The present invention relates to a non-metallic conduit or raceway for conductors, such as electrical wiring and/or fiber optic cable. In particular, the present invention relates to non-metallic conduits having enlarged ends coupled together to form a continuous conduit, wherein the continuous conduit is configured to allow a conductor to be passed therethrough without contacting internal ridges formed at junctions of the coupled-together enlarged ends.
Systems for forming or joining conduit or piping sections comprised of polyethylene or polyvinylchloride (PVC) piping have long been in use. U.S. Pat. No. 6,982,051 (hereinafter “the '051 patent”) and published application U.S. Patent Pub. No. 2006/0071365 (application Ser. No. 11/244,123) (hereinafter “the '365 publication”) disclose a method and apparatus for use in a fusion process for PVC conduit to provide an essentially single piece of PVC conduit. The entire content of each of the foregoing documents is hereby incorporated by reference.
Fused conduit of the type disclosed in the '051 patent and the '365 publication have general applications in methods of water or gas lines. In such applications, little concern is given to an internal bead or ridge formed within joined conduits. As shown and described in the '051 patent and the '365 publication, external and internal beads are formed along the external and internal surfaces of the conduit at the joint of the joined conduit pieces. Each bead may have irregular surfaces and sharp edges. For the internal bead, such irregularity may result in a significant reduction to the inside diameter and may make the conduit unsuitable for carrying electrical wiring or fiber optic cable.
The resultant external bead extending around the fused joint areas can be substantially removed and smoothed for appearance sake. However, the internal bead remains in place because it typically does not significantly adversely affect the flow of liquids or gasses. While the '051 patent suggest that the internal bead may also be removed if leaving it would be adverse to the flow of liquids or gasses, the fact of the matter is that such removal is expensive and generally requires multiple reaming tools. Further, such removal is typically done “blind” within the conduit and success generally cannot be assured. Moreover, such removal (e.g., grinding) of the internal bead may weaken the joint, thereby rendering the conduit unsuitable for use.
In raceways for electrical wiring or fiber optic cable, it is important that the internal surfaces of the raceways do not have internal projections from the fusion process that would obstruct the wiring or cable as it is pulled or pushed through. It is also possible for the wiring or cable to be cut or pierced by the internal projections. In evaluating PVC conduit formed by the process disclosed in the '051 patent and the '365 publication, cut-away sections of the PVC conduit showed internal beading or ridging making it unsuitable for use as raceways for electrical wiring or fiber optic cable.
Exemplary embodiments of the present invention include (i.e., comprise) a non-metallic raceway configured to facilitate passage of a conductor, a method of forming a continuous conduit from a first hollow conduit and a second hollow conduit, and a continuous conduit for housing an electrical or optical conductor.
In one aspect of the present invention, a non-metallic raceway is configured to facilitate passage of a conductor and comprises a pair of non-metallic hollow conduits, including a first non-metallic conduit and a second non-metallic conduit. The first and second non-metallic hollow conduits each have a first belled end with a first inner diameter, a second belled end with the first inner diameter, and a cylindrical portion between the belled ends and with a second inner diameter. The pair of non-metallic hollow conduits is fused together at first belled ends to form a fused portion, and the fused portion includes an internal ridge and an external ridge. The internal ridge has a third inner diameter, and the first, second, and third inner diameters are sized such that a conductor passed through the raceway does not contact the internal ridge. The first inner diameter is greater than the second inner diameter, and the third inner diameter is greater than the second inner diameter and less than the first inner diameter.
In another aspect of the present invention, a method of forming a continuous conduit from a first hollow conduit and a second hollow conduit comprises positioning a bell-shaped end of the first hollow conduit adjacent a bell-shaped end of the second hollow conduit such that respective circumferences of the hollow conduits are substantially axially aligned and substantially permanently fusing the positioned and aligned bell-shaped ends together to form a fuse joint between the bell-shaped ends. The substantially permanently fusing forms an internal protrusion at the fuse joint, the internal protrusion protrudes substantially radially inward and has the third inner diameter, and the internal protrusion does not extend inward to an inner diameter of non-belled portions of the first hollow conduit and the second hollow conduit. The substantially permanently fused first and second hollow conduits forming the continuous conduit are configured so as to prevent a conductor passed through the continuous conduit from contacting the internal protrusion.
Another aspect of the invention includes a continuous conduit for housing an electrical or optical conductor. The conduit comprises a first elongated conduit having a cylindrical portion and enlarged ends with a diameter larger than the cylindrical portion and a second elongated conduit having a cylindrical portion and enlarged ends with a diameter larger than the cylindrical portion. One of the enlarged ends of the first elongated conduit is coupled to one of the enlarged ends of the second elongated conduit, and the coupled enlarged ends forming a joint which includes a protrusion that projects radially inward. The coupled first and second elongated conduits having the joint with the inwardly projecting projection are configured to house the electrical or optical conductor so the conductor does not contact the internal ridge.
