The present invention relates to a maintenance and hygiene method of an air conditioning system, for example of a motor vehicle.
Furthermore, the invention relates to a device that is adapted to carry out such method.
Air conditioning systems of cars often require maintenance by qualified operators, who have to retrieve defects, such as a cooling fluid lack or excess, an incorrect system setting, any faults of the compressor or of the capillary valve, as well as any faults of the instruments of the system.
To exploit at best the system capacity, it is necessary to check, for example, the level of the cooling fluid, which tends to decrease and to deteriorate due to the large number of working cycles and to natural evaporation. Furthermore, it is necessary to purge the fluid from contaminating substances that pile up within the system.
To overcome these problems a periodic emptying operation of the system is provided along with a recovering step of the cooling fluid, which has to be purified from oil, air and steam.
A further aspect concerning such systems concerns unpleasant smelly emissions that come from the air conditioning system after a prolonged use. In particular, the reasons of such emissions comprise an incorrect operation of the system, which may occur, for instance, in case of lack of cooling fluid, a presence of bacteria in the evaporator, a possible oxidation of the aluminium, which is the material of which the evaporator is normally made, as well as a presence of residues of other substances that are dispersed in the driver and passenger compartments, such as smoke residues.
For a full restoration of the air conditioning system, after a circuit diagnosis step, cleaning steps are provided comprising an air duct cleaning step and a subsequent hygiene step by means of a specific device which introduces hygiene products into the air ducts.
An apparatus that carries out such restoration cycle is described, for example, in EP1114742.
In particular, the cleaning and hygiene steps are performed by devices that are independent from the diagnosis instruments. An apparatus that carries out a hygiene cycle of a generic air conditioning system, not specifically for motor vehicles, is described, for instance, in DE102006049320.
The use of such an apparatus requires, firstly, a large space to arrange a high number of instruments around a working position, a higher cost due to the need of different machines, and a remarkably longer operating time.
It is therefore a general feature of the present invention to provide a motor vehicle air conditioning system maintenance method that reduces the operating time that is needed for controlling the system.
It is another feature of the present invention to provide an air conditioning system maintenance method that is fairly expensive and easy to actuate.
It is therefore a general feature of the present invention to provide a motor vehicle air conditioning system maintenance method that allows to reduce operative spaces in a motor vehicle workshop.
It is therefore general feature of the present invention to provide a motor vehicle air conditioning system maintenance method that allows an energy saving.
It is also a feature of the present invention to provide an air conditioning system maintenance apparatus that reaches the same objects.
These and other objects are achieved by a maintenance method for a motor vehicle air conditioning system, said motor vehicle having a driver and passenger compartments, an engine and an air circulation network, said air conditioning system comprising a cooling circuit in which a cooling fluid flows that cools an air flow that circulates in said network,
said method carried out by a maintenance apparatus,
wherein said maintenance apparatus comprises:
In particular, said regeneration steps of said air conditioning system comprises the steps of:
Preferably, said hygiene step is finished before the establishing vacuum condition step in said cooling circuit.
Advantageously, said hygiene step, which is carried out contemporaneously with said step of recovering said cooling fluid, and is prolonged up to said lubricating fluid discharging step/establishing vacuum condition step.
In particular, said hygiene step and said recovering step are carried out with said engine on. This way, the step of recovering the cooling fluid is easier, since the higher the temperature of the air conditioning system, the higher the pressure of the cooling fluid in the cooling circuit.
Preferably, said hygiene step and said recovering step are carried out with said air conditioning system turned off and with an air recirculation turned on in said driver and passenger compartments. Advantageously, said hygiene method comprises the steps of:
Advantageously, a further maintenance step is provided of purging the air that is present within said cooling circuit, said purging step carried out after said lubricating fluid discharging step.
According to another aspect of the invention, a maintenance apparatus of a motor vehicle air conditioning system is provided, said motor vehicle having a driver and passenger compartments, an engine and an air circulation network, said air conditioning system comprising a cooling circuit in which a cooling fluid flows that cools an air flow that circulates in said network,
wherein said maintenance apparatus comprises:
In particular, said regeneration device comprises:
In particular, said program means is adapted to operate said hygiene device contemporaneously with said means for recovering said cooling fluid, in particular adapted to operate said hygiene device contemporaneously with said means for recovering said cooling fluid and with said means for discharging said lubricating fluid, and preferably adapted to switch off said hygiene device before or when said means for establishing vacuum conditions in said cooling circuit are actuated.
