US3354790A - Volume adjusting apparatus for compressor cylinder clearance pockets - Google Patents

Volume adjusting apparatus for compressor cylinder clearance pockets Download PDF

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US3354790A
US3354790A US508944A US50894465A US3354790A US 3354790 A US3354790 A US 3354790A US 508944 A US508944 A US 508944A US 50894465 A US50894465 A US 50894465A US 3354790 A US3354790 A US 3354790A
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clearance pocket
cylinder
volume
closure member
clearance
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US508944A
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Hugh A Race
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Ingersoll Rand Co
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Ingersoll Rand Co
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B49/00Control, e.g. of pump delivery, or pump pressure of, or safety measures for, machines, pumps, or pumping installations, not otherwise provided for, or of interest apart from, groups F04B1/00 - F04B47/00
    • F04B49/16Control, e.g. of pump delivery, or pump pressure of, or safety measures for, machines, pumps, or pumping installations, not otherwise provided for, or of interest apart from, groups F04B1/00 - F04B47/00 by adjusting the capacity of dead spaces of working chambers

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  • This invention relates to compressors and more particu larly to piston-type compressors having cylinder clearance pockets for controlling the capacities of the compressor cylinders.
  • the cylinders of piston-type compressors are usually individually designed of specific capacities which are dictated by the requirements of their respective compressors. Consequently, each compressor cylinder, or group of compressor cylinders, for a particular pistontype compressor is usually of different capacity than that for another piston-type compressor.
  • a clearance pocket is provided for a-compressor cylinder, this difference in the required cylinder capacity normally necessitates a variation in the volume of the clearance pocket communicating with the compressor cylinder.
  • this variation in cylinder clearance pocket volume has generally been obtained by the alteration of the basic cylinder casting to form the cylinder clearance pocket of the required volume. This method of varying the clearance pocket volume, however, requires costly pattern changes and is extremely uneconomical in application.
  • An object of the present invention is to provide a new and improved apparatus for adjusting the effective volume of a cylinder clearance pocket as necessary to provide the required cylinder clearance pocket volume without requiring an alteration of the cylinder casting.
  • Another object of the invention is to provide a new and improved apparatus of the type set forth which is relatively simple and economical in construction and highly efiicient and dependable in operation.
  • This apparatus comprises a closure means disposed within the clearance'pocket for closing a portion of the volume of the clearance pocket from communication with the cylinder, and a means for adjusting the disposition of the closure means in the clearance pocket to vary the portion of the volume of the clearance pocket closed by the closure means from communication with the cylinder.
  • FIG. 1 is a fragmentary sectional view of a portion of.
  • FIG. 1 taken on line 2-2 of FIG. 1, with the embodiment of the invention disposed to permit communication of a minimum portion of the volume of the clearance pocket with the compressor cylinder;
  • FIG. 3 is an enlarged sectional side view generally similar to FIG. 2, but showing the embodiment of the invention disposed to permit an increased portion of the volume of the clearance pocket to communicate with the compressor cylinder;
  • FIG. 4 is an exploded view of the embodiment of the invention illustrated in FIGS. 1 through 3;
  • FIG. 5 is an enlarged sectional side view generally similar to that of FIG. 3 but illustrating a clearance pocket containing an alternative embodiment of the invention.
  • FIG. 1 illustrates a fragmentary view of a piston-type compressor designated generally at 10 which includes a housing 12 having a bore 14 forming one of the cylinders of the compressor 10.
  • the cylinder bore 14 communicates adjacent its head end 15 with an inlet fluid passage 16 which is adapted to supply fluid to be compressed to the cylinder bore 14, and a discharge fluid passage 18 which is adapted to convey compressed fluid from the cylinder bore 14.
  • a valve 20 is disposed within the inlet fluid passage 16 to control the flow of the fluid to be compressed into the cylinder bore 14.
  • a valve 22 is disposed within the discharge fluid passage 18 to control the flow of the compressed fluid from the cylinder bore 14.
  • a piston 24 is slidably disposed within the cylinder bore 14 for compressing the fluid introduced into the cylinder bore 14 by the fluid inlet passage 16.
