MLchartDataset catalogue

Patent · US11786867B2 · B2 · US

Connecting mechanism for a water purification cartridge

(11) Publication number
US11786867B2
(21) Application number
17/242,978
(22) Filing date
2021-04-28
(30) Priority date
2015-02-10
(43) Publication date
2023-10-17
(45) Date of grant
2023-10-17
(51) IPC
B01D 15/36; B01D 63/10; B01D 63/14; C02F 1/42; C02F 1/44; C02F 103/04; C02F 9/20; F16B 35/06
(52) CPC
  • B01D Separation: 63/10, 15/361, 2313/13, 2313/131, 2313/44, 2315/10, 63/14
  • C02F Treatment of water, waste water, sewage, or sludge: 1/42, 1/44, 2103/04, 2201/004, 2201/006, 9/20
  • F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 35/06
(73) Assignee
Merck Patent GmbH
(72) Inventors
Pascal Roitel; Germain Gaydier; Thierry Cassou; Christian Berducat
(54) Title
Connecting mechanism for a water purification cartridge
(57) Abstract

A connecting mechanism (1) for a cartridge-type replaceable module (2) that has at least one fluid port (2 a, 2 b) at each of opposite sides of the module (2) in a longitudinal direction of the module (2). The connecting mechanism (1) comprises two connector elements (3) spaced apart in the longitudinal direction of the module (2) and each provided with at least one fluid connector (3 b) configured to releasably inter-engage with a complementary fluid port (2 a, 2 b) of the module (2) at the respective side thereof, wherein at least one of the connector elements (3) is movable to perform a translational movement in the longitudinal direction of the module (2). The connecting mechanism (1) further comprises at least one driver element (4) arranged to engage with the module (2) and with the at least one movable connector element (3) such that a rotational or translational movement of the module (2) engaged with the driver element (4) causes the translational movement of the movable connector element (3) via the driver element (4) to establish/release the inter-engagement of the fluid connector(s) (3 b) of that connector element (3) with the associated fluid port(s) (2 a, 2 b) of the module (2).

Full text
View on Google Patents

Claims (11)

