Element for compressing a gas and method for controlling such element
US-2024376894-A1 · Nov 14, 2024 · US
US9841023B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9841023-B2 |
| Application number | US-201314402651-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 21, 2013 |
| Priority date | May 21, 2012 |
| Publication date | Dec 12, 2017 |
| Grant date | Dec 12, 2017 |
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Durability of a vacuum pump is prevented from degrading by suppressing abrasion of a rotor and a side plate. The vacuum pump has a hollow cylinder chamber S having an opening at an end portion of a casing body, a rotor which is rotationally driven in the cylinder chamber S, a side plate for blocking the opening of the cylinder chamber S, and a pump cover which is disposed at the opposite side to the rotor so as to sandwich the side plate between the pump cover and the rotor, and the side plate is provided with an intercommunication port which confronts a shaft hole of the rotor and intercommunicates with a space between the side plate and the pump cover.
Opening claim text (preview).
What is claimed is: 1. A vacuum pump comprising: a casing body having a hollow cylinder chamber opened at an end portion thereof, a rotor rotated in the hollow cylinder chamber, an air-intake passage through which air to be compressed in connection with the rotation of the rotor is supplied into the hollow cylinder chamber, a discharge port through which air compressed in the hollow cylinder chamber is discharged, a side plate which blocks the opening of the hollow cylinder chamber, and a pump cover which is disposed at the opposite side to the rotor so as to sandwich the side plate between the pump cover and the rotor and fixed to the casing body, wherein the side plate is provided with an intercommunication port that faces a shaft hole of the rotor and intercommunicates with a space between the side plate and the pump cover, and the intercommunication port intercommunicates the shaft hole of the rotor and the space between the side plate and the pump cover, the intercommunication port is formed to be smaller than a shaft diameter of a rotating shaft for rotating the rotor, and the rotating shaft is prevented from protruding from a front end face of the rotor, and wherein the air-intake passage has a lower pressure than the space between the side plate and the pump cover. 2. The vacuum pump according to claim 1 , wherein the intercommunication port is formed on an axial center of the shaft hole of the rotor. 3. The vacuum pump according to claim 1 , further comprising a seal member through which an exhaust passage from the hollow cylinder chamber to the outside thereof and the space are isolated from each other is disposed around the hollow cylinder chamber between the casing body and the pump cover. 4. A vacuum pump having a rotating and compressing element driven by a motor in a casing, wherein the casing has a cylinder liner that forms a hollow cylinder chamber and in which the rotating and compressing element that rotates inside the hollow cylinder chamber slides, a bearing portion for supporting a rotating shaft of the motor, and a casing body in which the cylinder liner is fitted and that is secured to a flange portion formed by bending the peripheral edge of an opening portion of a cylindrical motor case body having a bottom by a screw, wherein a side plate that blocks an opening of the cylinder chamber is positioned at an end portion of the cylinder liner, the casing body has a bore portion in which the cylinder liner is disposed, the bore portion is a stepped bore that is reduced in diameter from an open end to a depth side and has a liner holding portion in which the cylinder liner is held, a diameter-reduced portion whose bore diameter is smaller than a bore diameter of the liner holding portion and in which the side plate is disposed, and a step portion that extends inwardly in a radial direction from the liner holding portion to the diameter-reduced portion and that connects the liner holding portion and the diameter-reduced portion, the cylinder liner has an outer diameter that is larger than the bore diameter of the diameter-reduced portion, and the cylinder liner is abutted against the step portion. 5. The vacuum pump according to claim 4 , wherein the bore diameter of the diameter-reduced portion of the stepped bore is larger than an inner diameter of the cylinder liner. 6. The vacuum pump according to claim 4 , further comprising: an air-intake passage that penetrates through the casing body and the cylinder liner along a radial direction of the cylinder liner, and through which air to be compressed in connection with the rotation of the rotor is supplied into the hollow cylinder chamber, and a discharge port that penetrates through the casing body and the cylinder liner along a radial direction of the cylinder liner, that is provided at a position shifted in a direction of rotation of the rotating and compressing element, and through which air compressed in the hollow cylinder chamber is discharged. 7. The vacuum pump according to claim 6 , wherein the bore diameter of the diameter-reduced portion of the stepped bore is larger than an inner diameter of the cylinder liner. 8. The vacuum pump according to claim 4 , wherein the casing body is formed as a single body. 9. The vacuum pump according to claim 8 , wherein the casing body is secured to an opening portion of a cylindrical motor case body having a bottom, and the casing body has a bore portion in which the cylinder liner is disposed, and the bore portion is a stepped bore that is reduced in diameter from an open end to a depth side.
Vacuum · CPC title
for producing high vacuum (sealing arrangements F04C27/00; silencing F04C29/06) · CPC title
Bearings · CPC title
with an axial surface, e.g. side plates · CPC title
Fixing rotors on shafts, e.g. by clamping together hub and shaft · CPC title
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