一种进水可自动调节的保安过滤器

    公开(公告)号:CN108339312A

    公开(公告)日:2018-07-31

    申请号:CN201810388757.0

    申请日:2018-04-27

    Inventor: 倪晓云

    CPC classification number: B01D29/606 B01D29/50 B01D35/14 B01D2201/345

    Abstract: 本发明公开了一种进水可自动调节的保安过滤器,其结构包括罐体、连接罐体顶端的顶盖、连接罐体底端的底盖、附着在顶盖的进水口,附着在底盖的出水口、挡板a、挡板b以及若干滤芯,所述顶盖的中心处设有KF压力表开关,挡板a固定在罐体的顶端,挡板b7固定在罐体的底端,挡板a设有若干滤芯插座D以及进水孔,挡板b的边缘设有若干滤芯插座d,滤芯插座D和滤芯插座d的位置相对应,滤芯通过滤芯插座D和滤芯插座d固定在罐体的内部,进水口设有进水管,进水管一端设有进水法兰,进水管另一端连接到KF压力表开关,KF压力表开关的另一端连接至进水孔。本发明结构简单,可以有效的控制污水的进水,大大提高了保安过滤器的使用寿命。

    一种用于食品加工的快装过滤器

    公开(公告)号:CN107441798A

    公开(公告)日:2017-12-08

    申请号:CN201710840404.5

    申请日:2017-09-18

    Inventor: 渠永超

    Abstract: 本发明涉及一种用于食品加工的快装过滤器。该装置包括管状的壳体,所述壳体上设有缩颈部,所述壳体两端均设有翻边,位于圆柱部的翻边经连接件连接有进料管,所述进料管的一端插入壳体内,插入壳体内的进料管端头密封,位于壳体内的进料管侧壁上开设有开口,所述壳体内设有螺旋过滤网,所述螺旋过滤网一端抵触在缩颈部的内壁上,另一端抵触在进料管上,所述开口使流质进入壳体与螺旋过滤网之间的间隙内,所述螺旋过滤网经金属丝或塑料丝缠绕成拉伸弹簧状,用于过滤流质中的杂质。由于螺旋过滤网的存在,可以过滤掉流质中的杂质,而且该螺旋过滤网可以承受较大的压力而不容易破损,能够可靠地工作,同时该过滤器结构简单,便于快速安装使用。

    DRUCKDICHTE VERBINDUNGSANORDNUNG
    24.
    发明申请
    DRUCKDICHTE VERBINDUNGSANORDNUNG 审中-公开
    耐压连接装置

    公开(公告)号:WO2016019934A1

    公开(公告)日:2016-02-11

    申请号:PCT/DE2015/000317

    申请日:2015-06-25

    CPC classification number: B01D46/0004 B01D2201/345 B01D2265/02 B01D2271/02

    Abstract: Es ist eine druckdichte Verbindungsanordnung mit zwei Verbindungselementen (2, 3), die einander zugewandte Innenseiten (8, 9) aufweisen, zumindest einem Dichtelement (4) zwischen den Innenseiten (8, 9) und zumindest einem Halteelement (10), welches die Verbindungselemente (2, 3) in einem Haitezustand daran hindert, sich voneinander zu entfernen, offenbart. Zumindest ein Dichtelement (4) ist so ausgebildet, dass es eine einstellbare Kraft auf die beiden Innenseiten (8, 9) ausüben kann.

    Abstract translation: 它与内侧面之间的两个连接元件(2,3)时,相互面对的内侧面(8,9),至少一个密封元件(4)的压力密封的连接装置(8,9)和至少一个保持元件(10),该连接元件 (2,3)在Haitezustand防止它们彼此远离被公开。 至少一个密封(4)元件被形成为使得它可以在两个内侧施加一个可调的力(8,9)。

    NON-WELDED FILTER
    25.
    发明申请
    NON-WELDED FILTER 审中-公开

    公开(公告)号:WO2019005649A1

    公开(公告)日:2019-01-03

    申请号:PCT/US2018/039237

    申请日:2018-06-25

    Abstract: Embodiments of the present invention include systems and methods for providing a filter (100) that is sealed solely with mechanical forces. The filter may be a high pressure filter used in semiconductor manufacturing. In various embodiments, the filter includes a housing (101) with an angled end (115, 116) and a filter element (105) disposed inside the housing. The filter further includes a fluid fitting (120, 121) with an angled side. The angled side of the fitting has a different angle than the angled end of the housing. The filter also includes a compression collar (130, 131) fitted over the housing to compress the housing and the fitting. The result is a filter that may be used as a high-pressure fluid restrictor. The filter uses only mechanical seals to provide leak-proof highly filtered fluids in which impurities, contaminants and particulates are removed.

    SISTEMA DE CIERRE ESTANCO PARA FILTRO DE CARTUCHOS Y PROCESO DE MONTAJE DEL MISMO
    26.
    发明申请
    SISTEMA DE CIERRE ESTANCO PARA FILTRO DE CARTUCHOS Y PROCESO DE MONTAJE DEL MISMO 审中-公开
    滤筒的水封闭系统及其装配工艺

    公开(公告)号:WO2017207836A1

    公开(公告)日:2017-12-07

    申请号:PCT/ES2017/070317

    申请日:2017-05-17

    Applicant: FLUYTEC, S.A.

