This application claims priority to Chinese Application Serial Number 201310470558.1, filed Oct. 10, 2013, which is herein incorporated by reference.
1. Technical Field
The present invention relates to a metal plate reinforcement method.
2. Description of Related Art
While a metal plate is subjected to metalworking, reinforcing ribs and supplemental ribs are formed at the metal plate to enhance structure strength. However, while a workpiece is formed at the metal plate or bonded to the metal plate by riveting process, the metal plate is vulnerable to downforce due to the workpiece or external force due to riveting process. Thus, the metal plate will sag and be deformed toward a specific direction. Sagging or deformation of the metal plate results in inconvenience while operators of production line want to assemble other parts at the metal plate. For example, if computer cases are deformed or sag, components such as printed circuit boards cannot be securely installed at the cases so that components such as printed circuit boards may be damaged by deformed computer cases.
To prevent the metal plate from being damaged, it is usually to enhance structure strength of the metal plate (e.g. pre-bending of metal plate or other design), make modification to die design and die molding. In addition, the metal plate is also prevented from damaged through strict quality control.
However, the foregoing solutions cause either cost increase or analytical cost and die-manufacturing cost. In addition, if a 1U server chassis is subjected to pre-bending process to enhance structure strength, then it may have difficulty in assembling computer or server. If other design is employed to maintain and reinforce chassis structure, then we need to solve space shortage of server or computer chassis.
A metal plate reinforcement method includes the steps: (a) providing a metal plate, in which the metal plate has a first surface and a second surface opposite each other; (b) stamping the metal plate to form a plurality of first protruding portions protruding from the first surface; (c) respectively stamping the first protruding portions so as to respectively form a plurality of second protruding portions protruding from the second surface; and (d) flattening the second protruding portions to restore the metal plate.
According to one embodiment of the present invention, the foregoing metal plate has a first edge and a second edge opposite each other. A stamping zone formed by the first protruding portions extends between the first edge and the second edge.
According to one embodiment of the present invention, the first. protruding portions are r more concentrated near a center zone between the first edge and the second edge. The second protruding portions are more concentrated near the center zone.
According to one embodiment of the present invention, each of the first protruding portions has a same shape and size, and each of the second protruding portions has another same shape and size.
According to another embodiment of the present invention, a metal plate reinforcement method includes the steps: (a) providing a metal plate, in which the metal plate has a first surface and a second surface opposite each other; (b) stamping a plurality of first protruding portions on the metal plate to protrude from the first surface: (c) stamping a plurality of second protruding portions on the metal plate to protrude from the second surface; (d) flattening the first protruding portions and the second protruding portions to restore the metal plate.
In summary, the metal plate reinforcement method of the present invention use stamping process to stamp at both surfaces of the metal plate so as to form protruding portions. Then, the protruding portions are flattened to restore the metal plate. After flattening the protruding portions, shear stress flow of the metal plate interconnects so that a plurality of invisible “stress ribs” are formed. Thus, the metal plate reinforcement method of the present invention can solve the difficulties incurring in utilizing pre-bending sheet metal or employing other design to maintain and reinforce chassis structure. The metal plate is stamped and flattened so that the metal plate not only has enough structure strength and great flatness but also in compliance with space requirement.
It is to be understood that both the foregoing general description and the following detailed description are by examples, and are intended to provide further explanation of the invention as claimed.
The invention can be more fully understood by reading the following detailed description of the embodiment, with reference made to the accompanying drawings as follows:
Reference will now be made in detail to the present embodiments of the invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers are used in the drawings and the description to refer to the same or like parts.
A metal plate reinforcement method of the present invention is shown in
At S100: Provide a metal plate 1 in which the metal plate 1 has a first surface 10 and a second surface (not shown and opposite to the first surface 10).
At S102: The metal plate 1 is subjected to stamping process so that a plurality of first protruding portions 100 protrude from the first surface 10.
At S104: The first protruding portions 100 are subjected to stamping process respectively so as to respectively form a plurality of second protruding portions 102 protruding from the second surface (sag from the first surface 10)
At S106: The second protruding portions 102 are flattened to restore the metal plate 1′. That is, the metal plate 1′ of
According to one embodiment, as shown in
Therefore, after the metal plate 1′ is subjected to stamping process and restored, the metal plate not only has great flatness but also uniform shear stress flow so as to enhance structure strength. According to one embodiment, the metal plate 1″ that is subjected to stamping process and restored can be subjected to another metalworking so as to form server chassis. However, the present invention is not limited to this.
Furthermore, as shown in
As shown in
As mentioned above, compared the pattern of the first protruding portions 100 of
Please refer to
The metal plate reinforcement method of the present invention is shown in
At S300. Provide a metal plate 3 in which the metal plate 3 has a first surface 30 and a second surface (not shown and opposite to the first surface 30).
At 5302: The metal plate 3 is subjected to stamping process so that a plurality of first protruding portions 300 protrude from the first surface 30.
At S304: The metal plate 3 is subjected to stamping process so that a plurality of second protruding portions 302 protrude from the second surface (sag from the first surface 30).
At S306: The first protruding portions 300 and the second protruding portions 302 are flattened to restore the metal plate 3. That the metal plate 3 of the
According to the present invention, as shown in
Thus, after the metal plate 3′ is stamped and restored, the metal plate 3′ not only has great flatness but also uniform shear stress flow so as to enhance structure strength of the metal plate 3′.
As shown in
As mentioned above, compared with the pattern of the first protruding portions 300 and the second protruding portions 302 of
From the aforementioned embodiments, it is apparent that the present invention provides a metal plate reinforcement method. The metal plate is subjected to the stamping process so that a plurality of protruding portions are formed at both surfaces of the metal plate. After the metal plate is subjected to the stamping process, the metal plate is flattened and restored so that shear stress flow of the metal plate interconnects so that a plurality of invisible “stress ribs” are formed. Thus, the metal plate reinforcement method of the present invention can solve the difficulties incurring in utilizing pre-bending sheet metal or employing other design to maintain and reinforce chassis structure. The metal plate is stamped and flattened so that the metal plate not only has enough structure strength and great flatness but also in compliance with space requirement.
Although the present invention has been described in considerable detail with reference to certain embodiments thereof, other embodiments are possible. Therefore, the spirit and scope of the appended claims should not be limited to the description of the embodiments contained herein.
Number | Date | Country | Kind |
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201310470558.1 | Oct 2013 | CN | national |