This application is a U.S. National Phase application submitted under 35 U.S.C. ยง371 of Patent Cooperation Treaty application serial no. PCT/CN2013/086291, filed Oct. 31, 2013, and entitled WRENCH TOOL AND MANUFACTURING METHOD THEREOF, which application claims priority to Chinese patent application serial no. 201210478892.7, filed Nov. 23, 2012, and entitled .
Patent Cooperation Treaty application serial no. PCT/CN2013/086291, published as WO 2014/079311 A1, and Chinse patent application serial no. 201210478892.7, are incorporated by reference herein.
The present disclosure relates to a wrench tool for mounting or dismounting screws and a manufacturing method of the wrench tool.
An L-shaped hexagon wrench is a kind of manual tool widely used in the industry, but it feels not so comfortable in use, its tension arm can't be changed as required, and it can't meet the demand of using comfortably both in confined space and in wide-open space. So the applicant of the present application provided a wrench tool capable of changing its tension arm as required, for the details, please refer to Chinese patent application No. 201110041714.3. The wrench tool comprises a controlling element, a connecting element and a rotatable element. The controlling element and the rotatable element can rotate relative to the connecting element respectively, so as to change the tension arm. As the length of the tension arm can be chosen by changing relative positions of elements in the use of the wrench tool, the wrench tool can meet the demand of using in a wide variety of environments, being flexible in use, but its structure is complex and the production cost is high.
The present disclosure aims at providing a wrench tool and a manufacturing method thereof, the wrench tool feels comfortable, has simple structure and has lower production cost.
The objects of the present disclosure are achieved by the following technical schemes:
A wrench tool comprises an operating rod and a tool rod; the tool rod is 7-shaped, and comprises a tool head part and a connecting rod part; the connecting rod part is provided with a hinge portion; the hinge portion is provided with a first hinge hole; one end of the operating rod is provided with a tool seat, configured to accommodate the hinge portion; the tool seat has a second hinge hole; the tool seat and the hinge portion are hinged together by a pin running through the first hinge hole and the second hinge hole.
The hinge portion is formed by curling a flattened end of the connecting rod part.
The tool seat is provided with a first locating board and a second locating board respectively at its two opposite open sides.
A counterbore is disposed at a bottom of the tool seat; an elastic member is provided in the counterbore, and a second ball bearing is placed on the elastic member; and a first locating slot and a second locating slot, which are configured to accommodate the second ball bearing, are disposed on surface of the hinge portion.
An inner lining tube is provided in the operating rod, the inner lining tube is open at one end and closed at the other end; the tool seat is connected with the open end of the inner lining tube; the tool seat is provided with a third through hole at its bottom; an elastic member going through the third through hole is provided in the inner lining tube, with one end of the elastic member outwardly extending from the third through hole; a second ball bearing is placed on the elastic member; and a first locating slot and a second locating slot, which are configured to accommodate the second ball bearing, are disposed on surface of the hinge portion.
A handle is sleeved on the outer surface of the operating rod.
The operating rod has a cavity; a sleeve is provided in the cavity; the sleeve is provided with a first inner hexangular nut and a second inner hexangular nut respectively at its two ends.
The operating rod has a cavity; an auxiliary tool head is provided in the cavity; one end of the auxiliary tool head is provided with a third inner hexangular nut, and the other end of the auxiliary tool head is provided with a hexangular head.
The handle is open at one end and closed at the other end; a first annular groove is provided on outer surface of the handle; a taper hole, which is smaller inwards and larger outwards, is provided in the first annular groove of the handle; a first ball bearing is provided in the taper hole; part of the first ball bearing inwardly protrudes from an inner wall of the handle; an annular elastic plate is provided in the annular groove, pressing the first ball bearing in the taper hole; a second annular groove is provided on a corresponding position of the operating rod; when the handle is sleeved on the operating rod, the first ball bearing, which inwardly protrudes from the inner small diameter end of the taper hole, rolls in the second annular groove, getting the handle stuck on the operating rod.
