Compressed air filter assembly

4052178
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Inventors

Frantz, Virgil L.

Application #

609392

Filed

Sep-2-1975

Published

Oct-4-1977

Current US Class

055/313
055/337
055/385.1
055/417
055/418
055/432
055/DIG17
096/399
096/408
137/198
137/204
137/545

International Classes

B01D 045/16; 395; 397; 399; 417; 420; 423; 424; 426; 432; 456; 457; DIG. 17; 418; 163; 385 R

Field of Search

55/184 55/185 55/191 55/195 55/200 55/201 55/212 55/213 55/218 55/267 55/269 55/312 55/313 55/314 55/319 55/320 55/337 55/392 55/394 137/204 137/544 137/545 137/198 137/538 137/540

Assignee

Graham-White Sales Corporation (Salem, VA)

Examiners

Lutter; Frank W.

Attorney, Agent or Firm

Mechlin; Wilmer

Referenced by:

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Citation

Cite This Patent

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Abstract
An assembly connectable between a compressor and reservoir, having a filter unit capable of centrifugally cooling and separating condensed moisture and other contaminants from compressed air and discharging clean air in saturated condition at the outlet temperature and pressure, the unit being connected to the compressor through an inlet valve opening when the compressor begins pumping and to the reservoir through a pressure regulator valve adjustable to open only when the air in the unit reaches a predetermined pressure, which, for minimizing the absolute moisture content of the clean air passed to the reservoir, usually will be substantially maximum reservoir pressure.
 
Claims
We claim:

1. A filter assembly for a compressed air system having a reservoir and a compressor responding in pumping and idling cycles respectively to minimum and maximum predetermined pressures in the reservoir, said assembly comprising filter unit means connected between the compressor and reservoir for filtering air received from the compressor during the pumping cycle, outlet valve means for passing filtered air from said filter unit means to the reservoir only when said air is at a pressure above said maximum reservoir pressure, and means for reducing to saturation at the pressure in said filter unit means the moisture content of air passed therefrom.

2. A filter assembly according to claim 1, wherein the reducing means includes centrifugal cooling and separating means, and reduces to substantially ambient temperature the temperature of the filtered air passed from the filter unit means, and the outlet valve means prevents backflow of air from the reservoir to the filter means during the idling cycle.



Description
BACKGROUND OF THE INVENTION

Heretofore, as shown in Frantz U.S. Pat. No. 3,890,122, issued June 17, 1975, filter units in compressed air systems have passed air to a reservoir usually through an outlet check valve or sometimes through an unvalved outlet line, the latter if the unit is open to atmosphere only briefly during the compressor's idling cycle. In either case, the objective is to prevent the reservoir from losing pressure through the filter unit when the compressor is not pumping. Unless the ambient air is exceptionally dry or the filter unit contains a desiccant, the air will be saturated or even super-saturated with moisture on both entering the leaving the unit, although the outgoing air will have a lower absolute moisture content, if, as in the Frantz patent, the filter unit is adapted to remove moisture other than by adsorption.

The problem posed by a filter unit of the non-desiccant type in passing at least saturated air to a reservoir, whether through a check valve or an unvalved outlet, is that the resistance to flow is substantially or entirely the back pressure from the reservoir. In turn, the compressor, through a governor, is responsive in its pumping and idling cycles to reservoir pressure, idling when the reservoir reaches a predetermined maximum or cutout pressure and beginning to pump at a predetermined minimum or cut-in reservoir pressure and continuing to pump until the pressure in the reservoir is again at maximum. Thus, during the pumping cycle, the saturated air passing from the filter unit will range in pressure from at or slightly above the minimum to the maximum reservoir pressure. The absolute moisture content of saturated air decreasing with increasing pressure, the inevitable result is that, when the reservoir is fully charged to its maximum pressure, the air in the reservoir will be super-saturated, to the detriment of air brakes or other equipment operated by reservoir pressure. It is with a solution of this problem that the present invention is primarily concerned.
 
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