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    • 42. 发明申请
    • TRANSFER PUMP
    • 转运泵
    • US20110189034A1
    • 2011-08-04
    • US13019862
    • 2011-02-02
    • John P. Courier
    • John P. Courier
    • F04B17/00
    • F04B17/00
    • A transfer pump includes a motor that attaches to a manifold with a motor mount that seals a top end of the manifold. The motor mount includes a tubular portion that extends into and threadably engages the manifold, to cooperatively define a channel therethrough. The manifold includes a plurality of inlet ports arranged generally in an annular pattern. An inner cylinder attaches to the manifold from below, disposed radially inward from the inlet ports, and a pressure cylinder attaches to the manifold, disposed radially outward from the inlet ports. The pressure cylinder includes a foot valve. A pump shaft extends from the motor, through the channel, and into the pressure cylinder. A large piston with a check valve is attached to the distal end of the shaft, and a small piston disposed in the inner cylinder is attached at an intermediate location.
    • 输送泵包括电动机,其连接到具有密封歧管顶端的马达安装座的歧管。 电动机支架包括延伸到歧管中并螺纹接合歧管的管状部分,以协作地限定穿过其中的通道。 歧管包括大致以环形图案布置的多个入口。 内筒从下方连接到歧管,从入口端径向向内设置,并且压力缸附接到歧管,其从入口端口径向向外设置。 压力缸包括一个脚踏阀。 泵轴从电机延伸通过通道并进入压力缸。 具有止回阀的大活塞附接到轴的远端,并且设置在内筒中的小活塞安装在中间位置。
    • 44. 发明申请
    • WAVE-POWERED, RECIPROCATING HOSE PERISTALTIC PUMP
    • 波浪式,复合软管PERICALTIC PUMP
    • US20110081259A1
    • 2011-04-07
    • US12736817
    • 2009-05-13
    • Gerald John Vowles
    • Gerald John Vowles
    • F04B17/00
    • F03B13/1865F03B13/187F04B17/00F04B35/004F04B43/12F05B2240/40Y02A20/144Y02E10/38
    • A wave-powered peristaltic hose pump, typically installed in a body of fluid upon which waves occur. It is characterized by a peristaltic hose which is reciprocally drawn through one or more anchored compression pulley blocks by opposing buoyant members reacting to undulating wave action. Occlusion of the hose by the compression pulley block causes a reciprocating inflow and outflow of water which is converted to a one-way outflow by a set of valves. When tensile loads are beyond the capabilities of the the peristaltic hose itself, it is installed within a low-stretch, flexible support means linked to the opposing buoyant members in a manner which minimizes tensile loading of the peristaltic hose. The apparatus is employed to deliver a flow of pressurized seawater to power driven devices or processes such as but not limited to desalinators, electricity generators, hydraulic motors and hydrogen fuel generators.
    • 波浪式蠕动软管泵,通常安装在发生波浪的液体中。 其特征在于蠕动软管通过一个或多个锚定的压缩滑轮块通过相对于波动波动的波动构件反向拉伸。 通过压缩滑轮块堵塞软管会导致水的往复流入和流出,通过一组阀转换成单向流出。 当拉伸载荷超出蠕动管本身的能力时,它被安装在以最小化蠕动软管的拉伸载荷的方式连接到相对的浮力部件的低拉伸的柔性支撑装置中。 该装置用于将加压海水流传递给动力驱动装置或过程,例如但不限于脱盐器,发电机,液压马达和氢燃料发生器。
    • 45. 发明申请
    • INDUCED-CHARGE ELECTROKINETICS WITH HIGH-SLIP POLARIZABLE SURFACES
    • 具有高滑移偏振表面的电感电动机
    • US20100264032A1
    • 2010-10-21
    • US12741894
    • 2008-11-05
    • Martin Z. Bazant
    • Martin Z. Bazant
    • G01N27/26
    • F04B15/00B01L3/50273B01L2300/165B01L2300/166B01L2400/0418B01L2400/0421F04B17/00F04B19/006
    • This invention provides devices and apparatuses comprising the same, for fast pumping and mixing of relatively small volumes of electrolytes and ionic fluids and materials suspended thereby. Such devices utilize nonlinear induced-charge electro-osmosis as a primary mechanism for driving fluid flow. Such devices comprise a polarizable surface, which is incorporated in the electrodes or pumping elements of the devices as well as a material, which promotes hydrodynamic slip at a region proximal thereto, when the device is subjected to non-linear electro-osmotic flow. Examples of such materials are provided. This invention also provides nanoparticles and microparticles incorporating such materials to enhance nonlinear induced-charge electrophoretic motion. Methods of use of the devices and particles of this invention are described.