  1. A water purification system comprising: a replaceable module; an inlet for water to be purified and an outlet for purified water; a frame supporting at least one connecting mechanism for said replaceable module, the at least one connecting mechanism having at least one fluid port at each of opposite sides of the module in a longitudinal direction of the module, the at least one connecting mechanism comprising: two connector elements that when attached to the module in operation, are spaced apart in the longitudinal direction of the module, each provided with at least one fluid connector configured to releasably inter-engage with a complementary fluid port of the module at the respective side thereof, wherein at least one of the connector elements is movable to perform a translational movement in the longitudinal direction of the module; at least one driver element provided with a receptacle formed to releasably engage with a portion of the module in a form-locking manner and with the at least one movable connector element such that a rotational movement of the module, when engaged with the at least one driver element in operation, about an axis of the module in the longitudinal direction thereof causes the translational movement of the at least one movable connector element via the at least one driver element to establish/release inter-engagement of the at least one fluid connector(s) of said at least one moveable connector element with an associated one of the at least one fluid port(s) of the module, the module comprising: a columnar container; at least one fluid port at each of opposite sides of the module in a longitudinal direction of the module; at least a purification medium and/or a membrane received in the container; and a portion formed on at least one of the opposite sides of the module for a releasable form-locking engagement with a part of a connecting mechanism to transmit a rotational movement of the module about an axis in the longitudinal direction to the connecting mechanism, wherein the connecting mechanism is adapted to engage with the module and connect to the fluid ports of the module upon a rotational movement of the module to establish a fluid communication from the inlet through the module to the outlet; wherein the at least one driver element and the at least one movable connector element each have a plurality of threads, and wherein the engagement between the at least one driver element and the at least one movable connector element is a threaded engagement adapted to transmit the rotational movement of the at least one driver element to the translational movement of the at least one moveable connector element, and wherein each degree of rotation of said at least one driver element results in axial translation of said at least one movable connector element.
  2. The water purification system according to claim 1, wherein the frame supports at least two connecting mechanisms, each adapted to engage with one said module to connect to the fluid ports of the modules, and wherein the connector elements of the at least two connecting mechanisms are arranged to communicate with each other and with the inlet and outlet and with the fluid ports of the modules such that a serial flow of the fluid through the modules can be created in operation between the inlet and the outlet when the modules are connected in the at least two connecting mechanisms.
  3. The water purification system according to claim 1, wherein both connector elements are movable to perform the translational movement in the longitudinal direction of the module, and wherein said at least one driver element comprises a first driver element arranged to engage with the module and with a respective associated first moveable connector element of said at least one movable connector elements, and a second driver element arranged to engage with the module and with a respective associated second moveable connector element of said at least one moveable connector elements, such that the rotational movement of the module, when engaged with the driver element in operation, causes, via the engagement with the respective driver element, the translational movement of said first and second movable connector elements in opposite directions to establish/release the inter-engagement of respective fluid connectors of said at least one fluid connector of said first and second connector elements with respective fluid ports of said at least one fluid port at the opposite sides of the module.
  4. The water purification system according to claim 3, wherein a threaded engagement between the first driver element and the associated first movable connector element and between the second driver element and the associated second movable connector element at the respective sides of the module is present and is in opposite directions such that the rotation of the module engaged with the first and second driver elements in one rotational direction causes the translational movement of the first and second connector elements in opposite axial directions of the module.
  5. The water purification system according to claim 1, wherein the at least one connector element is arranged to be movable in an axial direction and to be prevented from rotating.
  6. The water purification system according to claim 1, wherein a releasable engagement of the receptacle of the at least one driver element with the portion of the module in the form-locking manner includes means for transmitting an axial force resulting from a fluid back pressure from the at least one moveable connector element to the module.
  7. The water purification system according to claim 1, wherein the connecting mechanism comprises an indexer marking a defined rotational position of the at least one driver element corresponding to a position where the at least one movable connector element has established and/or released the inter-engagement of the at least one fluid connector(s) with the at least one fluid port(s) of the module.
  8. The water purification system according to claim 7, wherein the indexer is adapted to releasably block the rotational movement of the at least one driver element at a defined rotational position.
  9. The water purification system according to claim 1, wherein the at least one fluid connector of the at least one moveable connector element is arranged to communicate with an associated external port provided on the at least one moveable connector element and is movable therewith, or communicates with an external port provided on a support element that is fixed relative to the at least one moveable connector element during movement thereof.
  10. The water purification system according to claim 1, wherein said portion of said module for the releasable form-locking engagement with the receptacle of the driver element of the at least one connecting mechanism includes radial protrusions for transmitting an axial force resulting from a fluid back pressure at the fluid port(s) to the module.
  11. The water purification system of claim 1, wherein the module has the fluid port at one side serving as inlet and two fluid ports at the opposite side serving as outlets, and a membrane arranged in the container to allow tangential filtration of a feed stream introduced to the inlet and extraction of permeate and retentate from the outlets.

Description

This application is a divisional of U.S. patent application Ser. No. 15/548,423 filed on Aug. 3, 2017 (the disclosure of which is hereby incorporated by reference), which is a 371 of PCT International Application No. PCT/EP2016/000102 filed Jan. 21, 2016, which claims priority of European Patent Application No. 15290028.8 filed Feb. 10, 2015.

The present invention concerns a connecting mechanism for a cartridge-type replaceable module and a cartridge-type replaceable module, preferably for use in a water purification system, and to a water purification system using the connecting mechanism and adapted to be used with the cartridge-type replaceable module.

Water purification systems for producing ultrapure water are known and are normally made up of peripheral components like a supporting frame, water quality monitoring resources, pump, solenoid valves and conductivity cells and a connecting mechanism for releasably mounting one or two purification cartridges by inter-engaging complementary connectors. Ultrapure water is characterised by a resistivity of greater than 18 MΩ×cm and a total organic compound (TOC) of less than 20 parts per billion. The use of ultrapure water has increased in research and industry. Typical uses are in laboratory environments where the daily use volumes vary from a couple of litres up to 1500 litres. The water purification process consist of several filtration steps where the water is put in contact with purification media or is pushed through different types of membranes.

Citations (21)

