1. Field of the Invention
The present invention relates to an anti-vibration apparatus and related method thereof for use in a rotating disk of an image display system, and more specifically, to a method and apparatus that utilizes curable fluid and a plurality of spheres to eliminate vibration generated by a rotating disk.
2. Description of the Prior Art
In theory, a rotating disk may rotate about the rotational spindle in a steady and balanced manner. However, in practice, due to inherent manufacturing defects or assembly problems, the substance of the rotating disk does not evenly distribute. As a result, vibration occurs when the rotating disk rotates. Although the vibration amplitude might not be significant in some circumstances, with precise optical instruments it becomes a critical factor whether the required precision level can be achieved.
Take the color wheel module, which has been widely used in image display devices as disclosed in U.S. Pat. No. 5,868,482, for example. The color wheel includes a plurality of color filter films bonding together. Its rotation modulates the color of the incident light to provide light beams with the sequential color changed at a rapid frequency so that the image display device can produce the required image formation. As the color wheel switches the color of the incident light through rotation, balance becomes an important issue.
Conventional balance methods mostly try to determine the unbalanced location through actually driving a disk 11. As shown in
When the unbalance substance M and the phase angle of the disk 11 are known, there are two common approaches to remedy the problem, i.e. adding or removing the corresponding substance. Manufacturers may choose to add a corresponding substance on location 180 degrees against the unbalance substance M to eliminate the vibration. It is also possible to remove a corresponding substance on the location of the unbalance substance M to eliminate the vibration. However, in practice, the location and amount of the unbalance substance M cannot be calculated as accurately as desired. In most circumstances, only proximate values are obtained. Then trial and error approaches are taken to perform correction. For instance, a drill out method may be taken to remove the substance. When the unbalance substance M of the disk 11 is obtained, a small hole maybe drilled on the location where the unbalance substance M is positioned to remove a selected amount of substance. Then a test run is taken. If the result is not satisfactory, another small hole is drilled. In the event that too many holes are drilled on one side, a small hole is drilled on the diagonal side. The process is repeatedly performed until the disk 11 is balanced. Such a balance method is inefficient. Even the final balance attained is not totally desirable. It can only reach a balance within the range of tolerances of measurement and calculation.
It is therefore a primary objective of the present invention to provide an anti-vibration apparatus and related methods thereof used in a rotating disk of an image display system for solving aforementioned problems.
The present invention discloses an anti-vibration apparatus and related method thereof applied in an image display system for eliminating vibration generated by a rotating disk. The present method is to fill a selected amount of curable fluid and a plurality of spheres in a holder after the holder is formed on the rotating disk. When the rotating disk rotates, unbalance of the rotating disk will generate some vibration force and that vibration force will drive the fluid and spheres moving, so that the fluid and the plurality of spheres will automatically flow to and distribute on balanced positions due to the vibration force. Finally, the fluid is curdled and solidified so as to fix the plurality of spheres position. Thus, balance can be reached for the rotating disk.
It is an advantage of the present invention that the flowage of the fluid and the plurality of spheres is done due to the vibration so that the fluid and the spheres will keep floating until the vibration is gone. Such a method and apparatus is not only easier to implement, it also can attain more precise balance.
These and other objectives and advantages of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
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Accordingly, to put the rotating disk 31 on the vibration measuring device. When the rotating disk 31 rotates, the fluid 33 and the predetermined amount of spheres 34 are subject to the vibration force generated by the rotating disk 31 with the unbalance substance M, and flow along the perimeter direction to the other side but will be held in the holder due to the constraint of the side wall of the holder as shown in
Because the vibration force will always existent when there is an unbalance in the rotating disk 31, so the fluid 33 and spheres 34 will keep moving until the rotating disk is well balanced. Once the balance condition is attained, the fluid 33 is curdled and solidified, and the spheres 34 are also positioned, simultaneously. The distributed state may be fixed to maintain a-permanent balance condition.
Since the spheres 34 can move automatically to be distributed at the corresponding balance positions of the rotating disk 31, distribution of the fluid 33 and the spheres 34 offsets the unbalance substance M of the rotating disk 31. The present invention not only saves the time of the trial and error process, but the balance condition is also more precise.
Moreover, the curable fluid 33 may be selected from photosensitive curable fluid (such as UV gel), thermal sensitive curable fluid, or double agent curable gel. The curing process of the fluid 33 may be done by providing photo energy, thermal energy, catalysts, or the like. It needs to be noted that the curable fluids and curing methods mentioned above are only to serve as examples; other types of curable fluid may also be selected as desired.
For performing balance in practical situations, the rotating disk 31 may be mounted onto a spindle 42 of a motor 41 and driven to rotate. Similarly, in order to prevent interference or inaccurate measuring, a suspending board 43 supported by springs 44 may be used to anchor the whole structure as shown in
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The holder 52 is bonded to the inner peripheral rim of the color wheel 51. The bonding method may be direct adhesion or the like. The holder 52 may be formed in any one of the embodiments set forth above (bowl, annular element, etc.) to contain the curable fluid 33 and the spheres 34. In addition, the color wheel 51 includes a plurality of transparent color filter films 511 for modulating and changing the color of the light beams passing through. The color filter films 511 mostly have red, green, blue and white colors. They are respectively formed in a fan-shape to couple together for forming the circular color wheel 51.
Once the holder 52 is bonded to the color wheel 51, balance may be performed independently. Balance may be achieved by the method set forth above, and by means of the apparatus shown in
In contrast to the prior art, the present anti-vibration apparatus and related method thereof for use in a rotating disk of an image display system employs fluid and a plurality of spheres with a selected amount of mass and quantities to be distributed at balance positions under high speed rotation. Furthermore, the present invention utilizes the curing characteristics to solidify the fluid. Thus balance is easier to achieve and more precise.
Those skilled in the art will readily observe that numerous modifications and alterations of the device may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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092132495 | Nov 2003 | TW | national |