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    • 31. 发明授权
    • Ferrous particle magnetic removal and collection apparatus
    • 亚铁颗粒除磁装置
    • US06412643B1
    • 2002-07-02
    • US09789853
    • 2001-02-21
    • Robert T. Wysolmierski
    • Robert T. Wysolmierski
    • B03C100
    • B03C1/12B03C1/0332B03C1/14B03C1/145Y10S209/904
    • An apparatus and method for removing ferrite particles from a material flow introduced into the apparatus. The apparatus has a housing supporting a magnetized roller with which the material flow is brought into contact with to extract the ferrite particles. The roller has an outer surface which extracts and captures the entrained ferrite particles along a highly magnetized pathway formed by a spiral extending along and circumventing a portion of the outer surface of the roller. The spiral can be an exposed magnetic pole exerting a radial magnetic force induced from a magnet core in contact with the spiral on entrained ferrous particles in the material flow, thus attracting the particles to the magnetic poles on the pathway. A non ferrous wiper is brought into contact with the roller, which forces the captured ferrite particles to follow the pathway towards an end of the roller surface where the radial magnetic force of the pathway is reduced in order to allow removal of the captured particles from the roller into a collection area.
    • 一种用于从引入该装置的材料流中除去铁氧体颗粒的装置和方法。 该装置具有支撑磁化辊的壳体,材料流与其接触以提取铁氧体颗粒。 辊具有外表面,其沿着沿着并围绕辊的外表面的一部分延伸的螺旋形成的高度磁化路径提取并捕获夹带的铁素体颗粒。 螺旋可以是暴露的磁极,其施加从磁芯引起的径向磁力,该磁芯与材料流中夹带的亚铁颗粒上的螺旋接触,从而将颗粒吸引到路径上的磁极。 非铁的擦拭器与辊接触,这迫使所捕获的铁氧体颗粒沿着朝向辊表面的端部的路径,其中路径的径向磁力被减小,以便允许将捕获的颗粒从 滚动到收集区域。
    • 34. 发明授权
    • Method using an apparatus for separation of biological fluids
    • 使用生物流体分离装置的方法
    • US06291249B1
    • 2001-09-18
    • US09514686
    • 2000-02-28
    • Vijay MahantByron Doneen
    • Vijay MahantByron Doneen
    • B03C100
    • G01N33/491B01L3/5021B01L3/505B01L2300/0681G01N2001/4016Y10S436/807Y10T436/113332Y10T436/25125Y10T436/25375Y10T436/255Y10T436/2575
    • A cell containing sample is separated into a cell containing portion and a substantially cell depleted portion, by mixing the sample with particles to produce a cell containing network, and separating the network from the remaining substantially cell depleted portion within a plurality of confining walls, wherein at least one of the walls is flexible. While in some aspects the separation is performed employing a magnetic force, in other aspects the separation is performed using two forces, wherein one force is a magnetic force and the other force is a mechanical force. It is contemplated that whole blood may be used as the sample, and that the cell-containing portion largely comprises a network of inter-linked red blood cells. It is especially contemplated that separation involves antiligands, preferably primary antibodies that bind to a ligand such as antigen on or in red blood cell membranes, and secondary antibodies that bind to the primary antibodies. It is also contemplated that the primary antibodies can be coupled to the surfaces of paramagnetic beads.
    • 通过将样品与颗粒混合以产生含有细胞的网络,并将网络与多个限制壁内的剩余的基本上细胞耗尽的部分分离,将含有细胞的样品分离成含细胞部分和基本上细胞贫化部分,其中 至少一个壁是柔性的。 虽然在某些方面使用磁力进行分离,但在其它方面,使用两个力进行分离,其中一个力是磁力,另一个力是机械力。 可以设想全血可以用作样品,并且含细胞的部分主要包含相互联系的红细胞网络。 特别考虑的是,分离涉及抗配糖,优选结合于红细胞膜上或其中的配体如抗原的一级抗体,以及与一级抗体结合的二级抗体。 还预期一次抗体可以偶联到顺磁珠的表面。
    • 35. 发明授权
    • Magnetic separator
    • 磁选机
    • US06250474B1
    • 2001-06-26
    • US09169014
    • 1998-10-08
    • Billy R. Howell
    • Billy R. Howell
    • B03C100
    • B03C1/247
    • An eddy current separator apparatus for separating non-ferrous metals from other materials. The apparatus includes a support frame and a table cantileverly suspended from the frame. An expansion and contraction mechanism is incorporated that is adapted to accept a continuous conveyor belt thereabout. The expansion and contraction mechanism is capable of being configured between an operating configuration and maintenance configuration. A continuous conveyor belt is constructed to be able to be looped about the expansion and contraction mechanism and the table such that the conveyor belt is drawn tight in the operating configuration and slackened in the maintenance configuration. In this manner, the continuous conveyor belt is easily removable from, and installable onto the table in the maintenance configuration. A magnetic rotor is positioned proximate a first side of the continuous conveyor belt and is adapted to generate an eddy current on an opposite second side of the continuous conveyor belt upon rotation for inducing an elevating force in non-ferrous metals for separation from other materials.