  • the piston 24 is secured by a mounting nut 26 to one end of a piston rod 28 which is suitably connected at its opposing end to a driving means such as a crankshaft (not shown) to transmit reciprocatory movement to the piston 24.
  • the cylinder bore 14 communicates at its head end 15 with a fluid passage 30 which, in turn, communicates with a housing cavity 31.
  • the housing cavity 31 communicates with one longitudinal end of a constant diameter, cylindrical clearance pocket 32.
  • the clearance pocket 32 receives fluid displaced by the piston 24 during its movement towards the head end 15 of the cylinder bore 14 to control the compression of the fluid within the cylinder bore 14 during such movement of the piston 24.
  • the clearance pocket 32 is provided with a radially extending, annular shoulder 34 adjacent its end communicating with the fluid passage 30.
  • the clearance pocket 32 is closed at its opposing end by a cover plate 36 which is detachably secured to the housing 12 by a plurality of bolts or similar fastening means 38.
  • the cover plate 36 includes an annular shoulder 40 which projects longitudinally into the clearance pocket 32 and engages the walls 33 of the clearance pocket 32.
  • a closure or plug member 46 is disposed transversely within the clearance pocket 32 for closing off a portion of the volume of the clearance pocket 32 from communication with the cylinder bore 14.
  • the closure member 46 is formed to include a solid, circular head portion 48 which has a diameter substantially equal to the constant diameter of the clearance pocket 32 and, thus, engages the walls 33 of the clearance pocket 32 along its circumference.
  • the head portion 48 of the closure member 46 is provided with a circumferential, annular groove 52 containing an annular sealing member or ring 54 which prevents fiuid leakage between the head portion 48 and the walls 33 of the clearance pocket 32.
  • the head portion 48 carries a reduced diameter, circular nose portion 50' of the closure member 46 which, as illustrated in FIGS. 2 through 4, extends longitudinally from the head portion 48 towards the housing cavity 31.
  • the disposition of the closure member 46 could be reversed to cause the nose portion 50 to extend longitudinally from the head portion 48 towards the cover plate 36.
  • the closure member 46 is retained transversely in the clearance pocket 32 by a plurality of annular spacer members or rings 56.
  • the spacer rings 56 are each formed with a diameter substantially equal to the constant diameter of the clearance pocket 32 and include axially disposed, aligned openings 58.
  • the spacer rings 56 are disposed transversely in the clearance pocket 32 with their circumferences in engagement with the walls 33 thereof and retain the closure member 46 transversely in the clearance pocket 32 by wedging the head portion 48 between the annular shoulder 34 of the clearance pocket 32 and the annular shoulder 40 of the cover plate 36.
  • the openings 58 in the spacer rings 56 permit the latter to receive the nose portion 50 of the closure member 46 during their retention of the closure member 46 and prevent the. spacer rings 56 from substantially reducing the flow volume of the clearance pocket 32.
  • the spacer rings 56 are constructed of substantially equal cross-sectional width and are all of identical construction.
  • the spacer rings 56 are each interchangeable in position in the clearance pocket 32 with the head portion 48 of the closure member 46.
  • the portion of the volume of the clearance pocket 32 closed off from communication with the cylinder bore 14 may readily and easily be varied as required by merely interchanging the position of the head portion 48 of the closure member 46 with that of one of the sealing rings 56.
  • a sealing ring (not shown) should normally be located circumferentially around the annular shoulder 40 of the cover plate 36 to prevent leakage between the annular shoulder 40 and the walls 33 of the clearance pocket 32.
  • FIG. 5 illustrates a modified embodiment of the present invention wherein all parts similar to those previously described are designated by the reference character for their similar part followed by the suflix a.
  • the spacer rings 59, 60, 6-2, 64, 66, 68, 70 and 72 are particularly constructed to permit extremely accurate location of the closure member 46a within the clearance pocket 32a. More specifically, as will be seen from FIG. 5, each one of the spacer rings 59, 60, 62, 64, 66, 68, 70 and 72 is constructed of a different crosssectional width.
  • the positions of the spacer rings 59, 60, 62, 64, 66, 68, 70 and 72 and the closure member 46a- may be interchanged to provide almost finite disposition of the closure member 46a in the clearance pocket 32a.
  • an apparatus for varying the volume of said clearance pocket communicating with said cylinder comprising:
  • an apparatus for varying the volume of said clearance pocket communicating with said cylinder comprising:
  • said retaining means comprises a retaining member disposed within said clearance pocket adjacent each of the opposing ends thereof.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Compressor (AREA)

