Head cover assembly with monolithic valve plate

Information

  • Patent Grant
  • 6431845
  • Patent Number
    6,431,845
  • Date Filed
    Friday, May 11, 2001
    23 years ago
  • Date Issued
    Tuesday, August 13, 2002
    22 years ago
Abstract
A head cover assembly for a two cylinder compressor is described. The head cover assembly is mounted over the compressor cylinders and includes a one piece valve plate with a pair of removable heads. The valve plate includes two substantially identical cylinder covers disposed over a pair of plate sections, thereby enclosing a volume above each plate section with a head installed. Each cylinder cover includes a divider wall which divides the enclosed volume of the cover into an intake volume and an exhaust volume. A pair of passageways provides communication between the cylinder covers connecting the exhaust volumes and the intake volumes.
Description




FIELD OF THE INVENTION




This invention relates generally to head cover assemblies for compressors, and more specifically to head cover assemblies for multiple cylinder compressors.




BACKGROUND OF THE INVENTION




Dual cylinder, reciprocating compressors generally include a pair of pistons which reciprocate within a pair of cylinders, a pair of valve plates, and a pair of cylinder heads or a single piece cylinder head assembly. Each cylinder head includes an enclosed intake volume and exhaust volume. The gas or air is valved into and out of the compressor cylinders from the enclosed intake volumes in communication with the compressor inlet, to the enclosed exhaust volumes in communication with the compressor outlet.




SUMMARY OF THE INVENTION




The present invention provides a head cover assembly for a two cylinder compressor mounted over the compressor cylinders. Such a two cylinder compressor is disclosed in U.S. Pat. No. 6,126,410, which is hereby expressly incorporated by reference. The head cover assembly includes a one piece valve plate with a pair of removable heads. The valve plate includes two substantially identical cylinder covers disposed over a pair of plate sections, thereby enclosing a volume above each plate section with the head installed. Each cylinder cover includes a divider wall which divides the enclosed volume of the cover into an intake volume and an exhaust volume. The exhaust volumes of each cylinder cover are in communication with one another through a passageway in the center portion of the valve plate connecting the two cylinder covers. The intake volumes are similarly communicated through a passageway in the center portion. The intake volume enclosed by each cylinder cover is in communication with an inlet port for drawing air into the compressor. The exhaust volume of each cylinder cover is in communication with an exhaust port for expelling air from the compressor.




Each plate section includes a first side, a second side, a first bore, and a second bore. A first valve is connected to the first side of the plate section for controlling flow into the cylinder through the first bore, and a second valve is connected to the second side of the plate section for controlling flow out of the cylinder through the second bore.




As the piston travels through its downstroke, air is drawn into the inlet volume through the inlet port, and into the cylinder through the second valve. As the piston travels through its upstroke, air within the cylinder is passed through the second valve and into the exhaust volume. The air passes from the exhaust volume out of the head cover assembly through the exhaust port.




One embodiment of the present invention provides a multiple cylinder pump. The pump includes at least two separate cylinder housings, a pair of pistons, a one piece valve plate, and a pair of heads for the valve plate. Each cylinder housing defines a cylinder with an axis. The axes are parallel and spaced apart. Each piston is reciprocable in a corresponding one of the cylinders. The one piece valve plate includes a plate section for each of the cylinder housings.




In another embodiment of the pump, the valve plate includes with each plate section a chamber portion having an intake volume and an exhaust volume with a divider wall between the intake volume and the exhaust volume. In certain embodiments, the divider wall is straight.




In yet another embodiment of the pump, the valve plate includes a center portion which fluidly connects the corresponding intake volumes and exhaust volumes.




In still another embodiment, the pump further comprises at least one gasket between the cylinder housings and the valve plate.




In yet another embodiment, the pump further comprises a gasket for each head to seal the head to the valve plate.




The present invention further provides an embodiment of a head cover assembly for a pump having multiple cylinders. The head cover assembly includes a one piece valve plate including a plate section for at least two of the cylinders of the pump and at least one head for the valve plate.




