CONNECTOR THAT DISCONNECTS BY PULLING ON A RING
20190285215 ยท 2019-09-19
Assignee
Inventors
Cpc classification
F16L37/0982
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A tubular coupling is provided. The tubular coupling has a female endpiece with an axial orifice into which a male endpiece provided with a collar is designed to be inserted axially. The female endpiece includes a latching locking member that is designed to be deformed elastically in a radial direction by mechanical interference during insertion of the male endpiece into the orifice and to become locked against the back of the collar. The coupling further includes a ring mounted to slide coaxially with the orifice around the female endpiece and that forms a ramp that is oblique relative to the axial direction in order to deform the locking member elastically in a radial direction by the lever effect when the ring is subjected to axial traction in the direction for inserting the male endpiece into the female endpiece so as to release the male endpiece from the female endpiece.
Claims
1. A tubular coupling, comprising: a female endpiece presenting a tubular hollow body that extends along an axial direction and that forms an axial orifice into which a male endpiece provided with a collar is designed to be inserted axially, said hollow body of said female endpiece includes a latching locking member that extends axially along said hollow body and that is designed to be deformed elastically in a radial direction by mechanical interference with said collar during said insertion of said male endpiece into said orifice of said female endpiece and to become locked against the back of said collar when said male endpiece is pushed fully into said orifice of said female endpiece, a ring mounted to slide coaxially with said orifice around said female endpiece and that forms a ramp that is oblique relative to the axial direction and that is inclined radially towards the outside of said hollow body in order to deform said locking member elastically in a radial direction by the lever effect when said ring is subjected to axial traction in the direction for inserting said male endpiece into said female endpiece so as to release said male endpiece from said female endpiece.
2. A tubular coupling according to claim 1, wherein said locking member comprises two latching fingers that are distributed around said orifice of said female endpiece, each latching finger including two lateral shoulders, and said ring forms, for each latching finger, two parallel oblique ramps against which said two lateral shoulders of the latching finger bear respectively.
3. A tubular coupling according to claim 2, wherein said ring has two lateral openings distributed around the peripheral outline of said ring, each bordered by each two parallel ramps.
4. A tubular coupling according to claim 3, wherein said two parallel ramps are joined together by a web of reinforcing material.
5. A tubular coupling according to claim 2, wherein said two lateral shoulders of a latching finger form portions of a lateral rib that slide axially in the groove of said ring.
6. A tubular coupling according to claim 1, wherein said ring is held around said female endpiece by clips.
7. A tubular coupling according to claim 3, wherein said ring includes respective radially projecting ribs at the lateral openings, each rib being arranged to hold said ring around said female endpiece.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The present invention can be better understood and other advantages appear on reading the following description and the accompanying drawings, in which:
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS
[0032]
[0033] In this example, the tubular coupling 1 comprises a female tubular connection endpiece (female endpiece) 2 having a bend, comprising a main hollow body 3 of tubular shape that extends along an axial direction A and that presents an axial orifice 4.
[0034]
[0035]
[0036] In this example, the male endpiece 6 is in the form of a base of elongate cylindrical shape and it presents at its free end a radial coupling abutment formed by a collar 7, the diameter of the collar 7 being a little less than the inside diameter of the orifice 4.
[0037] As can also be seen in
[0038] The outside diameter of the duct 8 is determined relative to the inside diameter of the collar 7 so that during axial insertion of the male endpiece 6 into the body 3 of the female endpiece 2, the collar 7 in this example is received in the orifice 4 between the body 3 of the female endpiece 2 and the duct 8.
[0039] Sealing between the female and male endpieces 2 and 6 may be provided in part by a gasket 9 that is received in an annular outside groove 10 of the duct 8, as can be seen in
[0040] In the invention, the female element 2 has at least one locking member in the form of a latching flexible finger 11 that extends in the axial direction A and that is designed to deform elastically radially towards the outside of the body 3 of the female endpiece 2 under the effect of mechanical interference with the collar 7 when the male endpiece 6 is inserted in the orifice 4 of the female endpiece 2.
[0041] The tubular body 3 may include a plurality of locking members 11 distributed around the circumference of the body 3.
[0042] In this example, the tubular body 3 has two latching fingers 11 that are diametrically opposite relative to the orifice 4, each of which is defined by two axial slots in the body 3, which go as far as the edge of the orifice 4.
