Relevant subject matter is disclosed in a co-pending U.S. patent application entitled “METHOD FOR ATTACHING A NONMETAL COVER LAYER TO A WORKPIECE, A MOLD USED IN THE METHOD AND A PRODUCT PRODUCED WITH THE METHOD”, assigned to the same assignee with this application.
1. Field of the Invention
The present invention relates to a method for attaching a nonmetal cover layer to a metal piece, a mold used in the method and a product produced with the method.
2. General Background
Portable computers, such as laptop computers and notebook computers, have become increasingly popular for general use. Manufacturers are striving to design varieties of portable computers to please users.
As Taiwan Patent No. 447729 teaches a portable computer which has a leather cover layer attached to an enclosure thereof via screws. However, the cover layer is liable to peel off due to missing of the screws. Moreover, the cover layer can not be smoothly and tightly attached to the enclosure of the portable computer by using screws, wrinkles may be formed on the cover layer, such that the appearance of the enclosure is less pleasing.
U.S. Pat. No. 6,775,130 teaches another type of portable computer. A leather grain layer is disposed on an exterior facing side of a top housing portion of the portable computer. However, the leather grains of the leather grain layer are liable to wear off, and the leather grains can not exhibit impressive appearance.
What is desired, therefore, is a product including a cover layer which has improved duration of life and pleasing appearance. What is also needed is a method to produce the product.
In one preferred embodiment, a product includes a metal piece, a hot melt adhesive adhering to the metal piece, and a nonmetal cover layer covering the metal piece and adheringly sandwiching the adhesive in cooperation with the metal piece.
In another preferred embodiment, a method to produce a product, includes the steps of: providing a mold including an upper mold and a lower mold, the upper mold defining a plurality of through holes; providing a metal piece, a hot melt adhesive, and a nonmetal cover layer between the upper and lower molds, the hot melt adhesive arranged between the hot melt adhesive and the cover layer; closing the mold; heating the mold to melt the hot melt adhesive; conducting high-pressure gas into the mold via the through holes to press the cover layer toward the metal piece; and opening the mold to pick up the product having the metal piece and the cover layer attached thereto by means of the adhesive.
In still another preferred embodiment, a mold is provided to be used in aforesaid method. The mold includes an upper mold defining a cavity. A plurality of through holes is defined in the upper mold at the cavity. A lower mold in cooperation with the upper mold includes a supporting member being received in the cavity of the upper mold.
Other advantages and novel features will become more apparent from the following detailed description of preferred embodiments when taken in conjunction with the accompanying drawings, in which:
In a preferred embodiment of the invention, a product, which includes a metal piece 10 and a nonmetal cover layer 50 attached to the metal piece 10, is produced with a molding method in which a mold is used. The metal piece 10 may be, for example, a part of an electronic device enclosure.
Referring to
The mold includes an upper mold 40 and a lower mold 30 in cooperation with the upper mold 40. A central supporting member 32 protrudes beyond a top surface of the lower mold 30, a surrounding groove is thereby defined in the lower mold 30 adjacent the supporting member 32. The supporting member 32 is shaped for insertion into a space of the metal piece 10 defined by the top panel 11 and the lateral panels 12 thereof. Four guide posts 34 protrude perpendicularly from four corners of the top surface of the lower mold 30 respectively.
Referring particularly to
A conventional heating system (not visible) is also embedded in the mold, for heating the upper and lower molds 40, 30 to a predetermined temperature.
The cover layer 50, in the preferred embodiment, is an one-piece leather layer. The cover layer 50 can also be, for examples, cloth layer and other material layer formed of natural or synthetic fibers.
To attach the cover layer 50 to the metal piece 10, a piece of plate-shaped hot melt adhesive 20 (see
The upper and lower molds 40, 30 are heated with the heating system respectively, the cavity 42 of the upper mold 40 is heated to a temperature ranged from 60 to 200 degrees centigrade, the supporting member 32 is heated to a temperature ranged from 60 to 200 degrees centigrade, and the temperature of at least one of the upper and lower molds 40, 30 is beyond melting point of the hot melt adhesive 20 but never too high to damage the cover layer 50.
Referring to
The upper mold 40 is moved toward the lower mold 30 to close the mold, with the guide posts 34 of the lower mold 30 relatively sliding in corresponding apertures 44 of the upper mold 40.
In an alternative embodiment, after the metal piece 10 is placed on the supporting member 32 of the lower mold 30, the hot melt adhesive 20 is placed on the metal piece 10 instead of being pre-attached to the undersurface of the cover layer 50, the cover layer 50 is then placed on the hot melt adhesive 20, the mold is finally closed.
It is believed that the present embodiments and their advantages will be understood from the foregoing description, and it will be apparent that various changes may be made thereto without departing from the spirit and scope of the invention or sacrificing all of its material advantages, the examples hereinbefore described merely being preferred or exemplary embodiments.
Number | Date | Country | Kind |
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200410051669.X | Sep 2004 | CN | national |