Adapter Coupling
20190271420 ยท 2019-09-05
Inventors
Cpc classification
F16L47/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L47/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L17/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/024
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/032
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L17/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L47/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/032
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A combination includes a plurality of segments attached to one another end to end around a central space. A channel is disposed between the sides of the segments. A sealing ring is positioned in the channels. A tube has a first end disposed within the central space. A first protrusion extends radially outwardly from the tube and limits the extent to which the tube can extend into the central space. The combination is configured such that an end of a pipe element may be axially inserted into the central space and fasteners can be tightened to draw the segments toward one another.
Claims
1. A combination, comprising: a plurality of segments attached to one another end to end by fasteners to form a loop around a central space, each of said segments comprising a first side and a second side, wherein a channel is disposed between the first and second sides of the plurality of segments, wherein the channel extends circumferentially around and faces said central space; a flexible, resilient sealing ring positioned in said channel, the sealing ring comprising first and second lobes that each extend radially inwardly to define first and second ring inner seal surfaces, respectively; and a tube comprising a first end disposed within the central space, a first protrusion extending radially outwardly and disposed proximate the second sides of the plurality of segments, wherein the first protrusion limits an extent to which the first end of the tube can extend axially into the central space, a second protrusion extending radially outwardly and disposed within the central space, wherein the second protrusion is axially disposed between the first protrusion and the first end, wherein the second sides of the plurality of segments and the first lobe of the sealing ring are both axially disposed between the first and second protrusions, wherein the first lobe is axially disposed between the second protrusion and the second sides of the plurality of segments, and the second protrusion extends radially outwardly farther than an inner radial extent of the first lobe such that the second protrusion and first lobe help retain the tube within the sealing ring, and a sealing surface disposed between the first and second protrusions on an outer surface of the tube, wherein the combination is shaped and configured such that an end of a first pipe element may be axially inserted into the central space, and wherein the combination is shaped and configured such that once the end of the first pipe element is properly inserted into the central space, the fasteners can be tightened so as to draw the plurality of segments toward one another and the central space and thereby cause (1) the first ring inner seal surface to sealingly engage the sealing surface of the tube, and (2) the second ring inner seal surface to sealingly engage a sealing surface of the first pipe element.
2. The combination of claim 1, wherein: the second protrusion comprises a first surface that slopes radially inwardly as it progresses axially toward the first end of the tube; the second ring inner seal surface has a diameter sized to receive said first pipe element upon insertion of said first pipe element into the central space; said plurality of segments comprises no more than two said segments; and the fasteners comprise two threaded fasteners.
3. The combination of claim 1, wherein the second protrusion comprises a first surface that slopes radially inwardly as it progresses axially toward the first end of the tube.
4. The combination of claim 1, wherein the second ring inner seal surface has a diameter sized to receive said first pipe element upon insertion of said first pipe element into the central space.
5. The combination of claim 4, wherein said sealing ring has an outer surface engaged with and supporting said plurality of segments in a preassembled state in spaced apart relation sufficient to allow said first pipe element to be inserted into said central space.
6. The combination of claim 1, wherein said plurality of segments comprises no more than two said segments.
7. The combination of claim 6, wherein the fasteners comprise two threaded fasteners.
8. The combination of claim 1, wherein first and second protrusions each extend continuously around an entire circumference of the tube.
9. The combination of claim 1, wherein the combination is shaped and configured to join the first pipe element with a second pipe element.
10. The combination of claim 9, wherein the first and second pipe elements comprise different types of pipe elements, and wherein the combination is an adapter coupling that is shaped and configured to join the different types of pipe elements to each other.
11. The combination of claim 1, wherein the plurality of segments, the fasteners, and the sealing ring together define a preassembled pipe coupling.
12. The combination of claim 11, wherein the combination is a preassembled pipe coupling that includes the plurality of segments, the fasteners, the sealing ring, and the tube.
13. The combination of claim 1, wherein the sealing ring comprises a radially-inwardly projecting rib disposed between the first and second lobes.
14. The combination of claim 1, wherein the second protrusion extends radially outwardly less far than an inner radial extent of the second sides of the plurality of segments prior to tightening of the fasteners such that there is a radial clearance between the second protrusion and the second sides of the plurality of segments.
15. The combination of claim 1, wherein: the combination is shaped and configured to join the first pipe element with a second pipe element; and the combination is shaped and configured to be attached to the first pipe element before being attached to the second pipe element.
16. The combination of claim 1, wherein the first pipe element comprises a plain end pipe element.
17. The combination of claim 1, wherein: the combination is shaped and configured to join the first pipe element with a second pipe element; and the second pipe element comprises a flanged pipe element.
18. The combination of claim 17, wherein the tube and plurality of segments are shaped and configured to mount to the flanged pipe.
