(19)
(11)EP 3 494 340 B1

(12)EUROPEAN PATENT SPECIFICATION

(45)Mention of the grant of the patent:
07.09.2022 Bulletin 2022/36

(21)Application number: 17837348.6

(22)Date of filing:  23.05.2017
(51)International Patent Classification (IPC): 
F16L 33/22(2006.01)
(52)Cooperative Patent Classification (CPC):
F16L 33/225; F16L 33/224; F16L 33/223
(86)International application number:
PCT/US2017/033907
(87)International publication number:
WO 2018/026418 (08.02.2018 Gazette  2018/06)

(54)

HOSE CLAMP

SCHLAUCHKLEMME

COLLIER DE SERRAGE POUR TUYAU SOUPLE


(84)Designated Contracting States:
AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR

(30)Priority: 04.08.2016 US 201662370780 P

(43)Date of publication of application:
12.06.2019 Bulletin 2019/24

(73)Proprietor: EMD Millipore Corporation
Burlington, MA 01803 (US)

(72)Inventor:
  • MORRISSEY, Martin
    Burlington, MA 01803 (US)

(74)Representative: Graham Watt & Co LLP 
St. Botolph's House 7-9 St. Botolph's Road
Sevenoaks TN13 3AJ
Sevenoaks TN13 3AJ (GB)


(56)References cited: : 
EP-A1- 2 314 904
JP-A- 2002 054 785
US-A1- 2003 006 610
WO-A1-2009/155853
US-A- 2 248 969
US-A1- 2012 299 296
  
      
    Note: Within nine months from the publication of the mention of the grant of the European patent, any person may give notice to the European Patent Office of opposition to the European patent granted. Notice of opposition shall be filed in a written reasoned statement. It shall not be deemed to have been filed until the opposition fee has been paid. (Art. 99(1) European Patent Convention).


    Description

    FIELD



    [0001] The embodiments disclosed herein generally relate to devices that secure tubing in a leak-free manner. More specifically, embodiments disclosed herein relate to clamps and barb members, more particularly, clamps for connecting flexible tubing through which fluid flows, such as in high pressure applications. Having leak-free and reliable connections between hose barbs or the like and flexible tubes defining a fluid path such as for fluid transfer is essential when using flexible assemblies, such as in the bioprocess industry.

    BACKGROUND



    [0002] Conventional hose clamps have a series of flexible fingers, which are inserted into a barb/tube assembly, and then pushed into a constraining collar. The collar causes the flexible fingers to compress around the tube, pushing firmly onto the outside diameter of the hose barb. However, in view of the compressive forces involved, the force required to assemble the components is significant, requiring either a manually operated hand tool or a pneumatic device. Once assembled, disassembly is impossible without destruction of the components. This may result in waste and downtime, particularly if the wrong tubes were assembled together and must be undone and reassembled or discarded.

    [0003] US 2 248 969 relates to a hose clamp for securing flexible hose to metal pipes and nipples.

    [0004] WO 2009/155853 relates to a hose clamping device which can be used with a barb member having a barbed region.

    [0005] JP 2002/54785 relates to a connecting structure which can be used with a barb member having a barbed region.

    [0006] It therefore would be desirable to provide a device that eliminates the drawbacks of the prior art.

    SUMMARY



    [0007] The invention is defined by the appended claims.

    [0008] Problems of the prior art have been addressed by embodiments disclosed herein. In the present invention, a clamping device is provided for coupling a barb fitting and a flexible tube, and includes a flexible member having flexible fingers, and a compression member that acts as a compression nut and is removably fastened over the flexible member by threading the compression member onto (and off of) the flexible member. The device effectively clamps a barb fitting to a tube in a manner in which the device can be removed and re-used. The barb member, flexible member and compression member are generally tubular in configuration, each having fluid flow passageways.

