1. Field of the Invention
The present invention relates to a self-support electrostatic filter and a filter device thereof, particularly to one that has two non-woven scrim layers replacing a piece of expanded metal mesh to form a triple layered filter media with self-support.
2. Description of the Related Art
Conventional filter media is made of weaved fibers that allow air flows through the spaces in-between to filter the dusts in the airflow. Therefore, the spaces in-between has a direct effect on the dust loading capacity of the filter media. The fibers used in conventional filter media are comparatively thicker, thus the spaces in-between are comparatively wider. Such filter media has high permeability, but when it comes to minor dusts in submicron scale, the filtering function cannot work very well. For minor dusts, it requires thinner fibers to make the filter media with meticulously even and dense structure for filtering; however, the permeability would be lower and the pressure loss would be higher with such structure, and the dense structure would result in low dust loading capacity. In that case, conventional filter media has less efficiency in filtering and therefore increases the burden of a highly efficient filter arranged behind, and the method for increasing filter efficiency would cause more pressure loss and lower dust loading capacity, both would shorten the durability of the device.
If the fibers are electrostatic, the scale of dusts would not be a problem. The unblocked dusts would be attracted back to the surface of the filter media, achieving the filter function effectively. In that case, the meticulously even and dense structure is not necessary anymore, and the filter media would be highly permeable and have high dust loading capacity. Such structure has been disclosed in U.S. Pat. No. 6,703,072, U.S. Pat. No. 5,350,620 and Taiwanese Patent No. 449549.
On the other hand, nowadays a folded filter media is widely used in the market. It has the filter media disclosed above to be folded to have larger filter area, longer durability, and therefore higher filtering efficiency. However, it has a piece of expanded metal mesh packing from the outside for support and reducing the shaking in the process since the charged filter media tends to deform and be blown away during operation. The manufacturing process of such structure is illustrated
Still, the structure with a piece of expanded metal mesh 10 has shortcomings to be improved as following.
1. The expanded metal mesh piece 10 is used for support only; it does not help in increasing the efficiency in filtering.
2. The expanded metal mesh piece 10 has to be adhered to the filter media 11. The glues used for adhesion may block the spaces on the filter media 11, thus affecting the filter function, and the airflow through the filter media 11 would be obstructed as well, thus increasing pressure loss in the filtering process.
3. The glues used for adhesion would also cause lower dust loading capacity of the filter media 11.
4. The two-staged process of spreading glues and adhering would cost time and require more attention to the spreading process of the glues, causing more efforts in manufacturing.
5. When disposing of the filter media 11 for incineration, the expanded metal mesh piece 10 has to be detached from the filter media 11, but the glues make it difficult to be detached. Consequently, it requires more efforts in detaching. Also, the glues left on the filter media 11 would cause pollution after incineration.
Therefore, the inventor is trying to overcome the problems and shortcomings disclosed in the structures above.
A primary object of the present invention is to provide a self-support electrostatic filter and a filter device thereof that have two non-woven scrim layers replacing a piece of expanded metal mesh to solve the problem of lack of support in the prior art by having the filter self-supported.
Another object of the present invention is to provide a self-support electrostatic filter and a filter device thereof that have no glues or adhesives in the filter media so that the air flowing through would not be obstructed, thus lowering pressure loss.
Another object of the present invention is to provide a self-support electrostatic filter and a filter device thereof that have a filter media with high porosity layer structure to achieve high dust loading capacity.
Another object of the present invention is to provide a self-support electrostatic filter and a filter device thereof that have a filter media formed in one-step process instead of two-staged process of gluing and binding.
Yet another object of the present invention is to provide a self-support electrostatic filter and a filter device thereof that are eco-friendly without glues and a piece of expanded metal mesh, so that the filter media thereof can be incinerated directly without producing toxic materials.
To achieve the objects mentioned above, the present invention comprises a filter media made of charged filter media, having a first surface and a second surface at the opposite side of the first surface, and two thin non-woven scrim layers made of welded long fibers and ultrasonically bounded on the first and second surface of the filter media individually, so as to form a triple layered filter media; whereby the triple layered filter media can be wavy folded for self-support without adhering to a piece of expanded metal mesh.
Furthermore, the non-woven scrim layers are homo-polymers with a weight between 10 g/m2˜60 g/m2, and the long fibers thereof have a diameter between 30-70 um. The long fibers are bi-component fibers, including a core made of polyester with comparatively higher melting point wrapped by a sheath made of polypropylene with comparatively lower melting point. At the binding area of the non-woven scrim layer and the surfaces of the filter media, a plurality of pinholes is formed for positioning. The triple layered filter media further has a high porosity layer structure.
In an applicable embodiment, a filter device is made of the triple layered filter media disclosed above after being wavy folded, and the filter device further has a packing frame packing up the folded triple layered filter media; the packing frame is made of paper board, plastic board, or metal board.
With structures disclosed above, the present invention has two non-woven scrim layers replacing a piece of expanded metal mesh for self-support. It has the advantage of a strong structure as the expanded metal mesh does, to reduce the influences from airflow and avoid deformation. Also, it has less shaking and self-support without the expanded metal mesh and glues, and improves properties of high pressure loss, low dust loading capacity, two-staged processing, and causing environmental pollution in the prior art as well.
Referring to
Referring to
The non-woven scrim layers 30 are thin layers formed by welded long fibers 30 in sparse distribution, and it is preferred to have a weight between 10 g˜60 g per square meter (m2). If the weight is less than 10 g/m2, it would not be able to achieve the self-supporting function; if the weight is more than 60 g/m2, the scrim layers 30 would not be light and thing enough as expected. Also, the long fibers 31 have a diameter between 30-70 um to ensure enough space between each fiber for light weights.
With reference to
Further referring to
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Although particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except by the appended claims.
Number | Date | Country | Kind |
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104212711 | Aug 2015 | TW | national |