IP Library Granted Patent US 9,447,787
Granted Patent B2
US 9,447,787 · App. 14/589,212 · Granted Sep 20, 2016

Compressor with cyclone and internal oil reservoir

Inventor: YoungChan Ma (Bloomington, MN)
Assignee: THERMO KING CORPORATION
F04C29/026F04C18/0215F04C2240/809
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,447,787
App. No.
14/589,212
Granted
Sep 20, 2016
Kind
B2
Abstract

A rotary compressor including a housing that defines an inlet, a low pressure chamber, an outlet, and a high pressure chamber defining a high pressure lubricant sump. A drive shaft passes through the housing and a compression element is coupled to the drive shaft between the low pressure chamber and the high pressure chamber. A first path connects the high pressure lubricant sump to the low pressure chamber such that lubricant flows through the first path from the high pressure lubricant sump to the low pressure chamber. A low pressure lubricant sump is positioned within the low pressure chamber and includes a movable gate movable from a closed position to an open position in response to a hydrostatic pressure of the lubricant within the low pressure lubricant sump. A second path connects a lubricant separator and the low pressure lubricant sump.

Claims (23)

1. A rotary compressor comprising:

a housing defining a high pressure portion and a low pressure portion;

a drive shaft passing at least partially through the housing and coupled to a compression element positioned between the high pressure portion and the low pressure portion;

a high pressure sump positioned in the high pressure portion;

an internal reservoir positioned in the low pressure portion and including a movable gate, the movable gate being configured to open from a closed position to an open position in response to a hydrostatic pressure of lubricant within the internal reservoir reaching a threshold hydrostatic pressure thereby allowing lubricant to exit the internal reservoir

a first lubricant separator in communication with the high pressure sump; and

a path connecting the first lubricant separator to the internal reservoir.

2. The rotary compressor of claim 1 , wherein the first lubricant separator in communication with the low pressure portion, wherein the first lubricant separator includes a separator inlet for receiving working fluid and lubricant, a conical portion for separating the lubricant from the working fluid, a separator outlet for expelling working fluid, and a separator drain for expelling lubricant.

3. The rotary compressor of claim 1 , wherein the movable gate substantially inhibits flow of the lubricant from the internal reservoir when in the closed position and allows the lubricant to flow out of the internal reservoir when in the open position.

4. The rotary compressor of claim 1 , further comprising a second low pressure sump defined by the housing.

5. The rotary compressor of claim 1 , wherein the internal reservoir includes an internal reservoir housing separate from the housing.

6. The rotary compressor of claim 5 , wherein hinge is coupled between the movable gate and the internal reservoir housing and is configured to bias the movable gate toward the closed position, the hinge arranged such that the gate moves from the closed position to the open position above a threshold hydrostatic pressure.

7. A rotary compressor comprising:

a housing defining a high pressure portion and a low pressure portion;

a drive shaft passing at least partially through the housing and coupled to a compression element positioned between the high pressure portion and the low pressure portion;

an internal reservoir positioned in the low pressure portion and including a movable gate, the movable gate being configured to open from a closed position to an open position in response to a hydrostatic pressure of lubricant within the internal reservoir reaching a threshold hydrostatic pressure thereby allowing lubricant to exit the internal reservoir;

a cyclonic lubricant separator positioned in the high pressure portion and in communication with the internal reservoir; and

a path connecting the cyclonic lubricant separator to the internal reservoir.

8. The rotary compressor of claim 7 , wherein the cyclonic lubricant separator includes a separator inlet for receiving working fluid and lubricant, a conical portion for separating the lubricant from the working fluid, a separator outlet for expelling working fluid, and a separator drain for expelling lubricant.

9. The rotary compressor of claim 8 , further comprising a pathway connecting the separator drain and the internal reservoir.

10. The rotary compressor of claim 7 , wherein the internal reservoir includes an internal reservoir housing separate from the housing.

11. The rotary compressor of claim 10 , wherein the movable gate is coupled to the internal reservoir housing via a hinge, the hinge configured to bias the movable gate toward the closed position.

12. The rotary compressor of claim 11 , wherein the hinge element is arranged such that the gate moves from the closed position to the open position above a threshold hydrostatic pressure.

Assignments (1)
CHANGE OF NAME Recorded Nov 6, 2023
From: THERMO KING CORPORATION
To: THERMO KING LLC
Reel/Frame 065473/0721 →
Continuity (2)
Division 12908494 · Oct 20, 2010
Related Publication 20150110660A1 · Apr 23, 2015