[0043] Each latching finger 11 presents a free end forming a radially sloping inside rib 12, that can be seen clearly in
[0044] On axial insertion of the male endpiece 6 into the orifice 4 of the female endpiece 2, the front face of the collar 7 (in the direction the male endpiece 6 is inserted into the body 3) presses against the rib 12 so as to move the finger 11 away radially and allow the collar 7 to pass into the hollow body 3.
[0045] The rib 12 also presents a barbed latch 13 that, in known manner, once the finger 11 has returned elastically, comes into contact against the back face of the collar 7 so as to block the male endpiece 6 axially in a fully engaged coupling position in the orifice 4 of the female endpiece 2 of the tubular coupling 1.
[0046] In the invention, each latching finger 11 presents at least one lateral shoulder 14 projecting radially relative to the external circumference of the hollow body 3. In this example, two lateral shoulders 14 are shown, and they are connected together by material so as to form a lateral rib 14 that projects radially towards the outside of the body 3. Each shoulder 14 is for co-operating with a ramp 18 present on the ring 5, as described below.
[0047] In the first embodiment of the invention, the hollow body 3 may also include at least one flexible clip 15 designed to deform elastically radially towards the inside of the body 3 by mechanical interference with the ring 5 when it is engaged axially around the body 3.
[0048] In this example, two flexible clips 15 are diametrically opposite, each being arranged on either side of a latching finger 11, or being positioned between two latching fingers 11.
[0049] The flexible clips 15 extend axially along the body 3 and they are oriented in the opposite direction to the latching fingers 11. Each clip 15 has a free end that projects radially towards the outside of the body 3, forming a retaining latch 16 for holding the ring 5 slidably around the body 3, as explained below.
[0050] In its peripheral outline, the ring 5 has a lateral opening 17 that is axially defined on its sides by respective oblique ramps 18 that are inclined radially towards the outside with a slope that is oriented in the direction opposite to the direction for inserting the male endpiece 6. In this example, two lateral openings 17 are distributed around the peripheral outline of the ring 5, e.g. being diametrically opposite, and each of them is bounded by two parallel ramps 18.
[0051] The oblique ramps 18 defining a lateral opening 17 may be joined together by a web 19 of material so as to reinforce the structure of the ring 5.
[0052] Optionally, the ring may include grooves 20 arranged axially above the ramps 18 and in which the shoulders 14 slide axially while the ring 5 is being engaged axially around the body 3 of the female endpiece 2, the grooves 20 acting as guides for the engagement.
[0053] In the invention, the ring 5 may also include blocking means 21 arranged in the periphery of the ring 5 and interacting with the flexible clip 15 arranged on the body 3 of the female endpiece 2.
[0054] In a first variant of the first embodiment, the blocking means 21 comprise a recess forming a kind of groove arranged in the internal periphery of the ring 5. The height of the groove is selected so that overall it is equivalent to the height of the flexible clip 15 so as to allow the ring 5 to slide axially along the body 3 over the height of the groove.
[0055] In a second variant of the first embodiment that is not shown, the blocking means 21 may comprise a window of height that is likewise equivalent overall to the height of the flexible clip 15 so as to allow the ring 5 to slide axially along the body 3 over the height of the window.
[0056] In the invention, the ring 5 also presents grip means 22 on the outside periphery, which means may for example project radially so as to be gripped by an operator so as to make it easier to exert axial traction on the ring 5.
[0057] Prior to using the tubular coupling 1, the ring 5 needs to engaged axially around the body 3 of the female endpiece 2 along arrow F. For this purpose, the ring 5 is positioned as shown in
[0058] In the first embodiment, during axial engagement of the ring 5 around the body 3, the top surface of the ring 5 presses against the projecting flexible clips 15. They are thus retraced elastically towards the inside of the body 3 so as to allow the top portion of the ring 5 to pass around the body 3. Thereafter, the clips 15 deploy into the recess or the window acting as blocking means 21. During the engagement of the ring around the body, the shoulders 14 can slide axially in the grooves 20 of the ring that are optionally arranged above the ramps 18. The grooves 20 thus provide indexing means to ensure that the ring 5 and the body 3 are properly oriented relative to each other during engagement.
[0059] In the invention, in this engagement position, the ring 5 can slide axially along the body 3.
[0060] Nevertheless, such axial sliding is limited in that the projecting retaining latch 16 comes into abutment against one or the other of the longitudinal sides of the recess or of the window. As mentioned above, the ring 5 can slide axially only over the height of the blocking means 21.