    [0009] In the present invention, the clamp device is for clamping a barb fitting having a barbed region for disposing within an end of a flexible tube having an internal passageway and an outer surface, and comprises a flexible member comprising a body having a plurality of finger members compressible between a first resting position and a second clamping position, at least one of the flexible finger members having a radially inwardly extending tooth, the body having a through bore and an outer surface comprising threads, the flexible member being slidable over the barbed region of the barb fitting and over the outer surface of the flexible tube; and a compression member having a body having a through bore and an inner surface comprising threads, the compression member being slidable over the outer surface of the flexible tube and being receivable by the flexible member. Upon threadingly engaging the compression member with the flexible member, the compression member compresses the finger member against the barb member and creates a reliable and secure connection, allowing the leak-free flow of fluid through the tube.

    [0010] In its method aspects, embodiments include securing a barb member having a barbed region within a tube including attaching the barb member to the tube such that the barbed region of the barb member is disposed inside the tube; providing a flexible member comprising a body having a plurality of finger members compressible between a first resting position and a second clamping position, at least one of the flexible finger members having a radially inwardly extending tooth, the body having a through bore and an outer surface comprising threads, providing a compression member having a body having a through bore and an inner surface comprising threads; sliding the flexible member over the outer surface of the flexible tube and over the barbed region of the barb fitting; sliding the compression member over the outer surface of the flexible tube towards the flexible member; and threadingly engaging the compression member and the flexible member to compresses the finger member against the barb member. The barb member can be unsecured from the tube in a non-destructive manner by threadingly disengaging the compression member from the flexible member. The flexible member and compression member then can be reused.

    BRIEF DESCRIPTION OF THE DRAWINGS



    [0011] 

    FIG. 1 is an exploded view, in cross-section, of a clamp device in accordance with the invention;

    FIG. 2 is a cross-sectional view of a clamp device in accordance with the invention, shown partially assembled with a tube;

    FIG. 3 is a top view of a flexible member in accordance with the invention; and

    FIG. 4 is a cross-sectional view of a clamp device in accordance with the invention, shown in an assembled condition with a tube.


    DETAILED DESCRIPTION



    [0012] A more complete understanding of the components, processes and apparatuses disclosed herein can be obtained by reference to the accompanying drawings. The figures are merely schematic representations based on convenience and the ease of demonstrating the present disclosure, and is, therefore, not intended to indicate relative size and dimensions of the devices or components thereof and/or to define or limit the scope of the exemplary embodiments.

    [0013] Turning now to FIG. 1, a barb fitting 10 is shown. The configuration of the barb fitting 10 is not particularly limited; it generally includes a first end 5 that is "barbed" or expanded and configured to be inserted into a tube 20, and a second end 6 spaced from the first end 5 that includes an annular flange 8 that provides a stop against further penetration of the barb fitting 10 into the tube 20. The barbed end 5 has a truncated conical shape with a barb region 16 having an outer diameter larger than the internal diameter of a flexible tube 20, so that when the barb fitting 10 is inserted into the flexible tube 20, it causes the wall of the tube to flex or distort outwardly in a similar shape, as seen at 21 in FIG. 1. This serves to help secure and position the barb fitting 10 in the tube 20. The barb fitting 10 has an internal through bore 12 that defines a fluid passageway for fluid flow. The internal through bore 12 may be of constant inner diameter. The barb fitting 10 can be made of stainless steel, but is preferably made of a non-metal material such as plastic, e.g., polypropylene, or silicone. For medical applications, it may be made of an FDA compliant material.

