1. Field of the Invention
The present invention relates to an electrostatic precipitator, more particularly one, which is relatively simple in structure, relatively inexpensive to manufacture, and easy to assemble.
2. Brief Description of the Prior Art
Referring to
The long metallic boards 41 are provided for positive charges to be deposited on. Each long metallic board 41 is formed with several big through holes 411, and small through holes (not numbered) smaller than the big ones 411. The short metallic boards 42 are provided for negative charges to be deposited on. Each short metallic board 42 is formed with big through holes 421, and small through holes (not numbered) smaller than the big ones 421. The big through holes 411 are aligned with corresponding small through holes of the short boards 42 while the big through holes 421 are aligned with corresponding small through holes of the long boards 41.
The metallic rods 43 are passed through corresponding small holes of the long metallic boards 41, and corresponding big holes 421 of the short metallic boards 42; the metallic rods 43 are apart from the edges of corresponding big holes 421 of the short metallic boards 42, and tightly contact the edges of corresponding small holes of the long metallic boards 41. Sleeves 431 are passed around each metallic rod 43, and are each positioned between two adjacent long boards 41 so as to prevent distance between the adjacent long boards 41 from changing; thus, the long metallic boards 41 are securely and equidistantly spaced apart, and electrically connected to the metallic rods 43. Each metallic rod 43 is joined to insulating sleeves 451, 461 at two end portions thereof. The insulating sleeves 451, 461 are passed into corresponding ones of holes formed on the upper and the lower aluminum boards 45, 46. And, nuts 451, 452 are screwed onto upper and lower ends of each metallic rod 43.
The metallic rods 44 are passed through corresponding big holes 411 of the long metallic boards 41, and corresponding small holes of the short metallic boards 42; the metallic rods 44 are apart from the edges of corresponding big holes 411 of the long metallic boards 41, and tightly contact the edges of corresponding small holes of the short metallic boards 42. Sleeves 441 are passed around each metallic rod 44, and are each positioned between two adjacent short boards 42 so as to prevent distance between the adjacent short boards 42 from changing; thus, the short metallic boards 42 are securely and equidistantly spaced apart, and electrically connected to the metallic rods 44. Each metallic rod 44 is joined to insulating sleeves at two end portions thereof. The insulating sleeves are passed into corresponding ones of holes formed on the upper and the lower aluminum boards 45, 46. And, nuts are screwed onto upper and lower ends of each metallic rod 44.
Thus, positive charges can be deposited on the long metallic boards 41 via the metallic rods 43, and negative charges on the short ones 42 via the metallic rods 44. When dust in the air is made to have positive charges thereon, and passed through the electrostatic precipitator, the dust will be attracted to the short metallic boards 41, and in turns, air is cleaned.
However, metallic rods 43, 44 have to be used together with insulating sleeves 451, 461 so as to hold and space the metallic boards 41, 42 in position. In other words, two different forms of parts have to be used as the supporting and spacing mechanism for the metallic boards on the above electrostatic precipitator. Consequently, the electrostatic precipitator is relatively expensive to manufacture, and labor-costing to assemble.
It is a main object of the present invention to provide an electrostatic precipitator, more particularly one, which is relatively simple in structure, inexpensive to manufacture, and easy to assemble.
The electrostatic precipitator of the present invention includes several dividable supporting rods, which are passed through corresponding big holes, and tightly fitted in corresponding small holes of metallic boards so as to support the metallic boards equidistantly spaced apart in position. Each supporting rod is made of several connectable parts, each of which has an insertion end portion, and a hollow holding end portion. Each supporting rod is assembled by means of joining insertion end portions to adjacent hollow holding end portions, and is apart from the edges of corresponding big holes of the metallic boards. Thus, the metallic boards are firmly held in position by means of tops of hollow holding end portions of those connectable parts that are joined to small through holes thereof.
The present invention will be better understood by referring to the accompanying drawings, wherein
Referring to
The frame 1 consists of upper and lower board parts 11, 12, and four vertical rod parts 13, which are joined to respective ones of the corners of the board parts 11, 12 to support the board parts 11, 12 in position. Each of the board parts 11, 12 has connecting holes 14, and engaging holes 15 smaller than the connecting holes 14. Caps 16 are tightly fitted in the connecting holes 14 of the board parts 11, and are each formed with a middle engaging hole (not numbered).
The first kind of metallic boards 2 are provided for positive charges to be deposited on, and are spaced apart between upper and lower board parts 11, 12 of the frame 1. Each first kind of metallic board 2 is formed with several big through holes 21, and small through holes 22 smaller than the big ones 21. The second kind of metallic boards 2′ are provided for negative charges to be deposited on, and are spaced apart, each being positioned between two adjacent first kind of metallic boards 2. Each second kind of metallic board 2′ is formed with several big through holes 21′, and small through holes 22′ smaller than the big ones 21′. The big through holes 21 are aligned with corresponding small through holes 22′ while the small through holes 22 are aligned with corresponding big through holes 21′, allowing the dividable supporting rods to be passed through the metallic boards 2, 2′. Furthermore, the engaging holes 15 of the frame 1 are aligned with corresponding through holes 21, 22′ while the connecting holes 14 of the frame 1 are aligned with corresponding through holes 22, 21′ so that the dividable supporting rods can be passed through the upper and lower board parts 11, 12 of the frame 1.
The dividable metallic supporting rods are provided for supporting the metallic boards 2, 2′ in position, and for making the metallic boards 2, 2′ equidistantly spaced apart. Each connectable part 3 of the dividable supporting rods includes an insertion end portion 31, and a hollow holding portion, which is thicker than the insertion end portion 31, and which has a connecting hole 32; the insertion end portions 31 are formed with such a size as to be capable of being tightly fitted into the connecting holes 32, the small through holes 22, 22′, and the engaging holes 15.
To assemble the electrostatic precipitator, referring to
Referring to
From the above description, it can be easily understood that the electrostatic precipitator of the present invention is comprised of supporting rods, which consist of single form of connectable parts 3, therefore it is simpler in the structure, easier to manufacture, and less labor-costing to assemble as compared with the conventional electrostatic precipitator in the Background.
Number | Name | Date | Kind |
---|---|---|---|
3018844 | Gonzalez | Jan 1962 | A |
3581470 | Aitkenhead et al. | Jun 1971 | A |
3836135 | Wightman | Sep 1974 | A |
4231766 | Spurgin | Nov 1980 | A |
4290788 | Pittman et al. | Sep 1981 | A |
5137552 | Sasaki | Aug 1992 | A |
5433772 | Sikora | Jul 1995 | A |
5547496 | Hara | Aug 1996 | A |
6096119 | Ho et al. | Aug 2000 | A |
Number | Date | Country |
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986410 | Mar 1965 | GB |
Number | Date | Country | |
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20040244592 A1 | Dec 2004 | US |