[0061] In order to better understand the invention better, the steps of coupling the male endpiece 6 in the female endpiece 2, and of uncoupling them, as shown in
[0062] In order to couple the male endpiece 6 with the female endpiece 2, the male endpiece 6 is pushed axially into the orifice 4 of the tubular coupling 1 along arrow F shown in
[0063] Thereafter, in order to disconnect the male endpiece 6 from the tubular coupling 1, as shown in
[0064] It should be observed that after the endpieces 2 and 6 have been disconnected, the shoulders 14 return elastically to the low point of the oblique ramps 18, with the latching fingers 11 moving inverse. The ring 5 thus returns automatically to its initial position, as shown in
[0065] Thus, in the invention, the male endpiece 6 is connected to the tubular coupling 1 in the orifice 4 of the female endpiece 2 by simple axial insertion, and the endpieces 2 and 6 are disconnected simply by pulling axially on the ring 5.
[0066]
[0067] Below, it should be understood that elements that are common to both tubular couplings 1 and 1 in the two embodiments are given the same references.
[0068] The tubular endpiece 1 differs from the tubular coupling 1 mainly in that the female endpiece 2 does not have a flexible clip and the ring 5 does not have blocking means. Thus, in the invention, the tubular coupling 1 is a structure that is even simpler than in the prior art.
[0069] In the invention, the female endpiece 2 has a flexible finger 11 that performs two functions, the first being as is the first embodiment to allow the male endpiece 6 to be disconnected from the tubular coupling 1 by pulling axially on the ring 5, the second being a clip-fastening function during axial engagement of the ring 5 around the body 3 of the female endpiece 2.
[0070] The flexible finger 11 presents a groove 14 connecting together the two shoulders 14, which groove is oblique, being inclined radially towards the inside.
[0071] The lateral opening 17 in the ring 5 in this example is defined on top, in the engagement direction of the ring 5 by a radially projecting groove 23 that is oblique, sloping radially towards the outside.
[0072] This example shows a body 3 with two flexible fingers 11 distributed around the body 3 and a ring 5 with two lateral openings 17 distributed around the periphery so that during engagement of the ring 5 around the body 3 of the female endpiece 2, the flexible fingers 11 are in register with the lateral openings 17.
[0073] Thus, during axial engagement of the ring 5 around the body 3, the inclined grooves 23 of the ring 5 come into contact with the inclined grooves 14 of the fingers 11 and press against the grooves 14 of the flexible fingers 11. The fingers then retract elastically towards the inside of the body 3 so as to allow the top portion of the ring 5 to pass with the grooves 23 around the body 3. Thereafter, the fingers 11 become deployed elastically into the lateral opening 17 of the ring 5 so that the shoulders 14 are positioned at the low points of the oblique ramps 18. In this second embodiment, in the lateral openings 17, the ramps 18 are protected by margins 24 extending axially outside the ring 5. Advantageously, these margins protect the fingers 11 from impacts that might occur against the tubular endpiece 1.
[0074] In the invention, the tubular coupling 1, 1 is compact and presents a structure of less complexity than existing couplings.
[0075] Advantageously, the ring 5, 5 surrounding the female endpiece 2, 2 serves to protect the tubular endpiece 1, 1 from potential infiltration of dust or other materials into the orifices 4 of the bodies 3, 3.
[0076] The elements of the tubular coupling 1 of the invention, i.e. the female endpiece 2, 2 and the ring 5, 5 may be made of plastics material, e.g. by injection molding or by 3D printing.
[0077] In the invention, as described above, in the tubular coupling 1, 1, since the ring 5, 5 does not have any element that requires flexibility, the female endpiece 2, 2 presents in particular the latching fingers 11 as flexible elements. It is thus possible to envisage fabricating the ring 5, 5 and the female endpiece 1, 1 out of two different materials, in particular it is advantageous to select a material of greater hardness for the ring 5, 5 than for the female endpiece 2, 2. Thus, in the event of temperature or pressure rising in the tubular coupling 1, 1, the ring 5, 5 surrounding the body 3, 3 of the female endpiece 2, 2 can limit any risk of deformation.
[0078] Naturally, the present invention is not limited in any way to the above description of an implementation thereof, and it may be subjected to modifications without going beyond the ambit of the invention.