Claims
- 1. A scroll compressor comprising:
- (a) a sealed container having an inside and having an axial direction;
- (b) a motor for producing a revolving movement;
- (c) a crankshaft for receiving the revolving movement from the motor;
- (d) an orbital mechanism for receiving the revolving movement from the crankshaft and for converting the revolving movement to an orbital movement;
- (e) a compression mechanism for applying a suction pressure to the inside of the sealed container, the compression mechanism having a peripheral portion with a suction port and a center portion and comprising:
- (i) a supporting member secured to the inside of the sealed container, the supporting member having a center portion with a discharge port at the center portion of the supporting member;
- (ii) a first scroll disposed on the supporting member for movement in the axial direction and having a first scroll blade projecting toward the motor, the first scroll having a center portion with a communication port which communicates with the discharge port;
- (iii) a frame disposed between the motor and the first scroll; and
- (iv) a second scroll supported by the frame and receiving the orbital movement from the orbital mechanism to cause relative movement between the first scroll and the second scroll, the second scroll having a second scroll blade which forms with the first scroll blade a compression chamber having a volume which decreases as the relative movement between the first scroll and the second scroll causes the compression chamber to move from the peripheral portion of the compression mechanism to the center portion of the compression mechanism;
- wherein said compression chamber is moved by said relative movement from the peripheral portion of the compression mechanism, drawing a fluid through the suction port, toward the center portion of the compression mechanism leading to the discharge port, so as to reduce the volume of said compression chamber, thereby effecting a compression operation and discharging the fluid to said discharge port;
- wherein the first scroll has a portion disposed around the communication port, the portion disposed around the communication port having formed thereon a pressure-receiving surface for receiving a back pressure of the fluid discharged to the discharge port so as to press said first scroll toward said second scroll; and
- wherein an annular seal portion is provided to form a seal between said first scroll and the supporting member around a region of communication between said communication port and said discharge port in such a manner as to satisfy a necessary annular sealing surface area, means forming a circumferential recess which is open in a direction toward said annular seal portion and which defines a space for catching and retaining wear powder resulting from wear of the annular seal portion is provided on a side lower in pressure than said annular seal portion, and said circumferential recess is not in communication with said compression chamber nor a suction chamber at a bottom portion thereof.
- 2. A scroll compressor according to claim 1, wherein the motor is an electric motor.
- 3. A scroll compressor according to claim 1, wherein the first scroll does not perform the orbital motion, whereas the second scroll performs the orbital motion.
- 4. A scroll compressor according to claim 1, wherein a path of movement of the wear powder from the annular seal portion to the seal member is not in communication with the compression chamber.
- 5. A scroll compressor comprising:
- (a) a sealed container having an inside and having an axial direction;
- (b) a motor for producing a revolving movement;
- (c) a crankshaft for receiving the revolving movement from the motor;
- (d) an orbital mechanism for receiving the revolving movement from the crankshaft and for converting the revolving movement to an orbital movement;
- (e) a compression mechanism for applying a suction pressure to the inside of the sealed container, the compression mechanism having a peripheral portion with a suction port and a center portion and comprising:
- (i) a supporting member secured to the inside of the sealed container, the supporting member having a center portion with a discharge port at the center portion of the supporting member;
- (ii) a first scroll disposed on the supporting member for movement in the axial direction and having a first scroll blade projecting toward the motor, the first scroll having a center portion with a communication port which communicates with the discharge port;
- (iii) a frame disposed between the motor and the first scroll; and
- (iv) a second scroll supported by the frame and receiving the orbital movement from the orbital mechanism to cause relative movement between the first scroll and the second scroll, the second scroll having a second scroll blade which forms with the first scroll blade a compression chamber having a volume which decreases as the relative movement between the first scroll and the second scroll causes the compression chamber to move from the peripheral portion of the compression mechanism to the center portion of the compression mechanism;
- wherein said compression chamber is moved by said relative movement from the peripheral portion of the compression mechanism, drawing a fluid through the suction port, toward the center portion of the compression mechanism leading to the discharge port, so as to reduce the volume of said compression chamber, thereby effecting a compression operation and discharging the fluid to said discharge port;
- wherein the first scroll has a portion disposed around the communication port, the portion disposed around the communication port having formed thereon a pressure-receiving surface for receiving a back pressure of the fluid discharged to the discharge port so as to press said first scroll toward said second scroll;
- wherein an annular seal portion is provided to form a seal between said first scroll and the supporting member around a region of communication between said communication port and said discharge port in such a manner as to satisfy a necessary annular sealing surface area, means forming a circumferential recess defining a space for catching wear powder resulting from wear of the annular seal portion is provided on a side lower in pressure than said annular seal portion, and said circumferential recess is not in communication with said compression chamber nor a suction chamber at a bottom portion thereof, and
- wherein, during an operation of the scroll compressor, an entirety of the circumferential recess is available for receiving the wear powder.
Priority Claims (1)
Number |
Date |
Country |
Kind |
8-023579 |
Feb 1996 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/796,382 filed Feb. 6, 1997, U.S. Pat. No. 5,951,272.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
63-309790 |
Dec 1988 |
JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
796382 |
Feb 1997 |
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