19. A method of using the combination in claim 1, the method comprising: while the first end of said tube is disposed in said central space, axially inserting the end of the first pipe element into the central space; and while the end of the first pipe element is inserted into the central space, tightening the fasteners, which draws the plurality of segments toward one another and the central space and thereby causes (1) the first ring inner seal surface to sealingly engage the sealing surface of the tube, and (2) the second ring inner seal surface to sealingly engage the sealing surface of the first pipe element.
20. The method of claim 19, wherein said tightening causes the second sides of the segments to move radially inwardly past an outer radial extent of the second protrusion.
21. The method of claim 19, further comprising attaching a second pipe element to the tube so as to form a fluid-tight seal between the second pipe element and the tube.
22. The method of claim 21, wherein said attaching occurs after said axially inserting and after said tightening.
23. A tube shaped and configured for engagement with a coupling that comprises: a plurality of segments attached to one another end to end by fasteners to form a loop around a central space, each of said segments comprising a first side and a second side, wherein a channel is disposed between the first and second sides of the plurality of segments, wherein the channel extends circumferentially around and faces said central space; and a flexible, resilient sealing ring positioned in said channel, the sealing ring comprising first and second lobes that extend radially inwardly to define first and second ring inner seal surfaces, respectively, the tube comprising: a first end configured to be disposed within the central space when the tube is engaged with the coupling, a first protrusion extending radially outwardly and shaped and configured to be disposed proximate the second sides of the plurality of segments when the tube is engaged with the coupling, wherein the first protrusion is shaped and configured to limit an extent to which the first end of the tube can extend axially into the central space, a second protrusion extending radially outwardly, and a sealing surface disposed between the first protrusion and second protrusion on an outer surface of the tube, wherein the tube is shaped and configured such that when the tube is engaged with the coupling, (1) the second protrusion is within the central space, (2) the second sides of the plurality of segments and first lobe are both axially disposed between the first and second protrusions, (3) the first lobe is axially disposed between the second protrusion and the second sides of the plurality of segments, (4) the second protrusion extends radially outwardly farther than an inner radial extent of the first lobe such that the second protrusion and first lobe help retain the tube within the sealing ring, (5) an end of a first pipe element may be axially inserted into the central space, and (6) the fasteners can be tightened so as to draw the plurality of segments toward one another and the central space and thereby cause the first ring inner seal surface to sealingly engage the sealing surface of the tube.
24. The tube of claim 23, in combination with the sealing ring, wherein: the first lobe is axially disposed between the first and second protrusions, the first end and second protrusion of the tube are disposed within a central opening formed by the sealing ring, and the second protrusion extends radially outwardly farther than an inner radial extent of the first lobe such that the second protrusion and first lobe help retain the first end of the tube within the central opening.
25. The tube of claim 24, wherein the tube is shaped and configured such that when the tube is engaged with the coupling and the end of the first pipe element is properly inserted into the central space, the fasteners can be tightened so as to draw the plurality of segments toward one another and the central space and thereby cause (1) the first ring inner seal surface to sealingly engage the sealing surface of the tube, and (2) the second ring inner seal surface to sealingly engage a sealing surface of the first pipe element.
26. The tube of claim 23, wherein the coupling is shaped and configured to join the first pipe element to a second pipe element.
27. The tube of claim 23, wherein, the tube is shaped and configured such that when the tube is engaged with the coupling, the second protrusion extends radially outwardly less far than an inner radial extent of the second sides of the plurality of segments such that there is a radial clearance between the second protrusion and the second sides of the plurality of segments.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION
[0029]
[0030] As shown in
[0031] As shown in
[0032] As shown in
[0033] Split ring 58 may be used to hold the segments 12 and 14 in spaced apart relation in the so-called preassembled state, illustrated in
[0034] Fluid tightness of the joint is afforded by a seal 66 positioned in the second channels 56 of segments 12 and 14 as shown in
[0035] To effect a fluid tight seal, sealing ring 68 has first and second ring inner surfaces 72 and 74 positioned on opposite sides of the sealing ring. Surface 72 is positioned and adapted to engage the outer surface of pipe element 28 upon insertion of the pipe element into the central space 16 (described below). As shown in
[0036] Installation of the coupling 10 is illustrated with reference to
[0037] Split ring 58 shrinks in circumference and diameter as it is forced to conform within the first channel 34. Shrinking of split ring 58 causes teeth 60 on the split ring to bite into the outer surface of the pipe element 28 and prevent its withdrawal from the coupling 10. Seal 66, constrained within the second channel 56, is compressed between the segments 12 and 14 as the segments are brought together. As shown in
[0038] With the segments 12 and 14 brought together as depicted in
[0039] Couplings according to the invention provide advantages over prior art methods and couplings for joining non-flanged polymeric pipe elements to flanged pipe elements. Being in a pre-assembled state, couplings according to the invention reduce the number of parts that must be handled during installation. Furthermore, the step of fusing a butt flange adapter to the non-flanged polymer pipe element is eliminated along with the need for a fusing machine. Installation time and complexity is thereby reduced substantially.