    • 一种用于从其他材料中分离有色金属的涡流分离装置。 该装置包括支撑框架和从框架悬臂悬挂的桌子。 一种适于在其周围接受连续输送带的膨胀和收缩机构。 扩展和收缩机制能够在操作配置和维护配置之间配置。 连续输送带被构造成能够围绕膨胀和收缩机构和工作台环绕,使得输送带在操作构造中被拉紧并且在维护配置中松弛。 以这种方式,连续的传送带可以容易地从维护配置中移除并安装在桌子上。 磁性转子位于连续输送带的第一侧附近,并且适于在旋转时在连续输送带的相对的第二侧上产生涡流,以在有色金属中引起升高力以与其它材料分离。
    • 38. 发明授权
    • Vessel and rod
    • 船和杆
    • US06596162B2
    • 2003-07-22
    • US09808232
    • 2001-03-14
    • Jukka Tuunanen
    • Jukka Tuunanen
    • B03C100
    • B03C1/286B03C1/284G01N35/0098
    • The invention relates to a vessel and to a rod used with the vessel for collecting magnetic particles from a liquid containing the particles in the vessel, or for releasing the particles into a liquid in the vessel. The minimum distance from the rod, when inserted into the vessel, from the inner wall surface of the vessel is great enough at each point to resist or prevent any liquid ring or ring part from being formed between the vessel and the rod, which ring could be removed along with the rod. In this manner, liquid is prevented from being removed from the vessel along with the rod.
    • 本发明涉及一种与该容器一起使用的容器和一个杆,用于从容纳容器中的颗粒的液体中收集磁性颗粒,或用于将颗粒释放到容器中的液体中。 当从容器的内壁表面插入容器时,杆的最小距离在每个点处足够大以抵抗或防止在容器和杆之间形成任何液体环或环部分,该环可以 与杆一起移除。 以这种方式,防止液体与杆一起从容器中移出。
    • 39. 发明授权
    • Plasma mass separator using ponderomotive forces
    • 等离子体质量分离器使用沉积物
    • US06585891B1
    • 2003-07-01
    • US10086671
    • 2002-02-28
    • Tihiro Ohkawa
    • Tihiro Ohkawa
    • B03C100
    • H05H1/54H01J49/288
    • A device for separating high-mass ions (having cyclotron frequency &OHgr;h) from low-mass ions (having cyclotron frequency &OHgr;l) in a plasma includes a chamber. Coils are provided to generate a substantially uniform magnetic field in the chamber. An antenna is provided to launch a left-hand elliptically polarized electromagnetic wave into the chamber along the stationary magnetic field that is evanescent in the multi-species plasma. Importantly, the E vector of the elliptically polarized electromagnetic wave rotates at a frequency, &ohgr;, where &OHgr;h
    • 用于从等离子体中的低质量离子(具有回旋加速器OMEGA1)分离高质量离子(具有回旋加速器频率OMEGAh)的装置包括室。 提供线圈以在腔室中产生基本均匀的磁场。 提供一个天线,以沿着在多种类等离子体中消逝的固定磁场发射左手椭圆极化的电磁波进入腔室。 重要的是,椭圆极化的电磁波的E矢量以ω,ω,ω的旋转频率,其中OMEGAh <ω= OMEGA1。 波动产生的电磁波使低质量离子向天线移动,同时使高质量离子离开天线。
    • 40. 发明授权
    • Apparatus for making exhaust gas non-toxic
    • 废气排放装置无毒
    • US06315819B1
    • 2001-11-13
    • US09643156
    • 2000-08-21
    • Masatoshi Tokushima
    • Masatoshi Tokushima
    • B03C100
    • H01J37/32844C23F4/00H01L21/32136Y02C20/30Y02P70/605
    • There is provided a method of dry etching a nickel film formed on a substrate by means of plasma of an etching gas, wherein the etching gas includes at least one of CO and CO2 gases, and the substrate is designed to keep a temperature in the range of −25° C. to 40° C. both inclusive, while the substrate is being etched. For instance, the etching gas is a mixture gas including CO and CO2 gases, a mixture gas including CO, CO2 and H2 gases, or a mixture gas including CO and H2 gases. The above-mentioned method provides higher etching accuracy, higher etching rate, and less etching damage in a substrate.
    • 提供了通过蚀刻气体的等离子体对形成在基板上的镍膜进行干蚀刻的方法,其中蚀刻气体包括CO和CO 2气体中的至少一种,并且基板被设计成将温度保持在范围内 在-25℃至40℃之间,同时衬底被蚀刻。 例如,蚀刻气体是包括CO和CO 2气体的混合气体,包括CO,CO 2和H 2气体的混合气体,或包括CO和H 2气体的混合气体。 上述方法提供了更高的蚀刻精度,更高的蚀刻速率和较少的基板蚀刻损伤。