The present disclosure is related to electrical wiring. More particularly, the present disclosure is related to strain relief connector assemblies for electrical wiring.
The use of utilities in commercial, industrial, and residential settings are ubiquitous. The utilities can include, but are not limited to, electrical power, pressurized fluids, communications signal, and others, where these utilities can be supplied via conduits—rigid, flexible, and combinations thereof. In instances of the supply of electrical power, the use of flexible electrical wiring can present various connection challenges.
One such connection challenge is the ability to provide a sealed connection with the flexible electrical wiring. Another connection challenge is the need to provide a strain relief function to the flexible electrical wiring at the sealed connection.
Advantageously, the present disclosure provides strain relief connector assemblies for flexible electrical wiring that have expanded connect ability to overcome, alleviate, and/or mitigate one or more deleterious effects of prior art assemblies.
A strain relief connector assembly for flexible electrical wiring is provided that includes an adapter that is configured to form a sealed connection to the wiring and a connector and to form a strain relieving connection with the wiring. The strain relief connector assembly can, in some embodiments, further include an arc of bend control function. The flexible electrical wiring can include flexible electric cords or flexible conduits. In embodiments where the electrical wiring is flexible conduit, the flexible conduit can metallic or non-metallic.
In some embodiments, the connector can be selected from the group consisting of a male or female straight blade connector, a male or female twist lock connector, a pin and sleeve connector, and any combinations thereof.
A strain relief connector assembly for flexible electrical wiring is also provided that includes a connector; a strain relieving device having a first connecting feature; and an adapter having a first side and a second side. The second side has a second connecting feature. The adapter is connected to the connector so as to compress a bushing between the connector and the first side of the adapter. The first connecting feature of the functional device and the second connecting feature of the adapted are connected to one another. In some embodiments, the strain relief connector assembly can further include an arc of bend control device. The flexible electrical wiring can include flexible electric cords or flexible conduits. In embodiments where the electrical wiring is flexible conduit, the flexible conduit can metallic or non-metallic.
A strain relief electrical connector assembly for flexible electrical wiring is also provided. The assembly includes a connector selected from the group consisting of a male or female straight blade connector, a male or female twist lock connector, a pin and sleeve connector, and any combinations thereof; a strain relieving device, a tightening nut, and a first threaded member; and an adapter having a first side and a second side. The second side having a second threaded member. The adapter being connected to the connector so as to compress a bushing between the connector and the first side of the adapter. In some embodiments, the strain relief connector assembly can further include a strain relieving mesh. Here, the first and second threaded members are connected to one another to that the strain relieving mesh extends in a direction opposite the connector. The flexible electrical wiring can include flexible electric cords or flexible conduits. In embodiments where the electrical wiring is flexible conduit, the flexible conduit can metallic or non-metallic.
The above-described and other features and advantages of the present disclosure will be appreciated and understood by those skilled in the art from the following detailed description, drawings, and appended claims.
Referring to the drawings and with simultaneous reference to
Advantageously, assembly 10 includes an adapter 18 that is configured to separate the sealing function necessary between wiring 12 and connector 14 from the strain relieving function provided by device 16 with a simple structure.
For reasons of clarity, wiring 12 is illustrated as flexible electric cord, connector 14 is illustrated as a female power receptacle, and strain relieving device 16 is illustrated as including further a mesh 20, which provides arc of bend control for the cord.
However, it is contemplated by the present disclosure for wiring 12 to be any flexible electrical wiring such as, but not limited, to cords, sheaths, cables, pipes, wires, tubes, flexible conduits (metallic or non-metallic), and others.
Similarly, it is contemplated by the present disclosure for connector 14 to be any utility connector such as, but not limited to, male or female straight blade connectors, male or female twist lock connectors, pin and sleeve connectors, and others.
As shown in
Wiring 12 passes through adapter 18 and sealing bushing 22 and into connector 14, where the wiring can be operatively connected to the connector to supply electricity to the connector. Members 24 secure adapter 18 to connector 14, which compresses sealing bushing 22 between the adapter and connector in a manner sufficient to provide a desired seal against wiring 12. The seal of assembly 10 prevents or at least mitigates the egress of undesired contaminants into connector 14.
Assembly 10 can be configured to differing levels of protection depending the desired use. For example, it is contemplated by the present disclosure for certain implementations of assembly 10 to be configured to provide a level of protection such as those set forth by the National Electrical Manufacturers Association (NEMA) including, but not limited to protection against ingress of one or more of solid foreign objects (e.g., falling dirt), of dripping water, light splashing water, driven water, driven solid foreign objects (e.g., windblown dust), hose directed water, submerged water, and others.
As shown in
In the illustrated embodiment, first connecting feature 26 is illustrated as a male thread, while second connecting feature 28 is illustrated as a female thread. Here, strain relieving device 16 can include a first nut 30 that is unitary with first connecting feature 26, so as to facilitate tightening and loosening of the first connecting feature into adapter 18.
Of course, it is contemplated by the present disclosure for assembly 10 to have any desired configuration of first and second connecting features 26, 28 such as, but not limited to, bayonet-and-slot features, interference or press fit features, and others.