    [0014] In certain embodiments, the clamp device may be made of a gamma-stable, injection molded thermoplastic, such as Nylon (Polyamide), a high density polyethylene (HDPE), or a gamma-stabilized polypropylene co-polymer. In certain embodiments, the clamp device 25 includes a flexible member 30, and a compression member 40 (FIG. 2). In certain embodiments, the flexible member 30 has a body 34 and an internal generally cylindrical bore 35 extending through the body 34. In certain embodiments, the body 34 is shaped as a truncated cone, having a first end 31 and a spaced second end 32, the second end 32 having an internal diameter larger than the internal diameter of the first end 31. In certain embodiments, the body 34 includes a region 36 extending from the first end 31 that has a constant inner diameter equal to the inner diameter at the first end 31. The remainder of the body 34 of flexible member 30 then tapers outwardly until it reaches it maximum inner diameter just short of the second end 32. In certain embodiments, at least a portion of the outer wall of the flexible member 30 is threaded with threads 33.

    [0015] In certain embodiments there are a plurality of spaced slits 37 through the wall of the body 34 extending from the internal bore radially outwardly, and extending from the second end 32 axially until region 36. Preferably the slits 37 are equally spaced. In the embodiment shown, there are six spaced slits 37, although those skilled in the art will appreciate that fewer or more slits could be present. The slits 37 define between them resilient flexible finger members 36a-36f (FIG. 3) that are capable of being compressed from their normal or resting position where their ends may be slightly flared radially outwardly, to a compressed position where the ends of the finger members 36a-36f are no longer radially flared, or are radially flared to a lesser extent than when in their normal or resting position. Accordingly, in the compressed position, the diameter of the internal bore 39 in the region defined between the finger members 36a-36f is smaller than when in the resting or normal position. Upon release of the compressive force, the fingers return to their normal or resting position. Due to the slits 37, the second end 32 forms a discontinuous annular ring.

    [0016] In some embodiments, at least one of the finger members 36a-36f terminates in a radially inwardly projecting tooth 37a-37f. The radially inwardly projecting tooth 37a-37f is configured and positioned such that when the clamp device 25 is in the assembled state with a tube 20 such as is shown in FIG. 4, the one or more teeth 37a-37f sit behind and compress the flexed or distorted region 21 and provide an axial stop against the underside of the barb, preventing the barb from being removed from the tube 20. In certain embodiments, each of the flexible finger members 36a-36f includes a respective radially inwardly projecting tooth 37a-37f. In some embodiments, the radially inwardly projecting tooth 37a-37f is normal to the longitudinal axis x-x of the flexible member 30.

    [0017] Due to the truncated conical shape of the flexible member 30, and the presence of the slits 37 in the flexible member 30, the flexible member 30 is capable of sliding over the region of the outer surface of tube 20 that expands in outer diameter as a result of the presence of the barb fitting 10. When the flexible member 30 is so positioned, this causes the flexible finger members 36a-36f to flare radially outwardly.

    [0018] In certain embodiments, compression member 40 is a resilient member having a body 44 and an internal cylindrical through bore 41 extending through the body 44. The through bore 41 is of sufficient diameter to allow the compression member 40 to slide over the outer surface of the tube 20, and to slide towards the flexible member 30. At least a portion of the inner wall 42' of the compression member 40 may include threads 43 that are configured to interact with threads 33 of the flexible member 30. In some embodiments the portion of the inner wall 42' that is not threaded is smooth and includes no ramps, ledges, slots, grooves or projections. In certain embodiments, the outer wall 42 of the compression member may be faceted, and is square or hexagonally shaped. Alternatively, the compression member 40 can be generally cylindrical in shape, and may have a knurled outer surface. The knurled or faceted surface facilitates grasping of the compression member by hand or with a suitable tool such as a wrench. Other outer configurations may be suitable and are within the scope of the embodiments disclosed herein.

    [0019] In some embodiments, the clamp device for clamping a barb member having a barbed region for disposing within an end of a tube having an outer surface, consists essentially of a flexible member comprising a body having a plurality of finger members compressible between a first resting position and a second clamping position, at least one of said flexible finger members having a radially inwardly extending tooth, said body having a through bore and an outer surface comprising threads, said flexible member being slidable over said barbed region of said barb fitting and over said outer surface of said tube; a compression member having a body, said body having a through bore and an inner surface comprising threads, said compression member being slidable over said outer surface of said tube and towards said flexible member; wherein upon threadingly engaging said compression member with said flexible member, the compression member compresses the finger member against the barb member. Such a clamp device does not have features other than the threads to secure or lock the compression member on the flexible member.

