IP Library Granted Patent US 9,855,822
Granted Patent B2
US 9,855,822 · App. 15/196,965 · Granted Jan 2, 2018

Vehicle air conditioning apparatus

Inventors: Kenichi Suzuki (Isesaki, JP); Atsuo Inoue (Isesaki, JP); Hidenori Takei (Isesaki, JP)
Assignee: SANDEN HOLDINGS CORPORATION
B60H1/00921B60H1/00007B60H1/00064B60H1/0075B60H1/00335B60H1/00392B60H1/00457B60H1/00485B60H1/00807B60H1/00864B60H1/00892B60H1/00899B60H1/00978B60H1/04B60H1/3207B60H1/3227B60H3/024F25B41/043F25B49/027B60H2001/00957B60H2001/326B60H2001/3251B60H2001/3252B60H2001/3263F25B41/04F25B2341/063F25B2500/19F25B2600/21F25B2600/2513F25B2700/04F25B2700/195F25B2700/197F25B2700/2102F25B2700/21163F25B2700/21175
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 9,855,822
App. No.
15/196,965
Granted
Jan 2, 2018
Kind
B2
Abstract

A vehicle air conditioning apparatus is provided that can prevent temperature variations of the air after the heat exchange in a radiator to reliably control the temperature of the air supplied to the vehicle interior. During the heating operation and the heating and dehumidifying operation, target degree of supercooling SCt when target air-blowing temperature TAO is a predetermined temperature or higher is set to SCt 1 that is greater than SCt 2 when the target air-blowing temperature TAO is lower than the predetermined temperature. When amount of air Ga supplied from indoor fan 12 is lower than a predetermined value, the target degree of supercooling SCt is corrected, which is set such that the degree of supercooling is lower than target degree of supercooling corrected when the amount of air Ga supplied from the indoor fan 12 is a predetermined value or higher.

Claims (20)

1. A vehicle air conditioning apparatus comprising:

a compressor configured to compress and discharge a refrigerant;

a radiator provided in a vehicle interior and configured to release heat from the refrigerant;

a heat exchanger provided in the vehicle interior and configured to absorb the heat into the refrigerant; and

an outdoor heat exchanger provided outside the vehicle interior and configured to release the heat from or absorb the heat into the refrigerant,

the vehicle air conditioning apparatus performing:

a heating operation to release the heat from the refrigerant discharged from the compressor in the radiator, and to absorb the heat into the refrigerant in the outdoor heat exchanger; and

a cooling and dehumidifying operation to release the heat from the refrigerant discharged from the compressor in the radiator, and additionally to release the heat from the refrigerant in the outdoor heat exchanger, and then to absorb the heat into the refrigerant in the heat exchanger,

the vehicle air conditioning apparatus further comprising:

an expansion valve provided in a refrigerant flow passage between the radiator and the outdoor heat exchanger during the heating operation, the expansion valve having an adjustable opening and configured to decompress the refrigerant flowing through the refrigerant flow passage;

a condensing pressure regulating valve provided in a refrigerant flow passage parallel to the refrigerant flow passage in which the expansion valve is provided, the condensing pressure regulating valve configured to regulate an amount of the refrigerant flowing out of the radiator and into the outdoor heat exchanger to regulate a condensing pressure of the refrigerant in the radiator during the cooling and dehumidifying operation; and

a valve opening control part configured to close a refrigerant flow channel to the condensing pressure regulating valve to control the opening of the expansion valve during the heating operation, and configured to close a refrigerant flow channel to the expansion valve to control an opening of the condensing pressure regulating valve during the cooling and dehumidifying operation.

2. The vehicle air conditioning apparatus according to claim 1 , further comprising:

a target condensing pressure calculation part configured to calculate a target value of the condensing pressure of the refrigerant in the radiator;

a condensing pressure detection part configured to detect the condensing pressure of the refrigerant in the radiator;

an evaporating temperature detection part configured to detect an evaporating temperature of the refrigerant in the heat exchanger; and

a cooling and dehumidifying performance control part configured to control the opening of the condensing pressure regulating valve based on the target condensing pressure calculated by the target condensing pressure calculation part and the pressure detected by the condensing pressure detection part, and to control a number of rotations of the compressor based on the evaporating temperature detected by the evaporating temperature detection part during the cooling and dehumidifying operation.

3. The vehicle air conditioning apparatus according to claim 1 , wherein the expansion valve is formed integrally with the condensing pressure regulating valve.

4. The vehicle air conditioning apparatus according to claim 1 , wherein the valve opening control part sets the opening of the condensing pressure regulating valve to one of two different openings.

5. The vehicle air conditioning apparatus according to claim 1 , wherein the valve opening control part switches the opening of the condensing pressure regulating valve between a fully open state and a state to regulate a pressure difference between the refrigerant flowing into the radiator and the refrigerant flowing out of the radiator.

Assignments (1)
CHANGE OF NAME Recorded Aug 22, 2022
From: SANDEN HOLDINGS CORPORATION
To: SANDEN CORPORATION
Reel/Frame 061296/0529 →
Priority Claims (5)
JP 2011-046512 · Mar 3, 2011 · national
JP 2011-135014 · Jun 17, 2011 · national
JP 2011-138181 · Jun 22, 2011 · national
JP 2011-172940 · Aug 8, 2011 · national
WO PCT/JP2012/050991 · Jan 18, 2012 · international
Continuity (2)
Division 14002643
Related Publication 20170028815A1 · Feb 2, 2017