1. Field of Invention
The present invention relates to an open-end wrench and a method of manufacturing the same, and more particularly to an open-end wrench made of two different materials and a method of manufacturing the same.
2. Related Art
As shown in
Another problem is that if the open-end wrench 10 is made of light alloy for a light weight, a wrench opening thereof does not have enough strength to screw on or off a steel screw.
The present invention is directed to a structure of an open-end wrench, which uses a material with high rigidity as a head portion and a material with lower rigidity as a body and a handle portion, and a method of manufacturing the same.
To achieve the objective, the present invention provides a method of manufacturing an open-end wrench, which comprises the following steps. First, a body is provided, the body comprises a head portion and a handle portion, and the head portion comprises an opening. Next, a cover made of a material different from that of the body is female jointed around the head portion. The cover wraps a jaw portion of the body, and the head portion is imbedded to the cover by using adhesive means. An external surface of the cover corresponding to the opening is formed to a wrench opening, so as to join a head end of a screw to screw on or off the screw.
The cover is female jointed to the body is by using adhesive means.
The head portion and the handle portion are integrally formed.
To achieve the objective, the present invention provides an open-end wrench for screwing on or off a screw, which comprises a body and a cover. The body comprises a head portion and a handle portion. The head portion comprises a jaw portion and an opening formed at an inner side of the jaw portion. The cover comprises a first plate, a second plate, and a third plate connecting the first plate and the second plate. An external surface of the third plate is formed to a wrench opening. A mouth is defined by external edges of the first plate, the second plate, and the third plate together. The mouth is penetrated by the jaw portion, so the cover wraps the opening of the head portion and is engaged and adhesive with the head portion.
The cover has higher material rigidity than that of the body. A working width of the wrench opening may be greater than or equal to 32 mm. An outer side of the jaw portion is exposed outside the cover.
The body of the present invention is made of light alloy, and the cover is made of a steel material with high rigidity. A weight of the wrench can be greatly reduced by using the light-weight and large-volume body and the cover with the high rigidity and by female jointing the body inside the cover using an adhesive process. By using a design of different materials and a joint in the present invention, good feature of the original material is well kept, and after the different materials are joined, the rigidity of the wrench opening of the wrench can be maintained, and the light-weight advantage is achieved.
The preferred embodiment of the present invention is illustrated in detail below with reference to the accompanying drawings.
As shown in
In the embodiment, material rigidity of the cover 30 is greater than those of the body 20, so as to ensure the rigidity required for screwing on or off the screw. Furthermore, a material density of the cover 30 is greater than a material density of the main body 20, so as to achieve a light-weight advantage.
Furthermore, in the embodiment, if a working width d of the wrench opening 331 (namely, a width of the wrench opening 331) is larger, indicating that a relative volume of the open-end wrench is larger, a light weight of the open-end wrench then becomes more important. For example, when the working width d of the wrench opening 331 is equal to or greater than 32 mm, the advantage of the light-weight of the composite materials while maintaining the rigidity required for the wrench opening 331 in the embodiment becomes more obvious.
In the embodiment, an outer side 2112 of the jaw portion 211 of the head portion 21 corresponding to the inner side 2111 is partially exposed outside the cover 30, so as to form an aspect that the first plate 31 and the second plate 32 sandwich the jaw portion 211. Of course, a part of the first plate and a part of the second plate may be extendably formed to a part of the handle portion 22, so as to provide a better torque stress for the body 20, and at least a hole 221 (or an open groove) may also be provided at the handle portion 22, so as to reduce the weight of the body 20.
Refer to
In the embodiment, the first material may be aluminum, magnesium, iron or other alloy, and the second material may be die steel, chrome molybdenum steel or chrome vanadium steel.
In an embodiment of the present invention, through the above design, the body 20 is made of the first material (for example, aluminum alloy), and the cover 30 is made of the second material (for example, the chrome molybdenum steel). After experiments, the wrench can reach the wrench standard commercial torque requirement (643 N-M) of the Deutches Industrie Norm DIN-3113, the torque reaches 743.524 N-M˜1141.639 N-M, and the weight of the wrench is expected to decrease by 38%˜40% compared with a pure-steel wrench.
The feature of the present invention lies in that, the body of the present invention is made of the light alloy, and the cover is made of the die steel, chrome molybdenum steel or the steel material with high rigidity. The light-weight and large volume body can be adopted, the wrench opening of the cover with high rigidity contacts and works with the screw, and the body is female jointed inside the cover through the adhesive process, so the weight of the wrench can be greatly reduced. By using the design of different materials and the joint in the present invention, the advantage of the original material is well kept, and after the different materials are joined, the rigidity of the jaw portion of the wrench can be maintained, so the light-weight advantage is produced.
The above descriptions are merely preferred embodiments of technical solutions employed in the present invention to solve the problem, and are not intended to limit the scope of the present invention. All equivalent replacements or modifications conforming to the claims of the present invention or made according to the claims of the present invention shall fall within the scope of the present invention.
Number | Name | Date | Kind |
---|---|---|---|
463137 | Carpenter | Nov 1891 | A |
908677 | Jones | Jan 1909 | A |
1314044 | Buker | Aug 1919 | A |
2909954 | Rhoads | Oct 1959 | A |
3360291 | Barrett | Dec 1967 | A |
5062328 | Demurger | Nov 1991 | A |
6339980 | Woolf | Jan 2002 | B1 |
7117767 | Kiat | Oct 2006 | B1 |
7237462 | Liau | Jul 2007 | B1 |
Number | Date | Country | |
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20120167724 A1 | Jul 2012 | US |