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公开(公告)号:WO2017165340A1
公开(公告)日:2017-09-28
申请号:PCT/US2017/023293
申请日:2017-03-21
申请人: HUBBELL INCORPORATED
CPC分类号: H01F27/025 , B32B1/02 , B32B3/266 , B32B5/18 , B32B5/32 , B32B7/02 , B32B7/12 , B32B15/046 , B32B15/20 , B32B2250/02 , B32B2250/03 , B32B2250/04 , B32B2250/44 , B32B2266/0207 , B32B2266/0214 , B32B2266/045 , B32B2266/057 , B32B2266/08 , B32B2307/102 , B32B2307/302 , B32B2439/00 , B32B2439/62 , G10K11/168 , H01F27/33
摘要: The present disclosure provides descriptions of configurations for noise reducing and cooling enclosures and enclosure material. The noise reducing and cooling enclosures seal and passively acoustically quiet acoustic energy generated by one or more noise emitting devices within the enclosure, and dissipate heat generated by the devices through conduction by use of composite enclosure materials.
摘要翻译: 本公开提供了用于噪声降低和冷却外壳以及外壳材料的配置的描述。 噪音降低和冷却外壳密封并由外壳内的一个或多个噪音发射装置产生的被动声学静音声能,并且通过使用复合外壳材料传导通过传导装置产生的热量消散。 p>
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公开(公告)号:WO2017132409A1
公开(公告)日:2017-08-03
申请号:PCT/US2017/015180
申请日:2017-01-26
发明人: RIKLEEN, Lesli , MAGYAR, Michael , O'BRYAN, Eric , MIHALCIK, David , EVANS, Owen , ZAFIROPOULOS, Nicholas , GOULD, George
IPC分类号: B32B5/02 , B32B5/16 , B32B5/18 , B32B5/24 , B32B5/32 , B32B7/02 , B32B7/08 , B32B7/10 , B32B27/32
CPC分类号: B32B5/18 , B32B3/06 , B32B5/02 , B32B5/022 , B32B5/024 , B32B5/026 , B32B5/06 , B32B5/145 , B32B5/16 , B32B5/22 , B32B5/245 , B32B5/32 , B32B7/02 , B32B7/08 , B32B7/10 , B32B7/12 , B32B27/08 , B32B27/304 , B32B27/32 , B32B27/322 , B32B27/40 , B32B37/12 , B32B37/14 , B32B2250/03 , B32B2250/40 , B32B2260/02 , B32B2260/04 , B32B2262/02 , B32B2262/0207 , B32B2262/0238 , B32B2262/0261 , B32B2262/0276 , B32B2262/0292 , B32B2264/0257 , B32B2264/101 , B32B2264/107 , B32B2266/025 , B32B2266/0257 , B32B2266/0278 , B32B2266/0285 , B32B2266/04 , B32B2266/045 , B32B2266/06 , B32B2266/126 , B32B2305/022 , B32B2305/08 , B32B2307/302 , B32B2307/304 , B32B2307/51 , B32B2307/726 , B32B2307/732 , B32B2437/00
摘要: Described herein are insulating structures that include at least one microporous layer including a plurality of pores, a porous layer adjacent to the microporous layer, and a monolithic aerogel structure extending through the plurality of pores of the microporous layer and through at least part of the porous layer. The microporous layer filters aerogel dust from cracked or damaged aerogel within the scaffold, slowing or preventing loss of dust from the insulating structures.
摘要翻译: 这里描述的是绝缘结构,其包括至少一个包含多个孔的微孔层,与微孔层相邻的多孔层和延伸穿过微孔层的多个孔的整体气凝胶结构 并穿过多孔层的至少一部分。 微孔层过滤支架内裂解或损坏的气凝胶中的气凝胶粉尘,减缓或防止绝缘结构中的灰尘损失。 p>
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公开(公告)号:WO2017114952A1
公开(公告)日:2017-07-06
申请号:PCT/EP2016/082927
申请日:2016-12-30
发明人: HARTMANN, Juergen
CPC分类号: B32B1/08 , B32B5/028 , B32B5/18 , B32B7/12 , B32B15/08 , B32B15/085 , B32B15/088 , B32B15/18 , B32B15/20 , B32B27/065 , B32B27/281 , B32B27/285 , B32B27/286 , B32B27/288 , B32B27/32 , B32B27/322 , B32B27/34 , B32B2250/04 , B32B2266/045 , B32B2307/732 , B32B2307/752 , B32B2475/00 , B32B2597/00 , B32B2605/08 , F16C11/04 , F16C33/121 , F16C33/128 , F16C33/203 , F16C33/208 , F16C2202/10 , F16C2208/30 , F16C2223/32 , F16C2240/60
摘要: A bushing comprises a porous metallic layer, the porous metallic layer formed by a first composition and a second composition. The first composition can include iron. The second composition can include a metal having an electronegativity less than iron. The bushing further includes a sliding layer overlying the porous metallic layer. Method of preparing a bushing.
