The present application relates to tools for removing fasteners and, in particular, to sockets for removing fasteners.
A variety of wrenches and tools are commonly used to apply torque to a workpiece, such as a threaded fastener, to remove the workpiece from engagement with a corresponding structure or device. The workpiece may have any number of different sizes and shapes. Accordingly, many tools include a driver which mates with one or more of different adapters, such as sockets, to engage and rotate the different-sized workpieces. However, a workpiece can become stripped or damaged by the tool, making it difficult to remove the workpiece.
One tool that can be used to remove a stripped or damaged fastener is disclosed in U.S. Pat. No. 5,737,981 to Hildebrand (the “'981 patent”). The '981 patent discloses a removal device that attaches to a ratchet wrench to remove a fastener in a counter-clockwise direction. The removal device of the '981 patent includes tapered, internal threading that engages the fastener to rotate the fastener to remove it. However, the removal device of the '981 patent tends to over travel on the fastener and contact a surface of the structure in which the fastener is installed. The fastener also tends to become lodged or stuck in the removal device of the '981 patent upon removal of the fastener from the structure.
The present application relates to removal sockets, for example, sockets that may be used to remove stripped workpieces, such as fasteners. The socket may also be used to remove cylindrical fasteners, such as fasteners used in the aerospace industry. The socket is adapted to couple to a conventional ratchet wrench lug and may be used to remove fasteners that are stripped or otherwise difficult to remove with conventional sockets (such as, a conventional hexagonal socket). The socket includes internal angled, arcuate cutting channels that gradually narrow as they extend circumferentially around the socket and toward an end of the socket. The cutting channels grip a head of the fastener and may be used to apply torque to the fastener when the socket is rotated in a counter-clockwise direction.
In an embodiment, the tool is a socket including a body having first and second ends, a first axial bore in the first end adapted to receive a stripped or cylindrical fastener head, and one or more cutting channels in the body between the first and second ends forming internal cutting edges adapted to engage a stripped or cylindrical fastener head. The first axial bore may have a first diameter at the first end and taper to a second diameter smaller than the first diameter in the body.
Each cutting channel may have an elongated, diamond-like shape and extend at least a portion of the way around the body and toward the second end. Each cutting channel may include a first end portion proximal to the first end of the body having a first width, a second end portion, and a third portion between the first and second end portions. A width of the cutting channel may increase from the first width to a second width at the third portion, and decrease from the third portion to a third width at the second end portion as the cutting channel extends around the body and toward the second end of the body.
In another embodiment, a cutting channel of the socket may be formed by milling the cutting channel in the body between the first and second ends of the body; thereby forming internal cutting edges adapted to engage the stripped or cylindrical fastener head.
Embodiments of devices and methods are illustrated in the figures of the accompanying drawings which are meant to be exemplary and not limiting, in which like references are intended to refer to like or corresponding parts, and in which:
Detailed embodiments of devices and methods are disclosed herein. However, it is to be understood that the disclosed embodiments are merely exemplary of the devices and methods, which may be embodied in various forms. Therefore, specific functional details disclosed herein are not to be interpreted as limiting, but merely as a basis for the claims and as a representative example for teaching one skilled in the art to variously employ the present disclosure.
The present application relates to tools adapted to engage and remove stripped or otherwise difficult to remove workpieces, such as fasteners. The tools include internal angled, arcuate cutting channels that gradually narrow as they extend circumferentially around the inner wall of the socket and toward an end of the socket. The cutting channels are adapted to grip a head of the fastener and may be used to apply torque to the fastener when the socket is rotated in a counter-clockwise direction.
Referring to
Referring to
The cutting channels 114 may form a generally elongated, tapered diamond-like shape. For example, the cutting channels 114 may have a first end portion 118 a second end portion 120, and a third portion 122 between the first end portion 118 and the second end portion 120. The cutting channels 114 may increase in width from the first end portion 118 to the third portion 122, and decrease in width from the third portion to the second end portion 120. As illustrated in
Referring to
Referring to
Additionally, referring to
In this embodiment, the second end portion 120 of the cutting channel 114 may have a diameter D3 of about 0.1 inches, and a central portion of the second end portion 120 that is spaced a length L1 of about 0.09 inches from the second end 106.
The third portion 122 of the cutting channel 114 may be formed my milling two areas (i.e., the two dashed circular lines). A central portion of the area proximal to the first end 104 may be spaced a length L2 of about 0.152 inches from the first end 104 and a length L3 of about 0.066 inches from a centerline of the socket 100. A central portion of the area distal to the first end 104 may be spaced a length L4 of about 0.038 inches from the centerline of the socket 100, and a length L5 of about 0.21 inches from the first end 104.
Similarly, the first end portion 118 may be formed my milling one area (i.e., the dashed circular lines), in which a central portion may be spaced the length L5 of about 0.21 inches from the first end 104 and a length L6 of about 0.099 inches from the centerline of the socket 100. A remainder of the area of the cutting aperture 114 may be removed by performing additional milling and/or machining operations.