The handle has two open ends and the two open ends communicate with each other; the other end of the operating rod forms an expanded structure; the diameter of the expanded structure is larger than the diameter of at least one of the open ends of the handle; a handle cover is joined to one end of the handle; and the handle cover encloses the expanded structure of the operating rod in the handle.
A manufacturing method of a wrench tool comprises procedures of processing an operating rod, processing a tool rod, and assembling the operating rod and the tool rod; the procedure of processing the operating rod comprises steps of processing a tool seat and punching a second hinge hole in the tool seat; the procedure of processing the tool rod comprises following steps:
Step 1. selecting a profile with a hexagon cross section, and cutting out a segment of the profile;
Step 2. bending the segment cut out into the shape of a tool head part and a connecting rod part;
Step 3. flattening a tail end of the connecting rod part to form a flattened tail end;
Step 4. curling the flattened tail end of the connecting rod part to form a hinge portion with a first hinge hole; and
The procedure of assembling the operating rod and the tool rod comprises a step of hinging the hinge portion of the tool rod with the tool seat of the operating rod by a pin.
The wrench tool of the present disclosure comprises the operating rod and the tool rod hinged on the operating rod. The wrench tool has simple structure and is convenient to assemble. It is easy to control the relative positions of the operating rod and the tool rod. The tool rod is 7-shaped, so it is more convenient to change the tension arm of the wrench tool. The handle is sleeved on the operating rod, enclosing the annular elastic plate, the first ball bearing and the second annular groove on the operating rod. The handle is capable of rotating relative to the operating rod. The wrench tool feels comfortable to use. The operating rod has a cavity, which is provided with a sleeve and an auxiliary tool head, so that the wrench tool can mount or dismount screws with other specifications by means of the sleeve and the auxiliary tool head. The tool seat is provided with a first locating board and a second locating board respectively at its two opposite open sides, so as to limit the rotation of the tool rod relative to the operating rod, which facilitates the quick orientation of the tool rod and the operating rod. The present disclosure provides another way of positioning the operating rod and the tool rod as follows: an elastic member is provided at the bottom of the tool seat; a first ball bearing is placed on the elastic member; accurate positioning is realized by either locating the first ball in the first locating slot or locating the first ball in the second locating slot respectively. The present disclosure further provides a wrench tool, whose handle is sleeved on the operating rod through an expanded structure at the end of the operating rod. The expanded structure prevents the handle from being disengaged from the operating rod. The wrench tool has simple structure. The manufacturing method of the wrench tool of the present disclosure comprises procedures of processing the operating rod, processing the tool rod and assembling the operating rod and the tool rod. The tool rod is processed by flattening and curling, which reduces the weight of the tool rod and enhances the strength of the tool rod.
The present disclosure will be described in more details with reference to the accompanying figures and embodiments.
As shown in
One end of the operating rod 2, which is hinged with the tool rod 1, is provided with a tool seat 16. The tool seat 16 has a pair of spaced apart side members 33 and second hinge holes 15. A second annular groove 17 is provided on a corresponding position of the operating rod 2. When the handle 3 is sleeved on the operating rod 2, the first ball bearing 5 inwardly protruding from the inner wall of the handle 3 rolls into the second annular groove 17, and under the action of the elastic plate 4, the first ball bearing 5 gets stuck in the second annular groove 17, so that the handle 3 can't get disengaged from the operating rod 2. As the second annular groove 17 is annular, the handle 3 can be rotated relative to the operating rod 2, which facilitates the use of the wrench tool. When the handle 3 is pulled out with force, the first ball bearing 5, overcoming the elastic force generated by the elastic plate 4, rolls out of the second annular groove 17, and the handle 3 can be disengaged from the operating rod 2.
The tool rod 1 comprises a connecting rod part 10 and a tool head part 9. The tool head part 9 is joined to one end of the connecting rod part 10, forming a 7-shaped structure. The other end of the connecting rod part 10 is provided with a hinge portion 11 formed by curling a flattened structure, specifically, by flattening the tail end of the connecting rod part 10 to form a flattened structure, and curling the flattened structure to form the hinge portion 11, which is provided with a first hinge hole. The tool seat 16 and the hinge portion 11 are hinged together by a pin 6 running through the first hinge hole and the second hinge hole 15.
