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公开(公告)号:US3697366A
公开(公告)日:1972-10-10
申请号:US3697366D
申请日:1970-04-13
申请人: NAT GYPSUM CO
发明人: HARLOCK GEORGE H , BURKARD EDWARD A
CPC分类号: B28B23/0087 , C04B16/087 , Y10S264/07 , Y10S521/921 , Y10T428/268 , Y10T428/27
摘要: GYPSUM WALLBOARD IN WHICH ABOUT HALF THE VOLUME OF THE CORE CONSISTS OF VERY LIGHTWEIGHT PARTICLES FORMED BY TEARING FOAMED POLYSTYRENE BEADS INTO A SHREDDED FORM.
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公开(公告)号:US3509010A
公开(公告)日:1970-04-28
申请号:US3509010D
申请日:1968-07-03
申请人: KLAUE HERMANN
发明人: METZGER EMIL
CPC分类号: E04C2/284 , B28B23/0087 , C04B28/02 , E04C2/049 , Y10T428/2495 , C04B14/12 , C04B14/42 , C04B41/5076
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公开(公告)号:US09988317B2
公开(公告)日:2018-06-05
申请号:US15710580
申请日:2017-09-20
申请人: Go Team CCR LLC
CPC分类号: C04B40/0071 , B28B3/12 , B28B19/00 , B28B23/0081 , B28B23/0087 , B32B1/02 , B32B13/04 , B32B19/00 , B32B2264/108 , B32B2307/212 , B32B2307/558 , B32B2419/00 , B32B2571/02 , C04B16/08 , C04B16/082 , C04B16/085 , C04B18/061 , C04B18/064 , C04B18/065 , C04B18/067 , C04B18/08 , C04B28/02 , C04B28/021 , C04B40/0028 , C04B2111/00051 , C04B2111/00068 , C04B2111/00258 , C04B2111/00293 , C04B2111/00637 , C04B2111/00724 , C04B2111/00732 , C04B2111/0075 , C04B2111/00775 , C04B2111/2046 , C04B2111/2053 , E04B2/00 , E04B2/02 , E04B2002/0208 , E04C2/00 , E04C2/06 , E04C2/14 , E04C5/08 , E04H5/02 , E04H7/20 , E04H9/00 , E04H9/04 , E04H9/06 , E04H9/10 , F41H5/24 , C04B18/06 , C04B18/081 , C04B22/145
摘要: Beneficial use structures are disclosed that include coal combustion residuals (“CCR”) mixed with water and a binder to form a structural material and adapted to be compacted for use in the formation of the beneficial use structure. Various structures having beneficial uses described, including survival bunkers, composting pits, mine reclamation encapsulation and carbon sequestration facilities, water storage facilities, compressed air storage facilities, carbon sequestration/mineral carbonation facilities and a pumped hydroelectric facility adapted for use with a lock system of a waterway.
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公开(公告)号:US09533289B2
公开(公告)日:2017-01-03
申请号:US14818164
申请日:2015-08-04
申请人: SDCmaterials, Inc.
发明人: Qinghua Yin , Xiwang Qi , Maximilian A. Biberger
IPC分类号: B01J21/00 , B01J21/04 , B01J23/00 , B01J23/02 , B01J23/08 , B01J23/40 , B01J23/42 , B01J23/44 , B01J23/56 , B01J20/00 , B01J23/89 , B01J35/00 , B01J37/00 , B01J37/32 , B01J37/34 , B28B23/00 , B32B7/12 , B32B37/14 , B82Y30/00 , B82Y40/00 , B01J37/02 , B01J23/46 , B01J35/04
CPC分类号: B01J23/8926 , B01J21/04 , B01J23/42 , B01J23/44 , B01J23/464 , B01J35/0013 , B01J35/04 , B01J37/00 , B01J37/009 , B01J37/0211 , B01J37/32 , B01J37/349 , B28B23/0087 , B32B7/12 , B32B37/14 , B82Y30/00 , B82Y40/00 , C23C4/134 , Y02T10/22
摘要: Embodiments of present inventions are directed to an advanced catalyst. The advanced catalyst includes a honeycomb structure with an at least one nano-particle on the honeycomb structure. The advanced catalyst used in diesel engines is a two-way catalyst. The advanced catalyst used in gas engines is a three-way catalyst. In both the two-way catalyst and the three-way catalyst, the at least one nano-particle includes nano-active material and nano-support. The nano-support is typically alumina. In the two-way catalyst, the nano-active material is platinum. In the three-way catalyst, the nano-active material is platinum, palladium, rhodium, or an alloy. The alloy is of platinum, palladium, and rhodium.
