Embodiments of this invention will now be described in further detail with reference to the accompanying drawings, in which:
The cartridge 1 has an orifice 5 formed therethrough which expands at tapered surface 7 into an internal cavity 8. The internal cavity 8 functions as a chamber to accommodate a flow restrictor in the form of piston 9. A filter screen 14, 15 is attached to either end of the cartridge 1. In the embodiment shown, a counterbore is formed in each end of the cartridge 1. The filter screen ends, or screen collars, 16, 17, respectively, are inserted into the counterbores and secured to the cartridge by swageing the ends of the cartridge 1. In one embodiment, the screen 14 farthest from the ridges 4 is attached initially, captivating the piston 19 within the internal cavity 8. The cartridge assembly is then placed in the copper tube 28 for the final assembly step. At this point, the second screen 15 is loosely placed in position on the top end 3 of the cartridge 1. The top end 3 of the cartridge 1 is then swageed to attach the filter screen 15 to the cartridge 1. To eliminate an extra step, the copper tube 28 and the top end 3 of the cartridge 1 may be crimped and swaged simultaneously.
The piston 9 illustrated has a spherical nose 12, a plurality of flutes 11 and a winged edge 10 that serves as a poke yoke feature to prevent inserting the piston 9 into the cavity 8 of the cartridge 1 in wrong direction. This winged edge 10 has an added role of providing a controlled stop against the collar 16 of the filter screen 14. An orifice 13 is formed through the longitudinal axis of the piston. Any number of flutes 11 other than three and a differing edge 10 may be used on the piston 9.
As refrigerant flows in the forward direction, the refrigerant moves the piston 9 to a first position adjacent the end of the orifice 5 of the cartridge 1 where a leak free seal is created between the nose 12 of the piston 9 and the tapered surface 7 in the cartridge cavity 8. This interface between the piston 9 and the tapered surface 7 ensures that flow is controlled by the orifice 13 of the piston 9, the orifice 13 representing the smallest diameter in the flow path.
When flow has been reversed, the piston 9 unseats and moves to a position distal from the end of the orifice 5 and backstops on the screen collar 16 creating a flow passage around its external body as well as through piston orifice 13. This enables the fixed cartridge 1 to play a dominant role in controlling the refrigerant flow because, at this point, the orifice 5 for the fixed cartridge 1 is the smallest diameter in the flow path.
However, in some applications the flow restrictor embodiment shown in
In the embodiment shown in
Another embodiment of the invention is shown in
It is noted that the cartridge orifices shown in
Accordingly, the combination restrictor cartridge of the present invention provides bi-directional flow, while eliminating the need for a secondary floating restrictor and cartridge assembly as required by the prior art. This is accomplished by utilizing the cartridge as a housing for the floating restrictor and a flow control orifice. In operation, flow in the heating direction is controlled by the fluted floating restrictor. In the cooling direction, the fluted floating restrictor is unseated. Flow control is then be controlled by the fixed restrictor/housing. Any rattle caused by the piston being downstream of the refrigerant expansion can be compensated for by an anti-rattle mechanism.
Although the principles, embodiments and operation of the present invention have been described in detail herein, this is not to be construed as being limited to the particular illustrative forms disclosed. They will thus become apparent to those skilled in the art that various modifications of the embodiments herein can be made without departing from the spirit or scope of the invention. Accordingly, the scope and content of the present invention are to be defined only by the terms of the appended claims.
The present application claims the benefit of the filing date of U.S. Provisional Patent Application Ser. No. 60/925,557, filed Apr. 20, 2007 which claims the benefit of U.S. Provisional Patent Application Ser. No. 60/817,979, filed Jun. 30, 2006 the disclosure of which is incorporated herein by reference.
Number | Date | Country | |
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60817979 | Jun 2006 | US | |
60925557 | Apr 2007 | US |