The present invention is generally related to a welding wire feeder. More specifically, the present invention relates to a welding wire feeder having a changeable housing.
Welding wire feeder systems are commonly integrated with or used in conjunction with an arc welder to feed a wire electrode to a workpiece. Typically, the wire feeder is used in conjunction with a GMAW or FCAW arc welding process. The normal welding environment is a severe test for welding equipment, especially portable wire feeders. Wire feeders are often dropped, bombarded with sparks from grinding, placed on hot welds and used as step stools and props. Over time, this harsh treatment degrades both the appearance and integrity of a wire feeder's exterior housing or case. It would be highly desirable to replace the case of a wire feeder once it degrades, particularly if the wire feeder is owned by a rental agency.
To date, it has generally been difficult to replace a degraded wire feeder case without disassembling the feeder's functional or electrical components.
The described invention allows for a wire feeder capable of accepting more than one housing (also known as a case or a skin). The wire feeder is designed in a manner such that the entire internal wire feeder assembly may be easily removed from one housing and placed into another. The housings may be made of plastic, carbon fiber, sheet metal or a combination thereof, as well as other known materials.
As stated above, the present invention relates to a wire feeder comprising a wire feeding module, a housing configured to enclose the wire feeding module, and one or more attachment means for attaching the housing to the wire feeding module, wherein the wire feeding module is configured to feed wire independent of the housing, and wherein the housing can be removed from the wire feeder without breaking any electrical connections.
Various embodiments of the present invention will be discussed below.
The advantages, nature and various additional features of the invention will appear more fully upon consideration of the illustrative embodiments of the invention, which are schematically set forth in the figures, in which:
The welding wire feeder of the present invention allows a user to easily switch between housings on a welding wire feeder. The welding wire feeder has a wire feeding module that operates independently of a welding wire feeder housing. This allows for easy removal of the welding wire feeding module from the housing without breaking any electrical connections and without disassembling functional components of the welding wire feeding module. Accordingly, welding wire feeders made in accordance with the invention disclosed herein allow for the housings of welding wire feeders to be quickly and easily removed and replaced.
Various embodiments of the present invention will be discussed below with reference to
In the exemplary embodiment illustrated in
In this embodiment, wire feeding module 120 is a fully functional wire feeder that can be operated without housing 110 being attached thereto. No electrical connections are required to be broken when housing 110 is removed from wire feeding module 120. While it may still be necessary to disconnect a control cable and/or electrode cable when removing the housing, no internal electrical connections inside wire feeding module 120 are required to be broken. Wire feeder 100 is thus able to continue to function even in the absence of wire feeder housing 110. Because housing 110 serves as a protective housing, and not a functional, integral component of wire feeding module 120, housing 110 can be easily removed and replaced without affecting the operation of wire feeding module 120.
When assembled as shown in
One or more attachment members 130 attach housing 110 to wire feeding module 120. Attachment members 130 be any type of attachment mechanism that allows secure attachment, e.g., screws, bolts, and pins such as clevis, cotter, or detent ring pins. Other types of attachment mechanisms may, of course, be used.
As shown in
Wire feeing module 120 may also include an assembly guide 160a, and housing 110 may also include an assembly guide 160b. Here, assembly guide 160b is a raised notch on the interior surface of housing 110 that aligns with an assembly guide 160a, shown in
Of course, it is contemplated wire feeder 100 can be configured in any way such that the spirit of the invention is maintained, and the invention is not limited to the exemplary embodiment discussed above.
The present invention has been described with certain embodiments and applications. These can be combined and interchanged without departing from the scope of the invention as defined in the appended claims. Namely, the present invention can be used in any application in which an easily removable housing is desirable, such as a welding or cutting power source. The invention as defined in these appended claims is incorporated by reference herein as if part of the description of the novel features of the present invention.
Number | Name | Date | Kind |
---|---|---|---|
2833912 | Royer | May 1958 | A |
3309497 | Kensrue | Mar 1967 | A |
3632950 | Berghof | Jan 1972 | A |
4665300 | Bellefleur | May 1987 | A |
4720044 | Stemwedel, Jr. | Jan 1988 | A |
5406050 | Macomber et al. | Apr 1995 | A |
5831240 | Katooka et al. | Nov 1998 | A |
5916464 | Geiger | Jun 1999 | A |
6057526 | Lee | May 2000 | A |
6225596 | Chandler et al. | May 2001 | B1 |
6390389 | Tudor et al. | May 2002 | B1 |
6479795 | Albrecht et al. | Nov 2002 | B1 |
20060018094 | Robbins et al. | Jan 2006 | A1 |
20060081577 | Andersen et al. | Apr 2006 | A1 |
20070075119 | Wong | Apr 2007 | A1 |
20080083548 | Nakayama et al. | Apr 2008 | A1 |
Number | Date | Country |
---|---|---|
1022085 | Jul 2000 | EP |
901809 | Jul 1962 | GB |
5017069 | Jan 1993 | JP |
Number | Date | Country | |
---|---|---|---|
20090166345 A1 | Jul 2009 | US |