line methods employing preformed substrates and films are disclosed as well as on-line methods in which the film is formed on a liner prior to the laminating process or is extruded onto the substrate.
48 박리가능한 라벨 KR1020167029746 2015-03-25 KR1020160138489A 2016-12-05 이빗슨데이비드; 스마트에밀리; 헐시사이먼
본원에개시된박리가능한라벨(20)은메인패널(22)을포함하고, 이메인패널(22)로부터핑거리프트탭(24)이연장된다. 적어도핑거리프트탭(24)은제 1 필름(28) 및제 2 필름(34)을가진적층체를포함한다. 이적층체는핑거리프트탭(24)을만곡시키도록구성된다. 또한본원에개시된박리가능한라벨(20)은메인패널(22)을포함하고, 이메인패널(22)로부터핑거리프트탭(24)이연장된다. 라벨은메인패널(22)과핑거리프트탭(24)의적어도일부에걸쳐연장되는데드폴드필름(30)을포함한다. 이데드폴드필름(30)은데드폴드능력을갖고, 이데드폴드필름(30)에는핑거리프트탭(24)의적어도일부가메인패널(22)의평면으로부터편향되도록하는주름(25)이형성되어있다.
49 수성 조성물, 이를 이용한 전도성 박막 제조 방법과 이로부터 제조된 전도성 박막, 및 이를 포함하는 전자 소자 KR1020140111706 2014-08-26 KR1020160024640A 2016-03-07 김광희; 양대진; 노종욱; 마루준; 박현철; 백승현; 최재영
표면을둘러싸는유기화합물을가지는도전성금속나노입자; 도전성금속나노와이어; 및물 및선택에따라알코올을포함하는용매를포함하는수성조성물, 이로부터제조된도전성박막및 이를포함하는전자소자가개시된다.
50 식물 섬유를 이용한 블라인드 슬랫 제작 방법 및 이에 의해 제작된 블라인드 슬랫 KR1020140105421 2014-08-13 KR1020160020281A 2016-02-23 황기원; 김태봉
본발명은블라인드슬랫제작방법에대한것으로서특히목재대용으로상대적으로생장기간이짧은식물로블라인드슬랫을제작하여, 상대적으로생장기간이짧은식물을이용함으로써목재벌목을최소화하여지구온난화및 자연파괴를방지할수 있는식물섬유를이용한블라인드슬랫제작방법및 이에의해제작된블라인드슬랫이다.
51 미세 셀룰로오스 섬유 분산액 및 그의 제조 방법, 셀룰로오스 필름 및 적층체 KR1020127025404 2011-03-03 KR1020130018722A 2013-02-25 사이키,아키코; 오오모리,유미코
(과제) 균일하게 유기 용제나 수지에 분산 가능하고, 또한 전자 부재 용도에도 응용 가능한 미세 셀룰로오스 섬유를 포함하는 분산액을 제공한다. 또한, 내수성이 향상된 미세 셀룰로오스 섬유로부터 얻어지는 셀룰로오스 필름 및 적층체를 제공한다. 또한, 필름 기재, 특히 폴리유산 등의 천연 유래 재료로 이루어지는 기재의 언더코트로서, 상기 기재와의 밀착성을 향상시킨 막을 형성하는 미세 셀룰로오스 섬유 분산액 및 그것을 이용한 적층체를 제공한다.
(해결 수단) 미세 셀룰로오스 섬유 분산액은, 적어도, 미세 셀룰로오스 섬유와, 암모니아 또는 유기 알칼리를 포함한다.
52 셀룰로오스 아실레이트 필름의 제조 방법 KR1020047001551 2002-07-31 KR1020040018543A 2004-03-03 야마다쯔까사
셀룰로오스 아실레이트 용액을 사용하고 공유연법에 의해 2 개 이상의 층으로 이루어진 필름을 형성함으로써 셀룰로오스 아실레이트 필름을 제조한다. 사용될 셀룰로오스 아실레이트는 외부층을 형성하는 용액 중에서의 정적 광산란에 의한 셀룰로오스 아실레이트의 회합 분자량이 내부층을 형성하는 용액 중에서의 정적 광산란에 의한 셀룰로오스 아실레이트의 회합 분자량보다 더 작게 되도록 선택된다.
53 Roofing membranes with pre-applied, cured, pressure-sensitive seam adhesives US15124150 2015-03-06 US10065394B2 2018-09-04 Jiansheng Tang; Joseph Carr; William R. McJunkins; Michael J. Hubbard; Carl E. Watkins, Jr.
A membrane composite comprising a polymeric membrane panel, an adhesive layer, and a release liner, where the adhesive layer is a pressure-sensitive adhesive that is at least partially cured, and includes at least two distinct regions with the at least two regions having distinct states of cure.