Device 16 is configured to prevent pullout of wiring 12 from connector 14. Specifically, device 16 is configured to relieve strain in the assembly to prevent pullout of wiring 12 from connector 14. Thus, strain relieving device 16 further includes a compression nut 32, a collar 34, and a strain bushing 36. Additionally, device 16 further includes a third connecting feature 38 that is, preferably, unitary with first connecting feature 26 and first nut 30 and is illustrated as a male thread. In this manner, collar 34 is threadably engaged on third connecting feature 38 so as to compress bushing 36 onto wiring 12 so as to provide a strain relieving function to assembly 10.
In some embodiments, assembly 10 is configured to meet and/or exceed the industrial standard for attachment plugs and receptacles that cover attachment plugs, receptacles, cord connectors, inlets, current taps provided with wiring terminals for flexible cord, and flatiron and appliance plugs—all intended for connection to a branch circuit for use in accordance with the National Electrical Code, ANSI/NFPA 70, which is published by the Underwriters Laboratory as UL 498.
In embodiments of assembly 10 where arc of curvature control for wiring 12 is desired, strain relieving device 16 includes mesh 20 depending from collar 34.
Adapter 18 is described in more detail with simultaneous reference to
First side 40 is configured to abut and compress bushing 22. Second side 42 includes second connection feature 28, which corresponds to and is connected to first connection feature 26 of strain relieving device 16. In this manner, adapter 18 is configured to form a sealed connection to wiring 12 and connector 14, as well as form a connection with strain relieving device 16.
Adapter 18 includes openings 44 extending between first and second sides 40, 42. Tightening members 24 extend through openings 44 from second side 42 to first side 40 to connect the adapter to connector 14. In some embodiments, second side 42 includes a recess 46 defined around each opening 44, where the recess is sized to receive a tool (not shown) used to tighten or loosen members 24.
Adapter 18 can, depending on type of wiring 12 and/or type of connector 14 and/or type of strain relieving device 16 and/or the type of seal required take many different forms or shapes. One alternate exemplary embodiment of adapter 18 is shown in
Referring now to
Assembly 110 is configured to allow connection between flexible electrical wiring 112 and connector 114, while also allowing connection between the wiring and strain relieving device 116. Here, wiring 112 is illustrated as flexible conduit having electrical conductors disposed therein (not shown), connector 114 is illustrated as a female power receptacle, and strain relieving device 116 is illustrated as further including mesh 120, which provides arc of bend control for the wiring. In this embodiment where wiring 112 is illustrated as flexible conduit, it is contemplated by the present disclosure for the conduit to metallic or non-metallic.
Assembly 110 includes adapter 118 that is configured to separate the sealing function necessary between wiring 112 and connector 114 from the strain relieving function provided by device 116 with a simple structure.
Assembly 110 includes compressible sealing bushing 122 and one or more tightening members 124 (two shown). Members 124 secure adapter 118 to connector 114, which compresses bushing 122 between the adapter and connector in a manner sufficient to provide a desired seal.
Strain relieving device 116 includes a first connecting feature 126 and adapter 118 includes a second connecting feature 128, which mates with the first feature.
In the illustrated embodiment, first connecting feature 126 is illustrated as a male thread, while second connecting feature 128 is illustrated as a female thread. Here, strain relieving device 116 can include a first nut 130 that is unitary with first connecting feature 126, so as to facilitate tightening and loosening of the first connecting feature into adapter 118.
Of course, it is contemplated by the present disclosure for assembly 110 to have any desired configuration of first and second connecting features 126, 128 such as, but not limited to, bayonet-and-slot features, interference or press fit features, and others.
Device 116 is configured to prevent pullout of wiring 112 from connector 114. Specifically, device 116 is configured to relieve strain in the assembly to prevent pullout of wiring 112 from connector 114. Thus, strain relieving device 116 further includes a compression collar 132, a ferrule 136, and a gland-ring 150. Additionally, device 116 further includes a third connecting feature 138 that is, preferably, unitary with first connecting feature 126 and first nut 130 and is illustrated as a male thread. In this manner, collar 132 is threadably engaged on third connecting feature 138 so as to cause ring 150 to compress wiring 112 onto ferrule 136. In some embodiments, ferrule 136 and wiring 112 can further include corresponding threads (not shown in the conduit) to further provide leak proof connection between the wiring and the ferrule.
In embodiments of assembly 110 where arc of curvature control for wiring 112 is desired, strain relieving device 116 includes mesh 120 depending from compression collar 132.
It should also be noted that the terms “first”, “second”, “third”, “upper”, “lower”, and the like may be used herein to modify various elements. These modifiers do not imply a spatial, sequential, or hierarchical order to the modified elements unless specifically stated.
While the present disclosure has been described with reference to one or more exemplary embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the present disclosure. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the disclosure without departing from the scope thereof. Therefore, it is intended that the present disclosure not be limited to the particular embodiment(s) disclosed as the best mode contemplated, but that the disclosure will include all embodiments falling within the scope of the appended claims.
This application claims the benefit to U.S. Provisional Application No. 62/304,996 filed on Mar. 8, 2016, the entire contents of which are incorporated herein by reference.
Number | Date | Country | |
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62304996 | Mar 2016 | US |