The present invention relates to electrical switches, and more particularly to a system and method for ganging two or more electrical switches to one another.
Electrical switches can be employed in circuit break panels, relays, meters and other associated equipment. For example, electrical switches can be used to selectively isolate electrical equipment for maintenance and testing of the electrical components. Examples of electrical switches are provided in Descriptive Bulletin 41-077 effective April 2010 by ABB, Inc., entitled FT Flexitest™ Switches, which is incorporated herein by reference. Other types of electrical switches are also contemplated.
A plurality of electrical switches can be provided in side-by-side relation. The electrical switches typically each include a handle that allow the respective switch to be easily manipulated. For certain applications, it is desirable to gang multiple electrical switches by connecting their respective handles to one another with a tie-bar so the connected switches can be manipulated simultaneously. However, known tie-bars suffer from various drawbacks, such as being difficult and time consuming to install and causing the ganged switches to be difficult to manipulate due to the tendency of the tie-bar to bind the switch components and hinder movement of the switches. Therefore, further improvements in ganging two or more switches are needed.
In accordance with the present disclosure, a fastener is provided for ganging or joining two or more switch handles to one another. The fastener includes a head at one end and an elongated shank extending from the head. The shank includes a threaded portion adjacent the head that threadingly engages one of the switch handles. The shank extends longitudinally from the threaded portion through the threadingly engaged switch handle and through one or more additional switch handles to gang the switch handles to one another.
In one embodiment, the shank is smooth and is not fixed or axially secured to any of the switch handles except to the first switch handle at the threaded portion. In further embodiments, the length of the shank can be sized to extend through any number of switch handles, ranging from two to fourteen or more switch handles. In still other embodiments, the threaded portion is self-tapping and forms thread in the switch handle as it is threaded into the switch handle. Other embodiments contemplate other features, as described further below.
This summary is provided to introduce a selection of concepts that are further described below in the illustrative embodiments. This summary is not intended to identify key or essential features of the claimed subject matter, nor is it intended to be used as an aid in limiting the scope of the claimed subject matter. Further embodiments, forms, objects, features, advantages, aspects, and benefits shall become apparent from the following description and drawings.
The features, aspects, and advantages of the present invention will become better understood with regard to the following description, appended claims, and accompanying drawings where:
It should be noted that in the detailed description that follows, identical components have the same reference numerals, regardless of whether they are shown in different embodiments of the present invention. It should also be noted that in order to clearly and concisely disclose the present invention, the drawings may not necessarily be to scale and certain features of the invention may be shown in somewhat schematic form.
Referring to
Two or more of switches 12, 14, 16 can be ganged or joined with one another so that manipulation of one of the switch handles 18, 20, 22 is effective to open or close all of the ganged switches 12, 14, 16. A fastener 50 is provided that is positioned through aligned holes 38, 40, 42 formed through each of the switch handles 18, 20, 22. Fastener 50 gangs the switch handles 18, 20, 22 with one another so that the ganged switch handles move in unison.
Referring to
Head 50 includes an end face 62 and is configured to engage a driving tool. In the illustrated embodiment, end face 62 includes an internal tool receiving recess 64 formed therein. Tool receiving recess 64 is a Phillips type recess in the illustrated embodiment, but other configurations are also contemplated, including slotted recesses, star shaped recesses, Torx® type recesses, and hex shaped recesses, to name a few. It is also contemplated that head 52 could include a perimeter around end face 62 configured to engage an externally positioned driving tool such as a wrench.
Referring back to
When head 52 is in abutting engagement with sidewall 44 of switch handle 18, second end 58 can be recessed within hole 42 of the last connected switch handle 22 so as to not protrude outwardly from lateral side wall 46 of switch handle 22. This arrangement prevents shank 54 from interfering with an adjacent switch handle should one be located next to switch handle 22. In other embodiments, end 58 of shank 52 can protrude from lateral wall 46.
Threaded portion 60 provided an axially fixed engagement of fastener 50 with first switch handle 18 within hole 38. The axially fixed engagement prevents fastener 50 from axially displacing relative to switch handle 18. In addition, the threaded engagement provides resistance to rotation of fastener 50 relative to switch handle 18. Shank 54 includes a circular cross-section extending from threaded portion 60 to second end 58 and has a smooth outer surface 66 along this part of shank 54. Therefore, shank 54 is not axially or rotationally fixed to any other of the switch handles 20, 22. As a result, fastener 50 does not provide any force along longitudinal axis 56 that urges the switch handles 18, 20, 22 toward or away from one another. This allows fastener 50 to gang switch handles 20, 22 to first switch handle 18 without binding or hindering movement of the switch handles 18, 20, 22 simultaneously with one another.
