CLAMPING COLLAR WITH RETAINING FINGERS
20210018121 · 2021-01-21
Inventors
Cpc classification
F16L23/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A clamping system for connecting a first and a second tube whose opposite ends have clamping surfaces protruding from the cylindrical outer surface of said tubes. The system comprises a collar which comprises a belt able to be clamped around said clamping surfaces, the belt having a first and a second flank between which an internal recess able to receive the clamping surfaces is delimited. The collar carries at least one retaining finger which has a free end portion protruding axially beyond the edge of the first flank, said free end portion having a retaining edge configured to be retained outside the belt by a radially protruding element.
Claims
1. A clamping system for connecting a first and a second tube whose opposite ends have clamping surfaces protruding from a cylindrical outer surface of said tubes, the clamping system comprising a collar which comprises a belt able to be clamped around said clamping surfaces, the belt having a first and a second flank between which an internal recess able to receive the clamping surfaces is delimited, the collar carrying at least one retaining finger, which has a free end portion protruding axially beyond an edge of the first flank, said free end portion having a retaining edge configured to be retained outside the belt by a radially protruding element.
2. The clamping system according to claim 1, comprising centering surfaces located axially outside the edge of the first flank.
3. The clamping system according to claim 2, wherein the centering surfaces comprise at least one centering surface formed on the retaining finger.
4. The clamping system according to claim 2, wherein the collar carries at least one centering finger protruding axially beyond the edge of the first flank and wherein the centering surfaces comprise at least one centering surface formed on the centering finger.
5. The clamping system according to claim 1, wherein the retaining finger has a ramp at an end of the free end portion thereof.
6. The clamping system according to claim 1, wherein the retaining finger has at least one reinforcing rib.
7. The clamping system according to claim 4, wherein the centering finger has a ramp at an end of a free end portion thereof.
8. The clamping system according to claim 4, wherein the centering finger has at least one reinforcing rib.
9. The clamping system according to claim 1, comprising a washer supported by the collar, the washer comprising an annular part disposed inside the belt and carrying the retaining finger.
10. The clamping system according to claim 4, comprising a washer supported by the collar, the washer comprising an annular part disposed inside the belt and carrying the retaining finger and at least one centering finger protruding axially beyond the edge of the first flank and wherein the centering surfaces comprise at least one centering surface formed on the centering finger.
11. The clamping system according to claim 1, wherein the retaining edge is formed on a pin cut out in the retaining finger and deformed radially.
12. An assembly comprising a clamping system and a first tube, the first tube presenting a clamping surface arranged in a vicinity of a free end thereof and protruding from a cylindrical outer surface of the first tube, and the first tube further having a retaining protrusion located on the other side of the clamping surface relative to the free end, the clamping system comprising a collar which comprises a belt able to be clamped around the clamping surface, the belt having a first and a second flank between which an internal recess able to receive the clamping surface is delimited, the collar carrying at least one retaining finger, which has a free end portion protruding axially beyond an edge of the first flank, said free end portion having a retaining edge configured to be retained outside the belt by the retaining protrusion in a condition in which the first tube is fitted into the collar.
13. The assembly according to claim 12, wherein the retaining protrusion is formed on a transverse blade which has a fastening portion through which it is fastened to the first tube, and a retaining portion straightened radially relative to the fastening portion.
14. The assembly according to claim 13, wherein the blade has two retaining portions and the collar carries two retaining fingers configured to cooperate with said retaining portions.
15. The assembly according to claim 12, wherein the retaining protrusion is configured to define an angular wedging of the clamping system relative to the first tube.
16. The assembly according to claim 15, wherein the blade has two shoulders forming a radial stop for retaining fingers carried by the collar and configured to cooperate with said retaining portions.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
DETAILED DESCRIPTION
[0035]
[0036] In the following, radially internal elements will refer to the elements that are directed towards the axis A of the two tubes placed end to end and that are closest to this axis A relative to other elements referred to as radially external elements, the radially external elements also being those that are directed away from the axis A. It is also considered that the axis A of the two tubes is also the axis of the collar, more specifically the axis of the collar belt, the latter being wound on itself.