In another embodiment of the head cover assembly, the valve plate includes with each plate section a chamber portion having an intake volume and an exhaust volume.




In certain embodiments of the head cover assembly, the valve plate is a die cast aluminum alloy.




In yet another embodiment of the head cover assembly, each plate section includes a pair of valves.




In still another embodiment of the head cover assembly, the valve plate includes a center portion which fluidly connects the plate sections




The present invention still further provides a head cover assembly for a pump having at least two separate cylinders. The assembly including a plate section for each of the cylinders, the plate sections being formed together in a single piece of continuous material.




In yet another embodiment of the head cover assembly, each plate section includes a continuous side wall extending substantially perpendicular around the perimeter of the valve place and a divider wall extending substantially perpendicular from the plate section and spanning the side wall providing an intake chamber and an exhaust chamber. The assembly further comprises a head for each plate section.




In yet still another embodiment of the head cover assembly, the assembly further comprises a gasket for sealing each head to the top of the side wall and divider wall. In certain embodiments of the head cover assembly, the assembly further comprises a plurality of fasteners to attach the plate sections and heads to the pump.




In yet another embodiment of the head cover assembly, the assembly further comprises a first tube fluidly connecting the intake chambers of the plate sections and a second tube fluidly connecting the exhaust chambers of the plate sections.




In still another embodiment of the head cover assembly, the assembly further comprises a gasket for sealing each plate section to the corresponding cylinder.




Other features of the present invention will become apparent upon consideration of the following description of exemplary embodiments and the accompanying drawings.











BRIEF DESCRIPTION OF THE DRAWINGS




The present invention will be described hereafter with reference to the attached drawings which are given as non-limiting examples only, in which:





FIG. 1

is a perspective view of the inventive head cover assembly attached to a dual cylinder compressor;





FIG. 2

is an exploded perspective view of head cover assembly of

FIG. 1

including a one piece valve plate and a pair of heads;





FIG. 3

is a top view of the valve plate with the valves attached;





FIG. 4

is a cross-sectional view of the valve plate of

FIG. 3

along line


4





4


;





FIG. 5

is a cross-sectional view of the valve plate of

FIG. 3

along line


5





5


;





FIG. 6

is a bottom view of the valve plate;





FIG. 7

is a top view of the valve plate;





FIG. 8

is a cross-sectional view of the valve plate of

FIG. 7

along line


8





8


;





FIG. 9

is a cross-sectional view of the valve plate of

FIG. 7

along line


9





9


;





FIG. 10

is a top view of the head; and





FIG. 11

is a bottom view of the head.




These exemplifications set out herein illustrate an embodiment of the invention that is not to be construed as limiting the scope of the invention in any manner.











DESCRIPTION OF EMBODIMENTS OF THE INVENTION




The embodiments described herein are not intended to be exhaustive or to limit the invention to the precise forms disclosed.





FIG. 1

shows a head cover assembly


20


according to the present invention mounted to a compressor


10


. Compressor


10


may be of various, conventional configurations having at least two cylinders. Compressor


10


of

FIG. 1

is a dual cylinder configuration, each cylinder having substantially identical structure and performing a substantially identical function. Head cover assembly


20


similarly includes one piece valve plate


22


and a pair of heads


24


. Fasteners


34


secure valve plate


22


and heads


24


to compressor


10


.





FIG. 2

shows head cover assembly


20


of the present invention disassembled from compressor


10


. Head cover assembly


20


generally includes a one piece valve plate


22


and a pair of heads


24


. One piece valve plate


22


is made of a die cast aluminum alloy or other suitable material and includes two substantially identical sections


26


connected by center portion


28


. Each section


26


includes a plate section


30


and a chamber portion


32


.




Thus, except where indicated, for example, in the description of the center portion


28


which connects the chamber portions


32


, the remainder of this description will address only the structure and function of one-half of head cover assembly


20


.




