Nanoscale indium tin mixed oxide powder
    3.
    发明授权
    Nanoscale indium tin mixed oxide powder 失效
    纳米级铟锡混合氧化物粉末

    公开(公告)号:US07374743B2

    公开(公告)日:2008-05-20

    申请号:US10546145

    申请日:2004-03-05

    IPC分类号: C01G15/00 C01G19/02

    摘要: Mixed oxide powder containing indium and tin, with a proportion of indium oxide of between 90 and 98 wt. % and a BET surface area of 40 to 120 m2/g, which is in the form of aggregates having an average circumference of less than 500 nm, consists of at least 95% of an indium oxide phase and displays an oxygen content that is lower than the content that theoretically results from In2O3 and SnO2. It is produced by mixing a solution of an indium compound with a solution of a tin compound, atomising this mixture of solutions, pyrolysing the atomised mixture of solutions in a first zone of a reactor and in a second zone of the reactor, following pyrolysis, adding reducing gases to the pyrolysed mixture at one or more points in a quantity such that overall a reducing atmosphere is established in this second zone, and separating the resulting solid from the waste gases in a further, third zone, in which a reducing atmosphere likewise still prevails. It can be used for the production of transparent, electroconductive paints and coatings.

    摘要翻译: 含有铟和锡的混合氧化物粉末,氧化铟的比例为90-98wt。 %,平均周长小于500nm的聚集体形式的BET表面积为40〜120μm2 / g,由至少95%的氧化铟相 并显示低于理论上由In2O3和SnO2产生的含量的氧含量。 其通过将铟化合物的溶液与锡化合物的溶液混合来制造,雾化该溶液混合物,在热解后在反应器的第一区和第二区中热解溶解的雾化混合物, 在一个或多个点处将热解的混合物中的还原气体加入到一定量中,使得在该第二区域中总体上形成还原气氛,并将所得固体与废气分离在另外的第三区域中,其中还原气氛同样 仍然占上风。 它可用于生产透明导电油漆和涂料。

    Nanoscale indium tin mixed oxide powder
    4.
    发明申请
    Nanoscale indium tin mixed oxide powder 失效
    纳米级铟锡混合氧化物粉末

    公开(公告)号:US20070003779A1

    公开(公告)日:2007-01-04

    申请号:US10546145

    申请日:2004-03-05

    IPC分类号: B22F1/02 C03C27/00 C03C29/00

    摘要: Mixed oxide powder containing indium and tin, with a proportion of indium oxide of between 90 and 98 wt. % and a BET surface area of 40 to 120 m2/g, which is in the form of aggregates having an average circumference of less than 500 nm, consists of at least 95% of an indium oxide phase and displays an oxygen content that is lower than the content that theoretically results from In2O3 and SnO2. It is produced by mixing a solution of an indium compound with a solution of a tin compound, atomising this mixture of solutions, pyrolysing the atomised mixture of solutions in a first zone of a reactor and in a second zone of the reactor, following pyrolysis, adding reducing gases to the pyrolysed mixture at one or more points in a quantity such that overall a reducing atmosphere is established in this second zone, and separating the resulting solid from the waste gases in a further, third zone, in which a reducing atmosphere likewise still prevails. It can be used for the production of transparent, electroconductive paints and coatings.

    摘要翻译: 含有铟和锡的混合氧化物粉末,氧化铟的比例为90-98wt。 %,平均周长小于500nm的聚集体形式的BET表面积为40〜120μm2 / g,由至少95%的氧化铟相 并显示低于理论上由In2O3和SnO2产生的含量的氧含量。 其通过将铟化合物的溶液与锡化合物的溶液混合来制造,雾化该溶液混合物,在热解后在反应器的第一区和第二区中热解溶解的雾化混合物, 在一个或多个点处将热解的混合物中的还原气体加入到一定量中,使得在该第二区域中总体上形成还原气氛,并将所得固体与废气分离在另外的第三区域中,其中还原气氛同样 仍然占上风。 它可用于生产透明导电油漆和涂料。

    Process for preparing grit blasting particles coated with titanium dioxide
    6.
    发明授权
    Process for preparing grit blasting particles coated with titanium dioxide 失效
    制备涂有二氧化钛的喷砂颗粒的工艺

