The present invention relates to a utility wrench, especially to a continuously variable and multi-functional wrench.
Traditionally, wrenches were fixed in size, however more recently, adjustable wrenches have been designed. Adjustable bore diameter wrenches can be easier to use.
An infinitely variable speed and multi-functional wrench has a wrench body. The sockets are arranged at two ends of the wrench body. An adjustment screw bolt is arranged on the wrench body. An adjustable wrench support matches with sockets and are separately arranged on two ends of the adjustment screw bolts. An adjustment threaded sleeve is arranged between the adjustment wrench support and the adjustment screw bolt. An adjustable button fixed with the adjustment screw bolt is arranged on the adjustment screw bolt. The spacing between the sockets and the adjustable wrench support can be adjustment with the adjustable button. The diameters of the wrench holes at two ends of the wrench body varies with each other.
Preferably, an adjustment placement frame is arranged in the wrench body. The adjustment screw bolt is arranged in the adjustment placement frame. An adjustment placement slot is placed and adjusted with the adjustable button arranged on the adjustment placement frame. The adjustment placement slot is arranged in an adjustment cover. The adjustment cover is fixed with the wrench body. A screw placement slot is separately arranged on the two ends of the wrench body and the screw placement slot can be placed and adjusted with the adjustment screw sleeve through a placement rod. Preferably, a mating slot matches with the wrench hole and is arranged on the outer wall of the adjustment wrench support. The cross section of the mating slot is preferably triangular. Preferably, the wrench body is made of plastic or metal. The pore diameter of the sockets on the left and right side may vary dependant on actual conditions and also can be different dimensions.
The adjustable wrench optionally has the adjustable button retained to the wrench body by the adjustment cover. The adjustable button has a protrusion on an underside of the adjustable button that protrudes into and engages a helical groove formed on the adjustment screw bolt. A thread angle of the helical groove is preferably less than a thread angle of the adjustment threaded sleeve. A pitch of the helical groove is preferably less than a pitch of the adjustment threaded sleeve. A lead of the helical groove is preferably more than a lead of the adjustment threaded sleeve.
The following call out list of elements can be a useful guide in referencing the elements of the drawings.
As indicated in
An adjustment placement frame 8 is arranged in the wrench body 1. The adjustment screw bolt 3 is arranged in the adjustment placement frame 8. An adjustment placement slot 9 to be placed and adjusted with the adjustable button 7 arranged on the adjustment placement frame 8. The adjustment placement slot 9 is arranged in an adjustment cover 10. The adjustment cover 10 is fixed with the wrench body 1. A screw placement slot 11 is separately arranged on the two ends of the wrench body 1. The screw placement slot 11 can be placed and adjusted with the adjustment screw sleeve 5 through a placement rod 12. A mating slot 13 matches with the wrench hole 2 arranged on the outer wall of the adjustment wrench support 4. The cross section of the mating slot 13 is triangular. The wrench body 1 is made of plastic or metal.
As seen in
The adjustable wrench support 4 is mounted in the adjustment placement frame 8 so that it translates relative to the adjustment placement frame 8. The adjustable wrench support is pivotally connected to the adjustment threaded sleeve 5 so that the adjustment threaded sleeve 5 rotates relative to the adjustable wrench support 4. The adjustable wrench support 4 does not rotate relative to the wrench body 1. The adjustment threaded sleeve 5 rotates relative to the wrench body 1. The placement rod 12 is rigidly mounted to the adjustment threaded sleeve 5. The placement rod 12 slides along the screw placement slot 11 when the adjustable button 7 is actuated. The adjustment screw bolt 3 is preferably held in a pair of adjustment screw bolt bearings 16.
More specifically, the helical groove can be formed in the adjustment screw bolt by casting, or by milling. The pitch of the helical groove is preferably less than the pitch of the adjustment threaded sleeve. The lead of the helical groove is preferably more than the lead of the adjustment threaded sleeve. Also, the thread angle of the helical groove is preferably less than the thread angle of the adjustment threaded sleeve.
Number | Name | Date | Kind |
---|---|---|---|
390422 | White | Oct 1888 | A |
530518 | Friede | Dec 1894 | A |
592199 | Fletcher | Oct 1897 | A |
717390 | Gray | Dec 1902 | A |
2993398 | Schlote | Jul 1961 | A |
3104570 | Haenni | Sep 1963 | A |
3204497 | Dinkler | Sep 1965 | A |
3282136 | Maichen | Nov 1966 | A |
3363490 | Maichen | Jan 1968 | A |
3541899 | Tanner | Nov 1970 | A |
3555939 | Halls | Jan 1971 | A |
3640159 | Halls | Feb 1972 | A |
3673896 | Vardaman | Jul 1972 | A |
D239759 | Glantz | May 1976 | S |
4046034 | Flewelling | Sep 1977 | A |
4151763 | Colvin | May 1979 | A |
4488461 | Hurtig | Dec 1984 | A |
4593585 | Hurtig | Jun 1986 | A |
4787275 | Colvin | Nov 1988 | A |
D303916 | Colvin | Oct 1989 | S |
4987805 | Ejdenwik | Jan 1991 | A |
5557993 | Austin | Sep 1996 | A |
6076434 | Boukis | Jun 2000 | A |
6240814 | Boyd | Jun 2001 | B1 |
6973857 | Anderson | Dec 2005 | B1 |
9242352 | Arbel | Jan 2016 | B2 |
Number | Date | Country | |
---|---|---|---|
20150375374 A1 | Dec 2015 | US |