This non-provisional application claims priority under 35 U.S.C. §119(a) to TW Patent Application No. 102205916 filed in Taiwan, R.O.C. on Mar. 29, 2013, the entire contents of which are hereby incorporated by reference.
The present invention relates to a button, and particularly to a keycap structure of a button.
Weights and sizes of laptops (such as notebooks and ultrabooks) are reduced for users' conveniences and feelings when carrying the devices with them.
A keyboard is a basic element for a laptop, wherein a plurality of keycaps is disposed on the keyboard and corresponds to texts or symbols respectively. As shown in
Generally, the number of the keycaps on the laptop is high. Therefore, in order to reduce the weight of the laptop, the keycaps are made of plastic materials and the thicknesses of the keycaps are attenuated.
However, once the thicknesses of the plastic keycaps are attenuated significantly, the mechanical strength of the plastic keycaps is also greatly reduced, due to the mechanical properties of plastic materials, so the keycaps are easily damaged.
In view of this, the present invention proposes a keycap structure of a button, wherein the thickness and the weight of the keycap structure of a button are reduced significantly with the mechanical strength retaining enough for support, so that the keycap structure of a button is not damaged easily.
The keycap structure of a button has a cap body, a plurality of clamping members and a covering member. The cap body is made of metal and has a first surface and a second surface. Each clamping member is connected to the second surface and is formed after punching and bending the cap body. The first surface is covered with the covering member so as to cover breaches of the cap body.
A method for manufacturing the aforementioned invention further proposes a keycap structure of a button. The manufacturing method includes forming a cap body made of metal in which the cap body has a first surface and a second surface, which is opposite to the first surface. Furthermore, the cap body is punched to form a plurality of breaches, bended form a plurality of clamping members, and then the first surface of the cap body is covered with a covering member to cover the breaches of the cap body.
Based on the above, the keycap structure of a button provides enough mechanical strength even when the thickness of the keycap structure of a button is reduced significantly due to the metal cap body. In addition, since the clamping members are integrally formed on the cap body via punching and bending the cap body, there is no need to provide extra components for clamping, further reducing the weight of the cap body. Under this arrangement, electronic devices assembled with the present invention are lighter and thinner and can be carried more conveniently as compared to conventional devices.
The detailed features and advantages of the present invention are described below in great detail through the following embodiments, the content of the detailed description is sufficient for those skilled in the art to understand the technical content of the present invention and to implement the present invention there accordingly. Based on the content of the specification, the claims, and the drawings, those skilled in the art can easily understand the relevant objectives and advantages of the present invention.
The present invention will become more fully understood from the detailed description given herein below for illustration only, and thus are not limitative of the present invention, wherein:
In this embodiment, the cap body 10, made of metal, includes a first surface 11 and a second surface 12, wherein the first surface 11 is opposite to the second surface 12. The cap body 10 has a plurality of breaches 101. Each breach 101 is disposed between the first surface 11 and the second surface 12, that is to say, two ends of the edge of each breach 101 is connected to the first surface 11 and the second surface 12 respectively.
As shown in
Each first clamping member 21 has a first clamping body 211 and a clamping hole 212. The clamping hole 212 is opened on the first clamping body 211. Each second clamping member 22 has a second clamping body 221 and a connecting portion 222. The connecting portion 222 is provided to connect the second clamping body 221 and the cap body 10. In this embodiment, each second clamping body 221 is parallel to the second surface 12 of the cap body 10. Particularly, each clamping hole 212 and each second clamping body 221 are connected with a crossed support frame, similar to the structure illustrated in
As shown in
As shown in
In this embodiment, as shown in
According to the keycap structure of a button described above, embodied samples are provided via applying the materials and parameters thereof in the following table:
According to the table shown above, the total weight of the keycap structure of a button manufactured by plastic, such as the copolymer of Polycarbonate (PC) and Acrylonitrile Butadiene Styrene (ABS) which is also applied to the conventional keycap, is only 0.11 grams; though, the keycap structure of a button made of plastic is the thickest, 0.7 mm, as compared to the keycap structures of a button manufactured by other materials in the above table. The thickness of the alumina keycap structure, 0.45 mm, is thinner than the plastic keycap structure of a button, and the total weight of the alumina keycap structure of a button is 0.11 grams, too. The thickness of the Mg—Li alloys keycap structure of a button is retained at 0.45 mm, and the total weight of the Mg—Li alloys keycap structure of a button is 0.073 grams, which is cut down by 33% as compared to that of the plastic keycap structure of a button. Consequently, when metal materials are applied, not only the thickness of the metal keycap structures of a button is reduced, but also the total weight of the metal keycap structures of a button is retained, or even reduced.
As mentioned above, in one embodiment the cap body 10 is made of metal so that the thickness thereof is reduced while retaining mechanical strength. In addition, the total weight of the keycap structure of a button is significantly reduced due to the breaches 101 and the lightening holes 102. Therefore, a lighter and thinner keycap structure of a button is provided a user to carry a personal computer or a laptop with the aforementioned keyboard humanizedly.
The present invention further provides a manufacturing method for a keycap structure of a button, the step of the manufacturing method includes forming a cap body 10 made of metal in which the cap body 10 has a first surface 11 and a second surface 12 opposite to the first surface 11, punching the cap body 10 to form a plurality of breaches 101, bending the cap body 10 to form a plurality of clamping members 21, 22 in which the clamping members 21, 22 are connected to the second surface 12, and covering the first surface 11 of the cap body 10 with a covering member 30 to cover the breaches 101 of the cap body 10. The detailed features of the manufacturing method can be understood from the descriptions mentioned above and are thus omitted here.
While the disclosure has been described by the way of example and in terms of the preferred embodiments, it is to be understood that the invention need not be limited to the disclosed embodiments. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims, the scope of which should be accorded the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
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102205916 | Mar 2013 | TW | national |