    [0020] In operation, the barb fitting 10 may be inserted into the bore of a flexible tube 20, leading with the barbed end 5, until the flange portion 8 abuts against the end of the tube 20 as shown in FIG. 1. The end of the barb fitting 10 having flange 8 may be attached to a device. The flexible member 30 is slid onto the outer surface of tube 20 axially, second end 32 first, so that the expanded finger members 36a-36f slide up and over the region 21 of the tube 20 that is expanded by the barb. The compression member 40 is then slid onto the outer surface of tube 20 axially towards the first end 31 of the flexible member 30. Relative rotation between the flexible member 30 and the compression member 40 causes the compression members 40 to become threadingly engaged with the flexible member 30, as shown in FIG. 2. If desired, the flexible member 30 and/or the compression member 40 can be placed onto the tube 20 prior to inserting the barb fitting 10. As the compression member 40 is threaded further onto the flexible member 30, it causes the finger members 36a-36f to compress radially inwardly against the tube 20, thereby compressing the tube 20 into intimate contact with the barb fitting 10, creating a clamping force between the barb fitting 10 and the flexible member 30 (FIG. 4). The clamping force creates a 360° seal around the barb fitting 10. The seal is liquid-tight. In one embodiment, the seal is an aseptic seal or a sterile seal. The one or more teeth 37a-37f at the terminal ends of the finger members 36a-36f seat behind the barb as seen in FIG. 4. This creates additional clamping force on the tube 20, as well as produces an axial stop against the underside of the barb, preventing the barb from being pulled out of the tube 20 and thereby creating a reliable and secure connection. Actuation of the compression member 40 does not require significant force due to the mechanical advantage of the screw, and can be carried out manually. The device can be easily disassembled by unscrewing the compression member 40 from the flexible member 30, and may be optionally re-used. As a result, the components need not be destroyed to disassemble the device, and no mechanical locking of the compression member 40 to the flexible member 30 is necessary; the compression member 40 remains engaged with the flexible member 30 by friction. No special tools are necessary to assemble or disassemble the device.

    [0021] While various aspects and embodiments have been disclosed herein, other aspects, embodiments, modifications and alterations will be apparent to those skilled in the art upon reading and understanding the preceding detailed description. The various aspects and embodiments disclosed herein are for purposes of illustration and are not intended to be limiting. It is intended that the present disclosure be construed as including all such aspects, embodiments, modifications and alterations insofar as they come within the scope of the appended claims.


    Claims

    1. A clamp device and a barb member having a barbed region for disposing within an end of a tube having an outer surface so as to form a distorted region in said outer surface of said tube, said device comprising:

    a flexible member (30) comprising a body (34) having a plurality of finger members (36a-36f) compressible between a first resting position and a second clamping position, said body having a through bore (35) and an outer surface comprising threads (33),

    a compression member (40) having a body (44), said body having a through bore (41) and an inner surface comprising threads (43), said compression member being slidable over said outer surface of said tube and towards said flexible member;

    wherein the threads on the body of said flexible member extend onto said finger members and said flexible member is slidable over said barbed region (16) of said barb fitting (10) and over said distorted region in said outer surface of said tube (20), wherein, upon threadingly engaging said compression member with said flexible member, the compression member compresses the finger member against the barb member and at least one of said flexible finger members has a tooth (37a-37f), which projects radially inwardly from the surface of said through bore, such that, when said compression member is threadingly engaged with said flexible member, said one or more teeth sit behind and compress said distorted region in said outer surface of said tube and provide an axial stop against the underside of the barbed region of said barb fitting.