Description

Nov. 28, 1967 RACE 3,354,790
VOLUME ADJUSTING APPARATUS FOR COMPRESSOR CYLINDER CLEARANCE POCKETS Filed Nov. 22, 1965 5 Sheets-Sheet 1 INVENTOR HUGH 4, RACE Nov. 28, 1967 H. A. RACE 3,354,790
VOLUME ADJUSTING APPARATUS FOR COMPRESSOR CYLINDER CLEARANCE FOCKETS Filed Nov. 22, 1965 5 Sheets-$heet ,so 38 I Uh? 50 i 3! 330 520 320 ENTOR F/G. 5 HUGH- A. RACE Nov. 28, 1967 H. A. RACE 3,354,790
VOLUME ADJUSTING APPARATUS FDR COMPRESSOR CYLINDER CLEARANCE POCKETS Filed Nov. 22, 1965 3 Sheets-Sheet :5
. INVENTOR HUGH A. RAGE United States Patent VOLUME ADJUSTING APPARATUS FOR COM- PRESSOR CYLINDER CLEARANCE POCKETS Hugh A. Race, Big Flats, N.Y., assignor to Ingersoll-Rand Company, New York, N.Y., a corporation of New Jerse Filed Nov. 22, 1965, Ser. No. 508,944
7 Claims. (Cl. 9259) ABSTRACT OF THE DISCLOSURE An apparatus for adjusting the effective volume of a compressor cylinder clearance pocket, including a closure member and spacer members for retaining the closure member in a plurality of alternative positions in the clearance pocket.
This invention relates to compressors and more particu larly to piston-type compressors having cylinder clearance pockets for controlling the capacities of the compressor cylinders.
conventionally, the cylinders of piston-type compressors are usually individually designed of specific capacities which are dictated by the requirements of their respective compressors. Consequently, each compressor cylinder, or group of compressor cylinders, for a particular pistontype compressor is usually of different capacity than that for another piston-type compressor. When a clearance pocket is provided for a-compressor cylinder, this difference in the required cylinder capacity normally necessitates a variation in the volume of the clearance pocket communicating with the compressor cylinder. Heretofore, this variation in cylinder clearance pocket volume has generally been obtained by the alteration of the basic cylinder casting to form the cylinder clearance pocket of the required volume. This method of varying the clearance pocket volume, however, requires costly pattern changes and is extremely uneconomical in application.
An object of the present invention is to provide a new and improved apparatus for adjusting the effective volume of a cylinder clearance pocket as necessary to provide the required cylinder clearance pocket volume without requiring an alteration of the cylinder casting.
Another object of the invention is to provide a new and improved apparatus of the type set forth which is relatively simple and economical in construction and highly efiicient and dependable in operation.
The foregoing objects, and the other objects and advantages of the invention which will be apparent from the following description taken in connection with the accompanying drawings, are obtained by the provision, in combination with a compressor cylinder and a clearance pocket communicating with the cylinder, of an apparatus for varying the volume of the clearance pocket communieating with the cylinder. This apparatus comprises a closure means disposed within the clearance'pocket for closing a portion of the volume of the clearance pocket from communication with the cylinder, and a means for adjusting the disposition of the closure means in the clearance pocket to vary the portion of the volume of the clearance pocket closed by the closure means from communication with the cylinder.
Referring to the drawings wherein two embodiments of the invention have been given for the purposes of illustration:
FIG. 1 is a fragmentary sectional view of a portion of.
"ice
ance pocket shown in FIG. 1, taken on line 2-2 of FIG. 1, with the embodiment of the invention disposed to permit communication of a minimum portion of the volume of the clearance pocket with the compressor cylinder;
FIG. 3 is an enlarged sectional side view generally similar to FIG. 2, but showing the embodiment of the invention disposed to permit an increased portion of the volume of the clearance pocket to communicate with the compressor cylinder;
FIG. 4 is an exploded view of the embodiment of the invention illustrated in FIGS. 1 through 3; and
FIG. 5 is an enlarged sectional side view generally similar to that of FIG. 3 but illustrating a clearance pocket containing an alternative embodiment of the invention.
Referring more particularly to the drawings wherein similar reference characters designate corresponding parts throughout the several views, FIG. 1 illustrates a fragmentary view of a piston-type compressor designated generally at 10 which includes a housing 12 having a bore 14 forming one of the cylinders of the compressor 10. The cylinder bore 14 communicates adjacent its head end 15 with an inlet fluid passage 16 which is adapted to supply fluid to be compressed to the cylinder bore 14, and a discharge fluid passage 18 which is adapted to convey compressed fluid from the cylinder bore 14. A valve 20 is disposed within the inlet fluid passage 16 to control the flow of the fluid to be compressed into the cylinder bore 14. A valve 22 is disposed within the discharge fluid passage 18 to control the flow of the compressed fluid from the cylinder bore 14.
