FIELD OF THE INVENTION
[0001] The present invention concerns an apparatus, and the relative method, for the instantaneous
heating of compressed air, able to be positioned between an air inlet pipe, connected
to a compressor, and an air outlet pipe, connected to a user machine. To be more exact,
the present invention is advantageously applied in industrial plants for painting
with water paints or ecological paints, that is, which do not contain chemical solvents,
wherein the temperature of the compressed air needed for the paint to vaporize must
have a determinate value, usually above about 18°C.
BACKGROUND OF THE INVENTION
[0002] Industrial plants for painting with paints containing chemical solvents are known,
for example for painting furnishing panels, parts of automobile body work or other,
wherein the paints are vaporized by means of a flow of compressed air to the spray
gun.
[0003] Normally the compressed air used is taken directly from the environment of the compressor
itself, which also has the function of increasing the pressure thereof up to 4-5 bar.
[0004] So-called "ecological" paints are also known in the state of the art, such as for
example water paints, which give optimum painting results and are less harmful to
the environment.
[0005] In order to be used correctly, such ecological paints must however be vaporized using
compressed air with a determinate temperature, above about 18°C, in order to prevent
the formation of unwanted particles or lumps.
[0006] In known industrial sites, the environmental air is not always at a temperature of
above 18°C, especially in the cold season, and there is therefore the risk that ecological
paints are not used in the best way.
[0007] One purpose of the present invention is to achieve an apparatus for the instantaneous
heating of compressed air, which is simple and economical to achieve and which allows
to increase the temperature of the compressed air, in order to be able to use it in
optimum manner also for the vaporization of water paints or ecological paints.
[0008] Applicant has devised, tested and embodied the present invention to obtain these
and other purposes and advantages.
SUMMARY OF THE INVENTION
[0009] The present invention is set forth and characterized in the main claims, while the
dependent claims describe other characteristics of the present invention or variants
to the main inventive idea.
[0010] In accordance with the above purpose, an apparatus for the instantaneous heating
of compressed air according to the present invention is able to be arranged between
a compression unit that produces compressed air and a user unit that uses said compressed
air.
[0011] According to a characteristic feature of the present invention, the apparatus comprises
heating means for heating the compressed air and a control unit.
[0012] The control unit is able to selectively activate the heating means according to the
following parameters: actual use of the compressed air by the user unit, inlet pressure
of the compressed air, outlet pressure of the compressed air, inlet temperature of
the compressed air and outlet temperature of the compressed air.
[0013] Advantageously the above parameters are detected by detection means.
[0014] In one form of embodiment, the heating means comprise an electric resistance able
to take the compressed air arriving from the compression unit to a determinate temperature
value chosen by the user. Advantageously, if the apparatus according to the invention
is applied in painting plants using ecological paints, this determinate temperature
value is for example comprised between about 18°C and about 80°C. These temperature
values are purely indicative and can differ from those indicated, according to the
type of ecological paint used.
[0015] According to another form of embodiment, the detection means comprise a first detection
unit arranged upstream of the heating means and able to detect the values of pressure
and temperature of the compressed air arriving from the compression unit; a second
detection unit arranged downstream of the heating means and able to detect the values
of pressure and temperature of the compressed air after heating; and a third detection
unit arranged downstream of the second detection unit and upstream of the user unit
and able to detect the presence or absence of a flow of compressed air towards the
user unit.
[0016] As said, the data thus detected are sent to the control unit which, according to
determinate reference values, drives, or at least regulates the intensity of, the
heating means, so that the compressed air at outlet from the apparatus according to
the invention has a temperature comprised within the above temperature values.
[0017] Advantageously, the control unit comprises a control panel provided with a plurality
of keys and with a screen, by means of which an operator can constantly control the
pressure and temperature values at inlet and at outlet, and can also set in a desired
manner the limit temperature values which the compressed air must have at outlet.
[0018] With the apparatus according to the present invention it is thus possible to heat
the compressed air simply and rapidly in order to take it to a desired temperature,
and then to use it for example for painting with ecological paints and other.