The foregoing and other aspects of the present invention, as well as its various features and advantages, will be more readily appreciated from the following detailed description taken in conjunction with the accompanying drawings.
The accompanying drawings illustrate embodiments of the invention. The invention will be best understood by reading the ensuing specification in conjunction with the drawing figures, in which like elements are designated by like reference numerals, and wherein:
The embodiments described below represent non-limiting examples of the present invention.
Generally speaking, the present invention provides (1) a continuous conduit that is configured to facilitate traversal (e.g., pushing or pulling) of a conductor, such as an electrical wiring, an electrical cable, a fiber optic wire, a fiber optic cable, a wire TYP, other communication or data transmission means, or combination thereof through an interior volume thereof without obstructing or damaging the conductor; (2) a continuous conduit that is configured to house a conductor in the interior volume thereof; and (3) a continuous conduit that is configured to be traversed through a cavity.
The first conduit 2 and the second conduit 3 can be of any suitable configuration and of any suitable dimensions. For example, in
Enlarged ends 4, 5 can be of any suitable configuration and of any suitable dimensions. Generally, the ends are “enlarged” in the sense that they have an inner diameter at ends thereof greater than an inner diameter of the straight run or elongated portion to which they are coupled. Moreover, the enlarged ends 4, 5 preferably do not have any portion thereof having an inner diameter equal to or less than the inner diameter of the straight run portion to which they are coupled.
Enlarged end 4 and enlarged end 5 can be coupled together by any suitable means, such as fusing, welding, butt welding, gluing, etc. and can be performed by any suitable means, including, but not limited to, by automated machines, non-automated machines, manually, or combination thereof. In an embodiment of the present invention, the enlarged ends 4, 5 are fused together using the method substantially as described in the '051 patent and the '365 publication. Coupling the enlarged ends 4, 5 together can result in an outer protrusion 7 and an inner protrusion (not shown in
The outer protrusion 7 projects generally outwardly from the joint 6 by any suitable amount and can take any suitable form or shape. The outer protrusion 7 can be formed after coupling of the enlarged ends 4, 5. For example, the outer protrusion 7 can be formed to take a specific shape, to be reduced, or to be substantially removed.
Continuous conduit 1 (including first and second conduits 2, 3) can be comprised of any suitable composition or material, including any suitable formulation of composition or material. For example, in one embodiment, continuous conduit 1 is comprised of polyethylene. In another embodiment, continuous conduit 1 is comprised of polyvinylchloride (PVC). In yet another embodiment, continuous conduit 1 is comprised of metal. The continuous conduit 1 also can be a combination of compositions or materials.
Though
In
The enlarged portion or portions can be of any suitable configuration and of any suitable dimensions. For example, the enlarged portion or portions can be bell-shaped or otherwise flared, wherein an inner diameter (i.e., D2) of an end or a “bottom” of the bell is larger than an inner diameter (i.e., D1) of the non-enlarged portion immediately adjacent a “top” of the bell.
After 504 the method can proceed to any suitable operation or step.
At 508, the positioned and aligned enlarged ends can be coupled together. The enlarged ends can be coupled together in any suitable way and by any suitable means. In an embodiment of the invention, the positioned and aligned ends are substantially permanently coupled together. Moreover, the enlarged ends can be coupled together by any suitable means, such as welding, fusing, gluing, etc. For example, in an embodiment of the invention, the enlarged ends are fused together using the method substantially as described in the '051 patent and the '365 publication. The coupling together forms a joint, such as a fuse joint or fused portion. Moreover, the joint can be substantially permanent and seamless.
In coupling the enlarged ends together to form a joint, external and internal protrusions, such as beads or ridges may be formed at the joint. The protrusions can take any suitable form and can protrude by any suitable amount. In preferred embodiments, however, the internal protrusion does not protrude or extend inwardly to a position equal to an inner diameter (i.e., D1) of the non-belled or straight-run portion of the coupled-together conduits. That is to say, the enlarged portions are sized (e.g., an inner diameter (i.e., D2) is sized) to accommodate the internal protrusion. Thus, a conductor passed through the continuous conduit may be prevented from contacting the internal protrusion. After 508, the method can proceed to any suitable step or operation.