54 LAMINATES US15751823 2015-10-23 US20180229475A1 2018-08-16 Inna Tzomik; Raia Slivniak; Sergio Brandriss; Alexander Stolov; Faina Kogan; Daniel Skvirsky
There is provided a laminate, comprising a base material, a transparent electrostatic ink composition selectively disposed on portions of the base material, the transparent electrostatic ink composition comprising a thermoplastic resin, and a charge adjuvant and/or a charge director; a substrate adhered to the base material at the portions of the base material by the transparent electrostatic ink composition. A process for preparing a laminate and a blister pack are also disclosed.
55 LAMINATES US15751030 2015-10-23 US20180229474A1 2018-08-16 Inna Tzomik; Daniel Skvirsky; Hannoch Ron; Yaniv Kachlon; Gleb Romantcov; Faina Kogan; Raia Slivniak; Sergio Brandriss; Alexander Stolov
There is provided a process for preparing a laminate, comprising electrostatically printing a transparent electrostatic ink composition onto a base material, wherein the transparent electrostatic ink composition comprises a thermoplastic resin, and a charge adjuvant and/or a charge director; providing a substrate; and contacting the substrate with the transparent electrostatic ink composition while the thermoplastic resin is softened or molten, and then allowing the thermoplastic resin to harden, so that the electrostatic ink composition adheres the base material and the substrate together. Laminate materials are also disclosed.
56 Photochromic polyurethane laminate US15256098 2016-09-02 US09981452B2 2018-05-29 Xuzhi Qin; Hideyo Sugimura; Michael Boulineau
A photochromic polyurethane laminate that is constructed to solve certain manufacturing difficulties involved in the production of plastic photochromic lenses is disclosed. The photochromic laminate includes at least two layers of a resinous material and a photochromic polyurethane layer that is interspersed between the two resinous layers and which contains photochromic compounds. The polyurethane layer is formed by curing a mixture of a solid thermoplastic polyurethane, at least one isocyanate prepolymer, at least one photochromic compound, and a stabilizing system.
57 EXTRUSION-COATED STRUCTURAL MEMBERS HAVING EXTRUDED PROFILE MEMBERS US15655148 2017-07-20 US20170312970A1 2017-11-02 Jennifer Lynne Peavey; Mohan Sasthav; James Wilson Mercer, JR.; Scott Allen Clear; Chanandh Cheowanich
The present disclosure relates to extrusion-coated structural systems including at least one extruded profile member coupled to and extending outwardly from an extrusion-coated structural member, as well as methods of making and using the same. Structural systems of the present invention that include at least one extruded profile member may exhibit enhanced flexibility, functionality, and/or durability. Structural systems according to embodiments of the present invention can be suitable for use in a variety of applications, including in ready-to-assemble furniture or cabinetry applications or as building and construction materials such as wall board, flooring, trim, and the like.
58 Extrusion-coated structural members having extruded profile members US14496529 2014-09-25 US09744707B2 2017-08-29 Jennifer Lynne Peavey; Mohan Sasthav; James Wilson Mercer, Jr.; Scott Allen Clear; Chanandh Cheowanich
The present disclosure relates to extrusion-coated structural systems including at least one extruded profile member coupled to and extending outwardly from an extrusion-coated structural member, as well as methods of making and using the same. Structural systems of the present invention that include at least one extruded profile member may exhibit enhanced flexibility, functionality, and/or durability. Structural systems according to embodiments of the present invention can be suitable for use in a variety of applications, including in ready-to-assemble furniture or cabinetry applications or as building and construction materials such as wall board, flooring, trim, and the like.
59 SYSTEMS AND METHODS FOR CONSTRUCTING NOISE REDUCING SURFACES US15422308 2017-02-01 US20170221468A1 2017-08-03 Benjamin F. Forrest; Douglas Allan Bixel
Systems and methods are disclosed for a multi-layered sound absorption structure. The multi-layered sound absorption structure may include a form material, an acoustic material disposed on a surface of the form material, and a construction material disposed on the acoustic material. The acoustic material may couple to the construction material during curing of the construction material. After the construction material is cured, the form material may be removed exposing a least a portion of the acoustic material.
60 TRANSPARENT PROTECTIVE LAYER AND ELECTRONIC DEVICE INCLUDING SAME US15419261 2017-01-30 US20170217143A1 2017-08-03 Young-Gyun KIM; Minjung KIM; Jeeyoung OH
A transparent protective layer and an electronic device including a transparent protective layer are provided. The transparent protective layer includes a first transparent plate having a first surface facing in a first direction and a second surface facing in a second direction opposite to the first direction; and an adhesive layer disposed on the second surface of the first transparent plate. The adhesive layer includes a first adhesive layer having a first adhesive force, and a second adhesive layer having a second adhesive force, which is less than the first adhesive force.
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