    • 本发明提供了包括该装置和装置的装置和装置,用于快速泵送和混合相对小体积的电解质和悬浮于其中的离子流体和材料。 这种装置利用非线性感应电渗透作为驱动流体流动的主要机构。 这种装置包括可极化表面,该表面被装入装置的电极或泵送元件中,以及当该装置经受非线性电渗流时,该材料促进在其附近区域处的流体动力滑动。 提供了这些材料的实例。 本发明还提供纳入这种材料的纳米颗粒和微粒以增强非线性诱导电荷电泳运动。 描述本发明的装置和颗粒的使用方法。
    • 46. 发明申请
    • AIR DRIVEN HYDRAULIC PUMP
    • 空气驱动液压泵
    • US20100215521A1
    • 2010-08-26
    • US12515221
    • 2007-11-21
    • Bruce E. KnuthKay Lap Gilbert ChanTheo H. H. Den RidderFrantz D. StanfordRoger R. Pili
    • Bruce E. KnuthKay Lap Gilbert ChanTheo H. H. Den RidderFrantz D. StanfordRoger R. Pili
    • F04B17/00
    • F04B23/06F04B17/00
    • A rotary air motor driven hydraulic pump has separate pressure and return actuators and first and second stage eccentric driven pistons 180 degrees out of phase and driven by the motor through a gear reduction unit. The pressure and return actuators are on/off/proportional valves and the pump has two pressure relief valves with one adjustable from outside of the pump for a user to set a pressure limit of the pump. Above a certain output pressure limit, a bypass valve shunts flow in excess of that needed to precharge the second stage compression chamber from the first stage piston to an elastic reservoir from which the hydraulic fluid pumped by the pump is drawn. To make the pump stall at a certain output pressure, a pressure limiting valve can be used that cuts off the air supply to the pump at the desired output pressure.
    • 旋转气动马达驱动的液压泵具有单独的压力和返回致动器以及180度异相的第一和第二级偏心驱动活塞,并且由马达通过齿轮减速单元驱动。 压力和返回致动器是开/关/比例阀,泵具有两个压力释放阀,一个可从泵的外部调节,用于使用者设定泵的压力极限。 在一定的输出压力极限之上,旁路阀将流过超过将第二级压缩室预先从第一级活塞预充气到由泵泵送的液压流体的弹性容器所需的流量。 为了使泵在一定的输出压力下停止,可以使用限压阀,以期望的输出压力切断泵的空气供应。
    • 47. 发明申请
    • Electrokinetic Micropump
    • 电动微泵
    • US20100034667A1
    • 2010-02-11
    • US11988372
    • 2006-06-29
    • Ruslan Khazhsetovich KhamizovMuradin Abubekirovich KumakhovNatalia Sergeevna BastrykinaSvetlana Vassilievna NikitinaAlexandr Alexandrovich VoronovRuslan Khazhsetovich Khamizov
    • Ruslan Khazhsetovich KhamizovMuradin Abubekirovich KumakhovNatalia Sergeevna BastrykinaSvetlana Vassilievna NikitinaAlexandr Alexandrovich VoronovRuslan Khazhsetovich Khamizov
    • F04F99/00
    • F04B19/006F04B17/00
    • The invention is directed to the elimination of changes of the chemical composition of a pumped liquid caused by introduction of strange components or by modification of original components. Another object of the invention is to provide the possibility of use of electrodes of the first order in order to increase productivity and decrease size and cost of the micropump.For this purpose, the electrokinetic micropump comprises a multichannel structure 810 made of non-conducting material, for example, a piece of a polycapillary column. The inlet and outlet end of this structure are adjacent to electrode sections 803, 804 having openings 821, 822 for inlet and outlet of the pumped liquid. These sections are divided by ion-exchange membranes 811, 812 into chambers 813, 814 for flow of the pumped liquid, communicating with the ends 841, 842 of the multichannel structure, and chambers 815, 816 filled with an auxiliary medium for transfer of electric charges. In the latter electrodes 817, 818 are located. One of the membranes, namely, membrane 811, is monopolar, and its type corresponds to the polarity of the adjacent electrode 817. The other membrane, namely, membrane 812, is bipolar and faces the adjacent electrode 818 with its side that corresponds to the polarity of said electrode. On one or both sides of each ion-exchange membrane may be installed baromembranes 829, 830 for nanofiltration or reverse osmosis. As auxiliary medium may be used, in particular, the pumped liquid itself or a granulated ion-exchange material.