摘要翻译: 本发明的实施方案涉及先进的催化剂。 先进的催化剂包括在蜂窝结构上具有至少一个纳米颗粒的蜂窝结构。 用于柴油发动机的先进催化剂是双向催化剂。 燃气发动机中使用的先进催化剂是三元催化剂。 在双向催化剂和三元催化剂中,至少一种纳米颗粒包括纳米活性材料和纳米支撑体。 纳米载体通常是氧化铝。 在双向催化剂中,纳米活性材料是铂。 在三元催化剂中,纳米活性材料是铂,钯,铑或合金。 该合金是铂,钯和铑。
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公开(公告)号:US09149797B2
公开(公告)日:2015-10-06
申请号:US12965745
申请日:2010-12-10
申请人: David Leamon
发明人: David Leamon
IPC分类号: B01J37/34 , B01J23/89 , B01J23/42 , B01J35/00 , B01J37/00 , B01J37/32 , B28B23/00 , B32B7/12 , B32B37/14 , B82Y30/00 , B82Y40/00 , C23C4/12 , B01J37/02
CPC分类号: B01J23/8926 , B01J23/42 , B01J35/0013 , B01J37/00 , B01J37/009 , B01J37/0211 , B01J37/32 , B01J37/349 , B28B23/0087 , B32B7/12 , B32B37/14 , B82Y30/00 , B82Y40/00 , C23C4/134
摘要: A method of producing a catalyst comprising: mixing catalytic particles and a solvent, thereby forming a mixture; performing a size distribution analysis on the mixture to determine a size distribution profile; repeating the mixing of the catalytic particles and the solvent in the mixture if the size distribution profile is below a threshold; centrifuging the mixture if the size distribution profile is at or above the threshold, thereby forming a supernate and a precipitate, wherein the supernate comprises a dispersion including the catalytic particles and the solvent; decanting the mixture, separating the supernate from the precipitate; determining the particle content of the separated supernate; determining a volume of the dispersion to be applied to a catalyst support based on one or more properties of the catalyst support; and impregnating the catalyst support with the catalytic particles in the dispersion by applying the volume of the dispersion to the catalyst support.
摘要翻译: 一种制备催化剂的方法,包括:将催化剂颗粒和溶剂混合,从而形成混合物; 对混合物进行尺寸分布分析以确定尺寸分布特征; 如果尺寸分布曲线低于阈值,则重复混合中的催化剂颗粒和溶剂的混合物; 如果尺寸分布曲线等于或高于阈值,则离心混合物,从而形成上清液和沉淀物,其中上清液包含包含催化剂颗粒和溶剂的分散体; 倾析混合物,将上清液与沉淀物分离; 确定分离的上清液的颗粒含量; 基于所述催化剂载体的一种或多种性质确定施加到催化剂载体上的分散体的体积; 并通过将分散体的体积施加到催化剂载体上,将催化剂载体与催化剂颗粒浸渍在分散体中。
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76.
公开(公告)号:US20150076730A1
公开(公告)日:2015-03-19
申请号:US14028072
申请日:2013-09-16
申请人: Marie-Andrée Mathieu , Benoit Dubé , Frédéric Potvin , Jacques L'Heureux , Jean-Francois Brassard , Patrick Guertin
发明人: Marie-Andrée Mathieu , Benoit Dubé , Frédéric Potvin , Jacques L'Heureux , Jean-Francois Brassard , Patrick Guertin
IPC分类号: B29D99/00
CPC分类号: B28B1/525 , B28B1/526 , B28B23/0006 , B28B23/0062 , B28B23/0087
摘要: A process for the formation of highly durable cementitious board using lightweight aggregate is disclosed. The process comprises pouring a core mix onto a conveyor, wherein the core mix is comprised of one or more lightweight aggregate filler in the amount of 0.5 to 5 weight percent of the core mix, one or more binders in the amount of 35 to 75 weight percent of the core mix, rheological admixture in the amount of about 0.5 to 5 weight percent of the core mix, surfactant in the amount of 0 to 0.1 weight percent of the core mix, one or more normal weight aggregate filler in the amount of 5 to 50 weight percent of the core mix, and water in the amount of 5 to 20 weight percent of the core mix. The process further comprises passing the core mix under a screed roller to flatten the core mix to produce an extruding board with a desired thickness.
