CONDUIT COUPLING ASSEMBLY
20200287366 ยท 2020-09-10
Inventors
Cpc classification
H02G3/0675
ELECTRICITY
H02G3/22
ELECTRICITY
International classification
H02G3/06
ELECTRICITY
Abstract
A conduit coupling assembly facilitates connection of liquid-tight tubing with a conduit section through which associated electrical wiring and/or cables are routed. The assembly includes a transition coupling, which is joined to male and female, liquid-tight connectors. The coupling assembly is joined to the conduit and projects above an associated concrete slab or the like to position the liquid-tight connectors for efficiently joining associated liquid-tight tubing to the conduit. The conduit coupling assembly thus particularly facilitates routing of wiring from a conduit section positioned within a concrete slab or like flooring element, through the transition coupling, and the liquid-tight connectors.
Claims
1. A method of forming a coupling assembly, comprising the steps of: providing a conduit in an associated building slab so that said conduit projects from the surface of the slab; cutting a portion of said conduit which projects above the surface of the slab; cutting said conduit at an inside surface thereof to form a connection region; providing a transition coupling; inserting said transition coupling into said connection region of said conduit, and securing said transition coupling to said conduit; and providing cooperating male and female connectors, and joining one of said connectors to said transition coupling, to thereby facilitate joining the other of said connectors to said conduit in the associated slab.
2. A method of forming a coupling assembly in accordance with claim 1, including cutting said conduit at the inside surface thereof by reaming said conduit.
3. A method of forming a coupling assembly in accordance with claim 1, including cutting said conduit at the inside surface thereof at a taper.
4. A method of forming a coupling assembly in accordance with claim 1, including joining said male connector to said transition coupling.
5. A method of forming a coupling assembly in accordance with claim 4, including providing a male thread formation on an exterior surface of said transition coupling, and providing a female thread formation on an interior surface of said male connector, and engaging said male and female thread formations for joining said male connector to said transition coupling.
6. A method of forming a coupling assembly in accordance with claim 5, including providing an adhesive for adhering said male and female thread formations to each other.
7. A method of forming a coupling assembly in accordance with claim 1, wherein said transition coupling comprised polyvinyl chloride.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012]
[0013]
[0014]
DETAILED DESCRIPTION
[0015] While the present invention is susceptible of embodiment in various forms, there is shown in the drawings and will hereinafter be described a presently preferred embodiment, with the understanding that the present disclosure is intended as exemplification of the invention, and is not intended to limit the invention to the specific embodiment
[0016] This invention pertains to couplings and adapters for conduits and tubular members, and in more particularly to an arrangement including a conduit coupling assembly configured to facilitate connection of liquid-tight tubing to an associated conduit section, wherein the conduit section is disposed in an associated floor or concrete slab. Associated electrical wiring or the like can be arranged to extend from within the conduit in the concrete slab, and through the coupling assembly and the associated liquid-tight tubing.
[0017] With reference to the illustrated embodiment, the present invention is directed to a conduit coupling assembly, designated 10, and a method of installation which particularly facilitates efficient connection of liquid-tight connectors and associated tubing to conduit components, typically polyvinyl chloride (PVC), positioned in a concrete slab C or like structure. The assembly 10 can be used in wet environments, such as in the area of cooling towers in date centers. The arrangement eliminates rigid nipples, by directly connecting PVC conduit to a liquid-tight flex conduit on equipment, generators, transformer gear, switch gear, ATS switches, and the like. Connection from concrete pads to various heating, ventilation and air conditioning equipment is facilitated.
[0018] In accordance with the present invention, and as diagrammatically illustrated in
[0019] As illustrated in Step 2 of
[0020] With reference now to Step 3 as illustrated in
[0021] Next, a transition coupling 16, configured in accordance with the present invention, is provided, with the transition coupling 16 inserted into the conduit 12 in the tapered, connection region 14 of the conduit. The transition coupling 16 is preferably formed for PVC for economical and durable service. The exterior of the transition coupling is provided with a tapered surface which is complementary to the tapered, connection region 14 of the conduit 12. Industrial grade adhesive is provided to securely and permanently adhere the transition coupling to the conduit. Step 4 illustrated in
[0022] As shown, the present method includes providing cooperating, liquid-tight male and female connectors, 20, 22. These types of connectors are ordinarily used in applications where resistance to the ingress of water, moisture, or other liquid or fluids is mandated. As noted, such applications can include cooling towers, transformers, switch gear, and like environments and applications where waterproof connections are required. A ferrell 23 is positioned and held in captive relationship between the connectors 20, 22. This ferrell is joined to associated liquid-tight tubing attendant to assembly of the components.
[0023] The present coupling assembly is completed by joining one of liquid-tight connectors 20, 22, to the transition coupling 16, to thereby facilitate joining the other of liquid-tight connectors to the conduit in the associated slab. In the illustrated embodiment, the male liquid-tight connector 20 is joined to the transition coupling 15. To this end, the transition coupling 16 is preferably provided with a male thread formation 17 on an exterior surface thereof (
[0024] As will be appreciated from the above description, the exact order in which components of the present assembly are joined to each other and assembled can be varied in accordance with the requirements of any specific application.
[0025] From the foregoing, it will be observed that numerous modifications and variations of the present invention can be effected without departing from the true spirit and scope of the novel concept of the present invention. It is to be understood that no limitation with respect to the specific embodiment illustrated herein is intended or should be inferred. The disclosure is intended to cover by the appended claims all such modifications as fall within the scope of the claims.