     
    2. The clamp device and barb member of claim 1, wherein each of said plurality of finger members has a radially inwardly extending tooth.
     
    3. The clamp device and barb member of claim 1, wherein after said compression member is threadingly engaged with said flexible member, it remains detachable from said flexible member in a non-destructive manner by threadingly disengaging it from said flexible member.
     
    4. A method using the clamp device and barb member according to any of claims 1 to 3 to secure a barb member having a barbed region within a tube, said method comprising:

    attaching said barb member (10) to said tube (20) such that said barbed region (16) is inside said tube and forms a distorted region in said outer surface of said tube;

    providing a flexible member (30) comprising a body (34) having a plurality of finger members (36a-36f) compressible between a first resting position and a second clamping position, said body having a through bore (35) and an outer surface comprising threads (33),

    providing a compression member (40) having a body (44), said body having a through bore (41) and an inner surface comprising threads (43;

    sliding said flexible member over said outer surface of said flexible tube and over said barbed region of said barb fitting;

    sliding said compression member over said outer surface of said flexible tube towards said flexible member;

    characterised in that said flexible member is slid over said barbed region (16) of said barb fitting (10) and over said distorted region in said outer surface of said tube (20), and said compression member is threadingly engaged with said flexible member to compresses said finger members against said barb member, and at least one of said flexible finger members has a tooth (37a-37f), which projects radially inwardly from the surface of said through bore, such that, when said compression member is threadingly engaged with said flexible member, said one or more teeth sit behind and compress said distorted region in said outer surface of said tube and provide an axial stop against the underside of the barbed region of said barb fitting.


     
    5. The method of claim 4, further comprising unsecuring said barb member from said tube in a non-destructive manner by threadingly disengaging said compression member from said flexible member.
     


    Ansprüche

    1. Klemmvorrichtung und ein Widerhakenelement, das einen Widerhakenbereich zum Anordnen innerhalb eines Endes eines Rohrs aufweist, das eine Außenoberfläche aufweist, um einen verformten Bereich in der Außenoberfläche des Rohrs auszubilden, die Vorrichtung umfassend:

    ein flexibles Element (30), umfassend einen Körper (34), der eine Vielzahl von Fingerelementen (36a-36f) aufweist, die zwischen einer ersten Ruheposition und einer zweiten Klemmposition zusammendrückbar sind, wobei der Körper eine Durchgangsbohrung (35) und eine Außenoberfläche, umfassend Gewinde (33), aufweist,

    ein Kompressionselement (40), das einen Körper (44) aufweist, wobei der Körper eine Durchgangsbohrung (41) und eine Innenoberfläche, umfassend Gewinde (43), aufweist, wobei das Kompressionselement über die Außenoberfläche des Rohrs und in Richtung des flexiblen Elements geschoben werden kann;

    wobei sich die Gewinde auf dem Körper des flexiblen Elements auf die Fingerelemente erstrecken und das flexible Element über den Widerhakenbereich (16) des Widerhakenanschlussstücks (10) und über den verformten Bereich in der Außenoberfläche des Rohrs (20) geschoben werden kann, wobei, bei einem Gewindeeingriff des Kompressionselements mit dem flexiblen Element, das Kompressionselement das Fingerelement gegen das Widerhakenelement drückt und mindestens eines der flexiblen Fingerelemente einen Zahn (37a-37f) aufweist, der von der Oberfläche der Durchgangsbohrung derart radial nach innen vorsteht, dass, wenn das Kompressionselement in Gewindeeingriff mit dem flexiblen Element steht, der eine oder die mehreren Zähne hinter dem verformten Bereich in der Außenoberfläche des Rohrs sitzen und diesen zusammendrücken und einen axialen Anschlag gegen die Unterseite des Widerhakenbereichs des Widerhakenanschlussstücks bereitstellen.


     
    2. Klemmvorrichtung und Widerhakenelement nach Anspruch 1, wobei jedes der Vielzahl von Fingerelementen einen sich radial nach innen erstreckenden Zahn aufweist.
     
