SYSTEM AND METHOD FOR VISUALLY INDICATING WHETHER PIPE JOINTS HAVE BEEN PROPERLY CRIMPED
20210381634 · 2021-12-09
Inventors
Cpc classification
F16L2201/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L13/142
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L55/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention relates to a female press fitting that is provided with a visual indicator that indicates whether the female press fitting has been properly crimped onto a male pipe or fitting.
Claims
1. A method of preparing a female press fitting with a visual indicator that indicates whether the female press fitting has been crimped around a male pipe or fitting to form a leak tight seal, the method comprising: applying a heat shrinkable plastic ring to a raised bead formed on the outer surface of the female press fitting; applying heat to the plastic ring on the raised bead and shrinking the plastic ring around the bead to form a heat shrunk plastic ring that surrounds the bead; configuring the plastic ring such that once the plastic ring has been heat shrunk around the bead, the heat shrunk plastic ring breaks away in one piece from the female press fitting in response to a crimping force being applied to the heat shrunk ring and the underlying bead; and whereby the presence of the heat shrunk ring on the bead of the female press fitting indicates that the bead on the female press fitting has not been crimped or has not been properly crimped.
2. The method of claim 1 further including: installing a plurality of the female press fittings in a pipe network that includes a plurality of male pipes or fittings where each male pipe or fitting is inserted into a respective female press fitting; prior to pressurizing the pipe network, engaging the heat shrunk rings disposed on the beads of the female press fittings with a crimping tool and crimping the underlying beads of the female press fittings to create leak tight seals between respective male pipe and fittings and female press fittings; and wherein crimping the female press fittings ruptures the heat shrunk rings disposed around the beads of the female press fittings causing the heat shrunk rings to fall in one piece from the female press fittings.
3. The method of claim 1 wherein the shrinkable plastic ring is color coded.
4. A female press fitting designed to receive a male pipe or fitting and comprising: a pipe section; the pipe section having at least two ends; at least one raised bead formed in the pipe section adjacent to one end; the raised bead forming an internal groove in the pipe section; a sealing element disposed in the groove underneath the raised bead; a heat shrunk plastic ring extending over and around the bead and held on the pipe section; the heat shrunk plastic ring designed to break in one place and separate from the pipe section in response to a crimping force being applied to the heat shrunk plastic ring and the underlying bead; and wherein the presence of the heat shrunk plastic ring on the female press fitting that has received the male pipe or fitting indicates that the female press fitting has not been crimped or has been improperly crimped.
5. The female press fitting of claim 4 wherein the heat shrunk plastic ring is color coded.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010]
[0011]
[0012]
[0013]
[0014]
DESCRIPTION OF EXEMPLARY EMBODIMENT
[0015] With further referenced to the drawings, the present invention describes a female press fitting that includes a visual indicator that is designed to indicate whether the female press fitting has been crimped or has been properly crimped. As discussed below, the female press fitting includes a heat shrunk color coded plastic ring that extends around the raised bead of the female press fitting. This heat shrunk plastic ring is designed to rupture and fall from the female pipe fitting in response to a crimping action being applied to the heat shrunk plastic ring and bead. Hence, when a pipe network comprising an array of pipe and male and female press fittings is inspected, an inspector can readily determine if the various pipe joints formed in the pipe network have been properly crimped.
[0016] Now with particular reference to the drawings, particularly
[0017] Female press fitting 10 comprises in one design or embodiment a pipe section 14. Pipe section 14 includes opposed ends. Pipe section 14 is provided with one or two raised beads 16. In the embodiment illustrated herein, pipe section 14 is provided with a pair of axially spaced beads 16 with each bead being disposed adjacent to one end portion of the pipe section. See
[0018] The raised bead 16 forms an internal groove 18 that extends around the underside of the bead 16. Seated in the groove 18 is a sealing element 20, such as an O-ring. Formed on the raised bead 16 is a heat shrunk plastic ring 22. In the manufacturing process, a plastic ring is inserted over and around the bead 16. The plastic ring can be provided with a perforation line that will enable the ring to rupture and separate from the female press fitting 10. There are various processes that can be used to assure that the ring, once heat shrunk around the bead 16, will rupture or break in response to a crimping action. As noted above, one approach is to provide a perforated line extending transversely across the plastic ring in one area. Another possible approach is to utilize a plastic ring having a varying thickness with one relatively thin area of the ring being particularly designed to rupture or break in response to a crimping action being applied to the ring. Alternately, the plastic ring may be designed with a uniform thickness and a yield strength sufficiently low such that the plastic ring tears away from the bead during the crimping action. In another example, the plastic material is produced in strips which are folded over on themselves and held together with an adhesive. The resulting ring will typically fail (break away) where it is joined together. A typical crimping tool exerts a force of approximately 7200 pounds onto the bead. The plastic ring disclosed herein is designed to rupture or break at about 20% of the crimping force. This insures that the heat shrunk plastic ring will always break and fall away.
[0019] The basic idea underlying the present invention is to provide a visual indicator that will indicate to an inspector or other worker that the female press fitting 10 has been properly crimped onto the male pipe or fitting 12. That is, during the inspection process, if a female press fitting 10 includes the heat shrunk plastic ring 22 extending around the bead 16, then it is apparent that the female press fitting 10 has not been crimped or properly crimped. On the other hand, if after installation the inspection reveals that there are no heat shrunk plastic rings 22 on any of the female press fittings 10, then it follows that they have all been appropriately crimped which in turn creates a leak tight seal at the interface between the male pipe or fittings 12 and the female press fittings 10.
[0020] As noted above, the heat shrunk plastic ring 22 is incorporated into the female press fitting 10 during the manufacturing process. When the female press fittings reach a job site, they are typically used in a pipe network that includes a series of male pipe or fittings and a series of female press fittings.
[0021] In the course of forming a pipe network, the male pipe or fittings 12 are inserted into one end of the female press fittings 10. See
[0022] The basic concepts underlying the present invention come from the necessity of having means to quickly and easily determine if a small diameter (½″-2″) copper press fitting has been pressed prior to pressurizing a network of pipes and contain the correct sealing element for a given application. The heat shrunk plastic rings 22 can be color coded, which allows for a quick visual determination of the sealing element inside of the fitting, even from a significant distance. This is an advantage as the sealing elements used are nearly identical in appearance and are otherwise difficult to differentiate.
[0023] The present invention may, of course, be carried out in other specific ways than those herein set forth without departing from the scope and the essential characteristics of the invention. The present embodiments are therefore to be construed in all aspects as illustrative and not restrictive and all changes coming within the meaning and equivalency range of the appended claims are intended to be embraced therein.