PIPE FITTING
20210381633 · 2021-12-09
Inventors
Cpc classification
F16L45/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L41/021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L41/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A pipe fitting includes an entry hub, an exit hub, and a cleanout hub. The cleanout hub is coaxially aligned with the exit hub and angularly offset from the entry hub. The pipe fitting also includes a main body that extends between the cleanout hub and the exit hub. The main body defines a main body length that is at least three times greater than the exit hub outer diameter.
Claims
1. A pipe fitting for fluid, the pipe fitting comprising: an entry hub defining an entry point for the fluid into the pipe fitting, wherein the entry hub defines an entry hub outer diameter and an entry hub axis; an exit hub defining an exit point for the fluid from the pipe fitting, wherein the exit hub defines an exit hub outer diameter and an exit hub axis, and wherein the exit hub is offset from the entry hub such that the exit hub axis and the entry hub axis are angularly offset from one another; a main body defining a main body outer diameter that is less than the exit hub outer diameter, wherein the main body includes a first portion and a second portion; a branch extending between the entry hub and the main body; and a cleanout hub that is coaxially aligned with the exit hub and angularly offset from the entry hub, the cleanout hub being removably sealed with a cover so as to prevent fluid from being introduced into the pipe fitting though the cleanout hub during normal operation of the pipe fitting, the main body extending between the cleanout hub and the exit hub to define a main body length that is at least three times greater than the exit hub outer diameter, wherein the first portion extends from the cleanout hub toward the second portion so as to define a first portion length and the second portion extends from the exit hub toward the first portion such that the branch is entirely received by the first portion, wherein the main body is configured to extend through an exterior vertical wall of a structure, and wherein the second portion defines a second portion outer diameter that is constant along an entire length of the second portion between the exit hub and the first portion.
2. The pipe fitting of claim 1, wherein the main body is configured to be within the exterior vertical wall of the structure.
3. The pipe fitting of claim 1, wherein a distance along the main body between the exit hub and the branch is at least ten times greater than a distance along the main body between the cleanout hub and the branch.
4. The pipe fitting of claim 1, wherein the branch is coaxially aligned with the entry hub axis.
5. The pipe fitting of claim 1, wherein the entry hub, the exit hub, and the cleanout hub have a same cross-sectional shape, and wherein the cleanout hub defines a cleanout hub outside diameter that is equal to the entry hub outer diameter and the exit hub outer diameter.
6. The pipe fitting of claim 1, wherein the exit hub is attached to an associated discharge pipe that extends to an associated sewer.
7. The pipe fitting of claim 1, wherein the second portion is continuous so as to be of unitary construction.
8. The pipe fitting of claim 1, wherein the first portion and the second portion are angularly aligned.
9. The pipe fitting of claim 1, wherein the second portion defines a second portion length, and wherein the second portion length is at least 33% greater than the first portion length.
10. The pipe fitting of claim 1, wherein the entry hub, the exit hub, and the cleanout hub are in fluid communication with one another.
11. The pipe fitting of claim 1, wherein the main body length is at least three times greater than the entry hub outer diameter and wherein the main body length is at least three times greater than an outer diameter of the cleanout hub.
12. The pipe fitting of claim 1, wherein a distance along the main body between the exit hub and the branch is greater than a distance along the branch between the main body and the entry hub.
13. A pipe fitting for fluid, the pipe fitting comprising: an entry hub defining an entry point for the fluid into the pipe fitting; an exit hub defining an exit point for the fluid from the pipe fitting and an exit hub outer diameter; a cleanout hub that is coaxially aligned with the exit hub and angularly offset from the entry hub, the cleanout hub being removably sealed with a cover so as to prevent fluid from being introduced into the pipe fitting though the cleanout hub during normal operation of the pipe fitting; a main body extending between the cleanout hub and the exit hub, the main body defining a main body outer diameter that is less than the exit hub outer diameter, wherein the main body is configured to extend through an exterior vertical wall of a structure; and a branch extending between the entry hub and the main body, wherein a distance along the main body between the exit hub and the branch is at least ten times greater than a distance along the main body between the cleanout hub and the branch.
14. The pipe fitting of claim 13, wherein the branch includes a cleanout face that faces the cleanout hub and an exit face that faces the exit hub, and wherein a distance along the main body from the exit hub to an exit side junction of the branch to the main body is at least 1.5 times greater than a distance along the exit face of the branch from the entry hub to the exit side junction of the branch to the main body.