    • 本发明旨在消除由引入奇怪组分或通过改变原始组分引起的泵送液体的化学成分的变化。 本发明的另一个目的是提供使用第一级电极的可能性,以便提高生产率并减小微型泵的尺寸和成本。 为此,电动微型泵包括由非导电材料制成的多通道结构810,例如一片多毛细管柱。 该结构的入口端和出口端与电极部分803,804相邻,其具有用于抽吸液体的入口和出口的开口821,822。 这些部分由离子交换膜811,812分成用于泵送液体的流动的腔室813,814,与多通道结构的端部841,842连通,以及填充有用于传递电气的辅助介质的腔室815,816 收费。 在后面的电极817,818中。 膜811之一是单极的,其类型对应于相邻电极817的极性。另一个膜即膜812是双极的,并且面对相邻的电极818,其侧面对应于 所述电极的极性。 在每个离子交换膜的一侧或两侧可以安装用于纳滤或反渗透的恒压829,830。 可以使用辅助介质,特别是泵送液体本身或粒状离子交换材料。
    • 49. 发明申请
    • Wave energy accumulator
    • 波能蓄能器
    • US20090226331A1
    • 2009-09-10
    • US11133149
    • 2005-05-18
    • Joe Sieber
    • Joe Sieber
    • F04B35/01
    • F04B17/00F03B13/187F03B13/24F04B35/004F05B2210/18Y02E10/38
    • A fluid pressurization unit compresses a fluid in response to natural wave action on a body of water such as an ocean. The unit comprises a floating component and a piston assembly. The floating component has sufficient buoyancy to float on water waves and has a compression chamber with an inlet valve biased to receive a fluid at an intake pressure. The piston assembly is slidable within the compression chamber and has a piston shaft and a hollow piston head attached to the piston shaft, which defines a piston reservoir therein with an inlet valve in communication with the compression chamber and biased to receive the fluid at an output pressure, and an outlet for discharging fluid pressurized to at least the output pressure from the pressurization unit. The piston assembly is fixable in place relative to the floating component such that relative movement between the floating component and piston assembly compresses fluid from the intake pressure to at least the output pressure.
    • 流体加压单元响应于对诸如海洋的水体的自然波动而压缩流体。 该单元包括浮动部件和活塞组件。 浮动部件具有足够的浮力以浮在水波上并且具有压缩室,其中入口阀被偏置以在进气压力下接收流体。 活塞组件可在压缩室内滑动,并且具有连接到活塞轴的活塞轴和中空活塞头,该活塞轴限定活塞储存器,其中具有与压缩室连通的入口阀并被偏压以在输出端处接收流体 压力和用于排出加压至少来自加压单元的输出压力的流体的出口。 活塞组件相对于浮动部件可固定就位,使得浮动部件和活塞组件之间的相对运动将流体从进气压力压缩至至少输出压力。