Claims
- 1. An axial flow fluid compressor comprising:
- a casing;
- a cylinder situated within the casing and having axial end portions, one of the end portions serving as a suction-side end portion and the other serving as a discharge-side end portion;
- a rotating body having on its outer peripheral surface a spiral groove formed with a gradually decreasing pitch, the rotating body being situated eccentrically within the cylinder;
- a spiral blade fitted in said spiral groove and wound around said rotating body, the spiral blade having an outer peripheral surface put in contact with an inner peripheral surface put in contact with an inner peripheral surface of the cylinder, and the spiral blade forming a plurality of working chambers within the cylinder, which chambers have volumes gradually decreasing from the suction side towards the discharge side;
- a drive motor for rotating the cylinder and the rotating body relative to each other, the drive motor including a cylindrical stator fixed on the casing and a rotor mounted on the cylinder and situated inside the stator coaxially, with a motor air gap provided therebetween; and
- a bearing member engaged with one of the end portions and means for fixing the bearing member on an inner wall of the casing by a fixing member so as to determine a direction of axes of the rotor and the cylinder, said fixing member being a screw-type for finely adjusting a posture of said bearing member in accordance with the screw condition so as to keep said motor air gap at a predetermined value.
- 2. The compressor according to claim 1, wherein said screw-type fixing member is a bolt.
- 3. The compressor according to claim 1, wherein said casing is a sealed casing composed of a plurality of casing components being hermetically coupled to each other.
- 4. An axial flow fluid compressor according to claim 1, wherein said compressor further comprises said fixing member being fixed on said casing and said bearing member fixed on said fixing member, a plate surface of said fixing member being fixed on an axial end face of the casing along a line perpendicular to an axis of the rotating body.
- 5. The compressor according to claim 1,
- wherein said bearing member comprises a suction-side bearing member and a discharge-side bearing member both inserted into open ends of the cylinder to hermetically seal the cylinder and to support the axial end portions of the rotating body, and
- wherein said compressor further comprises a support mechanism including a columnar slide pin loosely inserted through the discharge-side bearing member in a radial direction of the discharge-side bearing member, and a columnar support pin fixed on the sealed casing and supporting the slide pin and the discharge-side bearing member rotatably and movably along an axis intersecting at right angles with the slide pin, said support mechanism supporting the discharge-side bearing member on the sealed casing and making the point of intersection of the slide pin and the support pin coincide with the axis of the rotating body.
- 6. The compressor according to claim 5, wherein said slide pin is directly coupled to said support pin.
- 7. The compressor according to claim 5, wherein said support mechanism comprises an engagement cap coupled to the discharge-side bearing member, a support member fixed on the casing and coupled to the engagement cap via the slide pin and the support pin, and a seal member for effecting hermetical sealing between the discharge-side bearing member and the engagement cap.
- 8. The compressor according to claim 1, further comprising a blade stopper situated on the discharge side of the cylinder, having a discharge port through which compressed working fluid is discharged to the outside of the cylinder, projecting into the cylinder, abutting on an end portion of the blade to position the blade, and serving both for the discharge of the working fluid and for the positioning of the blade.
- 9. The compressor according to claim 8, wherein those portions of the blade stopper and the blade, which are put in contact with each other, have curved surfaces.
- 10. The compressor according to claim 9, wherein said casing contains a lubricant, and said compressor further comprises a lubricant path through which the lubricant is sent into the cylinder, and
- wherein the length of that part of the blade stopper, which projects into the cylinder, is greater than the thickness of the lubricant introduced into the cylinder and urged on the inner peripheral surface of the cylinder.
- 11. The compressor according to claim 8, further comprising a surrounding body mounted on a discharge-side portion of the cylinder and having a closed space between the surrounding body and the outer peripheral surface of the cylinder, said closed space communicating with the discharge port of the blade stopper, part of the surrounding body being brought into contact with the blade stopper to fix the blade stopper to the cylinder.
- 12. The compressor according to claim 11, wherein said surrounding body is brought into hermetical contact with the outer peripheral surface of the cylinder and the outer peripheral surface of the rotor to form said closed space.
- 13. The compressor according to claim 1,
- wherein said compressor further comprises:
- an Oldham mechanism for transmitting torque between the rotating rod and the cylinder, restricting the rotation of the rotating rod, and rotating the rotating rod and the cylinder synchronously and relative to each other; and
- two blade stoppers arranged on the suction side and discharge side of the cylinder, respectively, and brought into contact with the suction-side end portion and the discharge-side end portion of the blade to position the blade, at least one of the stoppers being formed integral with the Oldham mechanism, and
- wherein said bearing member comprises a suction-side bearing member and a discharge-side bearing member both inserted into open ends of the cylinder to hermetically seal the cylinder and to support the axial end portions of the rotating body.
