1. Technical Field
The present invention relates to a pin, especially relates to a security pin and method for making the same.
2. Description of the Related Art
Typically, security pin is a connecting member to connect work pieces. When applying an external force to the work pieces beyond a predetermined value, the security pin breaks to protect the work pieces.
Referring to
A breakpoint of the typical security pin 100 is determined by the diameter of the breaking portion 14. However, in assembling, the breaking portion 14 is easily deformed. This can result in a mistaken positioning of the breakpoint of the breaking portion 14. In addition, the breaking portion 14 of the typical security pin 100 is usually achieved by a turning machine. However, it is difficult to precisely control the turning machine to form cutting grooves with uniform quality. This also increases the mistakes of the breakpoint of the security pin 100.
Therefore, there is room for improvement within the art.
The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout several views, and all the views are schematic.
Referring to
The security pin 200 is used for connecting a first work piece 25, and a second work piece 27. The first work piece 25 defines a positioning hole 250 to receive the first sleeve 22. The second work piece 27 defines a fixing groove 270 to receive to second sleeve 24. In assembling, the second sleeve 24 is hammered or pressed into the fixing groove 270, such that the second sleeve 24 is interference fit in fixing groove 270. The first work piece 25 is assembled on the second work piece 27 and the first sleeve is fixed to the positioning hole 250. Core 20 is then positioned. The interface of the first sleeve 22 and the second sleeve 24 is substantially coplanar with an interface of the first work piece. When an external force applied on the work pieces exceeds the predetermined value, the core 20 breaks at an interface of the first and second sleeves 22, 24, protecting the first and second work pieces 25, 27. In other words, the breakpoint of the security pin 200 is determined by a diameter of the core 20. Because the first and the second sleeve 22, 24 protect the core 20 from deforming when handling, the breakpoint of the security pin 200 is more precise.
A method for manufacturing the security pin 200 may include the following steps. Firstly, the first sleeve 22 and the second sleeve 24 are formed by extrusion forming or cast molding. Secondly, the first sleeve 22 and the second sleeve 24 are positioned in a casting mold. The end surface of the first sleeve 22 contacts with an end surface of the second sleeve 24, and the first receiving hole 220 communicates with the second receiving hole 240. Thirdly, a molten material is injected into the first receiving hole 220 and the second receiving hole 240. Finally, the molten material is cooled to form the core 20. In the manufacturing process, the inner diameter of the first sleeve 22 and the second sleeve 24 can be precisely controlled according to the material of the core 20, as a result the breakpoint of the security pin 200 is more precise due to the uniform diameter of the core 20.
In an alternative embodiment, the core 20 can be made of wood. The core 20 may be punched into the first sleeve 22 and the second sleeve 24.
Referring to
Finally, while the embodiments have been described and illustrated, the present disclosure is not to be construed as being limited thereto. Various modifications can be made to the embodiments by those of ordinary skilled in the art without departing from the true spirit and scope of the embodiments as defined by the appended claims.
Number | Date | Country | Kind |
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200810306585.4 | Dec 2008 | CN | national |