IP Library Granted Patent US 10,976,088
Granted Patent B2
US 10,976,088 · App. 16/516,820 · Granted Apr 13, 2021

Apparatus for injecting a fluid in a pressurized air conditioning or refrigeration system

Inventors: Luca Ronga (Corzano, IT); Nicola Ronga (Corzano, IT)
F25B45/00B67D7/002B67D7/0294
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Quick Facts
Patent No.
US 10,976,088
App. No.
16/516,820
Granted
Apr 13, 2021
Kind
B2
Abstract

An apparatus for injecting an additive in a pressurized air conditioning or refrigeration system having a service valve includes a cartridge with a piston, an adapter configured to be connected to the service valve, and a bending unit interposed between the adapter and the cartridge. The bending unit includes a flexible capillary tube having a first end fitting adapted to be connected to the cartridge. The flexible capillary tube has a second end fitting adapted to be connected to the adapter. The flexible capillary tube is adapted to be bent at least at 90° without kinking.

Claims (52)

1. An apparatus for injecting an additive in a pressurized air conditioning or refrigeration system having a service valve, comprising:

a cartridge having two ends, the two ends comprising a first open end adapted to connect to the pressurized air conditioning or refrigeration system to be charged and a second open end,

wherein the first open end comprises a threaded nozzle, and

wherein the threaded nozzle comprises a first frusto-conical outlet tube communicating with an interior space of the cartridge and configured to be surrounded with a first Luer coupling having an internal thread;

a piston sealably disposed within the second open end of the cartridge;

an adapter to fluidly connect in a sealable and releasable manner the cartridge to the service valve of the pressurized air conditioning or refrigeration system; and

a bending unit interposed between the adapter and the cartridge,

wherein the bending unit includes a flexible capillary tube having a first end fitting with an outer thread configured to be connected to the internal thread of the first Luer coupling and a frusto-conical inner portion configured to receive the first frusto-conical outlet tube of the nozzle of the cartridge, the flexible capillary tube having a second end fitting with a second frusto-conical outlet tube communicating with an interior space of the flexible capillary tube and configured to be surrounded with a second Luer coupling having a second internal thread,

wherein the flexible capillary tube is adapted to be bent at least at 90° without kinking,

wherein the adapter is configured as a fitting having a fitting body that has a first end portion with an outer thread configured to be connected to the second internal thread of the second Luer coupling and a second end portion configured to be connected to the service valve of the pressurized air conditioning or refrigeration system, the first end portion further having a frusto-conical inner portion configured to receive the second frusto-conical outlet tube of the bending unit,

wherein the second end portion of the fitting body forms a SCHRADER valve coupling adapted to engage the service valve of the pressurized air conditioning or refrigeration system, and

wherein a check valve is housed in the fitting body of the adapter, between the first end portion and the second end portion, in order to prevent back flow of fluid from the pressurized air conditioning or refrigeration system to the flexible capillary tube and the cartridge.

2. The apparatus according to claim 1 , wherein the cartridge defines a first axis, the fitting body defining a second axis, wherein, when the flexible capillary tube is in an unbent state, the first and the second axis are coincident with each other, and wherein, when the flexible capillary tube is in a bent state, the first and the second axis are transversal to each other.

3. The apparatus according to claim 1 , wherein the flexible capillary tube is made from an elastomer.

4. The apparatus according to claim 1 , wherein the flexible capillary tube has a Shore A hardness of at least 80.

5. The apparatus according to claim 1 , wherein the bending unit has a maximum additive content of less than 0.2 ml.

6. The apparatus according to claim 1 , wherein the bending unit, the adapter and the cartridge are constructed to be disposable.

7. The apparatus according to claim 1 , wherein the adapter and the flexible capillary tube are made from a transparent material.

8. The apparatus according to claim 1 , wherein the check valve is a ball check valve.

9. The apparatus according to claim 1 , wherein the adapter houses a sealing ring disposed next to the check valve, the sealing ring having a color that identifies a predetermined size of the second portion.

10. The apparatus according to claim 1 , wherein the apparatus is configured to be connected to the service valve of the air conditioning or refrigeration system while the air conditioning or refrigeration system is pressurized and the piston is displaceable so as to force the additive out of the cartridge against a pressure provided by the air conditioning or refrigeration system.

11. The apparatus according to claim 1 , wherein the additive is one or more of a fluorescent dye, a lubricant, a leak stop, a performance enhancer, an anti-moisture additive, a de-icing additive, an acid neutralizing additive, or an internal refrigerant leak detector.

12. The apparatus according to claim 1 , wherein the cartridge contains a predetermined amount of the additive, the additive being contained in the cartridge at a pressure that is substantially the same as ambient pressure.

13. The apparatus according to claim 1 , wherein the SCHRADER valve coupling has an internal thread configured to be threadably connected to a threaded end portion of the service valve of the pressurized air conditioning or refrigeration system.

14. The apparatus according to claim 1 , wherein the SCHRADER valve coupling has a snap lock fitting configured to be snap-fittingly connected to an end portion of the service valve of the pressurized air conditioning or refrigeration system.

