1. Field of the Invention
The present invention relates generally to a glass working apparatus and more particularly, to a glass working apparatus that can process the workpiece efficiently. The present invention also concerns a glass working method adopting the aforesaid apparatus.
2. Description of the Related Art
In glass industry, the quality and efficiency of the glass panel processing are always needed to be concerned and improved. For processing a circular hole, a sand blasting device, mechanical drill or water knife may be used. However, the application of these conventional devices has some drawbacks on processing speed, cost, appearance or posterior process. For example, when a mechanical drill is used and rotated by a driving device to cut a glass workpiece, the periphery wall of the cutting hole tends to crack or, worstly, the whole glass workpiece may crack as the drill is lowered vertically to touch and drill the top surface of the glass workpiece. Therefore, the yield rate of this method is low.
To avoid cracking of the glass workpiece during corking, a two-step cutting method is usually employed. According to this two-step cutting method, a diamond drill that has a small round tip is used to drill a small circular recess on the workpiece at first, and then another diamond drill is used to drill and deepen the small circular recess to cut the workpiece to a depth approximately equal to one half of the thickness of the workpiece, and then a similar cutting procedure is performed to cut the workpiece from the bottom side for working out the desired hole eventually. Further, the structure of the drill must be close to perfect round, and there must be an interruption in the contact area of the drill so that cutting chips and waste powder can be expelled. Further, excessively high speed or low speed may result in a cutting failure.
The aforesaid two-step processing method provides certain improvement. However, because a glass panel is fragile, improper control of the contact pressure between the glass cutting tool and the glass workpiece may cause the glass workpiece to break or crack. Therefore, conventional glass working devices and methods cannot eliminate the problems of high defect rate and high processing cost.
Therefore, it is desirable to provide a glass working apparatus that eliminates the aforesaid problems.
It is one objective of the present invention to provide a glass working apparatus, which will not cause the glass workpiece to crack easily, improving the yield rate.
It is another objective of the present invention to provide a glass working apparatus, which can simplify processing steps, shorten processing time, and reduce the processing cost.
To achieve these objectives, the glass working apparatus of the present invention comprises a casing, a rotating mechanism that has a shaft rotatably mounted in the casing, and an oscillating unit connected with the shaft and rotatable with the shaft.
When a glass cutting tool is connected to the oscillating unit and the rotating mechanism and the oscillating unit are started, the glass cutting tool can be rotated and oscillated simultaneously for cutting a glass workpiece efficiently without causing the glass workpiece to crack.
Further scope of applicability of the present invention will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the invention, are given by way of illustration only, since various changes and modifications within the spirit and scope of the invention will become apparent to those skilled in the art from this detailed description.
The present invention will become more fully understood from the detailed description given herein below and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, and wherein:
As shown in
The casing 20 has an axle hole 22, and two receiving holes 24 extending from two opposite sides of the periphery toward the inside of the casing 20.
The rotating mechanism 30 comprises a plurality of axle bearings 34 mounted inside the casing 20 around the axle hole 22, and a shaft 32 inserted through into the axle hole 22 and supported in the axle bearings 34 for free rotation relative to the casing 20.
The oscillating unit 40 comprises two electrically conductive rings 42, three electrically insulative boards 43 made of Bakelite, two electrically conductive strips 44, an ultrasonic oscillator 46 and a connector 48. As shown in
When the glass working apparatus 10 is used to cut a circular hole on a glass workpiece 60, a drill 70 is fixedly connected to the connector 48, and then the shaft 32 and the ultrasonic oscillator 46 are started, causing the drill 70 to be rotated and oscillated at a high speed. At this time, attach the circular bottom drilling tip 72 of the drill 70 to the surface of the glass workpiece 60, as shown in
When the glass working apparatus 10 is used to cut an oblong hole on the glass workpiece 60, the drill 70 can be detached from the connector 48 and then another drill 80 can be fastened to the connector 48, as shown in
The aforesaid two drills are conventional glass cutting tools. To fully carry out the performance of the glass working apparatus 10, the invention provides a glass cutting tool 90. As shown in
Referring to
By means of the design of recessed hole, the invention effectively reduces the contact area between the hole-cutting portion of the glass cutting tool and the glass workpiece, avoiding cracking of the glass workpiece during working and lowering the defect rate and processing cost. Further, the glass cutting tool of the present invention has a grinding portion and multiple chamfering portions. Therefore, one single glass cutting tool can be used to achieve different processing works, saving much labor and time. In consequence, the processing cost is greatly reduced.
As stated above, the invention utilizes high speed rotation of the rotating mechanism and high frequency oscillation of the oscillating unit to match with a specially designed glass cutting tool, enabling the glass workpiece to be rapidly cut subject to the desired shape without cracking. Therefore, the invention greatly improves product yield rate and facilitates processing.
Further, the invention can be used to process a metal workpiece subject to the use of a diamond cutting tool of precision 0.0005 mm to match with high frequency oscillation of the ultrasonic oscillator so as to polish and trim the metal workpiece.
Further, the oscillation frequency of the ultrasonic oscillator is not limited to 40 KHz. An ultrasonic oscillator that oscillates at 28 KHz can be used as a substitute. The oscillation frequency of the ultrasonic oscillator is determined subject to the user's requirements.
The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are intended to be included within the scope of the following claims.
Number | Date | Country | Kind |
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97102237 | Jan 2008 | TW | national |