CLAMPING RING AND METHOD OF FORMING THE SAME
20230191711 · 2023-06-22
Assignee
Inventors
Cpc classification
B29K2023/0691
PERFORMING OPERATIONS; TRANSPORTING
B29C66/71
PERFORMING OPERATIONS; TRANSPORTING
B29C66/71
PERFORMING OPERATIONS; TRANSPORTING
B29C65/48
PERFORMING OPERATIONS; TRANSPORTING
B29C65/7805
PERFORMING OPERATIONS; TRANSPORTING
B29C66/5344
PERFORMING OPERATIONS; TRANSPORTING
B29K2023/00
PERFORMING OPERATIONS; TRANSPORTING
B29C65/4815
PERFORMING OPERATIONS; TRANSPORTING
B29C66/30223
PERFORMING OPERATIONS; TRANSPORTING
B29C48/09
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8322
PERFORMING OPERATIONS; TRANSPORTING
B29C48/92
PERFORMING OPERATIONS; TRANSPORTING
B29K2023/00
PERFORMING OPERATIONS; TRANSPORTING
B29K2023/0691
PERFORMING OPERATIONS; TRANSPORTING
F16L47/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C66/73755
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/7096
PERFORMING OPERATIONS; TRANSPORTING
B29C66/131
PERFORMING OPERATIONS; TRANSPORTING
B29C48/0021
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C48/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method of manufacturing a clamping ring for a cold-expansion joining system includes providing an extruded pipe part made of a cross-linked polymeric material where, while extruding the pipe part, the inner diameter is formed bigger than the outer diameter of a flexible cross-linked polymeric pipe onto which the clamping ring is positioned before making a pipe connection; providing an injection molded annular part having an inner diameter formed smaller than the inner diameter of the extruded part; and bonding the parts together to form a clamping ring having an inward protruding stop edge at one of its ends. The embodiments further relate to a clamping ring formed from an extruded pipe part made of a cross-linked polymeric material and an injection molded annular part bonded together to form a unitary structure including an inward protruding stop edge at one of its ends.
Claims
1. A method of forming a clamping ring to be used on a flexible cross-linked polymeric pipe when making a pipe connection, the method comprising: a) providing an extruded pipe part made of a cross-linked polymeric material, wherein an inner diameter of the extruded pipe part is formed bigger than the outer diameter of the flexible cross-linked polymeric pipe onto which the clamping ring is positioned before making the pipe connection; b) providing an injection molded annular part, wherein an inner diameter of the injection molded annular part is formed smaller than the inner diameter of the extruded pipe part; and c) bonding the extruded pipe part and the injection molded annular part to form a unitary structure having an inward protruding stop edge at one of end of the bonded extruded pipe part and the injection molded annular part.
2. The method according to claim 1, wherein step (a) further comprises extruding a continuous tubular extrusion pipe of a cross-linked polymeric material and cutting the extrusion pipe to form independent extruded pipe parts.
3. The method according to claim 1, wherein bonding the parts in step (b) comprises placing the injection molded annular plastic part on top of the extruded pipe part, such that the parts are aligned at the outer diameters.
4. The method according to claim 1, wherein bonding the parts in step (b) comprises welding the injection molded plastic annular part and the extruded pipe part together.
5. The method according to claim 4, wherein welding is performed by ultrasonically welding the injection molded annular part and the extruded pipe part.
6. The method according to claim 1, wherein the injection molded annular part further comprises a triangular-shaped bead to act as an energy director when ultrasonically welding the parts together.
7. The method according to claim 1, wherein bonding the parts in step (b) comprises bonding the parts by means of an adhesive.
8. The method according to claim 1, wherein the cross-linked polymeric material of the extruded pipe part is selected from a group consisting of PEX-a, PEX-b or PEX-c.
9. The method according to claim 1, wherein the injection molded annular part is made of a non-cross-linked polymeric material.
10. The method according to claim 1, wherein the inner diameter of the extruded pipe part is between 0.502 inches and 2.127 inches.
11. The method according to claim 1, wherein the inner diameter of the injection molded annular part is between 0.384 inches and 1.930 inches.
12. The method according to claim 1, wherein the flexible cross-linked polymeric pipe has an outer diameter, onto which the clamping ring is positioned, as provided in ASTM F876-08b.
13. A clamping ring for use on a flexible cross-linked polymeric pipe when making a pipe connection, the clamping ring comprising: an extruded plastic pipe part made of a cross-linked polymeric material and an injection molded annular part bonded together to form a unitary structure comprising an inward protruding stop edge at one of its ends.
14. The clamping ring according to claim 13, wherein the cross-linked polymeric material of the extruded pipe part is selected from a group consisting of PEX-a, PEX-b or PEX-c.