- 14. The compressor according to claim 13, wherein said Oldham mechanism comprises a fixed Oldham member fixed on the cylinder, and an Oldham ring engaged with said rotating rod and said fixed Oldham member, said Oldham ring being movable relative to the fixed Oldham member in on direction and allowing the rotating rod to move along an axis intersecting at right angels with the line of the direction in which the Oldham ring moves relative to the fixed Oldham member.
- 15. The compressor according to claim 14, wherein said fixed Oldham member and said Oldham ring are engaged with each other by means of a key and a key groove, and said rotating rod has an engagement portion situated within the Oldham ring and engaged with the Oldham ring.
- 16. The compressor according to claim 13, wherein said Oldham mechanism is situated on one of the suction side and discharge side of the cylinder.
- 17. An axial flow fluid compressor comprising:
- a casing;
- a cylinder situated within the casing and having axial end portions, one of the end portions serving as a suction-side end portion and the other serving as a discharge-side end portion;
- a bearing member engaged with one of the axial end portions of the cylinder;
- a rotating body having on its outer peripheral surface a spiral groove formed with a gradually decreasing pitch, the rotating body being situated eccentrically within the cylinder;
- a spiral blade fitted in said spiral groove end wound around said rotating body, the spiral blade having an outer peripheral surface put in contact with an inner peripheral surface of the cylinder, and the spiral blade forming a plurality of working chambers within the cylinder, which chambers have volumes gradually decreasing from the suction side towards the discharge side;
- a drive motor for rotating the cylinder and the rotating body relative to each other, the drive motor including a cylindrical stator fixed on the casing and a rotor mounted on the cylinder and situated inside the stator coaxially, with a motor air gap provided therebetween;
- a support member fixed on said casing; and
- fixing member means for fixing said bearing member on said support member, said fixing member means including a screw for finely adjusting a posture of said bearing member so as to keep said motor air gap at a pre-determined distance, said fixing member being located radially inward of said stator formed of a disc plate member, a plate surface of said support member being fixed on an axial end face of the casing along a line perpendicular to the axis of the casing to retain said motor air gap at a constant value.
- 18. The compressor according to claim 17, wherein a bearing member is fixed to a support member by means of a screw-type fixing member.
- 19. The compressor according to claim 18, wherein said screw-type fixing member is a bolt.
- 20. The compressor according to claim 17, wherein said casing is a sealed casing composed of a plurality of casing components having opened portions, the opened portion of the casing components being hermetically coupled to each other.
- 21. An axial flow fluid compressor comprising:
- a casing;
- a cylinder situated within the casing and having axial end portions, one of the end portions serving as a suction-side end portion and the other serving as a discharge-side end portion;
- a rotating body having on its outer peripheral surface a spiral groove formed with a gradually decreasing pitch, the rotating body being situated eccentrically within the cylinder;
- a spiral blade fitted in said spiral groove and wound around said rotating body, the spiral blade having an outer peripheral surface put in contact with an inner peripheral surface of the cylinder, and the spiral blade forming a plurality of working chambers within the cylinder, which chambers have volumes gradually decreasing from the suction side towards the discharge side;
- a drive motor for rotating the cylinder and the rotating body relative to each other, the drive motor including a cylindrical stator fixed on the casing and a rotor mounted on the cylinder and situated inside the stator coaxially, with a motor air gap provided therebetween;
- a bearing member engaged with one of the axial end portions of the cylinder and fixed on the inner wall of the casing by means of a fixing member situated radially more inward than said stator; and
- an Oldham mechanism for transmitting torque between the rotating rod and the cylinder, restricting the rotation of the rotating rod, and rotating the rotating rod and the cylinder synchronously and relative to each other, said Oldham mechanism having a recess for engagement with the blade, which recess is engaged with an end portion of the blade to position the blade.
Priority Claims (4)
Number |
Date |
Country |
Kind |
1-337524 |
Dec 1989 |
JPX |
|
2-96304 |
Apr 1990 |
JPX |
|
2-98432 |
Apr 1990 |
JPX |
|
2-98437 |
Apr 1990 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 07/632,127, filed on Dec. 20, 1990, which was abandoned upon the filing hereof.
US Referenced Citations (11)
Foreign Referenced Citations (5)
Number |
Date |
Country |
416224 |
Mar 1991 |
EPX |
2176185 |
Jul 1990 |
JPX |
2176189 |
Jul 1990 |
JPX |
2-201088 |
Aug 1990 |
JPX |
2-259293 |
Oct 1990 |
JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
632127 |
Dec 1990 |
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