摘要翻译: 套管包括多孔金属层,多孔金属层由第一组合物和第二组合物形成。 第一种组合物可以包含铁。 第二组合物可以包含电负性小于铁的金属。 套管还包括覆盖多孔金属层的滑动层。 准备衬套的方法。 p>
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公开(公告)号:WO2012109205A2
公开(公告)日:2012-08-16
申请号:PCT/US2012/024094
申请日:2012-02-07
发明人: WELCH, John, C. , CHAKRABORTY, Soma
CPC分类号: B82Y30/00 , B05D1/185 , B05D5/00 , B05D7/56 , B32B5/16 , B32B2264/02 , B32B2264/102 , B32B2264/105 , B32B2264/108 , B32B2264/12 , B32B2266/045 , B32B2605/00 , B32B2605/003 , C09D7/61 , C09D7/62 , C09D7/70 , Y10T428/25 , Y10T428/264 , Y10T428/31504 , Y10T428/31507 , Y10T428/31551 , Y10T428/31598 , Y10T428/31663 , Y10T428/31678 , Y10T428/31931 , Y10T428/31935 , Y10T428/31942
摘要: A nano-coating comprises multiple alternating layers of a first layer comprising a first nanoparticle having an aspect ratio greater than or equal to 10 and having a positive or negative charge, and a second layer comprising a second nanoparticle having an aspect ratio greater than or equal to 10 and having a positive or negative charge opposite that of the first nanoparticle, wherein the nano-coating is disposed on a surface of a substrate. An article comprising the nano-coating, and a method of forming the nano-coating, are each disclosed.
摘要翻译: 纳米涂层包含第一层和第二层的多个交替层,第一层包含具有大于或等于10的纵横比并具有正电荷或负电荷的第一纳米颗粒,第二层包含第二纳米颗粒 具有大于或等于10的纵横比并具有与第一纳米颗粒相反的正电荷或负电荷,其中纳米涂层设置在基底的表面上。 包括纳米涂层的制品和形成纳米涂层的方法各自都被公开。 p>
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公开(公告)号:WO2011037668A1
公开(公告)日:2011-03-31
申请号:PCT/US2010/040957
申请日:2010-07-02
申请人: ZIMMER SPINE, INC. , ZHANG, Kai , VALOIS, Christopher J. , FANG, Zhibin , BASSETT, Jeffrey A. , ZAWADZKI, Steven A. , KIRT, David C. , SPANGLE, Steven E.
发明人: ZHANG, Kai , VALOIS, Christopher J. , FANG, Zhibin , BASSETT, Jeffrey A. , ZAWADZKI, Steven A. , KIRT, David C. , SPANGLE, Steven E.
CPC分类号: A61F2/4465 , A61F2/442 , A61F2/447 , A61F2002/30011 , A61F2002/30014 , A61F2002/30044 , A61F2002/30056 , A61F2002/30065 , A61F2002/30235 , A61F2002/30971 , A61F2250/0023 , A61F2250/0032 , A61F2250/0046 , A61F2310/00131 , A61L31/12 , A61L31/146 , B32B3/266 , B32B15/08 , B32B27/065 , B32B27/285 , B32B27/288 , B32B2255/00 , B32B2255/205 , B32B2266/04 , B32B2266/045 , B32B2266/06 , B32B2266/104 , B32B2307/40 , B32B2307/51 , B32B2307/538 , B32B2307/744 , B32B2535/00
摘要: A composite interbody vertebral implant (10) for facilitating fusion of adjacent vertebrae. The implant includes a first endplate (12) of a porous metal material and a second endplate (14) of a porous metal material which are configured to allow bone in-growth. The implant also includes a polymeric body (16) positioned between and bonded to the first and second endplates (12,14) such that polymeric material of the polymeric body (16) is impregnated into pores of the first and second endplates to bond the components together. The implant include a cavity (26) extending through the composite implant (10) configured to receive bone growth material to facilitate fusion between a first vertebra and a second vertebra.
