This application claims priority of Taiwanese Application No. 092136547, filed on Dec. 23, 2003.
1. Field of the Invention
The invention relates to a method for making a precision molding glass, and a molding device for implementing the method.
2. Description of the Related Art
In conventional precision glass molding technology, a softened glass material is pressed by two mold portions having opposite molding surfaces to form a solid semi-product. The semi-product is then processed by a centering unit so as to remove an excess amount of the glass material from the semi-product by polishing to obtain a precision molding glass product.
Referring to
1. When the semi-product 2 is clamped by the clamping member 101, a center line of the semi-product 2 is liable to be offset from an axis of the clamping member 101, which in turn results in the introduction of a relatively large error in the precision glass product.
2. The surface of the semi-product is liable to be abraded due to the clamping of the clamping member 101.
3. Since use of the polishing member 102 is required to remove the excess amount of the glass material from the semi-product 2, the cost for making the precision molding glass product is relatively high.
4. Since the precision molding glass product is made by separate molding and centering steps, the conventional method is relatively complicated to practice.
Therefore, the object of the present invention is to provide a method for making a precision molding glass having advantages of relatively simple processing, relatively low production costs, and relatively high precision.
In one aspect of this invention, a method for making a precision molding glass includes the steps of:
In another aspect of this invention, a molding device for making a precision molding glass includes a first mold, a second mold having an axis common with that of the first mold, and a centering unit having a shearing portion. The first mold has a first molding surface centered at the axis, a first peripheral surface extending around the axis and connected to the first molding surface, and a first edge formed between the first molding surface and the first peripheral surface. The first peripheral surface has a first distal peripheral portion distal from the first edge. The second mold has a second molding surface opposite to the first molding surface and centered at the axis, a second peripheral surface extending around the axis and connected to the second molding surface, and a second edge formed between the second molding surface and the second peripheral surface. The second peripheral surface has a second distal peripheral portion distal from the second edge. The centering unit is mounted such that the shearing portion is movable axially between the first and second distal peripheral portions.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiment with reference to the accompanying drawings, of which:
FIGS. 3 to 6 are schematic sectional views showing consecutive steps of the preferred embodiment of
Referring to
A) Preparing a Molding Device 100:
Referring to
B) Mounting a Centering Unit 30:
The centering unit 30 has a shearing portion 31, and is mounted around the molding device 100 such that the shearing portion 31 is movable axially between the first and second distal peripheral portions 14,24. The shearing portion 31 of the centering unit 30 includes an annular blade 311 extending transversely of the axis (L) of the first and second molds 10,20. The annular blade 311 has a thickness in the direction of the axis (L), and includes a cutting edge 312 proximate to either one of the first and second peripheral surfaces 12, 22. The thickness is gradually enlarged from the cutting edge 312 as the annular blade 311 extends away from the molding device 100.
C) Placing a Glass Material 40:
The glass material 40 is placed between the first and second molding surfaces 11,21.
D) Purging:
In the preferred embodiment, the molding device 100 is mounted within a shield 200, which is made of quartz, and which is provided with a heating element 210. After placing the glass material 40 between the molding surfaces 11,21, the inside of the shield 200 is purged with nitrogen so as to protect the glass material 40 from oxidation.
E) Heating:
The glass material 40 is heated by the heating element 210 to a molding temperature T1.
F) Molding:
Referring to
G) Temperature Lowering:
The temperature of the glass material 40 is lowered to a temperature which is approximate to yield point At of the glass material 40, and in which the glass material 40 is still in a soft state. H) removing the excess amount (I) of the glass material 40:
With further reference to
I) Returning the Centering Unit 30:
The centering unit 30 is returned from the first distal peripheral portion 14 back to the second distal peripheral portion 24, as shown by the dotted lines in
J) Separating the First and Second Molds 10,20:
The first and second molds 10,20 are moved away from each other to obtain a precision molding glass 40″, and to permit taking of the precision molding glass 40″ out of the molding device 100. The precision molding glass 40″ thus made is illustrated in
In view of the aforesaid, since the centering processing is conducted while the molded glass is still in a soft state within the molding device 100, the aforesaid disadvantages of the prior art can be overcome by the molding method of this invention. Furthermore, since the polishing processing is not required in the molding method of this invention, the yield for the precision molding glass 40″ can be increased, and the production cost therefor can be reduced.
While the present invention has been described in connection with what is considered the most practical and preferred embodiment, it is understood that this invention is not limited to the disclosed embodiment 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.
Number | Date | Country | Kind |
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092136547 | Dec 2003 | TW | national |