The socket described above is described generally with respect to a specific socket; however, the sizes and dimensions, and number of cutting channels, of the various elements of the socket may be scaled up or down, modified, and/or adapted for a particular use with one or more different tools or fastener types. For example, the socket may be adapted to receive different fastener sizes known in the art. Similarly, the size of the first axial bore may be adapted to receive different sizes and types of drive shafts or drive lugs of socket and/or ratchet wrenches.
The tapered geometry of the cutting channels 114 described herein engage fasteners with less stress and fastener deformation than prior art removal type sockets. Additionally, the internal cutting edges 116 (for example, illustrated in
It should be appreciated that the geometry of the cutting channels of the sockets described herein may be applied to other types of tools for applying torque to fasteners. For example, a wrench or box wrench may include the geometries disclosed herein to allow the wrench or box wrench to remove stripped or otherwise difficult to remove fasteners. Similarly, other tools and/or fasteners may include the geometries disclosed herein. Moreover, while the present invention has been described as removing fasteners in a counter-clockwise direction, it is to be understood that the present invention can be configured to be used in clockwise direction as well.
Although the devices and methods have been described and illustrated in connection with certain embodiments, many variations and modifications should be evident to those skilled in the art and may be made without departing from the spirit and scope of the present disclosure. The present disclosure is thus not to be limited to the precise details of methodology or construction set forth above as such variations and modification are intended to be included within the scope of the present disclosure. Moreover, unless specifically stated any use of the terms first, second, etc. do not denote any order or importance, but rather the terms first, second, etc. are merely used to distinguish one element from another.
Number | Name | Date | Kind |
---|---|---|---|
151635 | Uhlinger | Jun 1874 | A |
410780 | Cahn | Sep 1889 | A |
906040 | Lucas | Dec 1908 | A |
1032492 | Mueller | Jul 1912 | A |
1155662 | Kleinsteuber | Oct 1915 | A |
1321776 | Stepanian | Nov 1919 | A |
1324042 | Gay | Dec 1919 | A |
1384417 | Weichhart | Jul 1921 | A |
1424392 | Baker | Aug 1922 | A |
1425359 | Barry | Aug 1922 | A |
1590200 | McGuckin | Jun 1926 | A |
1732549 | Armstrong | Oct 1929 | A |
1785847 | Valentine | Dec 1930 | A |
2239548 | Butler | Apr 1941 | A |
2574352 | Senter | Nov 1951 | A |
2601798 | Spence | Jul 1952 | A |
3161090 | McLellan | Dec 1964 | A |
3457812 | Wagner, Jr. | Jul 1969 | A |
3996819 | King | Dec 1976 | A |
4270418 | Shephard | Jun 1981 | A |
4426896 | Kesselman | Jan 1984 | A |
4482131 | Hamilton | Nov 1984 | A |
5551320 | Horobec et al. | Sep 1996 | A |
5690004 | Weber et al. | Nov 1997 | A |
5737981 | Hildebrand | Apr 1998 | A |
5743158 | Perkins | Apr 1998 | A |
6339976 | Jordan | Jan 2002 | B1 |
6546778 | Jordan | Apr 2003 | B2 |
6598498 | Pigford et al. | Jul 2003 | B1 |
6729208 | Chrzanowski | May 2004 | B1 |
6877401 | Giltner | Apr 2005 | B1 |
6877402 | Pigford et al. | Apr 2005 | B1 |
7140087 | Giltner | Nov 2006 | B1 |
7152508 | McCalley et al. | Dec 2006 | B2 |
7325468 | Chen | Feb 2008 | B1 |
7594455 | Swanson et al. | Sep 2009 | B2 |
D649848 | Wegerich | Dec 2011 | S |
8607670 | Stawarski | Dec 2013 | B2 |
8978523 | Stanfield | Mar 2015 | B2 |
9314906 | Nelson | Apr 2016 | B2 |
20030056622 | Jordan | Mar 2003 | A1 |
20050150331 | Horobec | Jul 2005 | A1 |
20050183548 | Horobec | Aug 2005 | A1 |
20090100971 | Swanson | Apr 2009 | A1 |
20120210826 | Stawarski | Aug 2012 | A1 |
20130233133 | Nelson | Sep 2013 | A1 |
20140026719 | Stanfield | Jan 2014 | A1 |
Number | Date | Country |
---|---|---|
202004013291 | Nov 2004 | DE |
2399534 | Jun 2010 | EP |
2526937 | Dec 2015 | GB |
2011116474 | Sep 2011 | WO |
Entry |
---|
Chinese Office Action dated Aug. 30, 2016; 11 pages. |
United Kingdom Intellectual Property Combined Search and Examination Report under Sections 17 and 18(3), dated Oct. 1, 2015; 6 pages. |
State Intellectual Property Office of P.R. China, Second Office Action, dated Apr. 13, 2017; 6 pages. |
Canadian Office Action for Application No. 2,889,831 dated May 4, 2017, 3 pages. |
Number | Date | Country | |
---|---|---|---|
20150336251 A1 | Nov 2015 | US |