The present invention relates to a multi-layer structure including a buffer layer and particularly to a multi-layer structure including a biological material layer to be coupled with a substrate in a mold and a buffer layer to alleviate high pressure and high temperature in the mold to avert damage of the biological material layer.
Industrial products, in addition to providing desirable performance, also must improve appearance, touch feeling and identification of the product through innovative and aesthetic profile design to enhance product orientation and prices on the market. Many conventional industrial products, such as handsets or notebook computers, have plastic casings. Although some of them are coated with paint to provide shades different from plastics, they still have notable plastic touch feeling. After being used for a period of time or being subjected to abrasion, the paint on the surface is worn away and the plastic surface is exposed. Hence the plastic casing coated with paint generally does not have attractive appearance and desirable tough feeling.
There are also products formed with metal material on the casings. The surface of the casing is simply treated such that metal textures and touch feeling become distinguishing features of the product. For instance, R.O.C. patent No. M346244 entitled “Surface coating structure for casings of electronic devices” discloses a sputtering layer formed on a substrate. The sputtering layer has an oxidation layer on the surface and treated by an anodizing treatment. The sputtering layer can be made of copper, brass, titanium alloy, aluminum or the like. However, the metal material provides limited diversity of color and touch feeling, and also is not elastic and renders cold feeling.
To remedy the aforesaid shortcomings, technique of combining biological material (such as wood, leather or the like) with metal has been developed. For instance, R.O.C. patent No. M321677 entitled “Composite casing structure” discloses a casing consisting of a surface layer and a bottom layer. The surface layer can be formed with patterns through digital or transfer printing. The bottom layer is a metal sheet. A layer of adhesive is provided between the bottom side of the surface layer and the surface of the bottom layer to bond the surface layer and bottom layer together.
However, the biological material boned on the metal surface through the adhesive tends to be peeled off from the edge thereof after a period of time or when being subjected to abrasion or impact. Air bubbles formed by defective bonding may also occur. Other factors such as abrasion also could cause dislocation of the biological material. In short, bonding the biological material through the adhesive with metal or plastics that differ very much in characteristics is prone to be loosened off after a period of time. Moreover, in the event that the biological material and the substrate are formed by pressing and punching, although they might be boned firmly at the beginning, since there is no buffer structure between them to alleviate the impact and high temperature during pressing and punching, the biological material is easily damaged. Moreover, the biological material and substrate have different static stress variations, they tend to be shrunk at different amount after a long duration and result in breaking and forming small cracks that cause peeling off or bulging out on the surface.
In view of the biological material bonded with the substrate is easily damaged by injection temperature and pressure in the mold by adopting the conventional techniques and results in separation of the biological material and substrate, an object of the present invention aims to provide a multi-layer structure to prevent the biological material from being damaged by temperature and pressure in a mold, thereby to prolong the lifespan of the multi-layer structure and substrate that are boned together.
The present invention provides a multi-layer structure including a buffer layer, and the multi-layer structure is boned with a substrate in a die. The multi-layer structure includes at least one biological material layer, a bonding layer and a thermoplastic buffer layer. The biological material layer at least has a first surface bonded to the bonding layer. The buffer layer has one side boned with the bonding layer. The buffer layer has a compressed surface to withstand high pressure and be bonded with the substrate by fusion. The bonding layer and buffer layer are made of thermoplastic material, and are bonded together firmly through thermal fusion. The compressed surface of the buffer layer directly withstands the injection temperature and pressure in the mold from the substrate, therefore can alleviate the temperature and pressure sustained by the biological material layer. Hence the biological material layer is protected without being damaged in the mold, and the bonding between the multi-layer structure and the substrate can have a longer lifespan.
The foregoing, as well as additional objects, features and advantages of the invention will be more readily apparent from the following detailed description, which proceeds with reference to the accompanying drawings.
The present invention aims to provide a multi-layer structure including a buffer layer. Referring to
Referring to
While the invention has been described by means of specific embodiment, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the invention set forth in the claims.
In summation of the above description, the present invention provides a significant improvement over the conventional techniques and complies with the patent application requirements, and is submitted for review and granting of the commensurate patent rights.
Number | Date | Country | Kind |
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098135919 | Oct 2009 | TW | national |