At 510, the method includes forming the external protrusion. The external protrusion can be formed into any suitable configuration or shape, by any suitable means, such as a grinder, milling apparatus, planer, cutting apparatus, etc. For example, the external protrusion can be reduced or substantially removed. Reducing or removing the external protrusion may allow for the continuous conduit to be traversed (e.g., pushed or pulled) through a cavity, such as a man-made cavity, including a hole, a trench, a ditch, etc., more efficiently. Additionally, the external protrusion can be formed to facilitate traversal through a cavity. For example, the external protrusion can be formed so as to prevent dirt from accumulating on a leading side thereof as the continuous conduit is traversed through the cavity.
After the continuous conduit has been positioned in a cavity, one or more conductors can be run through the interior of the joined conduits without obstruction and without contacting inner beads or ridges that could damage the conductors.
The invention having been described in certain embodiments, it will be apparent to those skilled in the art that many changes and alterations can be made without departing from the spirit or essential characteristics of the invention. Accordingly, Applicant intends to embrace all such alternatives, modifications, equivalents and variations that are within the spirit and scope of this invention.
This application claims priority to U.S. Provisional Patent Application Ser. No. 60/960,283 filed Sep. 24, 2007, the entire content of which is hereby incorporated by reference into the present application.
Number | Name | Date | Kind |
---|---|---|---|
1603312 | Burdette | Oct 1926 | A |
1687811 | Warner | Oct 1928 | A |
1802491 | Young et al. | Apr 1931 | A |
1971369 | Coryell | Aug 1934 | A |
1990077 | Kershaw | Feb 1935 | A |
2334105 | Leguillion et al. | Nov 1943 | A |
2360950 | Kilgour | Oct 1944 | A |
2611722 | Everett | Sep 1952 | A |
2961363 | Lowes | Nov 1960 | A |
3002871 | Tramm et al. | Oct 1961 | A |
3013925 | Larsen | Dec 1961 | A |
2642517 | Lindow | Jun 1963 | A |
3276941 | Burns | Oct 1966 | A |
3359599 | Martin et al. | Dec 1967 | A |
3508766 | Kessler et al. | Apr 1970 | A |
3552265 | Lucas | Jan 1971 | A |
3847694 | Stewing | Nov 1974 | A |
3872894 | Streit | Mar 1975 | A |
3887992 | Parmann | Jun 1975 | A |
3929541 | Spears et al. | Dec 1975 | A |
3968195 | Bishop | Jul 1976 | A |
3989778 | Osborne | Nov 1976 | A |
4057448 | Miller | Nov 1977 | A |
4075268 | Nolan | Feb 1978 | A |
4089455 | Fellers | May 1978 | A |
4113813 | Wilson | Sep 1978 | A |
4135961 | Yoshizawa et al. | Jan 1979 | A |
4258935 | Rodrigo et al. | Mar 1981 | A |
4326327 | Cox | Apr 1982 | A |
4389877 | Lacey | Jun 1983 | A |
4390384 | Turner | Jun 1983 | A |
4507119 | Spencer | Mar 1985 | A |
4516971 | Spencer | May 1985 | A |
4610670 | Spencer | Sep 1986 | A |
4619642 | Spencer | Oct 1986 | A |
4642155 | Ramsey | Feb 1987 | A |
4684789 | Eggleston | Aug 1987 | A |
4695335 | Lyall | Sep 1987 | A |
4752350 | Schuster | Jun 1988 | A |
4780163 | Haneline, Jr. et al. | Oct 1988 | A |
4786088 | Ziu | Nov 1988 | A |
4792374 | Rianda | Dec 1988 | A |
4813160 | Kuznetz | Mar 1989 | A |
4852914 | Lyall | Aug 1989 | A |
4880579 | Murata et al. | Nov 1989 | A |
4883292 | Kuroki | Nov 1989 | A |
4933036 | Shaposka et al. | Jun 1990 | A |
4954299 | Greig et al. | Sep 1990 | A |
4963421 | Dickinson et al. | Oct 1990 | A |
4981541 | Stafford | Jan 1991 | A |
4987018 | Dickinson et al. | Jan 1991 | A |
5007767 | Stafford | Apr 1991 | A |