A piston 24 is slidably disposed within the cylinder bore 14 for compressing the fluid introduced into the cylinder bore 14 by the fluid inlet passage 16. The piston 24 is secured by a mounting nut 26 to one end of a piston rod 28 which is suitably connected at its opposing end to a driving means such as a crankshaft (not shown) to transmit reciprocatory movement to the piston 24.
The cylinder bore 14 communicates at its head end 15 with a fluid passage 30 which, in turn, communicates with a housing cavity 31. The housing cavity 31 communicates with one longitudinal end of a constant diameter, cylindrical clearance pocket 32. The clearance pocket 32 receives fluid displaced by the piston 24 during its movement towards the head end 15 of the cylinder bore 14 to control the compression of the fluid within the cylinder bore 14 during such movement of the piston 24.
As illustrated in FIGS. 2 and 3, the clearance pocket 32 is provided with a radially extending, annular shoulder 34 adjacent its end communicating with the fluid passage 30. The clearance pocket 32 is closed at its opposing end by a cover plate 36 which is detachably secured to the housing 12 by a plurality of bolts or similar fastening means 38. The cover plate 36 includes an annular shoulder 40 which projects longitudinally into the clearance pocket 32 and engages the walls 33 of the clearance pocket 32.
A closure or plug member 46 is disposed transversely within the clearance pocket 32 for closing off a portion of the volume of the clearance pocket 32 from communication with the cylinder bore 14. The closure member 46 is formed to include a solid, circular head portion 48 which has a diameter substantially equal to the constant diameter of the clearance pocket 32 and, thus, engages the walls 33 of the clearance pocket 32 along its circumference. The head portion 48 of the closure member 46 is provided with a circumferential, annular groove 52 containing an annular sealing member or ring 54 which prevents fiuid leakage between the head portion 48 and the walls 33 of the clearance pocket 32. The head portion 48 carries a reduced diameter, circular nose portion 50' of the closure member 46 which, as illustrated in FIGS. 2 through 4, extends longitudinally from the head portion 48 towards the housing cavity 31. Alternatively, however, the disposition of the closure member 46 could be reversed to cause the nose portion 50 to extend longitudinally from the head portion 48 towards the cover plate 36.
The closure member 46 is retained transversely in the clearance pocket 32 by a plurality of annular spacer members or rings 56. The spacer rings 56 are each formed with a diameter substantially equal to the constant diameter of the clearance pocket 32 and include axially disposed, aligned openings 58. The spacer rings 56 are disposed transversely in the clearance pocket 32 with their circumferences in engagement with the walls 33 thereof and retain the closure member 46 transversely in the clearance pocket 32 by wedging the head portion 48 between the annular shoulder 34 of the clearance pocket 32 and the annular shoulder 40 of the cover plate 36. The openings 58 in the spacer rings 56 permit the latter to receive the nose portion 50 of the closure member 46 during their retention of the closure member 46 and prevent the. spacer rings 56 from substantially reducing the flow volume of the clearance pocket 32. As illustrated in FIGS. 2 and 3, the spacer rings 56 are constructed of substantially equal cross-sectional width and are all of identical construction.
From the foregoing it will be seen that the spacer rings 56 are each interchangeable in position in the clearance pocket 32 with the head portion 48 of the closure member 46. Thus, the portion of the volume of the clearance pocket 32 closed off from communication with the cylinder bore 14 may readily and easily be varied as required by merely interchanging the position of the head portion 48 of the closure member 46 with that of one of the sealing rings 56. Furthermore, it will be seen that, by removing the closure member 46 and the sealing rings 56 from the clearance pocket 32, the entire volume of the clearance pocket 32 may be permitted to communicate with the. cylinder bore 14. In this latter instance, however, a sealing ring (not shown) should normally be located circumferentially around the annular shoulder 40 of the cover plate 36 to prevent leakage between the annular shoulder 40 and the walls 33 of the clearance pocket 32.
