Making Method of Combination of Metal and Plastic with Metal Formed by Aid of High Temperature Gas
20180169915 ยท 2018-06-21
Inventors
Cpc classification
B29C45/14221
PERFORMING OPERATIONS; TRANSPORTING
B29K2705/00
PERFORMING OPERATIONS; TRANSPORTING
B29C45/14344
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C45/14
PERFORMING OPERATIONS; TRANSPORTING
B29C65/48
PERFORMING OPERATIONS; TRANSPORTING
B29C65/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A making method of combination of metal and plastic includes placing a metal plate into a die, applying a determined pressure on the metal plate, heating the die by a heating device to a determined temperature to soften and deform the metal plate, introducing a high pressure gas to blow and press the metal plate that is softened into a die cavity to form a metallic member formed by aid of a high temperature gas, removing the metallic member, and combining the metallic member with a plastic member.
Claims
1. A making method of combination of metal and plastic, comprising: placing a metal plate into a die, applying a determined pressure on the metal plate; heating the die by a heating device to a determined temperature to soften and deform the metal plate; introducing a high pressure gas to blow and press the metal plate that is softened into a die cavity to form a metallic member formed by aid of a high temperature gas; removing the metallic member; and combining the metallic member with a plastic member.
2. The making method of combination of metal and plastic of claim 1, wherein the step of combining the metallic member with a plastic member includes: forming an outward or inward protruding recessed portion on the metallic member; the recessed portion having a depth greater than a thickness of the metallic member; injection molding a plastic member in the recessed portion by a plastic filling die; and cutting residual metallic material and plastic material in the recessed portion, which protrude from and exceed the thickness of the metallic member, so that the metallic member and the plastic member are combined integrally.
3. The making method of combination of metal and plastic of claim 1, wherein the step of combining the metallic member with a plastic member includes: forming a through hole in the metallic member; covering and attaching a film on an outer face of the metallic member; injection molding a plastic member in the through hole by a plastic filling die; and removing the film, so that the metallic member and the plastic member are combined integrally.
4. The making method of combination of metal and plastic of claim 1, wherein the step of combining the metallic member with a plastic member includes: forming a through hole in the metallic member; printing or coating a protective layer on an outer face of the metallic member; injection molding a plastic member in the through hole by a plastic filling die; and removing the protective layer, so that the metallic member and the plastic member are combined integrally.
5. The making method of combination of metal and plastic of claim 1, wherein the step of combining the metallic member with a plastic member includes: forming a through hole in the metallic member; and directly injection molding a plastic member in the through hole by a plastic filling die, so that the metallic member and the plastic member are combined integrally.
6. The making method of combination of metal and plastic of claim 1, wherein the step of combining the metallic member with a plastic member includes: injection molding a plastic member by a plastic filling die; sticking, spraying or coating a layer of glue on the metallic member; and sticking the plastic member to the metallic member, so that the metallic member and the plastic member are combined integrally.
7. The making method of combination of metal and plastic of claim 6, wherein the glue is a double-sided adhesive or a liquid glue.
8. The making method of combination of metal and plastic of claim 1, wherein the step of combining the metallic member with a plastic member includes: forming a through hole in the metallic member; injection molding a plastic member by a plastic filling die, with the plastic member being insertable into the through hole; sticking, spraying or coating a layer of glue on a periphery of the through hole; and sticking the plastic member to the metallic member, so that the metallic member and the plastic member are combined integrally.
9. The making method of combination of metal and plastic of claim 8, wherein the glue is a double-sided adhesive or a liquid glue.
10. The making method of combination of metal and plastic of claim 1, wherein the step of combining the metallic member with a plastic member includes: forming a through hole in the metallic member; injection molding a plastic member by a plastic filling die; and spotting a plastic material which is disposed at a fused state into the through hole, so that the metallic member and the plastic member are combined integrally after the plastic material is solidified; and the plastic material and the plastic member are made of the same material.
11. The making method of combination of metal and plastic of claim 1, wherein the step of combining the metallic member with a plastic member includes: forming a through hole in the metallic member; injection molding a plastic member by a plastic filling die; and pouring a plastic material which is disposed at a fused state into the through hole, so that the metallic member and the plastic member are combined integrally after the plastic material is solidified; and the plastic material and the plastic member are made of the same material.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING(S)
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DETAILED DESCRIPTION OF THE INVENTION
[0017] A making method of combination of metal and plastic in accordance with the present invention comprises placing a metal plate into a die, applying a determined pressure on the metal plate, heating the die by a heating device to a determined temperature to soften and deform the metal plate, introducing a high pressure gas to blow and press the metal plate that is softened into a die cavity to form a metallic member formed by aid of a high temperature gas, removing the metallic member, and combining the metallic member with a plastic member.
[0018] Referring to the drawings and initially to
[0019] Referring to
[0020] Referring to
[0021] Referring to
[0022] The step of combining the metallic member with a plastic member has a sticking manner and includes: injection molding a plastic member 20 by a plastic filling die (not shown), sticking, spraying or coating a layer of glue 3 (see
[0023] Referring to
[0024] Referring to
[0025] Referring to
[0026] In conclusion, when the metallic member 10 is formed by aid of a high temperature gas, the outer face of the metallic member 10 reproduces the different and complicated stripes, reliefs or totems of the die cavity of the die and presents a mirror effect of different roughness during the molding process, without needing a working procedure, such as the hair-line surface treatment, sand blasting, polishing or abrading. Then, the metallic member 10 and the plastic member 20 are combined integrally. Preferably, the metallic member 10 and the plastic member 20 are combined integrally by sticking (double-sided adhesive or liquid glue) or by pressure or temperature (hot-press gluing). Alternatively, the metallic member 10 is planted in a plastic filling die, and plastic material is filled into the plastic filling die, so that the metallic member 10 and the plastic member 20 are combined integrally. Alternatively, fused plastic material is filled or dripping into the determined position so that the metallic member 10 and the plastic member 20 are combined integrally.
[0027] Accordingly, the metallic member 10 reproduces the complicated stripes, reliefs or totems of the die cavity of the die during the molding process, so that the outer face of the metallic member 10 has diverse variations and presents different appearance, thereby enhancing the aesthetic quality of the metallic member 10. In addition, the outer face of the metallic member 10 is directly molded and shaped, without needing a further working procedure, such as the hair-line surface treatment, sand blasting, polishing or abrading, thereby decreasing the cost of fabrication, enhancing the working precision, and increasing the quality of the product. Further, the metallic member 10 is made without needing a further working procedure, thereby decreasing the working time and saving the labor work.
[0028] Although the invention has been explained in relation to its preferred embodiment(s) as mentioned above, it is to be understood that many other possible modifications and variations can be made without departing from the scope of the present invention. It is, therefore, contemplated that the appended claim or claims will cover such modifications and variations that fall within the true scope of the invention.