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The mold assembly of the present invention is used for forming an object, wherein the object comprises a first element, a second element, and a third element. A cooling fan is used as an example for illustration in the following descriptions. The cooling fan comprises a frame, blades disposed therein, and a cover. Specifically, the first element is the frame, the second element includes the blades, and the third element is the cover, wherein the cover further comprises an upper cover and a lower cover corresponding thereto. The cooling fan is formed by assembling the frame, the blades, the upper cover, and the lower cover.
The mold assembly of the present invention comprises a fixed female mold plate 1 and a fixed male mold plate 3. A female mold is disposed onto the fixed female mold plate 1. The female mold comprises a first female mold portion 11, a second female mold portion 13, and a third female mold portion 15. The male mold core is disposed onto the fixed male mold plate 3. The male mold core comprises a first male mold portion 31, a second male mold portion 33, and a third male mold portion 35. More specifically, the first male mold portion 31 and the first female mold portion 11 corresponding thereto form a first mold cavity complementary in shape to the first element. Similarly, the second male mold portion 33 and the second female mold portion 13 corresponding thereto form a second mold cavity complementary in shape to the second element; the third male mold portion 35 and the third female mold portion 15 corresponding thereto form a third mold cavity complementary in shape to the third element. Next, these elements can be formed by injection.
For the upper cover and lower cover, the third female mold portion 15 further comprises an upper cover female mold portion 151 and a lower cover female mold portion 153. The third male mold portion 35 also further comprises an upper cover male mold portion 351 and a lower cover male mold portion 353, wherein the upper cover male mold portion 351 and the upper cover female mold portion 151 corresponding thereto form an upper cover mold cavity complementary in shape to the upper cover. Lastly, the lower cover male mold portion 353 and the lower cover female mold portion 153 corresponding thereto form a lower cover mold cavity complementary in shape to the lower cover.
The mold assembly of the present invention further comprises a symmetric plane. The first female mold portion 11, the second female mold portion 13, the upper cover female mold portion 151 and the lower cover female mold portion 153 are disposed equidistantly about the symmetry plane. In this way, the mold assembly can be uniformly filled with plastic materials in the molding process and thus the forces applied within the mold assembly may be in equilibrium.
Moreover, the mold assembly of the present invention further comprises a runner (not shown), which connects to the first male mold portion 31, the second male mold portion 33, and the third male mold portion 35. The runner is a pouring channel for pouring liquid plastic material into the mold in the molding process. The mold assembly of the present invention can further comprise a cooling channel (not shown), which is disposed onto either the fixed male mold plate 3 or the fixed female mold plate 1. The cooling channel is used to quickly cool the formed elements.
According to the aforementioned mold assembly, the four elements of the cooling fan can be designed by manufactured in the same mold with the injection molding machines. After pouring the plastic material, the mold assembly of the present invention can simultaneously produce those elements. Then, those elements can be assembled into a cooling fan. This manufacturing process can replace the conventional manufacturing process, which required more molds and multiple molding processes. In particularly, the molding process of the present invention only applies with one set of molds in a production line to produce an object. As a result, the present invention has the following advantages: easier production management, efficient production, enhanced stability of the final product, a reduced number of molds, reduced frequency of mold changing, no need for large stocks, and reduced manufacturing costs.
The above disclosure is related to the detailed technical contents and inventive features thereof. People skilled in this field may proceed with a variety of modifications and replacements based on the disclosures and suggestions of the invention as described without departing from the characteristics thereof. Nevertheless, although such modifications and replacements are not fully disclosed in the above descriptions, they have substantially been covered in the following claims as appended.
Number | Date | Country | Kind |
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095137569 | Oct 2006 | TW | national |