METHOD OF MAKING FOLDING HAND TOOL SET FOR BICYCLES
A method for producing a tool for use in a folding hand tool set includes the following steps. Firstly, a metallic rod is provided. Next, a working end and a shank portion are formed on opposite ends of the metallic rod. The shank portion has a regular polygonal cross-section. The working end has a maximum external diameter (Z) is smaller than a maximum external diameter (Y) of the shank portion. Then, the shank portion is flattened into a flat, generally oblong portion by a stamping press, wherein the flattened shank portion has a thickness (X) more than or equal to a half of the maximum external diameter (Y) of the original shank portion. And the thickness (X) of the flattened shank portion is greater than the maximum external diameter (Z) of the working end. Finally, a hole is punched in an end of the flattened shank portion opposite the working end to complete the tool.
1. Field of the Invention
The present invention relates to a method of making tools for use in a folding hand tool set, and more particularly to a method of making the tools in a cost-effective manner, without sacrifice of quality.
2. Description of the Related Art
Hand tools are typically discrete items that can be easily misplaced. To overcome this problem, various hand tool set holders have been developed in which a plurality of hand tools is secured in a moveable manner so as to avoid individual tools being lost.
One type of a hand tool set is illustrated in U.S. Design Pat. No. D542,111, in which each tool defines an engaging hole to be pivotally connected to a housing member of the hand tool set. Besides, each of the tools in the tool set has a predetermined generally flat shank portion to save the materials. It is understood that the tool was cut from a flat piece of metal blank with a constant thickness that is decided before the driving end or the working end is machined using a lathe.
Another type of a hand tool set is illustrated in U.S. Pat. No. 8,250,951. In this tool set, a tool is made from a hexagonal rod body with a 9-shaped connecting end to be pivotally connected to a housing member of the hand tool set. The tool includes a driving end formed on a proximal end of the rod body for performing a specific procedure and a connecting end formed on a distal end of the rod body by bending the distal end. The distal end is formed with a rectangular cross section prior to forming the connecting end. The connecting end is formed such that it extends in a path away from the body initially and towards the body at last and encloses a space. In short, the connecting end is generally formed by flattening, cutting and finally bending; however, the distal end is harden and becomes increasingly brittle during the flattening process, the further bending process of the harden distal end can easily break the end, causing a failure to form the connecting end.
SUMMARY OF THE INVENTIONAccordingly, it is an object of the present invention to provide a new method for forming a tool for use in a folding hand tool set.
Briefly described, the method of this invention includes the following steps. Firstly, a metallic rod is provided. Next, a working end and a shank portion are formed on opposite ends of the metallic rod. The shank portion has a regular polygonal cross-section. The working end has a maximum external diameter (Z) is smaller than a maximum external diameter (Y) of the shank portion. Then, the shank portion is flattened into a flat, generally oblong shank portion by a stamping press, wherein the flattened shank portion has a thickness (X) more than or equal to a half of the maximum external diameter (Y) of the original shank portion. And the thickness (X) of the flattened shank portion is greater than the maximum external diameter (Z) of the working end. Finally, a hole is punched in an end of the flattened shank portion opposite the working end to complete the tool.
Preferred embodiments of the invention may have the following additional characteristics, either alone or in combination:
The step (d) further includes trimming the flattened shank portion, in which the trimming and the punching the hole are performed at the same time in a single punch process.
Alternatively, the step (c) further includes trimming the shank portion, in which the trimming and flattening the shank portion are performed at the same time in a single punch process.
The foregoing and other objectives, features, and advantages of the invention will be more readily understood upon consideration of the following detailed description of the invention, taken in conjunction with the accompanying drawings.
With respect to
In step 101, a metallic rod 10 or 11 is provided, as depicted in
With respect to
In step 103, the shank portion 12 of the metallic rod 2 is flattened by a stamping press into a flat, generally oblong shank portion 12a, as depicted in
In step 104, the flattened shank portion 12a is punched a hole 13 in an end thereof and renumbered as 12b, as depicted in
With reference to
In step 201, a metallic rod 10 or 11 is provided. The metallic rod 10 or 11 is identical to that in
In step 203, the shank portion 12 of the metallic rod 2 is flattened by a stamping press into a flat, generally oblong shank portion 12a, as depicted in
In step 204, the flattened shank portion 12a is punched a hole 13 in an end thereof and renumbered as 12b, as depicted in
With reference to
In step 301, a metallic rod 10 or 11 is provided. The metallic rod 10 or 11 is identical to that in
In step 303, the shank portion 12 of the metallic rod 2 is flattened by a stamping press into a flat, generally oblong shank portion 12c, as depicted in
In step 304, the flattened shank portion 12c is punched a hole 13 in an end thereof and renumbered as 12d, as depicted in
Alternatively, as shown in
It will be apparent that various modifications may be made to the above specifically described structural arrangements without departing from the scope of the invention.
Claims
1. A method for producing a tool for use in a folding hand tool set, the method comprising:
- (a). providing a metallic rod;
- (b). forming the metallic rod with a working end with a maximum external diameter (Z) and a shank portion opposite the working end with a regular polygonal cross-section and a maximum external diameter (Y) greater than that of the working end;
- (c). flattening the shank portion into a flat, generally oblong shank portion by a stamping press, wherein the flattened shank portion has a thickness (X) more than or equal to a half of the maximum external diameter (Y) of the original shank portion, and the thickness (X) of the flattened shank portion is greater than the maximum external diameter (Z) of the working end; and
- (d). punching a hole in an end of the flattened shank portion opposite the working end.
2. A method as recited in claim 1, wherein the regular polygonal cross-section of the metallic rod is a circle with an infinite number of sides.
3. A method as recited in claim 1, wherein the step (d) further including trimming the flattened shank portion, and the trimming and the punching the hole are performed at the same time in a single punch process.
4. A method as recited in claim 1, wherein the step (c) further including trimming the shank portion, and the trimming and flattening the shank portion are performed at the same time in a single punch process.
5. A method as recited in claim 4, wherein in the step (c), the shank portion is punched and trimmed to include an rounded end.
6. A method as recited in claim 1, wherein the step (b) further including forming the metallic portion with a transition portion between the working end and the shank portion.
7. A method as recited in claim 6, wherein the transition portion includes a cylindrical section proximate to the working end with a diameter greater than the maximum external diameter (Z) of the working end, and a conical frustum disposed in between the cylindrical section and the flattened shank portion.
8. A method as recited in claim 1, wherein in the step (b), the forming of the working end is performed by a lathe.
9. A method as recited in claim 8, wherein in the step (b), the working end is a hex-head key.
Type: Application
Filed: Feb 12, 2015
Publication Date: Aug 18, 2016
Inventor: Tuo-Jen Chen (Taichung City)
Application Number: 14/620,205