    3. Klemmvorrichtung und Widerhakenelement nach Anspruch 1, wobei das Kompressionselement, nachdem es in Gewindeeingriff mit dem flexiblen Element gebracht wurde, auf zerstörungsfreie Weise von dem flexiblen Element durch schraubendes Lösen davon von dem flexiblen Element trennbar bleibt.
     
    4. Verfahren, das die Klemmvorrichtung und das Widerhakenelement nach einem der Ansprüche 1 bis 3 verwendet, um ein Widerhakenelement, das einen Widerhakenbereich aufweist, innerhalb eines Rohrs zu befestigen, das Verfahren umfassend:

    derartiges Anbringen des Widerhakenelements (10) an dem Rohr (20), dass sich der Widerhakenbereich (16) innerhalb des Rohrs befindet und einen verformten Bereich in der Außenoberfläche des Rohrs ausbildet;

    Bereitstellen eines flexiblen Elements (30), umfassend einen Körper (34), der eine Vielzahl von Fingerelementen (36a-36f) aufweist, die zwischen einer ersten Ruheposition und einer zweiten Klemmposition zusammendrückbar sind, wobei der Körper eine Durchgangsbohrung (35) und eine Außenoberfläche, umfassend Gewinde (33), aufweist,

    Bereitstellen eines Kompressionselements (40), das einen Körper (44) aufweist, wobei der Körper eine Durchgangsbohrung (41) und eine Innenoberfläche, umfassend Gewinde (43), aufweist;

    Schieben des flexiblen Elements über die Außenoberfläche des flexiblen Rohrs und über den Widerhakenbereich des Widerhakenanschlussstücks;

    Schieben des Kompressionselements über die Außenoberfläche des flexiblen Rohrs in Richtung des flexiblen Elements;

    dadurch gekennzeichnet, dass das flexible Element über den Widerhakenbereich (16) des Widerhakenanschlussstücks (10) und über den verformten Bereich in der Außenoberfläche des Rohrs (20) geschoben wird und das Kompressionselement mit dem flexiblen Element in Gewindeeingriff steht, um die Fingerelemente gegen das Widerhakenelement zu drücken, und mindestens eines der flexiblen Fingerelemente einen Zahn (37a-37f) aufweist, der von der Oberfläche der Durchgangsbohrung derart radial nach innen vorsteht, dass, wenn das Kompressionselement in Gewindeeingriff mit dem flexiblen Element steht, der eine oder die mehreren Zähne hinter dem verformten Bereich in der Außenoberfläche des Rohrs sitzen und diesen zusammendrücken und einen axialen Anschlag gegen die Unterseite des Widerhakenbereichs des Widerhakenanschlussstücks bereitstellen.


     
    5. Verfahren nach Anspruch 4, ferner umfassend ein Entsichern des Widerhakenelements von dem Rohr auf zerstörungsfreie Weise durch schraubendes Lösen des Kompressionselements von dem flexiblen Element.
     


    Revendications

    1. Dispositif de serrage et un élement de barbelure ayant une région barbelée pour être disposé à l'intérieur d'une extrémité d'un tube ayant une surface extérieure de manière à former une région déformée dans ladite surface extérieure dudit tube, ledit dispositif comprenant :

    un élément flexible (30) comprenant un corps (34) ayant une pluralité d'éléments de doigt (36a-36f) compressibles entre une première position de repos et une seconde position de serrage, ledit corps ayant un alésage traversant (35) et une surface extérieure comprenant des filetages (33),

    un élément de compression (40) ayant un corps (44), ledit corps ayant un alésage traversant (41) et une surface intérieure comprenant des filetages (43), ledit élément de compression pouvant coulisser sur ladite surface extérieure dudit tube et vers ledit élément flexible ;