Referring now to

FIGS. 2-9

, it is shown that the head cover component of the present invention generally includes a pair of sections


26


, which are joined together by a center portion


28


, and a pair of heads


24


. As previously mentioned, since both sections


26


are identical, only one will be described in detail. Each section


26


includes plate section


30


and chamber portion


32


which is disposed upon plate section


30


. Each chamber portion


32


includes a continuous side wall


34


extending from plate section


30


and a divider wall


38


which is disposed within the enclosed volume of side wall


34


, plate section


30


, and head


24


. Divider wall


38


divides the enclosed volume into an intake volume


40


and an exhaust volume


42


.




Chamber portion


32


includes four corner portions


44


, each having a mounting indentation


46


and hole


47


which register with a corresponding mounting hole


48


in head


24


. The upper surface


50


of chamber portion


32


, which extends around the perimeter of chamber portion


32


and atop divider wall


38


, compressively engages a gasket


51


when head


24


is mounted to chamber portion


32


. As such, gasket


51


is compressed into groove


52


to provide a seal between chamber portion


32


and head


24


along the gasket.




Side wall


34


is integrally formed with plate section


30


at a substantially perpendicular intersection, thereby maximizing the interior volume enclosed by head


24


. Integrally formed on flat portion


54


of side wall


34


is a first, inlet port


56


and a second, exhaust port


58


. Each port has a substantially cylindrical inner wall


60


with threads formed thereon (not shown). Directly across from first, inlet port


56


formed on flat portion


62


of side wall


34


is a first opening


64


which is in communication with a first passageway


66


extending through center portion


28


into the other chamber portion


32


. Similarly, directly across from second, exhaust port


58


on flat portion


62


is a second opening


68


which is in communication with a second passageway


70


extending through center portion


28


into the other chamber portion


32


. Ports


56


and


58


function as receptacles for connection with the external apparatus used in conjunction with compressor


10


. Since passageways


66


and


70


communicate the enclosed volumes of chamber portions


32


, the operator may connect external apparatus to the ports


56


and


58


of either or both chamber portions


32


.




Each plate section


30


is a flat, substantially rectangular plate extending from the lower edge of chamber portion


32


having a first side


72


directed toward the cylinder of compressor


10


and a second side


74


directed toward head


24


. First side


72


includes a circular groove


75


, shown in

FIG. 3

, for receiving a gasket


77


which engages the upper edge of cylinder


12


of compressor


10


.




Referring now to

FIGS. 3 through 5

, a first bore


76


extends through plate section


30


adjacent one edge


78


of plate section


30


and a second bore


80


extends through plate section


30


adjacent the other edge


82


. A first valve


84


(shown in dotted lines in

FIG. 3

) is mounted to first side


72


of plate section


30


. First valve


84


includes a flexible sheet


86


having one end


88


fixedly attached to first side


72


, headtured between a retainer plate


90


and first side


72


, and another, free end


92


which extends over and substantially covers first bore


76


. A second valve, generally designated


94


, is attached to second side


74


of plate section


30


. Second valve


94


also includes a flexible sheet


96


having one end


98


fixedly attached to second side


74


of plate section


30


, and another, free end


100


which extends over and substantially covers second bore


80


. Second valve


94


further includes a valve limiter


102


which has one end


104


fixedly attached to plate section


30


and another end


106


. Flexible sheet


96


is headtured between valve limiter


102


and second side


74


of plate section


30


. Limiter


102


includes an inclined or curved surface


108


which diverges from second side


74


with distance from one end


104


. Accordingly, as flexible sheet


96


flexes away from second side


74


, surface


108


engages sheet


96


to limit the distance away from second side


74


that flexible sheet


96


may travel.




First valve


84


is attached to plate section


30


by fastener


110


at threaded hole


112


in enlarged portion


118


of divider wall


38


. Fastener


110


is shown as a threaded screw which extends through retainer plate


90


and flexible sheet


86


and threads into hole


112


. Second valve


64


is attached to plate section


30


by fastener


114


at threaded hole


116


. Fastener


114


is shown as a threaded screw which extends through limiter


102


and flexible sheet


66


into hole


116


. However, fastener


114


may be of various configurations, for example, a rivet or a nut and bolt combination.