15. The clamping ring according to claim 13, wherein the molded annular plastic part is made of a non-cross-linked polymeric material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] To complement the description being made, and to make it easier to understand the characteristics of the invention, this descriptive report is accompanied by a set of drawings in which, for illustrative purposes only and without limitation, the following has been represented:
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0035]
[0036] The manufacturing of the clamping ring comprises: providing an extruded pipe part 2 made of a cross-linked polymeric material having an inner diameter that is formed bigger than the outer diameter of a pipe onto which the clamping ring 1 is positioned before making a pipe connection; providing an injection molded annular part 3 having an inner diameter that is formed smaller than the inner diameter of the extruded pipe part 2; and bonding the extruded pipe part 2 and the molded annular part 3 together in such a manner as to form a unitary structure having an inward protruding stop edge 6 at one of its ends.
[0037] The extruded pipe part 2 may be made of a cross-linked polymeric material such as, polyolefin, polyethylene, PEX (PEX-a, PEX-b, PEX-c) or any other similar material exhibiting memory properties such that at room temperature the material may be stretched and immediately or shortly thereafter allowed to shrink back down to the material's previous shape before the stretching operation.
[0038] Providing an extruded pipe part 2 may particularly comprise extruding a continuous tubular extrusion pipe having memory properties from the extruder and cutting the extrusion pipe to form independent body parts.
[0039] The injection molded annular part 3 may be made of a cross-linked polymeric material or a non-cross-linked polymeric material.
[0040] The parts may be bonded together by means of different bonding techniques, such as adhesion, welding (i.e., ultrasonic welding, induction welding, high frequency welding, welding by hot air, welding with metal etch), etc.
[0041] When bonding the parts together by means of adhesion, a polyethylene-based adhesive is preferred.
[0042] As shown in
[0043] When the parts are bonded together by means of ultrasonic welding, the injection molded annular part 3 may comprise a triangular-shaped bead 4, as shown in
[0044] When ultrasonic energy is transmitted through the injection molded annular part 3 under pressure and over time, the energy concentrates at the apex of the triangular-shaped bead 4, that contacts the extruded part pipe 2 resulting in a rapid buildup of heat that causes the bead to melt. The molten material flows across the joint interface, thus forming a molecular bond between the injection molded annular part 3 and the extruded pipe part 2.
[0045] Bonding the parts together comprises first placing the injection molded annular part 3 on top of the extruded pipe part 2, such that the parts are aligned at the outer diameter.
[0046] The injection molded annular part 3 may comprise a positioning element 5, as shown in
[0047] As shown in
[0048] The injection molded annular part 3 may have a radially continuous inward protruding stop edge, as shown in
TABLE-US-00001 TABLE I POLYMERIC PIPE Outer PIPE EXTRUDED PART MOLDED ANNULAR PART Diameter d.sub.e Tolerance D.sub.e Le W.sub.e W.sub.a d.sub.a L.sub.a D.sub.a (inch) (inch) (inch) (inch) (inch) (inch) (inch) (inch) (inch) (inch) ⅜″ 0.502 ±0.003 0.746 0.630 0.122 0.181 0.384 0.039 0.746 ½″ 0.627 ±0.004 0.883 0.630 0.128 0.187 0.509 0.039 0.883 ⅝″ 0.752 ±0.004 1.004 0.748 0.126 0.185 0.634 0.039 1.004 ¾″ 0.877 ±0.004 1.121 0.866 0.122 0.181 0.759 0.039 1.121 1″ 1.127 ±0.005 1.405 1.102 0.139 0.198 1.009 0.039 1.405 1¼″ 1.377 ±0.005 1.692 1.378 0.157 0.236 1.219 0.039 1.692 1½″ 1.627 ±0.006 2.013 1.575 0.193 0.291 1.430 0.039 2.013 2″ 2.127 ±0.006 2.600 2.126 0.236 0.335 1.930 0.039 2.600
[0049] As shown in Table 1, the inner diameter of the extruded part, d.sub.e, may vary between 0.502 inches and 2.127 inches and the length of the extruded part, L.sub.e, may vary between 0.630 inches and 2.126 inches, for example, depending on the outer diameter of the polymeric pipe onto which the clamping ring is positioned. The polymeric pipe has an outer diameter, as provided in ASTM F876-08b.
[0050] The inner diameter of the molded annular part, d.sub.a, may vary from 0.384 inches to 1.930 inches, depending on the inner diameter of the extruded pipe part 2.
[0051] The outer diameter of the extruded pipe part, D.sub.e, and the outer diameter of the molded annular part, D.sub.a, are substantially identical.
[0052] It is obvious to a person skilled in the art that in the course of technical progress, the basic idea of the invention may be carried out in numerous ways. Thus, the invention and its embodiments are not limited to the previous examples, but they may vary within the scope of the appended claims.