VOLUMETRIC PUMP WITH BLEED MECHANISM
20170234307 · 2017-08-17
Assignee
Inventors
Cpc classification
F04B7/0061
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B7/0007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A pump having two pistons which are parallel and in opposition and are disposed in two, cylindrical, cavities in a pump body, including at least one inlet port and at least one outlet port connected to a rotational port-switching device which can move axially along its rotational axis and is held in abutment in the pump body by a restoring member, in the form of a spring.
Claims
1. A pump comprising at least one piston disposed in a pump body, forming at least one pumping chamber having at least one inlet port, at least one outlet port and an axially moving port switch.
2. The pump according to claim 1, in which the pump body comprises two opposed and parallel pumping chambers.
3. The pump according to claim 1, in which the port switch comprises a guide element.
4. The pump according to claim 1, in which the piston comprises a bracket with a V-shaped opening.
5. The pump according to claim 1, comprising a push-piece on its top portion.
6. The pump according to claim 5, comprising at least one reset element positioned between the push-piece and the pump body.
7. The pump according to claim 5, in which the push-piece is attached to the port switch.
8. The pump according to claim 1, in which the inlet and outlet ports are each in contact with a cavity located on the bottom side of the pump body.
9. The pump according to claim 7, in which the cavities are closed by flexible elements.
10. The pump according to claim 1, comprising a cover.
11. The pump according to claim 9, in which the cover is attached to the pump body.
12. The pump according to claim 9, in which the cover comprises at least one opening.
13. The pump according to claim 1, in which the sealing between the mobile portions is achieved with at least one elastomer.
14. The pump according to claim 1, in which the parts are plastic and disposable.
15. The pump according to claim 1, in which the parts are sterilized.
16. The pump according to claim 1, in which the drive comprises at least one pressure sensor.
Description
DESCRIPTION OF THE DRAWNINGS
[0013] The present invention will be more clearly understood by reading the description of examples, which are given purely for illustration and which are in no way limiting, and refer to the appended drawings, wherein:
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VARIATIONS
[0041] A control system for the pump, which is not illustrated, can be added in order to control the pump drive in either a programmable or manual manner. Position sensors may be added to the moving or fixed portions of the system in order to measure displacement, speed, pressure, flow rate, or the force exerted on one or more elements of the system, as well as to ensure proper functioning. Alerts may be transmitted via either wired or wireless connections to an external control system in accordance with the data measured by one of the sensors in order to shut down the system or to inform the operator regarding the usage parameters. The external control system can be adapted so as to control the closed-loop actuator in accordance with the parameters measured by the sensor(s) and an associated algorithm.
[0042] The pump, the drive, and the control system can be installed in a box, with a battery or rechargeable battery element optionally included, to form a compact, portable apparatus. One or more control elements such as a pushbutton, a switch, a voice control, gesture or face recognition can be added to the box.
[0043] The pump or the box can be adapted for receiving one or more fluid dispensing elements such as a tube, a nozzle, a needle, a mixer, a subcutaneous injection system, an aerosol dispenser, or any other dispensing element.
[0044] The pump or the box can be hooked up to a removable vessel containing the fluid to be dosed or to a circuit for continuously supplying optionally pressurized fluid.
[0045] The drive can be made in the form of a mechanical assembly capable of being actuated manually in order to obtain an optionally disposable, low-cost fluid propelling device, for example for the dosing of medication contained in an integrated vessel such as a pre-filled cartridge. The apparatus can be disposed of once the cartridge is empty.
[0046] The pump and the drive can be integrated in numerous variants of fixed or mobile apparatuses in different forms and employing one or more external elements such as a camera, a laser sight, an acoustic sensor, a gas sensor, a pressure sensor, a temperature sensor, a humidity sensor, a RFID tag, a barcode reader, a proximity sensor, or any other kind of indicator/sensor for targeting or determining a parameter linked to the pumping of fluid.
[0047] The system can be adapted so as to have several vessels or fluid supplies at the inlet for dosing different fluids or for rinsing the pump, for example.
[0048] The constituent elements of the pump are preferably plastic, metal, or ceramic; they can be obtained by machining, injection, or sintering processes, or any other industrial process.
[0049] The sealing elements are preferably thermoformed or overmolded elastomer elements. The gaskets can be O-rings or any other sealing element. The seal between the fixed and mobile portions can also be obtained by aligning or burnishing the parts.
[0050] The constituent elements of the pump are preferably plastic and disposable. The pump can be sterilized for dispensing food or medications, for example. However, the choice of materials is not limited to plastics.
[0051] The guide elements are preferably rollers or bearings. However, in certain cases they may be omitted or replaced with low friction coefficient and/or lubricated parts.
[0052] In another variant of the invention, it is possible to adapt the pump and the drive in such a way that elastic, preferably silicone tubes can be hooked up to the inlet and outlet ports for measuring the pressure at the inlet and outlet of the pump by means of a pressure sensor in contact with the elastic tubes.
[0053] In another variant of the invention, it is possible to adapt the pump and the drive so as to have only one piston and one pumping chamber.
[0054] In another variant, the pressure on the flexible elements or elastic tubes can be measured with strain gages in direct or indirect contact with the flexible elements or elastic tubes.
[0055] Although the invention is described according to several embodiments, there are other variants that are not presented here. The scope of the invention is therefore not limited to the embodiments described above.