    Abstract: Sistema de cierre estanco para filtro de cartuchos, que comprende un cuerpo (1), de configuración cilíndrica, y una tapa (2), que cierra de forma estanca el cuerpo (1), donde el cuerpo (1) comprende un resalte (8), para el apoyo de la tapa (2) y un cajeado (6) para el alojamiento de un tope (4) y la tapa (2) comprende un cajeado (7) perimetral para el alojamiento de una junta (3) hueca que se infla suministrando un fluido por un tubo (5)para ejercer una presión sobre la pared interna del cuerpo (1) que genera el cierre estanco del filtro.

    Abstract translation: 用于筒式过滤器的防水密封系统包括圆柱形构造的本体1和将本体紧密封闭的盖子2, ,其中所述主体(1)包括用于支撑所述盖(2)的突出部(8)和用于接收止动件(4)的凹部(6),并且所述盖(2)包括凹部(7) (3)的外壳,所述中空接头(3)通过经由管(5)供应流体而膨胀,以对所述主体(1)的内壁施加压力,所述压力产生所述过滤器的紧密密封。

    Filter apparatus and Method
    28.
    发明公开
    Filter apparatus and Method 失效
    过滤器和方法

    公开(公告)号:EP0151288A3

    公开(公告)日:1986-06-11

    申请号:EP84115689

    申请日:1984-12-18

    Inventor: Bratten, Jack R.

    CPC classification number: B01D29/096 B01D29/822 B01D2201/345

    Abstract: @ A liquid filter is disclosed including a filter chamber into which extends a looped endless belt which is passed above and below rollers on either side of the filter chamber. Both the upper and lower belt segments pass over a support plate in the filter chamber, the lower segment positioned directly underneath the upper belt segment. Filtering flow from the filter chamber passes through both belt segments and through spaced and tapered openings in the support plate and thence into a collection trough beneath the support plate. The belt is periodically advanced to carry filter solids out of the filter chamber. In a first version, the'upper belt segment acts as the filter media, and is wider to create a sealing of the lateral edges of the upper belt segment. In a second version, a disposable media lies atop both belt segments which act only to carry the disposable media and the disposable media is of wider width to establish the edge sealing. Spaced elongated bars are disposed within the collection trough supporting the bottom of the support plate with spaces between the trough rim and the bars, enabling flushing of the trough interior to remove accumulated fine solid particles. A plurality of filter units may be vertically stacked, with the collection trough of one unit forming the top of the next below filter unit.

    BALLAST WATER TREATMENT APPARATUS
    29.
    发明公开

    公开(公告)号:EP3388129A1

    公开(公告)日:2018-10-17

    申请号:EP18166666.0

    申请日:2018-04-10

    Abstract: Problem
    To provide a ballast water treatment apparatus capable of suitably preventing contaminants from entering from a contact part between a rotating filter and a casing supporting the filter, thereby improving performance.
    Means to solve the problem
    Ballast water treatment apparatus 1 comprises a casing 10,a tubular filter 20 disposed inside the casing 10, a support shaft part configured to be a part of the casing 10 and rotatably to support the filter 20 at an end part of the filter 20, a line L3 wherein one end side connects to the support shaft part and the other end side connects to the casing 10, and the line L3 allows to connect a space on a secondary side of the filter 20 and a contact part between the support shaft part and the filter 20, and a pump 39 disposed in the line L3 and configured to supply the contact part with water inside the casing 10.

    Belt filter
    30.
    发明授权
    Belt filter 失效
    皮带过滤器

    公开(公告)号:EP0151288B1

    公开(公告)日:1989-09-20

    申请号:EP84115689.6

    申请日:1984-12-18

    Inventor: Bratten, Jack R.

    CPC classification number: B01D29/096 B01D29/822 B01D2201/345

    Abstract: A liquid filter is disclosed including a filter chamber into which extends a looped endless belt which is passed above and below rollers on either side of the filter chamber. Both the upper and lower belt segments pass over a support plate in the filter chamber, the lower segment positioned directly underneath the upper belt segment. Filtering flow from the filter chamber passes through both belt segments and through spaced and tapered openings in the support plate and thence into a collection trough beneath the support plate. The belt is periodically advanced to carry filter solids out of the filter chamber. In a first version, the upper belt segment acts as the filter media, and is wider to create a sealing of the lateral edges of the upper belt segment. In a second version, a disposable media lies atop both belt segments which act only to carry the disposable media and the disposable media is of wider width to establish the edge sealing. Spaced elongated bars are disposed within the collection trough supporting the bottom of the support plate with spaces between the trough rim and the bars, enabling flushing of the trough interior to remove accumulated fine solid particles. A plurality of filter units may be vertically stacked, with the collection trough of one unit forming the top of the next below filter unit.

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