Connector
11492864 · 2022-11-08
Assignee
Inventors
Cpc classification
F16L37/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A connector includes a jaw used to connect a connection element and a wellhead designed to better distribute tensions on the contact surfaces of the teeth thereof, including, for example, having contact surfaces with differentiated angles and differentiated spacing, resulting evened tensions on the contact surfaces of the teeth.
Claims
1. A connector comprising: a jaw having a plurality of teeth formed on an internal profile of the jaw, the plurality of teeth with differentiated angles and differentiated spacing between two axially adjacent teeth of the plurality of teeth formed on the internal profile to connect a connection element and a wellhead, wherein the two axial adjacent teeth are formed in a coupling region with the wellhead or a coupling region with the connection element.
2. The connector according to claim 1, wherein the jaw includes teeth with differentiated angles in relation to teeth of the connection element and teeth of the wellhead, wherein: a first tooth of the jaw has an angle α-δ1 and a second tooth of the jaw has an angle α-δ2; and a third tooth of the jaw has an angle β-γ1, a fourth tooth of the jaw has an angle β-γ2, a fifth tooth of the jaw has an angle β-γ3, and a sixth tooth of the jaw has an angle β-γ4.
3. The connector according to claim 2, wherein the angles δ and γ are the same or different.
4. The connector according to claim 2, wherein the angle δ is in a range of 0°<δ≤1.75° and the angle γ is in the range of 0°<γ≤1.75°.
5. The connector of claim 2, wherein the second tooth is axially adjacent the first tooth, the third tooth is axially adjacent the second tooth, the fourth tooth is axially adjacent the third tooth, the fifth tooth is axially adjacent the fourth tooth, and the sixth tooth is axially adjacent the fifth tooth.
6. The connector according to claim 1, wherein a first spacing between the teeth of the jaw and the teeth of the connection element and a second spacing between the teeth of the jaw and the teeth of the wellhead are in a range of 0<d≤1.5 mm.
7. The connector according to claim 6, wherein the spacing are the same or different.
8. The connector according to claim 1, wherein said jaw has between one and four teeth in the coupling region with the wellhead, and one or two teeth in the coupling region with the connection element.
9. The connector of claim 8, wherein the coupling region with the wellhead of the jaw is axially adjacent the coupling region with the connection element of the jaw.
10. The connector of claim 1, wherein the plurality of teeth with differentiated angles and differentiated spacing between the plurality of teeth are formed on an internal profile of the jaw.
11. The connector of claim 1, wherein the plurality of teeth with differentiated angles and differentiated spacing comprise two axially adjacent teeth formed on a first surface of the jaw in the coupling region with the wellhead and two axially adjacent teeth formed on the first surface of the jaw in the coupling region with the connection element.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The connector according to the present invention comprises jaws with differentiated spacings and differentiated angles between the jaw and the contact surface in order to reach the intended goals:
(2) The present invention will be better understood from the accompanying illustrative drawings, which, in a schematic form and without limiting its scope, represent:
(3)
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(9)
DETAILED DESCRIPTION OF THE INVENTION
(10) The present invention relates to a connector comprising a jaw (26) having a configuration to better distribute tensions on the contact surfaces of the teeth, i.e., it has contact surfaces with differentiated angles and differentiated spacings, conferring an extremely beneficial effect on the tension uniformity on the contact surfaces, solving the problem regarding the non-uniformity of the tension distribution on the teeth contact surfaces, and of the connectors in general, since the stiffness distribution of these teeth is also not uniform as well as the stiffness distribution in the wellhead is not uniform.
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(13) The wellhead (28) comprises teeth (38, 40, 42 and 44) with standardized angles β, in contrast, the teeth (46, 48, 50 and 52) of the jaw (26) have differentiated angulations β having a variation −γ1, −γ2, −γ3 and −γ4, respectively, with γ varying 0°<γ≤1.75°.
(14)
(15) As can be seen in
(16) In order to even out the tension distribution along the contact surfaces, the teeth of the jaw (26) are dimensioned to have differentiated angles and differentiated spacings first aiming at a non-uniform coupling. This concept relies on the fact that the tooth of the jaw (26) is in a pre-deforming position, such a way that, when the tooth of the jaw (26) undergoes a compression tension caused by the connector preload application process, the elastic deformation undergone by said tooth, evens out the tension distribution along the contact surface, making the operation more efficient.
(17) The number of teeth of the jaw (26) is defined according to the connector preload. The said jaw (26) preferably comprises from one to four teeth in the coupling region with the wellhead (28), and from one to two teeth in the coupling region with the connection element (24).
(18) Table 1 below shows the average tension and peak tension values of the connector for the teeth sections shown in
(19) TABLE-US-00001 Prior art Prior art (connector (U.S. Pat. having equal No. spacing Type of tension/Position Invention 7,614,453) among teeth) Average Tension (MPa)-tooth 1 433 447 751 Average Tension (MPa)-tooth 2 311 381 606 Average Tension (MPa)-tooth 3 240 193 159 Average Tension (MPa)-tooth 4 172 200 14 Peak Tension (MPa)-tooth 1 274 373 158 Peak Tension (MPa)-tooth 2 344 514 306 Peak Tension (MPa)-tooth 3 163 490 181 Peak Tension (MPa)-tooth 4 160 451 9
(20) As the pressure exerted by the piston increase, the other teeth of the jaw (26) will come into contact with the teeth of the wellhead (28). Such a principle applies to the jaw (26) and the connection element (24).