Referring now to

FIGS. 6 through 9

, divider wall


38


extends between side wall


34


to divide the enclosed volume of chamber portion


32


into intake volume


40


and exhaust volume


42


as described above. Lower edge


120


of divider wall


38


is integrally connected to plate section


30


. Upper edge


122


of divider wall


38


lies in substantially the same plane as surface


50


of chamber portion


32


. Accordingly, as surface


50


engages the outer ring of gasket


51


when head


24


is mounted to chamber portion


32


, head


24


compresses the portion of the gasket extending between the outer ring into groove


52


on upper edge


122


of divider wall


38


, thereby providing a seal between intake volume


40


and exhaust volume


42


.




Divider wall


38


includes one end


124


connected to flat portion


54


of side wall


36


and another end


126


connected to the opposed, flat portion


62


of side wall


36


. Divider wall


38


extends into the interior space of chamber portion


32


in perpendicular relationship to flat portions


54


and


62


of sidewall


36


.




Center portion


28


extends between and connects the two chamber portions


32


. As mentioned, center portion


28


includes first passageway


66


and second passageway


70


. The passageways are defined within a pair of tubular members


128


. Each tubular member


128


has a flat lower surface


130


which is recessed relative to side


72


of plate section


30


. A web


134


extends between tubular members


128


. A plate


131


attaches to lower surfaces


130


providing a surface to identify the valve plate.




It should be apparent that divider wall


38


can be positioned within chamber portion


32


between ports


56


,


58


and openings


64


,


68


to adjust the size of intake volume


40


or exhaust volume


42


.




Referring now to

FIGS. 10 and 11

, each of heads


24


is a substantially rectangular plate made of a die cast aluminum alloy or other suitable material and includes a top side


136


, a bottom side


138


, and four mounting holes


140


. Top side


136


includes a plurality of raised strips


142


to improve both the strength and appearance of the head and plurality of raised arrows


144


to show the direction of the air into head cover assembly


20


. Bottom side


138


is substantially flat to facilitate a good seal between valve plate


22


and head


24


.




While this invention has been described as having exemplary embodiments, this application is intended to cover any variations, uses, or adaptions using its general principles. Further, this application is intended to cover such departures from the present disclosure as come within the known or customary practice within the art to which it pertains. The spirit and scope of the invention are to be limited only by the terms of the appended claims.