15. The pipe fitting of claim 13, wherein the main body includes a first portion and a second portion, the first portion extending from the cleanout hub to a point at which the branch joins the main body and the second portion extends from the point at which the branch joins the main body to the exit hub such that the branch is entirely received by the first portion, and wherein the second portion defines a constant inner diameter and a constant outer diameter along an entire length thereof.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0029] With reference to the figures, a pipe fitting 10,10a is shown. The pipe fitting 10, 10a could be made with any number of materials by any number of known manufacturing methods without departing from the scope of the disclosure. For example, the pipe fitting could be made of ABS (acrylonitrile butadiene styrene), PVC (polyvinyl chloride), UPVC (unplasticized polyvinyl chloride), CPVC (post chlorinated polyvinyl chloride), or ductile iron. Further, the pipe fitting 10 could be manufactured by injection molding, extrusion, casting, and 3-D printing.
[0030] Initially, it is noted that reference numerals 10 and 10a are used interchangeably to indicate a pipe fitting. Notably, reference numeral 10 refers to a wye pipe fitting and reference numeral 10a refers to a sanitary T pipe fitting. Further, unless otherwise noted, descriptions related to portions of the pipe fitting 10, are identical to the similarly named and numbered portions of the pipe fitting 10a. For example, as will be detailed hereinbelow, the wye pipe fitting 10 includes an exit hub 18 and the sanitary T pipe fitting 10a includes an exit hub 18a. Both of the exit hubs 18, 18a are identical in all aspects.
[0031] The pipe fitting 10 includes an entry hub 12, a cleanout hub 16, and an exit hub 18. The entry hub 12 can be for the receipt of a supply pipe 14 that is connected to a device which supplies fluid. As shown in the figures, entering fluid 15 enters the pipe fitting 10 through the entry hub 12 so as to define an entry point for the fluid. The exit hub 18 can be connected to a discharge pipe 20 that extends to a sewer (not shown). Exiting fluid 21 exits the pipe fitting 10 through the exit hub 18 so as to define an exit point for the fluid. As will be appreciated, the pipe fitting 10 can be joined to the pipes 14, 20 by any number of known methods, including pipe cement/solvent and spin-welding.
[0032] The entry hub 12 defines an entry hub axis 13. The entry hub axis 13 is an imaginary axis that orthogonally extends through a center of a circular plane created by a cross-section of the entry hub 12. Further, the exit hub 18 defines an entry hub axis 19. The exit hub axis 23 is an imaginary axis that orthogonally extends through a center of a circular plane created by a cross-section of the exit hub 18. The exit hub 18 is offset from the entry hub 12 such that the exit hub axis 23 and the entry hub axis 13 are angularly offset from one another. This offset helps ensure that the fluid entering the fitting 10 flows in the proper direction and in accordance with known and preferred plumbing principles.
[0033] Further, the entry hub 12 defines an entry hub outer diameter and the exit hub 18 defines an exit hub diameter. It will be appreciated that the entry hub diameter and the exit hub diameter can be equal. This sizing ensures that fluid maintains a proper speed when traveling through the fitting 10.
[0034] The cleanout hub 16 can be used as an access point to within the pipe fitting 10 for maintenance purposes (i.e., drain cleaning or insertion of inspection cameras) and be removably sealed with a threaded plug or cover (not shown). As will be appreciated, fluid is not introduced into the pipe fitting 10 though the cleanout hub 16 during normal operation of the pipe fitting 10. The cleanout hub 16 is coaxially aligned with the exit hub 18 and angularly offset from the entry hub 12. Thus, exit hub axis 23 extends through a center of the cleanout hub 16 and the entry hub axis 13 does not intersect with the cleanout hub 16. The entry hub 12, the cleanout hub 16, and the exit hub 18 are in fluid communication with one another. Further, the entry hub 12, the cleanout hub 16, and the exit hub 18 can all have a same cross-sectional shape and can share a same dimensional outer dimensional size. As illustrated, this is a circular shape. The same cross-sectional shape and size between the hubs 12, 16, 18 ensures uniform fluid flow in the fitting 10.
[0035] With continued reference to the figures, the pipe fitting 10 also includes a main body 22 that extends between the cleanout hub 16 and the exit hub 18. The main body 22 defines a main body length that is at least three times greater than any of the exit hub outer diameter, the entry hub outer diameter and the outer diameter of the cleanout hub 16.
[0036] Further, the pipe fitting 10 also includes a branch 28 that extends between the entry hub 12 and the main body 22. The branch 28 may be coaxially aligned with the entry hub axis 13. The branch 28 can include a cleanout face 25 that faces the cleanout hub 16 and an exit face 27 that faces the exit hub 18. The cleanout face 25 and the exit face 27 face in opposite directions with respect to one another.