15. A method for injecting an additive in a pressurized air conditioning or refrigeration system, comprising:

fluidly connecting in a sealable and releasable manner an adapter of an additive-injecting apparatus to a service valve of a pressurized air conditioning or refrigeration system to inject an additive into the air conditioning or refrigeration system while the air conditioning or refrigeration system is pressurized,

wherein the apparatus comprises the adapter, a cartridge, and a bending unit interposed between the adapter and the cartridge,

wherein the cartridge has two ends, the two ends comprising a first open end which adapted to connect to the pressurized air conditioning or refrigeration system being charged and a second open end,

wherein the first open end comprises a threaded nozzle,

wherein the threaded nozzle comprises a first frusto-conical outlet tube communicating with an interior space of the cartridge and surrounded with a first Luer coupling having an internal thread,

wherein the cartridge comprises a piston sealably disposed within the second open end,

wherein the bending unit includes a flexible capillary tube having a first end fitting with an outer thread configured to be connected to the internal thread of the first Luer coupling and a frusto-conical inner portion configured to receive the first frusto-conical outlet tube of the nozzle of the cartridge, the flexible capillary tube having a second end fitting with a second frusto-conical outlet tube communicating with an interior space of the flexible capillary tube and surrounded with a second Luer coupling having a second internal thread,

wherein the flexible capillary tube is adapted to be bent at least at 90° without kinking,

wherein the adapter is configured as a fitting having a fitting body that has a first end portion with an outer thread configured to be connected to the second internal thread of the second Luer coupling and a second end portion configured to be connected to the service valve of the pressurized air conditioning or refrigeration system, the first end portion further having a frusto-conical inner portion configured to receive the second frusto-conical outlet tube of the bending unit,

wherein the second end portion of the fitting body forms a SCHRADER valve coupling to engage the service valve of the pressurized air conditioning or refrigeration system, and

wherein a check valve is housed in the fitting body of the adapter, between the first end portion and the second end portion, in order to prevent back flow of fluid from the pressurized air conditioning or refrigeration system to the flexible capillary tube and the cartridge.

16. A disposable bending unit adapted to be interposed between an adapter and a cartridge to form an apparatus for injecting an additive in a pressurized air conditioning or refrigeration system having a service valve,

wherein the cartridge has two ends, the two ends comprising a first open end which is configured to connect to the pressurized air conditioning or refrigeration system being charged and a second open end,

wherein the first open end comprises a threaded nozzle,

wherein the threaded nozzle comprises a first frusto-conical outlet tube communicating with an interior space of the cartridge and configured to be surrounded with a first Luer coupling having an internal thread,

wherein the cartridge comprises a piston sealably disposed with the second open end;

wherein the adapter is adapted to fluidically connect in a sealable and releasable manner the cartridge to the service valve of the pressurized air conditioning or refrigeration system,

wherein the bending unit comprises a flexible capillary tube having a first end fitting with an outer thread configured to be connected to the internal thread of the first Luer coupling and a frusto-conical inner portion configured to receive the first frusto-conical outlet tube of the nozzle of the cartridge, the flexible capillary tube having a second end fitting with a second frusto-conical outlet tube communicating with an interior space of the flexible capillary tube and configured to be surrounded with a second Luer coupling which comprises a second internal thread,

wherein the flexible capillary tube is adapted to be bent at least at 90° without kinking,

wherein the adapter is configured as a fitting having a fitting body that has a first end portion with an outer thread configured to be connected to the second internal thread of the second Luer coupling and a second end portion configured to be connected to the service valve of the pressurized air conditioning or refrigeration system, the first end portion further having a frusto-conical inner portion configured to receive the second frusto-conical outlet tube of the bending unit,

wherein the second end portion of the fitting body forms a SCHRADER valve coupling configured to engage the service valve of the pressurized air conditioning or refrigeration system, and

wherein a check valve is housed in the fitting body of the adapter, between the first end portion and the second end portion, in order to prevent back flow of fluid from the pressurized air conditioning or refrigeration system to the flexible capillary tube and the cartridge.

17. The bending unit according to claim 16 , wherein, when the flexible capillary tube is in an unbent state, the first end portion and the second end portion of the adapter, the flexible capillary tube and the threaded nozzle of the cartridge are coaxial to each other.

18. The bending unit according to claim 16 , wherein the flexible capillary tube is made from an elastomer.

19. The bending unit according to claim 16 , wherein the flexible capillary tube has a Shore A hardness of at least 80.

20. The bending unit according to claim 16 , wherein the bending unit has a maximum additive content of less than 0.2 ml.

Assignments (2)
CHANGE OF NAME Recorded Mar 26, 2025
From: ERRECOM S.R.L.
To: ERRECOM S.P.A.
Reel/Frame 070642/0631 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2019
From: RONGA, LUCA; RONGA, NICOLA
To: ERRECOM S.R.L.
Reel/Frame 049929/0244 →
Continuity (2)
Continuation In Part 14210489 · Mar 14, 2014
Related Publication 20190338992A1 · Nov 7, 2019