摘要翻译: 公开了一种使用轻质骨料形成高耐久性水泥板的方法。 该方法包括将芯混合物浇注到输送机上,其中芯混合物由一种或多种以核心混合物的0.5至5重量%的量的一种或多种轻质骨料填料组成,一种或多种量为35至75重量的粘合剂 核心混合物的百分比,流变学混合物的量为核心混合物的约0.5至5重量%,表面活性剂的量为0至0.1重量%的核心混合物,一种或多种正常重量的骨料填料的量为5 至50重量%的核心混合物,水的量为核心混合物的5至20重量%。 该方法还包括在熨平板辊下通过芯混合物以使芯部混合物平坦化以产生具有所需厚度的挤出板。
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77.
公开(公告)号:US20150076728A1
公开(公告)日:2015-03-19
申请号:US14028055
申请日:2013-09-16
申请人: Marie-Andrée Mathieu
发明人: Marie-Andrée Mathieu
IPC分类号: B29C39/42
CPC分类号: B29C39/42 , B28B1/525 , B28B1/526 , B28B23/0006 , B28B23/0087 , E04C5/04 , E04C5/07
摘要: A process for controlling the embedding depth of reinforcing mesh to a cementitious board is disclosed. The process comprises applying a pressure from a plate to a reinforcing mesh on a core mix moving downstream on a conveyor, wherein the plate vibrates at a rate that assists in embedding the reinforcing mesh at a depth within the core mix such that the reinforcing mesh is barely visible.
摘要翻译: 公开了一种用于控制增强网到水泥板的嵌入深度的方法。 该方法包括将压力从板上施加到在输送机上向下游移动的芯混合物上的增强网上,其中板以有助于将增强网嵌入芯混合物内的深度的速率振动,使得增强网是 隐约可见。
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公开(公告)号:US08932514B1
公开(公告)日:2015-01-13
申请号:US12962523
申请日:2010-12-07
申请人: Qinghua Yin , Xiwang Qi , Maximilian A. Biberger , David Leamon
发明人: Qinghua Yin , Xiwang Qi , Maximilian A. Biberger , David Leamon
IPC分类号: B28B3/02
CPC分类号: H05K1/0306 , B01J23/42 , B01J23/8926 , B01J37/00 , B22F2001/0092 , B28B3/025 , B28B23/0081 , B28B23/0087 , B32B5/30 , B32B7/12 , B32B37/14 , B32B2037/1253 , B32B2262/0253 , B32B2264/104 , B32B2264/107 , B32B2307/558 , B32B2571/02 , B82Y30/00 , B82Y40/00 , C01B33/027 , C23C4/134 , C23C18/14 , F41H1/02 , F41H5/0471 , F41H5/0492 , H01B1/02 , H01L21/6835 , H01L23/64 , H01L2924/0002 , H05K1/16 , Y02E60/122 , Y02P70/54 , Y10T428/12576 , Y10T428/24983 , Y10T428/25 , Y10T428/252 , Y10T428/26 , Y10T428/28 , Y10T428/2916 , H01L2924/00
摘要: A method of making glass is provided. The method comprises preparing a dispersion of a nano-material. A slurry of a glass matrix material is prepared. The nano-dispersion is mixed with the matrix slurry to form a nano-dispersion/slurry mixture. The nano-dispersion/slurry mixture is dried. The nano-dispersion/slurry mixture is pressed into a final manufacture comprising a molecular structure including the nano-material bonded within and uniformly distributed throughout the molecular structure. The manufacture comprises an increased fracture toughness compared with a conventional manufacture produced without bonding the nano-material within the molecular structure. The nano-material has a size on the order of tens of nanometers. The matrix material has a size on the order of several micrometers. Five percent of the nano-dispersion/slurry mixture comprises the nano-material dispersion. Sintering is performed on the final form using a sintering process following the pressing step. The sintering process includes a hot isostatic pressing process.