  • US3685659A
  • US3746171A
  • US4806240A
  • US4944875A
  • US4904282A
  • EP0502262A1
  • US20010045386A1
  • CN1419467A
  • EP1576997A1
  • US6383382B1
  • CN1646202A
  • US20030217958A1
  • EP1405828A1
  • WO2005042415A1
  • CN1950137A
  • US20080164220A1
  • WO2010019526A1
  • US20100044309A1
  • CN102123778A
  • US20180021730A1
  • US11020708B2
Record as JSON
{
  "publication_number": "US11786867B2",
  "country": "US",
  "kind": "B2",
  "title": "Connecting mechanism for a water purification cartridge",
  "abstract": "A connecting mechanism (1) for a cartridge-type replaceable module (2) that has at least one fluid port (2 a, 2 b) at each of opposite sides of the module (2) in a longitudinal direction of the module (2). The connecting mechanism (1) comprises two connector elements (3) spaced apart in the longitudinal direction of the module (2) and each provided with at least one fluid connector (3 b) configured to releasably inter-engage with a complementary fluid port (2 a, 2 b) of the module (2) at the respective side thereof, wherein at least one of the connector elements (3) is movable to perform a translational movement in the longitudinal direction of the module (2). The connecting mechanism (1) further comprises at least one driver element (4) arranged to engage with the module (2) and with the at least one movable connector element (3) such that a rotational or translational movement of the module (2) engaged with the driver element (4) causes the translational movement of the movable connector element (3) via the driver element (4) to establish/release the inter-engagement of the fluid connector(s) (3 b) of that connector element (3) with the associated fluid port(s) (2 a, 2 b) of the module (2).",
  "claims": [
    "1. A water purification system comprising: a replaceable module; an inlet for water to be purified and an outlet for purified water; a frame supporting at least one connecting mechanism for said replaceable module, the at least one connecting mechanism having at least one fluid port at each of opposite sides of the module in a longitudinal direction of the module, the at least one connecting mechanism comprising: two connector elements that when attached to the module in operation, are spaced apart in the longitudinal direction of the module, each provided with at least one fluid connector configured to releasably inter-engage with a complementary fluid port of the module at the respective side thereof, wherein at least one of the connector elements is movable to perform a translational movement in the longitudinal direction of the module; at least one driver element provided with a receptacle formed to releasably engage with a portion of the module in a form-locking manner and with the at least one movable connector element such that a rotational movement of the module, when engaged with the at least one driver element in operation, about an axis of the module in the longitudinal direction thereof causes the translational movement of the at least one movable connector element via the at least one driver element to establish/release inter-engagement of the at least one fluid connector(s) of said at least one moveable connector element with an associated one of the at least one fluid port(s) of the module, the module comprising: a columnar container; at least one fluid port at each of opposite sides of the module in a longitudinal direction of the module; at least a purification medium and/or a membrane received in the container; and a portion formed on at least one of the opposite sides of the module for a releasable form-locking engagement with a part of a connecting mechanism to transmit a rotational movement of the module about an axis in the longitudinal direction to the connecting mechanism, wherein the connecting mechanism is adapted to engage with the module and connect to the fluid ports of the module upon a rotational movement of the module to establish a fluid communication from the inlet through the module to the outlet; wherein the at least one driver element and the at least one movable connector element each have a plurality of threads, and wherein the engagement between the at least one driver element and the at least one movable connector element is a threaded engagement adapted to transmit the rotational movement of the at least one driver element to the translational movement of the at least one moveable connector element, and wherein each degree of rotation of said at least one driver element results in axial translation of said at least one movable connector element.",
    "2. The water purification system according to claim 1, wherein the frame supports at least two connecting mechanisms, each adapted to engage with one said module to connect to the fluid ports of the modules, and wherein the connector elements of the at least two connecting mechanisms are arranged to communicate with each other and with the inlet and outlet and with the fluid ports of the modules such that a serial flow of the fluid through the modules can be created in operation between the inlet and the outlet when the modules are connected in the at least two connecting mechanisms.",
    "3. The water purification system according to claim 1, wherein both connector elements are movable to perform the translational movement in the longitudinal direction of the module, and wherein said at least one driver element comprises a first driver element arranged to engage with the module and with a respective associated first moveable connector element of said at least one movable connector elements, and a second driver element arranged to engage with the module and with a respective associated second moveable connector element of said at least one moveable connector elements, such that the rotational movement of the module, when engaged with the driver element in operation, causes, via the engagement with the respective driver element, the translational movement of said first and second movable connector elements in opposite directions to establish/release the inter-engagement of respective fluid connectors of said at least one fluid connector of said first and second connector elements with respective fluid ports of said at least one fluid port at the opposite sides of the module.",