[0019] Another advantage of the present invention is the simplicity of construction of the
apparatus which allows it to be installed almost in any type of already existing compressed
air plant.
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] These and other characteristics of the present invention will become apparent from
the following description of a preferential form of embodiment, given as a non-restrictive
example, with reference to the attached drawing, which shows a schematic illustration
of an apparatus for heating compressed air according to the present invention.
DETAILED DESCRIPTION OF A PREFERENTIAL FORM OF EMBODIMENT
[0021] With reference to the attached drawing, an apparatus 10 according to the present
invention is able to instantaneously heat a determinate quantity of compressed air,
and is arranged between a compression unit 11 that produces compressed air and a user
unit 12 such as for example the gun of a paint spray or suchlike.
[0022] The apparatus 10 according to the present invention is applied particularly in painting
plants with so-called ecological paints, such as for example water paints or similar,
which, in order to be used correctly, have to be vaporized with compressed air having
a temperature of between about 18° and about 80°C, in order to prevent the formation
of particles or lumps.
[0023] Simply to give an example, the compression unit 11 comprises a compressor, of a known
type and not shown in the drawing, able to take a determinate quantity of air directly
from the environment and to put it into circulation in a relative pipe 11a with a
pressure of between about 2 and about 5 bar.
[0024] The apparatus 10 according to the present invention substantially comprises a first
detection unit 13 able to detect the temperature at inlet of the compressed air, a
heating unit 15 able to heat the compressed air, a second detection unit 16 able to
detect the temperature of the compressed air after heating, and a third detection
unit 17 able to detect the presence or absence of a flow of compressed air towards
the user unit 12.
[0025] In this case, the apparatus 10 according to the invention also comprises a recircling
unit 32, able to return the compressed air upstream of the heating unit 15 if the
compressed air has not yet reached the desired temperature, or to keep the compressed
air at temperature, if it is not used by the user unit 12.
[0026] The first detection unit 13 is connected with the pipe 11a of the compression unit
11 and comprises a thermometer 19 that measures the temperature of the compressed
air introduced, and a barometer 20 that measures the value of pressure at which the
compressed air is introduced by the compression unit 11 inside the apparatus 10.
[0027] The heating unit 15 is arranged immediately downstream of the first detection unit
13 and comprises a transit pipe 21 for the passage of the compressed air and an electric
resistance 22 arranged inside the transit pipe 21 and able to be selectively activated
in order to instantaneously heat the compressed air that passes inside the transit
pipe 21.
[0028] The second detection unit 16 is arranged downstream of the heating unit 15 and comprises
a second thermometer 24 able to measure the temperature of the compressed air at outlet
from the heating unit 15.
[0029] The third detection unit 17 is arranged downstream of the second detection unit 16
and immediately upstream of the user unit 12 connected to the apparatus 10. The third
detection unit 17 comprises a tubular element 25 provided with a transverse throttling
26 able to generate a Venturi effect which allows to detect the passage, or absence,
of a flow of compressed air inside the tubular element 25, and hence the real requirement
of compressed air by the user unit 12.
[0030] The apparatus 10 according to the present invention also comprises an air valve 28
arranged parallel to the second detection unit 16 and able to allow the compressed
air to escape from the apparatus 10, when the absence of the flow of compressed air
is detected, in order to prevent the electric resistance 22 of the heating unit 15
from overheating.
[0031] The recircling unit 32 comprises a compressor 33 connected to the outlet of the third
detection unit 17 by means of a first pipe 35 and to the inlet of the first detection
unit 13 by means of a second pipe 36.
[0032] In this way, the compressor 33 induces the compressed air exiting from the third
detection unit 17 to return again inside the first detection unit 13, and then inside
the heating unit 15.
[0033] The apparatus 10 according to the present invention also comprises a control unit
27 provided substantially with an electronic processing circuit 29 connected to a
control panel 30.
[0034] The control panel 30 comprises a plurality of keys 34 able to allow the user to set
the value of temperature of the compressed air at outlet, for example a temperature
of between about 18° and about 80°C. The control panel 30 also comprises a screen
31 which allows to selectively display the data inserted by the user and the functioning
data detected by the detection units 13, 16 and 17.