    dans lequel les filetages sur le corps dudit élément flexible s'étendent sur lesdits éléments de doigt et ledit élément flexible peut coulisser sur ladite région barbelée (16) dudit raccord cannelé (10) et sur ladite région déformée dans ladite surface extérieure dudit tube (20), dans lequel, lors de la mise en prise par filetage dudit élément de compression avec ledit élément flexible, l'élément de compression comprime l'élément de doigt contre l'élément de barbelure et au moins l'un desdits éléments de doigt flexibles a une dent (37a-37f), qui fait saillie radialement vers l'intérieur à partir de la surface dudit alésage traversant, de sorte que, lorsque ledit élément de compression est en prise par filetage avec ledit élément flexible, lesdites une ou plusieurs dents reposent derrière et compriment ladite région déformée dans ladite surface extérieure dudit tube et fournissent une butée axiale contre la face inférieure de la région barbelée dudit raccord cannelé.


     
    2. Dispositif de serrage et élément de barbelure selon la revendication 1, dans lesquels chacun de ladite pluralité d'éléments de doigt a une dent s'étendant radialement vers l'intérieur.
     
    3. Dispositif de serrage et élément de barbelure selon la revendication 1, dans lesquels après que ledit élément de compression est mis en prise par filetage avec ledit élément flexible, il reste détachable dudit élément flexible d'une manière non destructive en le désolidarisant par filetage dudit élément flexible.
     
    4. Procédé utilisant le dispositif de serrage et l'élement de barbelure selon l'une quelconque des revendications 1 à 3 destinés à fixer un élement de barbelure ayant une région barbelée à l'intérieur d'un tube, ledit procédé comprenant :

    la fixation de l'élement de barbelure (10) audit tube (20) de sorte que ladite région barbelée (16) est à l'intérieur dudit tube et forme une région déformée dans ladite surface extérieure dudit tube ;

    la fourniture d'un élément flexible (30) comprenant un corps (34) ayant une pluralité d'éléments de doigt (36a-36f) compressibles entre une première position de repos et une seconde position de serrage, ledit corps ayant un alésage traversant (35) et une surface extérieure comprenant des filetages (33),

    la fourniture d'un élément de compression (40) ayant un corps (44), ledit corps ayant un alésage traversant (41) et une surface intérieure comprenant des filetages (43) ;

    le fait de faire coulisser ledit élément flexible sur ladite surface extérieure dudit tube flexible et sur ladite région barbelée dudit raccord cannelé ;

    le fait de faire coulisser ledit élément de compression sur ladite surface externe dudit tube flexible vers ledit élément flexible ;

    caractérisé en ce que ledit élément flexible est glissé sur ladite région barbelée (16) dudit raccord cannelé (10) et sur ladite région déformée dans ladite surface extérieure dudit tube (20), et ledit élément de compression est mis en prise par filetage avec ledit élément flexible pour comprimer lesdits éléments de doigt contre ledit élément de barbelure, et au moins l'un desdits éléments de doigt flexibles a une dent (37a-37f), qui fait saillie radialement vers l'intérieur à partir de la surface dudit alésage traversant, de sorte que, lorsque ledit élément de compression est mis en prise par filetage avec ledit élément flexible, lesdites une ou plusieurs dents reposent derrière et compriment ladite région déformée dans ladite surface extérieure dudit tube et fournissent une butée axiale contre le dessous de la région barbelée dudit raccord cannelé.


     
    5. Procédé selon la revendication 4, comprenant en outre le fait de détacher ledit élement de barbelure dudit tube d'une manière non destructive en désolidarisant par filetage ledit élément de compression dudit élément flexible.
     




    Drawing











    Cited references

    REFERENCES CITED IN THE DESCRIPTION



    This list of references cited by the applicant is for the reader's convenience only. It does not form part of the European patent document. Even though great care has been taken in compiling the references, errors or omissions cannot be excluded and the EPO disclaims all liability in this regard.

    Patent documents cited in the description