DEVICE FOR COLLECTING PARTICLES OR MICROORGANISMS
20210239578 · 2021-08-05
Assignee
Inventors
Cpc classification
International classification
Abstract
A system for collecting particles having a suctioning device and a chamber for centrifugating and collecting particles. The centrifugation chamber having a guiding edge as well as an air inlet and an air outlet. The device having an assembly including an air suctioning conduit, a member including a guiding and receiving system, at least one guiding edge of the chamber, the member being mobile relative to the conduit between a first position, wherein the at least one guiding edge can be guided and received in the guiding and receiving system and a second position for collecting particles, where the air outlet of the chamber is applied on an end of the conduit.
Claims
1. A system for collecting particles and/or microorganisms suspended in a gaseous medium comprising a suctioning device and a chamber for centrifugating and collecting said particles and/or microorganisms: the centrifugation chamber comprising at least one guiding edge as well as an air inlet and an air outlet; the device comprising: an assembly including an air suctioning conduit, a member including a guiding and receiving system for guiding and receiving the at least one guiding edge of the centrifugation chamber, the member being mobile relative to the air suctioning conduit between a first position wherein the at least one guiding edge can be guided and received in the guiding and receiving system and a second position for collecting particles, wherein the air outlet of the centrifugation chamber is applied on an end of the air suctioning conduit.
2. The system according to claim 1, wherein the member comprises a tubular portion mounted sliding around the suctioning conduit and including the guiding and receiving system.
3. The system according to claim 2, wherein the guiding and receiving system comprises a housing for receiving the at least one guiding edge, this housing being delimited by an edge, sized to retain the at least one guiding edge by gravity along the axis of the tubular portion.
4. The system according to claim 3, wherein the edge is formed at one end of the tubular portion and comprises a passage opening of said at least one guiding edge of the centrifugation chamber.
5. The system according to claim 1, wherein the system further comprises a ring mounted around the air suctioning conduit and blocked in translation on the air suctioning conduit, the ring being coupled in rotation to the member such that a rotational movement of the ring induces a translation movement of the member between the first receiving position and the second collecting position.
6. The system according to claim 5, wherein said member comprises an outer thread engaging with a corresponding inner ring thread.
7. The system according to claim 4, wherein the system further comprises a ring mounted around the air suctioning conduit and blocked in translation on the air suctioning conduit, the ring being coupled in rotation to the member such that a rotational movement of the ring induces a translation movement of the member between the first receiving position and the second collecting position, the ring and the member are sized and positioned, one relative to the other such that when the member is in the first position thereof, the passage opening is accessible for an introduction and an exit of the at least one guiding edge of the centrifugation chamber and that when the member is in the second position thereof, the passage opening is blocked by the ring.
8. The system according to claim 1, wherein the system comprises a suctioning system carried by the assembly.
9. The system according to claim 1, wherein the centrifugation chamber comprises a first truncated portion removably connected to a second portion including the air inlet which is surrounded externally by a cylindrical skirt.
10. The system according to claim 9, wherein said first truncated portion is fixed by screwing on the second portion.
11. The system according to claim 9, wherein the second portion comprises the at least one guiding edge which surrounds the air outlet.
12. The system according to claim 1, wherein the at least one guiding edge comprises an annular collar.
Description
BRIEF DESCRIPTION OF THE FIGURES
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DETAILED DESCRIPTION
[0039] Now,
[0040] The device 12 comprises an assembly 16 including a support base 18 from which extend two arms 20 for connecting to an upper pad 22 carrying a cap 24 and supporting a suctioning wheel 26 connected upstream to a suctioning conduit 28 (
[0041] The suctioning device 12 further comprises a mobile member 31 mounted around the suctioning conduit 28. As can be seen in
[0042] According to the invention, the mobile member 31 comprises means for guiding and receiving a guiding edge of the chamber. Equally, the guiding and receiving means can be designated as a receiver configured so as to guide a guiding edge of the chamber. Before producing a detailed description of the centrifugation and collection chamber 14, it is all the same indicated that this comprises at least one guiding edge 38 as well as an air inlet 40 and an air outlet 42 (
[0043] In the embodiment represented in the figures, the mobile member 31 is formed by a tubular portion 46 carrying on the or the outer surface thereof, a thread 48 extending around the axis 50 of the tubular portion 46. The tubular portion 46 comprises an upper end and a lower end, the latter end comprising the guiding and receiving ends, which include a housing 52 for receiving the edge 38 or guiding collar of the chamber 14 (
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[0045]
[0046] It is therefore clear that the mobile member 31 allows the guiding and the receiving of an edge 38 of the chamber 14 in a first position for receiving said edge in the housing 52 of the member 31. The sliding movement of the member 31 is ensured by the ring 60 which allows to move the member 31 in the second position thereof, wherein the air outlet 42 of the centrifugation chamber 14 is applied on a lower end of the air suctioning conduit 28.
[0047] Also, as can be seen in
[0048] Now,
[0049] The second portion 14b comprises a first cylindrical portion 72 coaxial to an outer cylindrical skirt 74. The first cylindrical portion 72 comprises an inner thread or any other means allowing the removable securing to the first portion 14a of the chamber 14. The first cylindrical portion 72 is connected to a second cylindrical portion 76 of diameter less than the diameter of the first cylindrical portion 72 and is connected to the opposite of the first cylindrical portion 72 to a radial annular edge 78 with respect to the axis 80 of the chamber 14. An opening 40 is arranged through the second cylindrical portion 76 and of the radial annular edge 78 and forms the air inlet of the chamber 14. The outer cylindrical skirt 74 is connected to a radial annular wall 82 extending radially towards the inside and connected internally to an air outlet conduit 41 carrying at one end, the annular collar 38. The radial annular edge 78 is applied and fixed on the radial wall 82 such that the outlet conduit 41 is coaxial with the axis 80 of the chamber 14.
[0050] In operation, the air filled with particles of interest circulates through the air inlet 42 of the second portion 14b of the chamber 14, then is centrifugated in the first portion 14a and rises through the central portion of the cone to exit through the outlet conduit 41. It then flows in the suctioning conduit 28. After the collection operation has been carried out, the centrifugation and collection chamber 14 is removed from the suctioning device, then the first portion 14a of the chamber 14 is separated from the second portion 14b. The first portion 14a of the chamber 14 is then covered by a blocking cover being fixed using the thread of the cylindrical portion 70 thereof.