By way of more specific example, with the closure member 46 located as illustrated in FIG. 2, substantially all oft-he volume of the clearance pocket 32 is closed ofr from the cylinder bore 14. If, however, it is necessary to increase the portion of the volume thereof communicating with the cylinder bore 14, the head portion 48 of the closure member 46 and the spacer rings 56 need only be interchanged in position, as shown in FIG. 3, todecrease the portion of the clearance pocket 32 closed by the closure member 46 from the cylinder bore 14. In like manner, the portion of the volume of the clearance pocket 32 communicating with the cylinder bore 14 may be varied as required without the necessity for altering the cylinder 7 casting.
FIG. 5 illustrates a modified embodiment of the present invention wherein all parts similar to those previously described are designated by the reference character for their similar part followed by the suflix a. In this embodiment of the invention, the spacer rings 59, 60, 6-2, 64, 66, 68, 70 and 72 are particularly constructed to permit extremely accurate location of the closure member 46a within the clearance pocket 32a. More specifically, as will be seen from FIG. 5, each one of the spacer rings 59, 60, 62, 64, 66, 68, 70 and 72 is constructed of a different crosssectional width. Thus, the positions of the spacer rings 59, 60, 62, 64, 66, 68, 70 and 72 and the closure member 46a-may be interchanged to provide almost finite disposition of the closure member 46a in the clearance pocket 32a.
From-the foregoing it will be seen that I have provided a new and improved apparatus for varying the portion of the volume of a clearance pocket communicating with a cylinder to .vary the capacity of the cylinder without altering the casting forming the cylinder. It will also be seen that, although my invention is relatively simple and economical in construction, it provides a highly efficient and dependable adjustment of the portion of the volume of the clearance pocket communicating with the cylinder.
It will be understood, however, that, although a preferred and an alternative embodiment of the invention have been illustrated and described in detail, the invention is not limited simply to these embodiments but contemplates other embodiments and variations which utilize the concepts and teachings of this invention.
Having thus described my invention, I claim:
1. In combination with a compressor cylinder and a clearance pocket communicating with said cylinder, an apparatus for varying the volume of said clearance pocket communicating with said cylinder, comprising:
a closure member disposed within said clearance pocket for closing a portion of the volume of said clearance pocket from communication with said cylinder; and
a plurality of separable spacer rings disposed within said clearance pocket and relocatable therein to adjust the disposition of said closure member in said clearance pocket to vary the portion of the volume of said clearance pocket closed by said closure member fro-m communication with said cylinder.
2.An apparatus according to claim 1, wherein said spacer rings are interchangeable in position with said closure member to adjust the location of said closure member in said clearance pocket.
3. An apparatus according to claim 2, wherein said spacer rings are constructed of varying dimensions to facilitate the relocation of said closure member within said clearance pocket.
4. In combination with a compressor cylinder and a clearance pocket communicating with said cylinder, an apparatus for varying the volume of said clearance pocket communicating with said cylinder, comprising:
a closure member extending transversely in said clearance pocket for closing a portion of the volume of said clearance pocket from communication with said cylinder; and
a plurality of separable annular spacer members extending transversely in said clearance pocket to retain said closure member in position therein and interchangeable in position with said closure member to adjust the position of said closure member in said clearance pocket to vary the portion of the volume of said clearance pocket closed by said closure member from communication with said cylinder.
5. An apparatus according to claim 4, wherein said spacer members are formed of ditferent widths to facilitate the relocation of said closure member at substantially any position in said clearance pocket.
6. An apparatus according to claim 4, wherein a means is provided for retaining said closure member and said annular spacer members transversely in said clearance pocket.
7. An apparatus according to claim 6, wherein said retaining means comprises a retaining member disposed within said clearance pocket adjacent each of the opposing ends thereof.
References Cited UNITED STATES PATENTS 1,394,835 10/1921 Hunt 23021 2,047,167 7/ 1936 Heller 230-21 2,729,388 1/1956 Ringham 92-69 X 3,106,313 10/1963 Kurhan 2209 3,198,421 8/1965 Alyea et a1. 230-21 EDGAR W. GEOGHEGAN, Primary Examiner. MARTIN P. SCHWADRON, Examiner.
I. C. COHEN, Assistant Examiner.

