Claims
- 1. An approximately cylindrical aerosol filter for filtering a fluid medium from inside the filter to outside the filter, comprising:
- a number of coaxially disposed, approximately cylindrical filter areas, each of said filter areas having a metal gauze with metal wire gauze layers, and axis, and a cylinder radius; and
- spacers disposed between each respective pair of said filter areas,
- said gauze layers each including a defining layer having a pore size, at least one first layer and at least one second layer,
- said pore size of said defining layer of said gauze layers increasing with an increasing cylinder radius of said filter areas,
- said defining layer of each of said gauze layers being disposed between said at least one first layer and said at least one second layer,
- said at least one first layer being disposed nearer to said axis of said filter areas than said at least one second layer, and
- each of said at least one second layer of each of said gauze layers having a second layer pore size larger than said pore size of said defining layer in a respective one of said gauze layers.
- 2. The aerosol filter according to claim 1, wherein each of said at least one first layer includes at least one protective layer adjacent said defining layer.
- 3. A method for filtering a fluid medium including droplets, which comprises:
- providing an approximately cylindrical aerosol filter having:
- a filter axis;
- approximately cylindrical shaped filter areas coaxially disposed in the filter on the filter axis;
- a spacer element between each respective pair of filter areas;
- each of the filter areas having a metal gauze with metal wire gauze layers;
- each of the gauze layers having a defining layer with a pore size increasing with an increasing cylinder radius of the filter areas, at least one first layer, and at least one second layer;
- the defining layer being disposed between the at least one first layer and the at least one second layer;
- the at least one first layer being disposed nearer to the filter axis than the at least one second layer, and
- the at least one second layer having a second layer pore size larger than the pore size of the defining layer in a respective one of the gauze layers; and
- flowing the fluid medium through the filter from the inside of the filter to the outside of the filter for reducing the flow velocity of the fluid medium and increasing the droplets and
- for filtering the fluid medium.
- 4. The method according to claim 3, which comprises adapting the pore size of the defining layers and the spacer elements to the flow velocity of the fluid medium.
- 5. The method according to claim 3, wherein the flowing step is performed by flowing a fluid medium selected from the group consisting of toxic substances and radioactive substances through the filter.
- 6. The aerosol filter according to claim 1, wherein each of said at least one second layer includes a supporting layer supporting said defining layer.
- 7. The aerosol filter according to claim 1, wherein each of said at least one second layer includes a distribution layer adjacent to said defining layer.
- 8. The aerosol filter according to claim 1, wherein said pore size of said defining layer is not more than a few millimeters.
- 9. The aerosol filter according to claim 1, wherein said metal wire gauze layers have metal wires made of an alloy selected from the group consisting of corrosion-resistant alloys and heat-resistant alloys.
- 10. The aerosol filter according to claim 1, wherein said metal wire gauze layers have metal wires joined by at least one of the group consisting of welding and sintering.
CROSS-REFERENCE TO RELATED APPLICATION
This is a continuation of copending International Application PCT/EP96/04523, filed Oct. 17, 1996, which designated the United States.
US Referenced Citations (10)
Foreign Referenced Citations (6)
Number |
Date |
Country |
2221068 |
Oct 1973 |
DEX |
2541383 |
Mar 1977 |
DEX |
2745141 |
Apr 1978 |
DEX |
2931702 |
Feb 1981 |
DEX |
698751 |
Oct 1953 |
GBX |
960640 |
Jun 1964 |
GBX |
Non-Patent Literature Citations (1)
Entry |
"Dubbel Taschenbuch fur Maschinenbau", 16.sup.th edition, Springer 1987, p. M 48. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCTEP9604523 |
Oct 1996 |
|