Claims
  • 1. A pump comprising:at least two separate cylinder housings, each cylinder housing defining a cylinder with an axis, the axes being parallel and spaced apart; a pair of pistons, each piston being reciprocable in a corresponding one of the cylinders; a one piece valve plate including a plate section for each of the cylinder housings; and a pair of heads for the valve plate; wherein the valve plate includes with each plate section a chamber portion having an intake volume and an exhaust volume; and wherein the valve plate includes a center portion which fluidly connects the plate sections.
  • 2. The pump of claim 1, wherein the valve plate includes a divider wall between the intake volume and the exhaust volume.
  • 3. The pump of claim 2, wherein the divider wall is straight.
  • 4. The pump of claim 1, further comprising at least one gasket between the cylinder housings and the valve plate.
  • 5. The pump of claim 1, further comprising a gasket for each head to seal the head to the valve plate.
  • 6. A head cover assembly for a pump having multiple cylinders, comprising:a one piece valve plate including a plate section for at least two of the cylinders of the pump; and at least one head for the valve plate; wherein the valve plate includes a center portion which fluidly connects the plate sections.
  • 7. The head cover assembly of claim 6, wherein the valve plate includes with each plate section a chamber portion having an intake volume and an exhaust volume.
  • 8. The head cover assembly of claim 6, wherein the valve plate is a die cast aluminum alloy.
  • 9. The head cover assembly of claim 6, wherein each plate section includes a pair of valves.
  • 10. A head cover assembly for a pump having at least two separate cylinders, the assembly comprising:a plate section for each of the cylinders, the plate sections being formed together in a single piece of continuous material; wherein each plate section includes a pair of valves.
  • 11. The head cover assembly of claim 10, wherein each plate section includes a continuous side wall extending substantially perpendicular around the perimeter of the valve place and a divider wall extending substantially perpendicular from the plate section and spanning the side wall providing an intake chamber and an exhaust chamber.
  • 12. The head cover assembly of claim 11, further comprising a head for each plate section.
  • 13. The head cover assembly of claim 12, further comprising a gasket for sealing each head to the top of the side wall and divider wall.
  • 14. The head cover assembly of claim 12 further comprising a plurality of fasteners to attach the plate sections and heads to the pump.
  • 15. The head cover assembly of claim 11 further comprising a first tube fluidly connecting the intake chambers of the plate sections and a second tube fluidly connecting the exhaust chambers of the plate sections.
  • 16. The head cover assembly of claim 10, further comprising a gasket for sealing each plate section to the corresponding cylinder.
  • 17. A pump, comprising:at least two cylinder housings; and a head cover assembly comprising a one-piece valve plate including a plate section for each of said cylinder housings, said valve plate including a portion which fluidly connects the plate sections; and at least one head for the valve plate.
  • 18. A pump comprising:at least two housings, each housing defining a cylinder; a pair of pistons, each piston being reciprocable in a corresponding one of the cylinders; a one piece valve plate including a plate section for each of the cylinder housings, said valve plate including a portion which fluidly connects the two plate sections; and at least a pair of heads for the valve plate.
  • 19. The pump of claim 18, wherein the valve plate includes with each plate section a chamber portion having an intake volume and an exhaust volume.
  • 20. The pump of claim 19, wherein the valve plate includes a divider wall between the intake volume and the exhaust volume.
  • 21. The pump of claim 20, wherein the divider wall is straight.
  • 22. The pump of claim 18, wherein each plate section includes a pair of valves.
RELATED APPLICATION

This application claims the priority of U.S. Provisional Patent Application No. 60/210,627 filed on Jun. 9, 2000, the complete disclosure of which is hereby expressly incorporated by reference.