摘要翻译: 复合体间椎体植入物(10),用于促进相邻椎骨的融合。 植入物包括多孔金属材料的第一端板(12)和多孔金属材料的第二端板(14),其被配置为允许骨生长。 植入物还包括位于第一和第二终板(12,14)之间并结合到第一和第二终板(12,14)之间的聚合体(16),使得聚合物主体(16)的聚合材料浸渍在第一和第二端板的孔中,以将组分 一起。 植入物包括延伸穿过复合植入物(10)的空腔(26),其构造成接收骨生长材料以促进第一椎骨和第二椎骨之间的融合。
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公开(公告)号:WO2009129139A2
公开(公告)日:2009-10-22
申请号:PCT/US2009040192
申请日:2009-04-10
发明人: NONOGI MARI , SASKI MAKOTO , HANAMAKI CHIAKI
IPC分类号: G10K11/16 , B32B7/00 , B32B27/12 , G10K11/168
CPC分类号: G10K11/172 , B32B3/266 , B32B5/022 , B32B5/024 , B32B5/18 , B32B7/08 , B32B7/12 , B32B7/14 , B32B23/048 , B32B23/08 , B32B23/10 , B32B23/20 , B32B27/065 , B32B27/08 , B32B27/12 , B32B27/306 , B32B27/32 , B32B27/36 , B32B27/365 , B32B2266/02 , B32B2266/0278 , B32B2266/045 , B32B2266/06 , B32B2307/102 , B32B2457/00 , B32B2509/00 , B32B2605/08 , G10K11/168
摘要: A multilayer sound absorbing sheet including a film layer having through-micro bores and apertures, and a fibrous material layer disposed on the film layer is provided. A method of absorbing sound including providing the multilayer sound absorbing sheet of the present disclosure and positioning the multilayer sound absorbing sheet between an acoustic source and a sound-reflecting surface is also provided.
摘要翻译: 提供了一种包括具有通孔和孔的膜层和设置在膜层上的纤维材料层的多层吸声片。 还提供一种吸收声音的方法,包括提供本发明的多层吸声片,并将多层吸声片定位在声源和声音反射面之间。
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公开(公告)号:WO2019106599A1
公开(公告)日:2019-06-06
申请号:PCT/IB2018/059464
申请日:2018-11-29
CPC分类号: B32B5/18 , B32B15/015 , B32B15/20 , B32B2266/045 , B32B2309/12 , B82Y30/00 , C22C2001/085 , C23C16/045
摘要: Embodiments of the present technology include molding processes for metallic foams, apparatuses, and products. An example method includes placing an uncompressed charge of conductive metal foam into a cavity disposed on a first tool, wherein the first tool is located on a first portion of a compression mold apparatus, translating the first portion of the compression mold apparatus towards a second portion of the compression mold apparatus so as to compress the uncompressed charge of conductive metal foam, creating a compressed charge of conductive metal foam, and overmolding around and through the compressed charge of conductive metal foam with an overmolding material.
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公开(公告)号:WO2016034506A1
公开(公告)日:2016-03-10
申请号:PCT/EP2015/069738
申请日:2015-08-28
申请人: REINZ-DICHTUNGS-GMBH
发明人: OSTERMEIER, Helmut
IPC分类号: B32B5/02 , B32B5/06 , B32B7/08 , B32B7/12 , B32B15/14 , B32B3/04 , B32B3/06 , B32B3/26 , F02B77/11 , F16L59/02
CPC分类号: F02B77/11 , B32B3/04 , B32B3/06 , B32B3/26 , B32B3/266 , B32B5/02 , B32B5/022 , B32B5/024 , B32B5/026 , B32B5/028 , B32B5/06 , B32B7/08 , B32B7/12 , B32B15/14 , B32B2262/10 , B32B2262/101 , B32B2262/103 , B32B2262/106 , B32B2262/12 , B32B2266/045 , B32B2307/306 , B32B2307/72 , B32B2605/00 , B60R13/0869 , F16L59/02 , F16L59/021 , F16L59/028 , F16L59/029
摘要: The present invention relates to a heat shield for shielding of hot areas, such as hot areas of a combustion engine as well as a part that is shielded with such a heat shield. The heat shield for shielding of hot areas, e. g. of a combustion engine, with at least one metal sheet layer, characterized in that the insulating layer comprises a metallic grid, which is embedded into a fiber mat.