[0035] The electronic processing circuit 29 is able to receive all the data detected by
the detection units 13, 16 and 17 and, as a function thereof and of the data inserted
by the user by means of the control panel 30, drives and regulates the functioning
of the heating unit 15, of the air valve 28 and of the recircling unit 32.
[0036] The apparatus 10 according to the present invention functions as follows.
[0037] First of all the compression unit 11 is activated, which introduces compressed air
with a temperature near ambient temperature and with a determinate pressure into the
apparatus 10.
[0038] The compressed air first passes inside the first detection unit 13 where, by means
of the thermometer 19 and the barometer 20, the temperature and pressure are measured.
[0039] The values of temperature and pressure thus detected are sent to the electronic processing
circuit 29 which, according to the values detected and the set value of temperature
of the compressed air at outlet, regulates the electric tension that feeds the electric
resistance 22, so as to take the latter to a determinate temperature.
[0040] In this way, when the compressed air passes through the transit pipe 21, it is heated
instantaneously by the electric resistance 22 and is taken to a value very near, or
slightly above, the set temperature value.
[0041] The compressed air that exits from the heating unit 15 then passes inside the second
detection unit 16 where, by means of the second thermometer 24, the real temperature
value thereof is measured.
[0042] This measured value is sent to the electronic processing circuit 29, which provides
to compare it with the set temperature value, in order to verify the quality of the
heating performed and possibly to regulate the temperature of the electric resistance
22.
[0043] In this case, the compressed air still not suitable for use is returned by the compressor
33 upstream of the heating unit 15, so that it is subjected to at least a second heating
cycle before it can be used.
[0044] The compressed air that exits from the second detection unit 16 is normally directed
towards the third detection unit 17 which, acting as a Venturi tube, measures the
delivery upstream and downstream of the throttling 26, so as to perceive the passage
or absence of the compressed air, and hence the possible requirement of the latter
by the user unit 12.
[0045] In order to prevent overheating and breakage of the electric resistance 22, if the
third detection unit 17 detects the absence of the flow of compressed air, a signal
is sent to the electronic processing circuit 29, which provides to de-activate the
electric resistance 22 and to open the air valve 28, for long enough to return the
temperature of the compressed air within determinate safety values.
[0046] In this configuration the compressed air introduced by the compression unit 11 passes,
at ambient temperature, inside the transit pipe 21 and emerges through the air valve
28, so as to cool the electric resistance 22 and prevent it overheating.
[0047] By means of the recircling unit 32 it is also possible to keep the compressed air
inside the apparatus 10 at temperature, even when the compressed air is not required
by the user unit 12. In fact, when the third detection unit 17 detects the absence
of the flow, and the temperature of the electric resistance 22 is not near overheating,
the electronic processing circuit 29 commands the compressor 33 to be driven, so that
the compressed air passes cyclically inside the heating unit 15 and its temperature
is kept inside a desired range of values.
[0048] This solution, apart from saving the energy used for heating, guarantees that the
compressed air at outlet from the user unit 12 always has a temperature near the set
temperature.
[0049] The apparatus 10 as described heretofore has substantially limited size and is made
with elements of a known type and easily found on the market, and therefore it is
extremely easy, quick and economical to make and, where necessary, to maintain.
[0050] Moreover, the apparatus 10 as described heretofore can be installed easily, and without
needing substantial modifications, in any existing pneumatic plant, or industrial
site.
[0051] It is clear, however, that modifications and/or additions of parts may be made to
the apparatus 10 as described heretofore, without departing from the field and scope
of the present invention.
[0052] It is also clear that, although the present invention has been described with reference
to specific examples, a person of skill in the art shall certainly be able to achieve
many other equivalent forms of apparatus for the instantaneous heating of compressed
air, all of which shall come within the field and scope of the present invention.