As shown in
As shown in
The second embodiment of the present invention is shown in
The third embodiment of the present invention is shown in
One manufacturing method of the wrench tool of the present disclosure comprises procedures of processing the operating rod, processing the tool rod, and assembling the operating rod and the tool rod. The procedure of processing the tool rod comprises the following steps:
1. Selecting a profile having a hexagon cross section with a certain specification according to the design dimension of the hexagon screw to be mounted or dismounted, and cut out a segment of the profile;
2. Bending the segment cut out into the shape of the tool head part and the connecting rod part;
3. Flattening the tail end of the connecting rod part to form a flattened structure;
4. Curling the flattened structure of the tail end of the connecting rod part to form the hinge portion with the first hinge hole.
5. Polishing the tool rod;
6. Plating or electrophoresing the tool rod.
The procedure of processing the operating rod comprises the following steps:
1. Selecting a profile with proper dimensions according to the design dimension of the wrench tool;
2. Lathing one end of the profile to form a U-shaped tool seat;
3. Punching out the second hinge hole in the tool seat;
4. Polishing the operating rod;
5. Plating or electrophoresing the operating rod.
The procedure of assembling the operating rod and the tool rod comprises the following step: hinging the hinge portion of the tool rod with the tool seat of the operating rod by a pin running through the first hinge hole and the second hinge hole.
In the procedure of processing the tool rod, by means of flattening and curling, the weight of the tool rod can be reduced and the strength of the tool rod can be enhanced. In the procedure of processing the operating rod, as the U-shaped tool seat is formed by processing one end of the profile directly, the U-shaped tool seat has reliable strength. The manufacturing method of the wrench tool is simple and the processing cost is lower.
Another manufacturing method of the wrench tool of the present disclosure comprises procedures of processing the operating rod, processing the tool rod and assembling the operating rod and the tool rod. The procedure of processing the tool rod comprises the following steps:
1. Selecting a profile having a hexagon cross section with a certain specification according to the design dimension of the hexagon screw to be dismounted, and cut out a segment of the profile;
2. Flattening the tail end of the segment of the profile to form a flattened tail end;
3. Curling the flattened tail end to form the hinge portion with the first hinge hole;
4. Bending the segment of the profile into the shape of the tool head part and the connecting rod part;
5. Polishing the tool rod;
6. Plating or electrophoresing the tool rod.
The procedure of processing the operating rod comprises the following steps:
1. Selecting a hollow profile and a metal plate profile with proper dimensions according to the design dimension of the wrench tool;
2. Punching the metal plate profile to form a U-shaped tool seat, and punching out the second hinge hole in the tool seat;
3. Welding the tool seat to one end of the hollow profile;
4. Polishing the operating rod;
5. Plating or electrophoresing the operating rod.
The procedure of assembling the operating rod and the tool rod comprises the following step: hinging the hinge portion of the tool rod with the tool seat of the operating rod by a pin running through the first hinge hole and the second hinge hole.
In the procedure of processing the operating rod, as the U-shaped tool seat is formed by punching the metal plate profile and is welded to one end of the hollow profile, the procedure is more convenient than forming the U-shaped tool seat through lathing the end of the hollow profile, and the processing cost is lower.
In the above embodiments of the manufacturing method of the wrench tool, in addition to plating and electrophoresing, the antirust surface treating process may further include bluing, blacking, phosphating and other antirust surface treating measures.
Number | Date | Country | Kind |
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2012 1 0478892 | Nov 2012 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2013/086291 | 10/31/2013 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2014/079311 | 5/30/2014 | WO | A |
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Entry |
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Patent Cooperation Treaty: International Search Report of PCT/CN2013/086291; Shang, Yupei; Jan. 23, 2014; 8 pages. |
Number | Date | Country | |
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20150298303 A1 | Oct 2015 | US |