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Various aspects of the present disclosure are contemplated. In one aspect, a switch system is provided. The switch system includes a base configured to house switch components and a plurality of electrical switches connected to the switch components. The electrical switches include a plurality of blades connected to the switch components and a plurality of switch handles connected to respective ones of the plurality of blades. The plurality of switch handles are positioned in side-by-side relation with one another and a fastener extending through at least two switch handles of the plurality of switch handles. The fastener includes a head at a first end of the fastener and a shank extending longitudinally from the head to a second end of the fastener opposite the first end. The shank includes a threaded portion adjacent the head that is threadingly engaged to a first switch handle of the at least two switch handles, and the elongated shank extends from the threaded portion through the at least two switch handles to the second end of the fastener to gang the at least two switch handles to one another.
According to one embodiment, the second end of the shank of the fastener is located within a last one of the at least two switch handles ganged to the first switch handle. In another embodiment, the head of the fastener is enlarged relative to the shank and includes a driving tool recess, and the shank includes a circular cross-section and a smooth outer surface extending from the threaded portion to the second end.
In another embodiment, the plurality of switch handles includes two switch handles. In yet another embodiment, the plurality of switch handles includes three or more switch handles. In still another embodiment, the fastener includes at least two fasteners, where a first one of the at least two fasteners gangs together the at least two switch handles and a second one of the at least two fasteners gangs together at least two other switch handles of the plurality of switch handles.
In another embodiment, threaded portion is configured to self-tap into a material of the first switch handle as the fastener is driven into the first switch handle. In a refinement of this embodiment, each of the at least two switch handles includes a hole extending therethrough and the holes are aligned to receive the fastener. In another refinement of this embodiment, the switch handle is comprised of plastic and the fastener is comprised of metal.
According to another aspect, a method for ganging electrical switches includes: selecting at least two switches to be ganged with one another from a plurality switches; aligning holes in adjacent switch handles of the selected switches; inserting an elongated shank of a fastener into the aligned holes of the switch handles of the selected two switches; and threadingly engaging the fastener within the hole of the switch handle of a first one of the selected switches so the elongated shank of the fastener extends through the aligned holes of the switch handles of the selected switches.
In one embodiment of the method, the fastener includes a first end having an enlarged head, the shank extends from the enlarged head to an opposite second end of the fastener, and a threaded portion is provided on the shank adjacent the head. In a refinement of this embodiment, the shank defines a circular cross-section and a smooth outer surface from the threaded portion to the second end of the fastener. In another refinement of this embodiment, the second end of the fastener is recessed within the switch handle of a last one of the selected switches that is opposite the first one of the selected switches threadingly engaged by the fastener. In yet another refinement of this embodiment, the shank of the fastener extends along a longitudinal axis and the fastener is axially fixed to the switch handle of the first one of the selected switches and the fastener is not axially fixed to the switch handles of any other of the at least two switches. In still another refinement of this embodiment of the method, threadingly engaging the fastener includes the threaded portion of the fastener forming self-tapping threads into a material of the switch handle of the first one of the selected switches.
In one embodiment, the at least two switches includes three or more switches. In another embodiment, the switch handles are comprised of plastic and the fastener is comprised of metal.
According to another aspect, an apparatus includes at least two electrical switches including a first switch handle and a second switch handle. Each of the at least two switch handles defines a hole therethrough. A fastener extends through the holes of the first and second switch handles. A first end of the fastener is axially fixed to the first switch handle and a second end of the fastener opposite the first end is recessed within the second switch handle.
In one embodiment, the fastener includes a head at the first end of the fastener and a threaded portion adjacent the head that is threadingly engaged within the hole of the first switch handle, and the fastener further includes a smooth shank extending from the threaded portion to the second end of the fastener. In a refinement of this embodiment, the threaded portion is self-tapping to form threads within the switch handle as the fastener is threadingly engaged in the hole of the first switch handle.
It is to be understood that the description of the foregoing exemplary embodiment(s) is (are) intended to be only illustrative, rather than exhaustive, of the present invention. Those of ordinary skill will be able to make certain additions, deletions, and/or modifications to the embodiment(s) of the disclosed subject matter without departing from the spirit of the invention or its scope.
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Entry |
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ABB Inc., FT FlexitestTM Switches, Descriptive Bulletin 41-077M, Apr. 2010, 32 pgs. |
Number | Date | Country | |
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20170309416 A1 | Oct 2017 | US |