摘要翻译: 提供制造玻璃的方法。 该方法包括制备纳米材料的分散体。 制备玻璃基质材料的浆料。 将纳米分散体与基质浆料混合以形成纳米分散体/浆料混合物。 将纳米分散体/浆料混合物干燥。 将纳米分散体/浆料混合物压制成包括分子结构的最终制造,所述分子结构包括结合在整个分子结构内且均匀分布在整个分子结构内的纳米材料。 与在分子结构内不接合纳米材料而制造的常规制造相比,该制造方法具有增加的断裂韧性。 纳米材料的尺寸约为数十纳米。 基质材料具有几微米量级的尺寸。 5%的纳米分散体/浆料混合物包含纳米材料分散体。 使用压制步骤之后的烧结工艺在最终形式上进行烧结。 烧结过程包括热等静压法。
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公开(公告)号:US08877357B1
公开(公告)日:2014-11-04
申请号:US12968245
申请日:2010-12-14
CPC分类号: H05K1/0306 , B01J23/42 , B01J23/8926 , B01J37/00 , B22F2001/0092 , B28B3/025 , B28B23/0081 , B28B23/0087 , B32B5/30 , B32B7/12 , B32B37/14 , B32B2037/1253 , B32B2262/0253 , B32B2264/104 , B32B2264/107 , B32B2307/558 , B32B2571/02 , B82Y30/00 , B82Y40/00 , C01B33/027 , C23C4/134 , C23C18/14 , F41H1/02 , F41H5/0471 , F41H5/0492 , H01B1/02 , H01L21/6835 , H01L23/64 , H01L2924/0002 , H05K1/16 , Y02E60/122 , Y02P70/54 , Y10T428/12576 , Y10T428/24983 , Y10T428/25 , Y10T428/252 , Y10T428/26 , Y10T428/28 , Y10T428/2916 , H01L2924/00
摘要: A method of making a composite material. The method comprises: providing a plurality of particles, wherein each one of the particles comprises a ceramic core and a metallic outer layer surrounding the core; forming a tile from the plurality of particles by performing a bonding process on the plurality of particles; and bonding the tile to a ductile backing material. In some embodiments, the ceramic core comprises boron carbide. In some embodiments, the metallic outer layer comprises at least one of copper, tantalum, titanium, molybdenum, and aluminum.
摘要翻译: 制备复合材料的方法。 该方法包括:提供多个颗粒,其中每个颗粒包括陶瓷芯和围绕芯的金属外层; 通过对所述多个粒子进行接合处理从所述多个粒子形成瓦片; 以及将所述瓷砖粘合到延性背衬材料上。 在一些实施例中,陶瓷芯包括碳化硼。 在一些实施例中,金属外层包括铜,钽,钛,钼和铝中的至少一种。
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公开(公告)号:US20140128245A1
公开(公告)日:2014-05-08
申请号:US14154089
申请日:2014-01-13
申请人: SDCmaterials, Inc.
发明人: Qinghua YIN , Xiwang QI , Eliseo RUIZ
CPC分类号: B01J23/8926 , B01J23/42 , B01J35/0013 , B01J37/00 , B01J37/009 , B01J37/0211 , B01J37/32 , B01J37/349 , B28B23/0087 , B32B7/12 , B32B37/14 , B82Y30/00 , B82Y40/00 , C23C4/134
摘要: A nanoparticle comprises a nano-active material and a nano-support. In some embodiments, the nano-active material is platinum and the nano-support is alumina. Pinning and affixing the nano-active material to the nano-support is achieved by using a high temperature condensation technology. In some embodiments, the high temperature condensation technology is plasma. Typically, a quantity of platinum and a quantity of alumina are loaded into a plasma gun. When the nano-active material bonds with the nano-support, an interface between the nano-active material and the nano-support forms. The interface is a platinum alumina metallic compound, which dramatically changes an ability for the nano-active material to move around on the surface of the nano-support, providing a better bond than that of a wet catalyst. Alternatively, a quantity of carbon is also loaded into the plasma gun. When the nano-active material bonds with the nano-support, the interface formed comprises a platinum copper intermetallic compound, which provides an even stronger bond.
摘要翻译: 纳米颗粒包含纳米活性材料和纳米支持体。 在一些实施方案中,纳米活性材料是铂,纳米载体是氧化铝。 通过使用高温冷凝技术将纳米活性材料固定和固定到纳米支撑体上。 在一些实施例中,高温冷凝技术是等离子体。 通常,将一定量的铂和一定数量的氧化铝装入等离子枪。 当纳米活性材料与纳米载体结合时,纳米活性材料与纳米支撑体之间形成界面。 该界面是铂氧化铝金属化合物,其显着改变纳米活性材料在纳米载体表面上移动的能力,提供比湿催化剂更好的键。 或者,一定量的碳也被加载到等离子体枪中。 当纳米活性材料与纳米支持体结合时,形成的界面包括铂铜金属间化合物,其提供更强的键。
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