1. Field of the Invention
The invention relates to a composite structure and a method for making the same, and more particularly to a composite structure having a metallic base part and a molded feature formed over the metallic base part with an interlocking mechanism or a mark in between.
2. Description of the Related Art
Metallic parts often need features for decoration or for assembly. In solid-metal forming processes, e.g. stamping or forging, the material's formability is poor. Adding ribs, bosses or decoration labels with thickness variation are either not possible or not cost effective. Although liquid-metal cast can be applied to cast metal parts with complicated shape, the cosmetic and structural quality of the resulting parts are often not acceptable for the parts that often contain porosity, non-fill or flow marks. For those products that require high-quality finish and complicated shape, computerized numerical control (CNC) has been applied to remove unwanted material from a block of metal. However, the long machining cycle time and the large amount of waste materials make CNC very expensive and unfriendly to the environment. Welding can be applied to join alloy components onto a preformed metal part. However, the additional costs of those components, the cost of high-power heat source and the burn-mark make welding not competitive. Therefore, it is desirable to find a method that can form near net-shape features on a pre-formed metal part cost effectively without damaging its cosmetic surface.
Therefore, the object of the present invention is to provide a composite structure and a method for making the same that can overcome at least one of the aforesaid drawbacks associated with the prior art.
According to one aspect of the present invention, there is provided a composite structure that comprises: a metallic base part made from a metallic material and having at least one bonding region; at least one porous protrusion made from a sintered metal powder and bonded to and protruding from the bonding region; and at least one feature molded over the porous protrusion.
According to another aspect of the present invention, there is provided a method for making a composite structure. The method comprises: preparing a metallic base part made from a metallic material and having at least one bonding region; applying a body of a metal powder on the bonding region; laser sintering the body of the metal powder on the bonding region so as to form a porous protrusion of a sintered metal powder bonded to the bonding region; and molding a moldable material over the porous protrusion on the bonding region so as to form a feature bonded to and covering the porous protrusion.
In drawings which illustrate embodiments of the invention,
Before the present invention is described in greater detail with reference to the accompanying preferred embodiments, it should be noted herein that like elements are denoted by the same reference numerals throughout the disclosure.
The composite structure 2 of the electronic device housing is adapted to accommodate and hold the external components 41 therein, and includes: a metallic base part 5 made from a first metallic material and having four bonding regions 511; four porous protrusions 6 made from a sintered metal powder and bonded to and protruding from the bonding regions 511, respectively; and four features 8 molded over the porous protrusions 6, respectively, and each formed with an interlocking member 81 adapted to interlock with one of the external components 41 of the electronic device 100.
The interlocking member 81 is in the form of a threaded hole formed in the corresponding feature 8 and adapted to threadedly engage a fastener 42 for fastening said one of the external components 41 of the electronic device 100 to the feature 8. Alternatively, each feature 8 can have a structure engaging said one of the external components 41 in a tongue-and-groove or press fit engaging manner instead of the threadedly engaging manner.
The first metallic material is preferably selected from aluminum, nickel, magnesium, titanium, copper, alloys thereof, and stainless steel.
The features 8 are made from a second metallic material or a plastic material selected from thermoplastics, thermosetting resin, elastomer and plastic alloy (plastic plus carbon/glass fiber). Preferably, the plastic material is selected from polycarbonate and polyacetylene. The second metallic material can be the same as or different from the first metallic material.
Preferably, the molding of the moldable material over the bonding region 511 is conducted by insertion molding so that the feature 8 thus formed can have a structure including the interlocking member 81.
Preferably, the metal powder 710 is selected from iron powder, aluminum powder, nickel powder, magnesium powder, titanium powder, copper powder, powders of alloys thereof, and stainless steel powder.
With the inclusion of the porous protrusion 6 and the feature 8 molded over the porous protrusion 6 and having the inter locking member(s) 81 or the molded mark(s) 85 in the composite structure 2 of the present invention, at least one of the aforesaid drawbacks associated with the prior art can be eliminated.
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
This application claims priority of United States Provisional Patent Application No. 61/430554, filed on Jan. 7, 2011.
Number | Date | Country | |
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61430554 | Jan 2011 | US |