5013376 | McElroy, II et al. | May 1991 | A |
5124109 | Drossbach | Jun 1992 | A |
5141580 | Dufour et al. | Aug 1992 | A |
5147697 | Ljyuin et al. | Sep 1992 | A |
5160559 | Scovil et al. | Nov 1992 | A |
5188697 | Lueghamer | Feb 1993 | A |
5241157 | Wermelinger et al. | Aug 1993 | A |
5279685 | Ivansons et al. | Jan 1994 | A |
5328541 | Usui et al. | Jul 1994 | A |
5368809 | Steketee, Jr. | Nov 1994 | A |
5385173 | Gargiulo | Jan 1995 | A |
5399301 | Menendez et al. | Mar 1995 | A |
5407514 | Butts et al. | Apr 1995 | A |
5464496 | Wilson et al. | Nov 1995 | A |
5469891 | Lund et al. | Nov 1995 | A |
5489403 | Hegler et al. | Feb 1996 | A |
5527406 | Brath | Jun 1996 | A |
5546992 | Chick et al. | Aug 1996 | A |
5554332 | Schnallinger | Sep 1996 | A |
5595651 | Pavel | Jan 1997 | A |
5634672 | Stack et al. | Jun 1997 | A |
5671952 | Ligh | Sep 1997 | A |
5720411 | Darby et al. | Feb 1998 | A |
5730472 | Krause et al. | Mar 1998 | A |
5743299 | Chick et al. | Apr 1998 | A |
5778938 | Chick et al. | Jul 1998 | A |
5794662 | St. Onge et al. | Aug 1998 | A |
5802689 | Sano | Sep 1998 | A |
5814181 | Richter et al. | Sep 1998 | A |
5824179 | Greig | Oct 1998 | A |
5829793 | Svetlik | Nov 1998 | A |
5868438 | Svetlik | Feb 1999 | A |
5921587 | Lueghamer | Jul 1999 | A |
5924455 | Jo et al. | Jul 1999 | A |
6068970 | Hosono et al. | May 2000 | A |
6123110 | Smith et al. | Sep 2000 | A |
6126209 | Goddard | Oct 2000 | A |
6156144 | Lueghamer | Dec 2000 | A |
6156832 | Bertelo et al. | Dec 2000 | A |
6201053 | Dieckmann et al. | Mar 2001 | B1 |
6228204 | Reinhardt et al. | May 2001 | B1 |
6228312 | Boyce | May 2001 | B1 |
6299820 | Weinstein | Oct 2001 | B1 |
6394502 | Andersson | May 2002 | B1 |
6398264 | Bryant, III | Jun 2002 | B1 |
6406063 | Pfeiffer | Jun 2002 | B1 |
6409873 | Baxter | Jun 2002 | B1 |
6550500 | Jarvenkylaet et al. | Apr 2003 | B2 |
6550514 | Andrew | Apr 2003 | B1 |
6608142 | Weng et al. | Aug 2003 | B1 |
6629547 | Yamaguchi et al. | Oct 2003 | B1 |
6755212 | Anderson et al. | Jun 2004 | B1 |
6769719 | Genoni | Aug 2004 | B2 |
6946050 | Dojan et al. | Sep 2005 | B2 |
6982051 | St. Onge et al. | Jan 2006 | B2 |
6994766 | Temple | Feb 2006 | B2 |
7269520 | Marti et al. | Sep 2007 | B2 |
20010048223 | Campbell | Dec 2001 | A1 |
20010050278 | Chenault | Dec 2001 | A1 |
20030080552 | Genoni | May 2003 | A1 |
20040074837 | Vasse et al. | Apr 2004 | A1 |
20040134592 | Johnson et al. | Jul 2004 | A1 |
20040251575 | St. Onge et al. | Dec 2004 | A1 |
20050131123 | Hawrylko et al. | Jun 2005 | A1 |
20060004399 | van Ockenburg et al. | Jan 2006 | A1 |
20060054275 | Sano et al. | Mar 2006 | A1 |
20060071365 | St. Onge et al. | Apr 2006 | A1 |
20060151042 | Stringfellow et al. | Jul 2006 | A1 |
20070068868 | Vasse et al. | Mar 2007 | A1 |
20080257604 | Becker et al. | Oct 2008 | A1 |
Number | Date | Country |
---|---|---|
36 39 932 | Jun 1988 | DE |
41 31 442 | Mar 1993 | DE |
1041334 | Oct 2000 | EP |
1390498 | Feb 1964 | FR |
2268431 | Jan 1994 | GB |
59-93328 | May 1984 | JP |
61-20725 | Jan 1986 | JP |
62-190396 | Aug 1987 | JP |
1-110128 | Apr 1989 | JP |
2-106325 | Apr 1990 | JP |
2-107429 | Apr 1990 | JP |
4-229231 | Aug 1992 | JP |
6-226062 | Aug 1994 | JP |
9-117641 | May 1997 | JP |
11-077834 | Mar 1999 | JP |
2000-33517 | Feb 2000 | JP |
2002-21474 | Jan 2002 | JP |
WO 9911361 | Mar 1999 | WO |
WO 0022334 | Apr 2000 | WO |
WO 2008128154 | Oct 2008 | WO |
Number | Date | Country | |
---|---|---|---|
20090079183 A1 | Mar 2009 | US |
Number | Date | Country | |
---|---|---|---|
60960283 | Sep 2007 | US |