1. Field of the Invention
The present invention relates to an improved stator structure of a turbo molecular pump and a method for manufacturing the same, and more particularly to a stator structure which comprises integrated stator blades and shroud rings and a method for manufacturing the same.
2. Description of the Prior Art
In recent years, semiconductor industries are developed rapidly, so that the requirement of the related apparatuses in front-end stage of the semiconductor is largely increased, and wherein a turbo molecular pump, the major device in the high vacuum system, has a great demand.
The turbo molecular pump is originated in 1912 and improved from a molecular drag pump invented by a German, Gaede. Referring to
Referring to
In a conventional stator blade assembly, each stator blade is usually formed on a raw material by the way of punch and bending, and the stator blade assembly is connected with an outer ring which is used to connect with other outer rings of other stator blade assemblies. However, the rigidity of the stator blades formed by bending is poor, and the stator blades are easily deformed through contacting with gas in high-speed movement continuously, so as to decrease the working efficiency of the turbo molecular pump and even to cause the damage of the turbo molecular pump.
In view of this, it is necessary to provide an improved stator structure of a turbo molecular pump and a method for manufacturing the same, which can increase the whole rigidity of the stator blade assembly and elevate the working efficiency and the life of the turbo molecular pump.
In view of the above shortcomings of the prior art, the inventor of the present invention resorted to past experience, imagination, and creativity, performed experiments and researches repeatedly, and eventually devised the present invention, an improved stator structure of a turbo molecular pump and a method for manufacturing the same.
The major objective of the present invention is to provide the improved stator structure of the turbo molecular pump, which can increase the whole rigidity by the integrated structure of an inner shroud ring, an outer shroud ring and a plurality of stator blades of each level of stator blade assembly, so as to make the stator blades not to be deformed easily, and decrease the complexity and working time in fabrication.
According to the above objective, the present invention provides the improved stator structure of the turbo molecular pump, wherein the stator comprises a plurality of stator blade assemblies, and each stator blade assembly comprising: an inner shroud ring being disposed on the inner side of the stator blade assembly; an outer shroud ring being disposed on the outer side of the stator blade assembly and assisting in the combination of the stator blade assembly with adjacent ones; and a plurality of stator blades being radially disposed between the inner shroud ring and the outer shroud ring, wherein the plurality of stator blades are arranged with uniform spacing; wherein the inner shroud ring, the outer shroud ring and the plurality of stator blades are integrated so that the rigidity of the stator is increased and the stator is not easily to be deformed.
Another objective of the present invention is to provide the method for manufacturing the improved stator structure of the turbo molecular pump, which can increase the whole rigidity by a computer numerical control (CNC) lathe and a milling process with a five-axis processing machine for manufacturing an integrated stator blade assembly, so as to make the stator blades not to be deformed easily, and decrease the complexity and working time in fabrication.
According to the above objective, the present invention provides the method for manufacturing the improved stator structure of the turbo molecular pump comprising the steps of: (1) laying a raw material of each stator blade assembly on a computer numerical control (CNC) lathe, and fixing the position of the raw material; (2) proceeding an outline treatment to a shape of each stator blade assembly by a turnery process with the CNC lathe; and (3) shaping a plurality of stator blades of each stator blade assembly by a milling process with a five-axis processing machine.
For a complete understanding of the aspects, structures and techniques of the invention, reference should be made to the following detailed description and accompanying drawings wherein:
To achieve the foregoing objectives and effects, the inventors utilize a serious of processes for manufacturing an integrated stator blade assembly, and modify the stator blade assembly repeatedly, thus achieving an improved stator structure of a turbo molecular pump and a method for manufacturing the same of the present invention.
Referring to
Referring to
The above step 203 can be subdivided into several steps. Referring to
Furthermore, before entering the above step 201, it is necessary to design the overall appearance of the stator blade assembly and the processing path. Referring to
Moreover, after finishing the above step 203, a processing error analysis can be employed for knowing that whether the product manufactured by the above process is the same with the original designed model. This processing error analysis is generally achieved by a Coordinate Measuring Machine (CMM) for examining the product, and then comparing the measured curved surface of the product with the curved surface of the original designed model, so as to obtain the difference of a specific position on the outline between the two surfaces. Regarding the error of scallop high or brace high of the curved surface of the product caused by the process, that should be measured by a roughness tester which can measure the roughness of a curved surface.
Referring to
By the detailed description of the overall structure and technical content of the present invention, the following advantages of the present invention can be derived:
The integrated stator provided by present invention can increase the overall rigidity, and the stator blades can maintain the original configuration and not to be deformed easily after the constant working of the turbo molecular pump, so as to increase the life and the efficiency of the stator.
The integrated stator of the present invention can decrease the complexity in fabrication by its simple structure, so as to reduce the fabrication time.
The present invention employs a serious of computer-controlling process for manufacturing an accurate stator with less time, so as to remit the traditional time-consuming and complicated manufacturing process.
It should be understood that the embodiments of the present invention described herein are merely illustrative of the technical concepts and features of the present invention and are not meant to limit the scope of the invention. Those skilled in the art, after reading the present disclosure, will know how to practice the invention. Various variations or modifications can be made without departing from the spirit of the invention. All such equivalent variations and modifications are intended to be included within the scope of the invention.
As a result of continued thinking about the invention and modifications, the inventors finally work out the designs of the present invention that has many advantages as described above. The present invention meets the requirements for an invention patent, and the application for a patent is duly filed accordingly. It is expected that the invention could be examined at an early date and granted so as to protect the rights of the inventors.
Number | Date | Country | Kind |
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099134402 | Oct 2010 | TW | national |