Abstract:
본 발명은 여과지 바닥의 지주상부에 설치된 여과블럭과, 상기 여과블럭 내에 내장된 스트레이너 고정체와, 상기 여과블럭의 사이사이에 무수축 몰탈 처리된 이음부와, 상기 스트레이너 고정체에 체결/조립된 스트레이너와, 상기 여과블럭의 상면에 형성되는 여과층을 포함하여 이루어진 하부집수장치를 개량/보수하는 하부집수장치의 개량보수구조 및 방법에 있어서; 상기 여과층 및 종래의 스트레이너를 제거한 상태에서 상기 여과블럭의 상면에 상기 여과블럭 및 다음의 쐐기형 스트레이너를 지지되게 하고 상기 여과블럭 및 차후의 보강처리부에 강도를 지원하는 파손 및 이탈방지부재와; 상기 여과블럭 내 스트레이너 고정체에 체결/고정시키며, 체결시에 수평조절이 가능하고 역세척시 물과 공기의 균등배분공급능력의 향상을 위해 이중구조를 갖는 쐐기형 스트레이너와; 상기 파손 및 이탈방지부재가 형성된 여과블럭의 상면 상에 무수축 몰탈 처리에 의해 형성되며, 상기 이음부를 보완하고 상기 여과블럭 및 쐐기형 스트레이너를 지지하여 파손이나 이탈방지를 보강할 수 있도록 이음매 없는 일체의 단일구조물을 이루게 하는 보강처리부를 포함하여 이루어지게 한다. 하부집수장치, 여과블럭, 쐐기형 스트레이너, 보강처리부, 역세척, 균등배분
Abstract:
Multi-core solid profile filter media blocks include multiple sub-blocks, which may be formed by providing a block with multiple interior cavities extending deep into the block, to allow water to flow deep inside the filter block to access the media of the sub-block (in the case wherein the cavities are at the inlet to the block) or that allows water to be collected from each filtration sub-block (in the case wherein the cavities are at the outlet from the block). One or more indentations/spaces/gaps in the exterior surface of the block also may be provided to separate and extend between portions of the sub-blocks, so that substantially all of the filter media of a sub-block is accessible to fluid for filtration. This way, a filter block may include a large amount of media in a small cartridge or package volume, and the filter block may exhibit good flow distribution and low pressure drop. Sub-blocks of the filter block may be integrally formed together into the filter block, or may be directly connected, for example, preferably without any housing or internals clamping or fastening the sub-blocks together.
Abstract:
A liquid separation constituent is used with being attached to a top plate to and from which a first element portion is attachable and detachable, and includes a second element portion having a fiber layer, an annular first attachment portion to which an upper end portion of the second element portion is attached, and a second attachment portion to which a lower end portion of a second element portion is attached. The first element portion includes an abutting portion abutting on the top plate and an insertion portion inserted into a through hole of the top plate. The first attachment portion includes a hole portion into which the insertion portion of the first element portion removed from the top plate is insertable, and an annular abutting portion abutting on a lower surface of the top plate from which the first element portion is removed.
Abstract:
A filter base system may include a mounting bracket configured to be coupled to a machine, and an extension coupled to the mounting bracket. The filter base system may further include a filter assembly coupler associated with the extension. The filter assembly coupler may include an inlet passage configured to provide flow communication from the machine to the filter element, and an outlet passage configured to provide flow communication from the filter element to the machine. The filter assembly coupler may also include a receiver including a receiver passage extending transverse to longitudinal axes of the inlet and outlet passages. The filter assembly coupler may further include a base plug including a base plug body including a plug surface configured to cooperate with the filter element, such that orientation of the filter element with respect to the filter assembly coupler depends on orientation of the base plug in the receiver.
Abstract:
Filter and replaceable filter leaf apparatus are provided. The filter includes a housing defining a cavity having fluid inlet and outlet ports and a lid member with a manifold coupled to the outlet port and being adapted to conduct a fluid flow between the outlet port and a plurality of attachment areas. Replaceable filter leafs are selectively movable through an opening into the housing cavity and attachable with the manifold at the plurality of attachment areas. The replaceable filter leafs include a filter envelope consisting of a filter panel, a nozzle member on the filter panel and defining a passageway adjacent an opening in the filter envelope for conducting fluids therethrough. The nozzle member is selectively attachable onto the manifold of the polishing filter apparatus at any one of the plurality of attachment areas.
Abstract:
A filtration vessel is provided with improved sealing surfaces and alignment methods. The sealing surface is provided by a perforated sleeve within the filtration vessel. An alignment mechanism is provided which allows for improved servicing of the filtration vessel.
Abstract:
A filter and replaceable filter leaf apparatus are provided. The filter includes a housing defining a cavity having fluid inlet and outlet ports and a lid member with a manifold coupled to the outlet port and being adapted to conduct a fluid flow between the outlet port and a plurality of attachment areas. Replaceable filter leafs are selectively movable through an opening into the housing cavity and attachable with the manifold at the plurality of attachment areas. The replaceable filter leafs include a filter envelope consisting of a single substantially rectangular filter panel, a nozzle member on the filter panel and defining a passageway adjacent an opening in the filter envelope for conducting fluids therethrough, and a porous grid member contained within the filter envelope. The nozzle member is selectively attachable onto the manifold of the polishing filter apparatus at one of the plurality of attachment areas. In one form, the filter envelope includes a folded rectangular filter panel with the nozzle member disposed at an outer edge thereof. In another embodiment, the nozzle member is located at a crease line formed in the filter panel. In yet another, a pair of filter panels are connected at their edges with the nozzle member located along a selected edge as desired. The filter leaf apparatus are installed onto the manifold along attachment axes extending through the housing opening.
Abstract:
A filter assembly comprises a filter (10) defining path for fluid passing to or from the filter (10). An adaptor (11) is connected to the filter (10) and provides a continuation of the path. The adaptor (11) is for mounting the filter (10) on a mounting plate (12) and carries one or more sealing rings (30, 37) that are engageable with the mounting plate (12). The adaptor (11) is made from a plastics material and one surface of the adaptor (11) is reinforced by contact with an annular reinforcing member (31) which may be of metal, particularly steel. This allows the flow path provided by the adaptor (11) to be maximized.
Abstract:
The aim of the invention is to provide filtering candles (1) comprising a sintered filtering tube (2) and a collar (3) which is connected thereto, and having an increased shelf life and improved resistance values. To this end, the collar (3) comprises an annular collar wall (4) which is oriented towards the filtering tube (2) from the neck. Said wall comprises at least one recess (8) which is arranged in a perpendicular manner and at an angle in relation to a plane which is perpendicular to the axis of the filtering tube.
Abstract:
A filter medium comprising a body of the filter medium having the space thereof partitioned three-dimensionally, irregularly and manifoldly by bent linear members having a strength sufficient to cause substantially no substantial deformation when the filter medium is actually used, and an effluent pipe connected to the body of the filter medium, said effluent pipe having an opening located in the interior of the body, from which a filtrate flows out, is disclosed. When at least one component is filtered or separated from a material to be treated by filtrate the dispersion medium as the filtrate is interposed between a filter cake and the surface portion of the body of the filter medium and the dispersion medium as the filtrate is allowed to pass very easily through the filter cake. Accordingly, clogging is not caused in the filter medium and the filtration can be performed at a substantially uniform flow rate throughout the operation. In addition, a process for the preparation of such filter medium and a filtering method and apparatus using such filter medium are provided. This filter medium can be effectively used in any field for separating components from dispersions, for example, separating oils from water.