US Referenced Citations (97)
Number Name Date Kind
498989 Perry Jun 1893 A
1029726 Sprado Jun 1912 A
1636001 Kasley Jul 1927 A
1661148 Winkler Feb 1928 A
1672436 Thege Jun 1928 A
1896098 Poyer Feb 1933 A
1896404 Hale Feb 1933 A
1951558 Nystrom Mar 1934 A
2084665 Aikman Jun 1937 A
2127825 Mader Aug 1938 A
2134077 Ehret Oct 1938 A
2673130 Becker Mar 1954 A
2765779 Graves Oct 1956 A
2766695 Gailloud Oct 1956 A
2851020 Gailloud Sep 1958 A
2879913 McCombie Mar 1959 A
2970608 Doeg Feb 1961 A
2976813 Redman Mar 1961 A
2985358 Lee et al. May 1961 A
3049284 Alamprese Aug 1962 A
3082935 Arak Mar 1963 A
3139009 Härting Jun 1964 A
3160229 Terasawa Dec 1964 A
3209659 Colwell Oct 1965 A
3277837 Pangburn Oct 1966 A
3315651 Dangauthier Apr 1967 A
3375972 Raufeisen Apr 1968 A
3386424 Appeman Jun 1968 A
3432177 Colwell Mar 1969 A
3468260 Belden Sep 1969 A
3472446 Linnert Oct 1969 A
3521607 Wiseman et al. Jul 1970 A
3526469 Lipe et al. Sep 1970 A
3568573 Bailey et al. Mar 1971 A
3612726 Yowell Oct 1971 A
3628427 Bailey Dec 1971 A
3718410 Berger et al. Feb 1973 A
3841796 Schlanzky Oct 1974 A
3882842 Bailey et al. May 1975 A
3927956 Linthicum Dec 1975 A
3961868 Droege, Sr. et al. Jun 1976 A
3961869 Droege, Sr. et al. Jun 1976 A
3981631 Kemp Sep 1976 A
3998571 Falke Dec 1976 A
D245779 Nobata Sep 1977 S
4088428 Bannister et al. May 1978 A
D250113 Nobata Oct 1978 S
4123201 Andriulis Oct 1978 A
4275999 Hetzel et al. Jun 1981 A
4311440 Eberhardt Jan 1982 A
4406590 Kessler Sep 1983 A
4433966 Krumm Feb 1984 A
4434448 Bell et al. Feb 1984 A
4477231 Swift Oct 1984 A
4480368 Vachon Nov 1984 A
4559686 Kessler Dec 1985 A
4594760 Dillard Jun 1986 A
4642037 Fritchman Feb 1987 A
4718827 Sutton et al. Jan 1988 A
4749340 Ikeda et al. Jun 1988 A
4781540 Ikeda et al. Nov 1988 A
4782738 Jackson et al. Nov 1988 A
4790727 Steele Dec 1988 A
4810174 Stuckey et al. Mar 1989 A
4842498 Bramstedt et al. Jun 1989 A
4867650 Ikeda et al. Sep 1989 A
4911614 Kawai et al. Mar 1990 A
4976284 Hovarter Dec 1990 A
4995795 Hetzel et al. Feb 1991 A
5064359 Plummer Nov 1991 A
5096395 Todescat et al. Mar 1992 A
5145335 Abelen et al. Sep 1992 A
5147190 Hovarter Sep 1992 A
5156532 Arndt et al. Oct 1992 A
5213125 Leu May 1993 A
5226803 Martin Jul 1993 A
5231917 Wood Aug 1993 A
5288212 Lee Feb 1994 A
5328338 Hirano et al. Jul 1994 A
5370156 Peracchio et al. Dec 1994 A
5379799 Kawai et al. Jan 1995 A
5390633 Taue Feb 1995 A
5396930 Ebbing et al. Mar 1995 A
5421368 Maalouf et al. Jun 1995 A
5454397 Miszczak Oct 1995 A
5456287 Leu Oct 1995 A
5586874 Hashimoto et al. Dec 1996 A
5601118 Jang Feb 1997 A
5603611 Tarutani et al. Feb 1997 A
5632607 Popescu et al. May 1997 A
5632609 Hashimoto May 1997 A
D379996 Leu et al. Jun 1997 S
5647395 Hashimoto et al. Jul 1997 A
5655898 Hashimoto et al. Aug 1997 A
5895208 Riedlinger et al. Apr 1999 A
6056521 Leu et al. May 2000 A
6126410 Faulkner et al. Oct 2000 A
Foreign Referenced Citations (6)
Number Date Country
101233 Sep 1896 DE
581380 Jul 1933 DE
844998 Aug 1960 DE
2 323 035 Nov 1975 FR
406000 Feb 1934 GB
313250 Dec 1933 IT
Non-Patent Literature Citations (9)
Entry
Vacuum and Pressure Systems Handbook, Revised Edition, Copyright 1986 by Gast Manufacturing Corporation, pp. 22 and 23.
Advertising literature: New Gast ROC-R Compressor.
Advertising literature: Gast Air Compressors, vol. F-10, dated May, 1992, p. 41.
Advertising literature: Healy Systems, Inc., The New VP 500 Central Vacuum Vane Pump, Nov. 16, 1993.
Untitled drawing of pump, Models 607CB22 and 607CD22.
Thomas Industries, Inc. 2619/2621 Series Compressors and Vacuum Pumps, pamphlet, published Jul. 1994.
Thomas Compressors and Vacuum Pumps, 2750 Series, pamphlet, published Jul. 1995.
Thomas Industries, Inc. Compressors and Vacuum Pumps, Series 2600, pamphlet, published Jun. 1994.
Thomas Industries, Inc. Compressors and Vacuum Pumps, 2807 Series, pamphlet, published Jun. 1994.
Provisional Applications (1)
Number Date Country
60/210627 Jun 2000 US