[0037] Furthermore, it will be considered that a second element is external or axially external to a first element, if the second element is located next to the first one, that is to say outside the axial slice occupied by the first element.
[0038] The collar comprises a belt 12 which delimits a recess 14 in which the bearing surfaces, respectively 18 belonging to the first tube 2 and 20 belonging to the second tube 4 can be inserted. This recess and these bearing surfaces have shapes such that the clamping of the belt of the collar forces the ends of the tubes 2 and 4 to come close to each other. The recess 14 is delimited between a first and a second flank 13A and 13B of the belt 12, these flanks defining in this case the branches of a V seen in axial section. Thus, the belt 12 has an advantageously V-shaped axial section, while the bearing surfaces 18 and 20 have a diameter which increases progressively towards the opposite free ends of the tubes and have for example a frustoconical shape.
[0039] The belt 12 has ends respectively 12A and 12B, which are straightened substantially radially so as to form bearing lugs. These lugs are pierced so as to allow the passage of the rod 24A of a clamping screw 24 through these lugs. The head 24B of the screw is wedged relative to one of the bearing lugs, in this case the lug 12B, while a nut 26 is retained relative to the other bearing lug 12A. It is understood that the rotation of the nut in the direction of screwing brings the bearing lugs closer to each other and therefore reduces the inner diameter of the collar, that is to say it allows clamping the strip. Of course, other ways of clamping the strip can be envisaged, for example hooking systems, as described in particular in patent application FR 3 008 160.
[0040] The clamping system comprises a washer 28 which is secured to the collar. The washer may particularly be of the type described in EP 1 451 498.
[0041] This washer 28 has a frustoconical annular portion 30 which can be inserted between the opposite ends of the two tubes 2 and 4 when they are engaged in the clamping system. Indeed, the washer 28 is retained relative to the belt, in this case relative to its second flank 13B, by fastening lugs so that an annular space is arranged between the second flank and the washer. The free end of the second tube 4 carrying its bearing surface 20 is inserted into this annular space inside the recess 14, while the free end of the first tube 2 carrying its bearing surface 18 is inserted on the opposite side of the annular space relative to the washer, that is to say against the internal face of the frustoconical portion 30 of the washer 28.
[0042] In this case, the end of the tube 4 is a female flared part, the internal periphery of its bearing surface 20 forming a flared part. On the other hand, the free end of the first tube 2 is a male end which, beyond its bearing surface 18, has an outer periphery 23 whose diameter gradually decreases towards the termination of the free end. The end part 23 thus formed can therefore be inserted, substantially in a form-fitting manner, inside the flared part formed at the end of the tube 4. The frustoconical annular portion 30 of the washer 28 may have annular deformations 32 forming a seal between the internal surface of the flared part 19 and the external periphery 23.
[0043] The fastening of the washer 28 of the collar 10 and/or the pre-mounting of the clamping system comprising the collar and the washer on the tube 4 can be ensured in the same way as in EP 1 451 498, by fastening lugs and/or pre-mounting lugs 34 with which the washer is equipped, these lugs serving to hook the washer on the second flank 13B of the belt, while arranging the abovementioned annular space, as described in EP 1 451 498.
[0044] Other modes of fastening the washer to the collar can be used. For example, the washer may have a retaining loop in which the shank of the screw 24 can be engaged, as well as one or several retaining lugs which can be retained on the edge of the belt, for example by hooking or by pinching. Likewise, other modes of pre-mounting the clamping system relative to the tube 4 can be used, for example, by equipping the washer with internal lugs or studs engaged in the tube 4 to cling on the internal surface of the tube 4.