[0037] As shown in
[0038] A distance along the main body 22 between the exit hub 18 and where the branch 28 joins the main body 22 (i.e., exit side junction 29′) is at least ten times greater than a distance along the main body 22 between the cleanout hub 16 and where the branch 28 joins the main body 22 (i.e., cleanout side junction 29). Because of this disparity in sizes as noted above, the pipe fitting 10 has a unique shape which allows the exit hub 18 to be located exterior to a structure as will be described hereinafter.
[0039] The main body 22 defines an outer diameter that is smaller than an inner diameter of either the entry hub 12 or the exit hub 18. The outer diameter of the main body 22 can also be less than the inner diameter of the entry hub 12 or the exit hub 18. Further, it will be appreciated that the hubs 16, 18 could be integral with the main body 22.
[0040] The main body 22 includes a first portion 24 and a second portion 26. The first portion 24 of the main body 22 extends from the cleanout hub 16 to the point at which the branch 28 joins the main body 22 (i.e., exit side junction 29′) so as to define a first portion length. The second portion 26 extends from the point at which the branch 28 joins the main body 22 (i.e., exit side junction 29′) to the exit hub 18 such that the branch 28 is entirely received by the first portion 24 so as to define a second portion length.
[0041] A sum of the length of the first portion 24 and the length of the second portion 26 is equal to an overall length of the main body 22 extending along the exit hub axis 23. The first portion 24 and the second portion 26 are angularly aligned along the exit hub axis 23. As illustrated, the second portion 26 is at least 33% longer than the first portion 24. Because of the above described layout and sizing, the pipe fitting 10 has a distinctive shape which allows the exit hub 18 and the accompanying joint to the discharge pipe 20 to be located exterior to a structure as will be detailed later.
[0042] The second portion 26 maintains a constant and continuous inner and outer diameter along an entire length thereof. This continuity of the second portion 26 of the main body 22 of the pipe fitting 10 minimizes a likelihood of leakage of fluid to an area outside of the fitting 10. As such, merely attaching additional sections of pipe or fittings onto a traditional pipe fitting will not achieve the same result. Rather, increased costs, increased weight, and increased possible leakage points would result. As is considered apparent, assembling these additional sections at the structure site would result in increased labor costs.
[0043] The branch 28 extends between the entry hub 12 and the first portion 24 of the main body 22. It will be appreciated that the entry hub 12 could be integral with the branch 28. Further, it will also be appreciated that the branch 28 could be integral with the main body 22. The branch 28 transmits the fluid received through the entry hub 12 into the main body 22. The branch 28 can have a same inner diameter and outer diameter as the main body 22. The outer diameter of the branch 28 is less than the inner diameter of the entry hub 12. The first portion 24 extends from the cleanout hub 16 toward the second portion 26. Further, the second portion 26 extends from the exit hub 18 toward the first portion 24 such that the branch 28 is entirely received by the first portion 24.
[0044] The second portion 26 of the main body 22 defines a length that is at least three times greater than the exit hub outer diameter. With this ratio, it is ensured that the second portion 26 of the main body 22 will be of sufficient length so that the connection between the pipe fitting 10 and the discharge pipe 20 will not be within an exterior wall 30 of the structure. As illustrated, the second portion 26 has a greater length than the first portion 24. It is noted that all references to the fitting 10 relate to a fitting that is the final fitting/interface between interior region and exterior region of the piping system in the structure.
[0045] As shown in
[0046] With reference to
[0047] With reference to
[0048] As is shown in
[0049] With reference to
[0050] With reference to
[0051] As shown in
[0052] A distance along the main body 22a from the exit hub 18a to the exit side junction 29a′ is at least 1.5 times greater than a distance along the exit face 27a of the branch 28a from the entry hub 12a to the exit side junction 29a′. Accordingly, the pipe fitting 10a has a valuable shape that permits the exit hub 18a to be located exterior to the exterior wall 30 of the structure. It is also noted that while the branches 28, 28a have different angles that they are joined to the main body 22, 22a, the main bodies 22, 22a, and more particularly, the second portions 26, 26a are of sufficient length to allow the pipe fittings 10, 10a to be utilized such that the exit hubs 18, 18a are not installed in exterior walls 30.
[0053] A pipe fitting has been described above with particularity. Modifications and alterations will occur to those upon reading and understanding the preceding detailed description. The invention is not limited to only the embodiments described above. Instead, the invention is broadly defined by the appended claims and the equivalents thereof. It will be appreciated that various of the above-disclosed and other features and functions, or alternatives or varieties thereof, may be desirably combined into many other different systems or applications. Also that various presently unforeseen or unanticipated alternatives, modifications, variations or improvements therein may be subsequently made by those skilled in the art which are also intended to be encompassed by the following claims.