Claims (1)

1. IN COMBINATION WITH A COMPRESSOR CYLINDER AND A CLEARANCE POCKET COMMUNICATION WITH SAID CYLINDER, AN APPARATUS FOR VARYING THE VOLUME OF SAID CLEARANCE POCKET COMMUNICATION WITH SAID CYLINDER, COMPRISING: A CLOSURE MEMBER DISPOSED WITHIN SAID CLEARANCE POCKET FOR CLOSING A PORTION OF THE VOLUME OF SAID CLEARANCE POCKET FROM COMMUNICATION WITH SID CYLINDER; AND A PLURALITY OF SEPARATBLE SPACER RINGS DISPOSED WITHIN SAID CLEARANCE POCKET AND RELOCATABLE THEREIN TO ADJUST THE DISPOSITION OF A CLOSURE MEMBER IN SAID CLEARANCE POCKET TO VARY THE PORTION OF THE VOLUME OF SAID CLEARANCE POCKET CLOSED BY SAID CLOSURE MEMBER FROM COMMUNICATION WITH SAID CYLINDER.
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Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3401755A (en) * 1966-11-28 1968-09-17 Mkt Corp Diesel hammer convertible to single or double action and having energy rating indicating means for each mode of operation
US3885889A (en) * 1974-01-02 1975-05-27 James D Bares Method and apparatus for reducing effective pumping capacity of a refrigerant vapor compressor
US4068562A (en) * 1973-12-19 1978-01-17 Mark Isaakovich Frenkel Cylinder of piston compressor
US4190024A (en) * 1977-07-21 1980-02-26 Robert Davis Variable chamber diesel engine
US4685489A (en) * 1984-04-13 1987-08-11 Copeland Corporation Valve assembly and compressor modulation apparatus
US4694732A (en) * 1986-03-31 1987-09-22 Ingersoll-Rand Company Clearance pocket assembly
US5622486A (en) * 1996-07-19 1997-04-22 J-W Operating Company Radially-valve compressor with adjustable clearance
US20040131490A1 (en) * 2003-01-06 2004-07-08 Samsung Electronics Co., Ltd. Variable capacity rotary compressor
IT201700105376A1 (en) * 2017-09-20 2019-03-20 Fornovo Gas S R L ALTERNATIVE COMPRESSOR

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1394835A (en) * 1918-09-30 1921-10-25 Packard Motor Car Co Fluid-compressor for motor-vehicles
US2047167A (en) * 1932-04-13 1936-07-07 Baldwin Southwark Corp Adjustable clearance mechanism
US2729388A (en) * 1950-12-08 1956-01-03 Phillips Petroleum Co Adjustment of compressor cylinder clearance for wide range of conditions
US3106313A (en) * 1961-10-19 1963-10-08 Gilman Brothers Co Packing or shipping container
US3198421A (en) * 1963-01-30 1965-08-03 Johnson Service Co Capacity controlled compressed fluid source

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1394835A (en) * 1918-09-30 1921-10-25 Packard Motor Car Co Fluid-compressor for motor-vehicles
US2047167A (en) * 1932-04-13 1936-07-07 Baldwin Southwark Corp Adjustable clearance mechanism
US2729388A (en) * 1950-12-08 1956-01-03 Phillips Petroleum Co Adjustment of compressor cylinder clearance for wide range of conditions
US3106313A (en) * 1961-10-19 1963-10-08 Gilman Brothers Co Packing or shipping container
US3198421A (en) * 1963-01-30 1965-08-03 Johnson Service Co Capacity controlled compressed fluid source

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3401755A (en) * 1966-11-28 1968-09-17 Mkt Corp Diesel hammer convertible to single or double action and having energy rating indicating means for each mode of operation
US4068562A (en) * 1973-12-19 1978-01-17 Mark Isaakovich Frenkel Cylinder of piston compressor
US3885889A (en) * 1974-01-02 1975-05-27 James D Bares Method and apparatus for reducing effective pumping capacity of a refrigerant vapor compressor
US4190024A (en) * 1977-07-21 1980-02-26 Robert Davis Variable chamber diesel engine
US4685489A (en) * 1984-04-13 1987-08-11 Copeland Corporation Valve assembly and compressor modulation apparatus
US4694732A (en) * 1986-03-31 1987-09-22 Ingersoll-Rand Company Clearance pocket assembly
US5622486A (en) * 1996-07-19 1997-04-22 J-W Operating Company Radially-valve compressor with adjustable clearance
US20040131490A1 (en) * 2003-01-06 2004-07-08 Samsung Electronics Co., Ltd. Variable capacity rotary compressor
US6932588B2 (en) * 2003-01-06 2005-08-23 Samsung Electornics Co., Ltd. Variable capacity rotary compressor
IT201700105376A1 (en) * 2017-09-20 2019-03-20 Fornovo Gas S R L ALTERNATIVE COMPRESSOR
WO2019058221A1 (en) * 2017-09-20 2019-03-28 Fornovo Gas S.R.L. Reciprocating compressor

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