[0045] The collar carries retaining fingers 40 that have free end portions protruding axially beyond the edge of the first flank 13A. For each retaining finger, the free end portion has a retaining edge 42 configured to be retained outside the belt by a radially protruding element. As will be seen below, this radially protruding element is particularly a retaining protrusion secured to the first tube 2. The internal surfaces 43 of the common portions of the retaining fingers form centering surfaces that extend axially beyond the edge of the first flank 13A, while being radially comprised in the diametrical dimensions of this edge. Considered together, the different centering surfaces define diametrical dimensions comparable to those defined by the top of the clamping surface 18 of the first tube 2, so as to carry out a centering of this first tube upon its insertion into the clamping system. It is seen that the collar also carries centering fingers 50 that are similar to the retaining fingers, except that they do not have a retaining edge. However, as for the retaining fingers, their internal surfaces 53 form centering surfaces. It can be seen that the retaining fingers and the centering fingers have ribs 48 that are oriented axially and that stiffen these fingers. Thus, the retaining fingers and the centering fingers have a radial responsiveness, that is to say they are relatively not very flexible and can be elastically deformed radially over a small radial displacement by having a strong tendency to elastic return. The retaining fingers and the centering fingers also have flared ramps 49 at the end of their free ends. These flared ramps promote the insertion of the first tube into the clamping system.
[0046] In this case, the retaining fingers 40 and the centering fingers 50 are carried by the washer 28 which is itself supported by the collar 10 as indicated. More specifically, the retaining fingers and the centering fingers are carried by the annular part 30, in this case frustoconical annular part, of the washer which is disposed inside the belt 12 of the collar. The retaining fingers and the centering fingers extend forwardly from the front edge of this annular part. Within the meaning of the present disclosure, the forward direction is the one which goes from the second flank 13B toward the first flank 13A. Thus, the retaining fingers and the centering fingers extend forwardly beyond the front edge of the flank 13A. The forward direction is indicated by the arrow F in
[0047] As seen in
[0048] It can be seen in
[0049] With reference to
[0050] The shaping of the transverse blade 60 or 70 allows a particularly effective pre-assembly. Indeed, as indicated, the thickness of the blade is oriented radially while its width is oriented axially. The retaining fingers are retained on the front edge of the retaining portions of this blade, that is to say the edges that are furthest from the free end of the first tube. Any forces to detach the first tube from the locking system operate parallel to the width of the transverse blade. It is therefore a direction in which this blade is unlikely to be deformed. Thus, the pre-assembly is particularly effective. The ears 70C of the blade 70 form shoulders in the form of a radial stop for the retaining fingers 40.
[0051] For the mounting of the assembly comprising the two tubes and the clamping system, the free end of the tube 4 is first engaged in the annular space arranged between the washer 28 and the second flank 13B of the belt so as to pre-mount the clamping system around this free end, then the free end of the tube 2 in the clamping system is engaged, until reaching the position represented in
[0052] The centering surfaces allow, during the fitting of the first tube into the clamping system, cooperating with the top of the clamping surface of this first tube to center it relative to the clamping system. This promotes the correct pre-mounting of the clamping system on the first tube and therefore the centering of the two tubes relative to each other. The centering surfaces can be formed on the retaining finger(s), by being possibly completed by one or several centering surfaces formed on the centering fingers if they are provided. The retaining edge of the retaining finger can be made in a very simple manner by a simple partial cutout in this finger releasing a tab which is folded back to form a pin 42 folded radially inwardly. This pin is very simple to manufacture, without addition of material, while forming an effective claw so that the retaining finger grips on the radially protruding element on the external periphery of the first tube.
[0053]
[0054]
[0055] As indicated, the retaining protrusion can be formed on a transverse blade fastened to the first tube. This blade is a geometric element which is very simple and therefore easy to manufacture. Its fastening can however be extremely resistant because of the possible contact surface between the first tube and this blade. The transverse orientation of this blade promotes effective retention because the possible detachment forces operate axially, therefore perpendicularly to the main direction of the blade, direction in which this blade is not very deformable.
[0056] The clamping belt and the washer as well as the fingers are preferably made of metal. Concerning particularly the washer, this can be made in a stainless steel strap of the austenitic type, and having particularly a thickness comprised between 0.1 mm and 0.5 mm, or even between 0.2 and 0.4 mm.