摘要翻译: 本发明涉及一种用于屏蔽诸如内燃机的热区域的热区域以及用这种隔热罩屏蔽的部件的隔热罩。 用于屏蔽热区的隔热罩, G。 具有至少一个金属板层的燃烧发动机,其特征在于,绝缘层包括嵌入纤维垫中的金属网格。
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公开(公告)号:WO2013039809A2
公开(公告)日:2013-03-21
申请号:PCT/US2012/054375
申请日:2012-09-10
申请人: TRILLION SCIENCE, INC. , LEE, Jiannrong , SUN, Yuhao , AUNG, Maung, Kyaw , TSENG, Chin-Jen , CHANG, Chiapu , ROKUTANDA, Shuji , LIANG, Rong-Chang
发明人: LEE, Jiannrong , SUN, Yuhao , AUNG, Maung, Kyaw , TSENG, Chin-Jen , CHANG, Chiapu , ROKUTANDA, Shuji , LIANG, Rong-Chang
IPC分类号: C09J9/02
CPC分类号: C09J9/02 , B32B3/10 , B32B5/16 , B32B7/12 , B32B27/14 , B32B27/281 , B32B27/285 , B32B27/286 , B32B27/308 , B32B27/36 , B32B27/365 , B32B37/12 , B32B37/14 , B32B37/226 , B32B38/06 , B32B38/10 , B32B2255/10 , B32B2255/26 , B32B2264/105 , B32B2266/045 , B32B2307/202 , B32B2309/08 , B32B2310/0843 , B32B2457/00 , B65G17/36 , C08K9/02 , C08K2201/001 , C09J7/00 , C09J7/10 , C09J2201/28 , C09J2201/602 , C09J2203/326 , C09J2205/102 , C09J2433/00 , C09J2461/00 , C09J2463/00 , H05K3/321 , Y10T156/1066 , Y10T428/24893 , Y10T428/249921
摘要: A method for fabricating an electronic device or component such as an anisotropic conductive film comprising: distributing a plurality of conductive particles into an array of microcavities formed on a surface of a continuous carrier belt, rotating the belt carrying the conductive particles while conveying a surface of an adhesive layer into contact with the surface of the rotating belt, transferring the conductive particles from the microcavities on the belt to the adhesive layer in predefined locations in the adhesive layer corresponding to the array of microcavities on the belt, and separating the adhesive layer from the surface of the belt. In one embodiment, the position of the microcavities is varied in a controlled manner.
摘要翻译: 一种用于制造诸如各向异性导电膜的电子器件或部件的方法,包括:将多个导电粒子分布在形成在连续载体带的表面上的微腔阵列中,使携带导电颗粒的带旋转,同时传送 将粘合剂层与旋转带的表面接触,将导电颗粒从带上的微腔转移到粘合剂层中的粘合剂层中的对应于带上的微腔阵列的预定位置,并将粘合剂层从 皮带的表面。 在一个实施例中,微腔的位置以受控的方式变化。
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公开(公告)号:WO2012151011A1
公开(公告)日:2012-11-08
申请号:PCT/US2012/030853
申请日:2012-03-28
发明人: JANSEN, Eugene , MAURER, Scott, M.
CPC分类号: B32B37/04 , B32B5/18 , B32B7/04 , B32B15/046 , B32B15/18 , B32B15/20 , B32B27/065 , B32B37/08 , B32B2250/02 , B32B2266/04 , B32B2266/045 , B32B2266/057 , B32B2266/06 , B32B2305/022 , B32B2307/10 , B32B2307/30 , B32B2311/24 , B32B2313/04 , C09J5/00 , C09J2400/10 , C09J2400/163 , Y02E10/34 , Y10T428/249957
摘要: A technique for joining porous foam material, such as graphite, metal or ceramic foam, to a substrate is described. The substrate can be metal, a thermoset plastic or a composite material. The substrate has a melting point below that of the foam material. The two are joined together by using the foam to apply heat locally at the surface of the substrate. Some or all of the foam is heated to the appropriate temperature at or above the melting point of the substrate material. The foam and the substrate are then brought together, with the heat from the foam melting or softening the substrate material so that the substrate material infuses into the pores of the foam. As the foam cools below the melting point temperature, the substrate material solidifies to create a mechanical bond between the foam and the substrate.
摘要翻译: 描述了将诸如石墨,金属或陶瓷泡沫的多孔泡沫材料连接到基底的技术。 基底可以是金属,热固性塑料或复合材料。 基材的熔点低于泡沫材料的熔点。 两者通过使用泡沫在基体的表面局部施加热量而连接在一起。 将一些或全部泡沫体加热至等于或高于基底材料的熔点的适当温度。 然后将泡沫和基底聚集在一起,来自泡沫的热量熔化或软化基底材料,使得基底材料注入泡沫的孔中。 当泡沫冷却到低于熔点温度时,基底材料固化以在泡沫和基底之间产生机械结合。
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