1. Apparatus for the instantaneous heating of compressed air, able to be arranged between
a compression unit (11) which produces said compressed air and a user unit (12) able
to use said compressed air, characterized in that it comprises heating means (15) for heating said compressed air and a control unit
(27), able to selectively activate said heating means (15) according to at least one
of the following parameters: actual use of said compressed air by said user unit (12);
inlet pressure of said compressed air; outlet pressure of said compressed air; inlet
temperature of said compressed air; outlet temperature of said compressed air.
2. Apparatus as in claim 1, characterized in that said parameters are detected by detection means (13, 16, 17).
3. Apparatus as in claim 1 or 2, characterized in that said heating means (15) comprise an electric resistance (22) able to take said compressed
air arriving from said compression unit (11) to a determinate temperature value.
4. Apparatus as in claim 2, characterized in that said detection means comprise a first detection unit (13) arranged upstream of said
heating means (15) and able to detect the values of pressure and temperature of said
compressed air arriving from said compression unit (11), a second detection unit (16)
arranged downstream of said heating means (15) and able to detect the values of pressure
and temperature of said compressed air after heating, and a third detection unit (17)
arranged downstream of said second detection unit (16) and upstream of said user unit
(12) and able to detect the presence or absence of a flow of said compressed air towards
said user unit (12).
5. Apparatus as in claim 4, characterized in that it also comprises an air valve (28) arranged parallel to said second detection unit
(16) and able to allow said compressed air to escape from said apparatus (10) when
the absence of said flow of compressed air is detected.
6. Apparatus as in claim 5, characterized in that said control unit (27) comprises an electronic processing circuit (29) connected
to a control panel (30) and able to command and coordinate the functioning of said
heating means (15) and of said air valve (28) according to the data detected by said
first, second and third detection units (13, 16, 17).
7. Apparatus as in claim 4, characterized in that said first detection unit (13) comprises a thermometer (19) able to measure the temperature
of said compressed air introduced by said compression unit (11), and a barometer (20)
able to measure the value of pressure at which said compressed air is introduced by
said compression unit (11).
8. Apparatus as in claim 3, characterized in that said heating means (15) comprise a transit pipe (21) for said compressed air, inside
which said electric resistance (22) is arranged.
9. Apparatus as in claim 4, characterized in that said second detection unit (16) comprises a second thermometer (24) able to measure
the temperature of the compressed air at outlet from said heating means (15).
10. Apparatus as in claim 4, characterized in that said third detection unit (17) comprises a tubular element (25) provided with a transverse
throttling (26) able to generate a Venturi effect that allows to detect the passage
of a flow of compressed air inside said tubular element (25).
11. Apparatus as in claim 6, characterized in that said control panel (30) comprises a screen (31) able to display reference data inserted
by the user and functioning data detected by said detection units (13, 16, 17).
12. Apparatus as in claim 6, characterized in that said control panel (30) comprises a plurality of keys (34) able to allow the user
to set the value of the temperature at outlet.
13. Apparatus as in any claim hereinbefore, characterized in that it also comprises a recircling unit (32), able to selectively return said compressed
air upstream of said heating means (15).
14. Apparatus as in claim 13, characterized in that said recircling unit (32) comprises a compressor (33) connected to the outlet of
said third detection unit (17) by means of a first pipe (35) and to the inlet of said
first detection unit (13) by means of a second pipe (36).
15. Method for the instantaneous heating of compressed air arriving from a compression
unit (11) and destined for a user unit (12), characterized in that it comprises a first step wherein, by means of first detection means (13), at least
one of the following parameters is detected: actual use of said compressed air by
said user unit (12); inlet pressure of said compressed air; outlet pressure of said
compressed air; inlet temperature of said compressed air; outlet temperature of said
compressed air; and a second step wherein, by means of heating means (15), said compressed
air is heated to a determinate temperature.
16. Method as in claim 15, characterized in that it also comprises a third step wherein, by means of second detection means (16),
the temperature of said compressed air is measured after heating; and a fourth step
wherein, by means of third detection means (17), the real use of said compressed air
by said user unit (12) is verified.
17. Method as in claim 15 or 16, characterized in that it also comprises a fifth step wherein, by means of a recircling unit (32), said
heated compressed air is introduced again inside said heating means (15) in order
to repeat said second step.