Advantageously, said hygiene device comprises:
In particular, said program means comprises a microprocessor and a digital display that provides an interface with an operator. This way, the operator can manage and check the correct execution of the above described maintenance and hygiene steps as well as he/she can set the timing and the parameters of said apparatus.
Further characteristic and advantages of the present invention will be made clearer with the following description of an exemplary embodiment thereof, exemplifying but not limitative, with reference to the attached drawings, throughout the figures in which:
With reference to
In particular, air conditioning system 20, as well known, comprises a cooling circuit 20′ that is equipped with a compressor 21, a hot exchanger or condenser 22, with a respective fan 22a, an expansion valve 26 and an evaporator or cold exchanger 25, with a respective fan 25a.
Furthermore, circuit 20′ provides a receiver of a liquid 27 to compensate the presence of the fluid in liquid state at the outlet of evaporator 25.
In particular, maintenance and hygiene apparatus 50, which is shown diagrammatically in
In particular, regeneration device 56 has an operating scheme as described in EP1367343 and in EP0969907, and provides a means for recovering the cooling fluid from cooling circuit 20, and a means for discharging the lubricating fluid. In addition, it comprises a pump that is adapted to create vacuum conditions inside cooling circuit 20′, and a cooling fluid depurating device, which exploits the evaporation of the same fluid and its subsequent condensation, in such a way that the contaminating impurities are eliminated and a regenerated cooling fluid is obtained.
The novel feature of the apparatus, according to the invention, is that regeneration device 56 and hygiene device 57 are contemporaneously operated through a program means 55, as diagrammatically shown in the block diagram of
Therefore, with reference to the maintenance and controlling procedure of the air conditioning system, pressure sensors, which are present in apparatus 50, are connected to cooling circuit 20′ by means of quick joint 15 and 16. In addition, a hygiene duct 34 is connected which engages with a suction mouth 33 that communicates with an air circulating network 35 (
Subsequently, an operator starts the maintenance and hygiene program that is resident in the memory of microprocessor 55. In particular, by means of a digital display of interface 52 and of a control panel the operator can manage and check the correct execution of the maintenance and hygiene procedure that are respectively performed by devices 56 and 57; furthermore, the operator can set time and parameters of apparatus 50.
As shown in
With reference to
In particular, regeneration steps 100 comprise in turn steps wherein a block 101 represents the step of recovering the cooling fluid from cooling circuit 20′, a block 102 represents the lubricating fluid discharging step, such as oil, which is present in cooling circuit 20′. A following block 103 represents the step of air purge from circuit 20′, which is followed by a step 104 of establishing vacuum conditions inside cooling circuit 20′. A step is also carried out, not shown, which concerns treatment of the cooling fluid such that contaminating impurities are eliminated and a regenerated cooling fluid is obtained. Finally, steps 105 are provided of reintroducing a lubricating fluid into cooling circuit 20′ and a step 106 of charging the regenerated cooling fluid into cooling circuit 20′. In particular, hygiene steps 201 and recovering step 101 are performed with the engine of motor vehicle 30 on, such that the step of recovering the cooling fluid is facilitated, since the higher the temperature of the air conditioning system, the higher the pressure of the cooling fluid in the cooling circuit 20. Furthermore, and still advantageously, hygiene step 201 and recovering step 101 are carried out with the air conditioning system turned off and with an air recirculation turned on in driver and passenger compartments 31.
As shown in the time diagram of
The foregoing description of a specific embodiment will so fully reveal the invention according to the conceptual point of view, so that others, by applying current knowledge, will be able to modify and/or adapt for various applications such an embodiment without further research and without parting from the invention, and it is therefore to be understood that such adaptations and modifications will have to be considered as equivalent to the specific embodiment. The means and the materials to realise the different functions described herein could have a different nature without, for this reason, departing from the field of the invention. It is to be understood that the phraseology or terminology employed herein is for the purpose of description and not of limitation.
Number | Date | Country | Kind |
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PI2008A000094 | Sep 2008 | IT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IB09/06851 | 9/16/2009 | WO | 00 | 5/4/2011 |