    公开(公告)号:US06468658B2

    公开(公告)日:2002-10-22

    申请号:US09866493

    申请日:2001-05-29

    IPC分类号: B32B1502

    摘要: A process for preparing grit blasting particles coated with titanium dioxide by sinter-fusing titanium dioxide on the surface of grit blasting particles made of a base material. A mixture of finely divided titanium dioxide and grit blasting particles is passed continuously through the flame in a flame reactor, with the aid of conveying air, wherein the titanium dioxide is sinter-fused on the surface of the grit blasting particles over an average residence time of 0.1 to 5 seconds in a temperature range from 600 to 1200° C. An increase in the adhesive bond between metal framework and a facing material made of plastics in dentures can be achieved when metal framework is grit blasted with a grit blasting agent containing titanium dioxide coated grit blasting particles and then the grit blasted and titanium dioxide coated surface is treated with a silane bonding agent.

    摘要翻译: 通过在由基材制成的喷砂颗粒的表面上烧结二氧化钛来制备用二氧化钛涂覆的喷砂颗粒的方法。 在火焰反应器中,借助于输送空气,将细碎的二氧化钛和喷砂颗粒的混合物连续通过火焰,其中二氧化钛在平均停留时间内烧结熔合在喷砂颗粒的表面上 在600至1200℃的温度范围内为0.1至5秒。当金属框架用含有钛的喷砂剂进行喷砂处理时,可以实现金属框架和由假牙塑料制成的面层材料之间的粘合剂粘结的增加 二氧化硅涂层喷砂颗粒,然后用硅烷粘合剂处理喷砂和二氧化钛涂层表面。

    Battery pack
    7.
    发明授权
    Battery pack 有权
    电池组

    公开(公告)号:US08551640B2

    公开(公告)日:2013-10-08

    申请号:US12746683

    申请日:2008-11-13

    IPC分类号: H01M2/26 H01M6/42

    摘要: The invention relates to a battery pack (1) for electric vehicles or vehicles with an electric hybrid drive. The battery pack (1) according to the invention comprises a battery housing (2) and battery cells, which are arranged within the battery housing (2), are self-contained and are electrically connected to one another in order to achieve a desired terminal voltage. A plurality of battery cells are in each case arranged at a distance from one another in a fastening frame (6) and in each case form cell modules (4). The cell modules (4) are in each case arranged on fastening elements, which pass through the battery housing (2), the fastening elements, being in the form of spacers between the cell modules (4) and, with the battery housing (2), forming a bearing unit.

    摘要翻译: 本发明涉及一种用于电动车辆的电池组(1)或具有电动混合动力驱动的车辆。 根据本发明的电池组(1)包括设置在电池壳体(2)内的电池壳体(2)和电池单元,它们是独立的并且彼此电连接以实现期望的端子 电压。 在每个情况下,多个电池单元在紧固框架(6)中以彼此间隔一定距离布置,并且在每种情况下形成电池模块(4)。 电池模块(4)在每种情况下都布置在穿过电池壳体(2)的紧固元件上,紧固元件是电池模块(4)之间的间隔件形式,并且与电池壳体(2) ),形成轴承单元。

    ELECTRODE STACK FOR A GALVANIC CELL
    10.
    发明申请
    ELECTRODE STACK FOR A GALVANIC CELL 审中-公开
    电极盒的电极堆

    公开(公告)号:US20120189895A1

    公开(公告)日:2012-07-26

    申请号:US13256730

    申请日:2010-03-15

    IPC分类号: H01M10/04 H01M2/20 H01M2/18

    摘要: An electrode stack according to the invention comprises at least a cathode, an anode, and a separator with electrolyte. The cathode, the anode, and the separator are each plate-shaped, respectively. The surface area of the separator is at least as large, as the surface area of the cathode and/or of the anode. The plate-shaped elements of the electrode stack are at least partially connected with each other, by fixation means.

    摘要翻译: 根据本发明的电极堆叠至少包括阴极,阳极和具有电解质的隔膜。 阴极,阳极和隔板分别是板状的。 隔板的表面积至少与阴极和/或阳极的表面积一样大。 电极堆叠的板状元件通过固定装置至少部分地相互连接。