    "4. The water purification system according to claim 3, wherein a threaded engagement between the first driver element and the associated first movable connector element and between the second driver element and the associated second movable connector element at the respective sides of the module is present and is in opposite directions such that the rotation of the module engaged with the first and second driver elements in one rotational direction causes the translational movement of the first and second connector elements in opposite axial directions of the module.",
    "5. The water purification system according to claim 1, wherein the at least one connector element is arranged to be movable in an axial direction and to be prevented from rotating.",
    "6. The water purification system according to claim 1, wherein a releasable engagement of the receptacle of the at least one driver element with the portion of the module in the form-locking manner includes means for transmitting an axial force resulting from a fluid back pressure from the at least one moveable connector element to the module.",
    "7. The water purification system according to claim 1, wherein the connecting mechanism comprises an indexer marking a defined rotational position of the at least one driver element corresponding to a position where the at least one movable connector element has established and/or released the inter-engagement of the at least one fluid connector(s) with the at least one fluid port(s) of the module.",
    "8. The water purification system according to claim 7, wherein the indexer is adapted to releasably block the rotational movement of the at least one driver element at a defined rotational position.",
    "9. The water purification system according to claim 1, wherein the at least one fluid connector of the at least one moveable connector element is arranged to communicate with an associated external port provided on the at least one moveable connector element and is movable therewith, or communicates with an external port provided on a support element that is fixed relative to the at least one moveable connector element during movement thereof.",
    "10. The water purification system according to claim 1, wherein said portion of said module for the releasable form-locking engagement with the receptacle of the driver element of the at least one connecting mechanism includes radial protrusions for transmitting an axial force resulting from a fluid back pressure at the fluid port(s) to the module.",
    "11. The water purification system of claim 1, wherein the module has the fluid port at one side serving as inlet and two fluid ports at the opposite side serving as outlets, and a membrane arranged in the container to allow tangential filtration of a feed stream introduced to the inlet and extraction of permeate and retentate from the outlets."
  ],
  "description_excerpt": "This application is a divisional of U.S. patent application Ser. No. 15/548,423 filed on Aug. 3, 2017 (the disclosure of which is hereby incorporated by reference), which is a 371 of PCT International Application No. PCT/EP2016/000102 filed Jan. 21, 2016, which claims priority of European Patent Application No. 15290028.8 filed Feb. 10, 2015.\n\nThe present invention concerns a connecting mechanism for a cartridge-type replaceable module and a cartridge-type replaceable module, preferably for use in a water purification system, and to a water purification system using the connecting mechanism and adapted to be used with the cartridge-type replaceable module.\n\nWater purification systems for producing ultrapure water are known and are normally made up of peripheral components like a supporting frame, water quality monitoring resources, pump, solenoid valves and conductivity cells and a connecting mechanism for releasably mounting one or two purification cartridges by inter-engaging complementary connectors. Ultrapure water is characterised by a resistivity of greater than 18 MΩ×cm and a total organic compound (TOC) of less than 20 parts per billion. The use of ultrapure water has increased in research and industry. Typical uses are in laboratory environments where the daily use volumes vary from a couple of litres up to 1500 litres. The water purification process consist of several filtration steps where the water is put in contact with purification media or is pushed through different types of membranes.",
  "cpc": [
    "B01D 63/10",
    "B01D 15/361",
    "B01D 2313/13",
    "B01D 2313/131",
    "B01D 2313/44",
    "B01D 2315/10",
    "B01D 63/14",
    "C02F 1/42",
    "C02F 1/44",
    "C02F 2103/04",
    "C02F 2201/004",
    "C02F 2201/006",
    "C02F 9/20",
    "F16B 35/06"
  ],
  "ipc": [
    "B01D 15/36",
    "B01D 63/10",
    "B01D 63/14",
    "C02F 1/42",
    "C02F 1/44",
    "C02F 103/04",
    "C02F 9/20",
    "F16B 35/06"
  ],
  "assignees": [
    "Merck Patent GmbH"
  ],
  "inventors": [
    "Pascal Roitel",
    "Germain Gaydier",
    "Thierry Cassou",
    "Christian Berducat"
  ],
  "filing_date": "2021-04-28",
  "publication_date": "2023-10-17",
  "grant_date": "2023-10-17",
  "priority_date": "2015-02-10",
  "application_number": "US-202117242978-A",
  "family_id": "52686295",
  "cited_by_count": 0,
  "citations": [
    "US3685659A",
    "US3746171A",
    "US4806240A",
    "US4944875A",
    "US4904282A",
    "EP0502262A1",
    "US20010045386A1",
    "CN1419467A",
    "EP1576997A1",
    "US6383382B1",
    "CN1646202A",
    "US20030217958A1",
    "EP1405828A1",
    "WO2005042415A1",
    "CN1950137A",
    "US20080164220A1",
    "WO2010019526A1",
    "US20100044309A1",
    "CN102123778A",
    "US20180021730A1",
    "US11020708B2"
  ]
}

Record 644 of 8,000 in Patents full text (MLC-0201). Request the full dataset.