1. Field of Invention
The present invention relates to a wrench and, more particularly, to a wrench that can be operated in a narrow and deep space.
2. Related Prior Art
Disclosed in Taiwanese Patent M283713 is a wrench including a body 10 and a lever 11 inserted through the body 10 in a radial direction. The lever 11 is long and hence provides a significant mechanical gain. However, as the body 10 and the lever 11 extend perpendicular to each other, the wrench cannot be used in a narrow and deep space such as what is found in the engine compartment of a vehicle.
The present invention is therefore intended to obviate or at least alleviate the problems encountered in the prior art.
According to the present invention, a wrench includes a handle, a joint movably mounted on the handle and a working unit pivotally connected to the joint so that that handle can be pivoted relative to the working unit between a first position where they extend perpendicular to each other and a second position where they extend along a same axis.
An advantage of the wrench according to the present invention is its operability in a narrow and deep space when the handle and the working unit extend along the same axis.
Another advantage of the wrench, according to the present invention, is its utility in various limited spaces, since the handle can be pivoted to various positions relative to the working unit.
Still another advantage of the wrench according to the present invention is easy and convenient operation.
Other advantages and features of the present invention will become apparent from the following description referring to the drawings.
The present invention will be described via detailed illustration of five embodiments referring to the drawings.
Referring to
The handle 10 is a rectilinear element with a first end and a second end opposite to the first end. The handle defines a recess 12 in the first end and a recess 14 near the first end. After the joint 40 is mounted on the handle 10, a ball 11 is fit in the recess 14 to retain the joint 40 and hence the first working unit 20 on the handle 10. The handle 10 includes a hexagonal profile.
The second working unit 30 includes a hexagonal profile 32, a square hole 31 axially defined therein and an aperture 33 transversely defined therein. The square hole 31 can receive a square shank of a tool bit or a square insert of a T-bar. The aperture 33 can receive an auxiliary handle so that the auxiliary handle is used as a lever while the handle 10 is used as an axle. The hexagonal profile 32 can be inserted in a hexagonal recess defined in a socket.
The joint 40 includes two screw holes 41 axially defined therein and a hexagonal aperture 42 transversely defined therein. The hexagonal aperture 42 compliantly receives the hexagonal profile of the handle 10. There is a shoulder 421 on the wall of the hexagonal aperture 42.
The first working unit 20 includes a head 21, a core 22, an annular restraint 23, a positioning device 24 and a switching device 25.
The head 21 includes a first portion and a second portion. The first portion of the head 21 is in the form of a ring, that is, it defines a circular space 211. The first portion of the head 21 defines two cutouts 215, a tunnel 216 and a recess 217. The tunnel 216 includes two ends, each in communication with a related one of the cutouts 215, and a middle point, in communication with the circular space 211. The recess 217 is in communication with the tunnel 216.
The second portion of the head includes two lateral walls opposite to each other and a font wall formed between the lateral walls. This configuration of the second portion of the head 21 supports a heavy load. However, the second portion of the head 21 may include only the lateral walls if the head 21 is used under a light load. A space 212 is defined by the walls of the second portion of the head 21. The font wall of the second portion of the head 21 defines an aperture 213 while each of the lateral walls of the second portion of the head 21 defines a countersink hole 214.
The switching device 25 includes an elastic element 251 inserted in the recess 217, a detent 252 biased by the elastic element 251 and a switch 253 movably inserted in the tunnel 216 and engaged with the detent 252. The switch 253 defines two recesses 254 on a side and two series of dents 256 on an opposite side.
The core 22 includes a square insert 222 formed at an end, a neck 224 formed at an opposite end and a series of teeth 221 formed between the square insert 222 and the neck 224. The neck 224 axially defines a recess 223.
The positioning device 24 includes an elastic element 241 inserted in the recess 223 and a detent 242 biased by the elastic element 241. The detent 242 can be inserted in the recess 43 for positioning the core 22 relative to the joint 40.
The series of teeth 221 and the neck 224 are inserted in the circular space 211 while the square insert 222 is exposed from the head 21. The annular restraint 23 is fit in the circular space 211, around the neck 224 and against the series of teeth 221 so that the core 22 is retained in the head 21. The annular restraint 23 may be a bearing for ensuring smooth rotation of the core 22 in the head 21.
Two fasteners 44, such as threaded bolts, are driven in the screw holes 41 through the countersink holes 214 for pivotally connecting the joint 40 to the head 21.
A selected one of the recesses 254 receives the detent 252 for retaining the switch 253 in a selected one of two positions. Thus, a related one of the series of dents 256 receives the series of teeth 221 so that the head 21 drives the core 22 in a related one of two directions because of the switch 253.
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The first joint 70 includes a hexagonal aperture 71 defined therein and two ears 72 formed thereon. Each of the ears 72 defines an aperture. The second joint 40 includes two screw holes 41 axially defined therein and a hexagonal aperture 42 transversely defined therein. Two fasteners 44, such as threaded bolts, are driven in the screw holes 41 through the apertures of the ears 72 for pivotally connecting the second joint 40 to the first joint 70.
The first handle 10′ includes a hexagonal profile for compliant insertion in the hexagonal aperture 71. A working unit 80 is attached to each end of the first handle 10′.
The first handle 10′ includes a hexagonal profile for compliant insertion in the hexagonal aperture 42. A working unit 80 is attached to each end of the second handle 10′. Each of the working units is a one-piece element, that may be replaced with a selective one-way driving mechanism, including the first portion of the head 21, the core 22, the ring 23 and the switching device 25.
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The wrench according to the present invention exhibits several advantages. Firstly, it can be operated in a narrow and deep space such as that is found in the engine compartment of the vehicle when the handle and the working unit extend along a same axis.
Secondly, it can be used in various spaces since the handle can be pivoted to various positions relative to the working unit.
Thirdly, it can be used easily and conveniently.
The present invention has been described via the detailed illustration of the embodiments. Those skilled in the art can derive variations from the embodiments without departing from the scope of the present invention. Therefore, the embodiments shall not limit the scope of the present invention defined in the claims.
Number | Name | Date | Kind |
---|---|---|---|
1510059 | Holle | Sep 1924 | A |
2701977 | Stone | Feb 1955 | A |
6260452 | Yu | Jul 2001 | B1 |
6739222 | Hsieh | May 2004 | B2 |
6945145 | Kesinger | Sep 2005 | B1 |
7040200 | Lin | May 2006 | B2 |
7066056 | Hsieh | Jun 2006 | B1 |
Number | Date | Country |
---|---|---|
M283713 | Dec 2005 | TW |