The present invention relates to an apparatus for manufacturing a multilayer tube for the hydraulic connection and wiring of solar panels.
Currently, in order to install a solar panel of the thermal type, i.e., dedicated to the heating of a heat transfer fluid that is then designed to heat water for example for a home, one proceeds, after laying the panels, with the provision of the hydraulic and electrical connections.
The one or more fitted solar panels must be reached by a supply duct for the water to be heated and by a return duct for such water heated by passing through the one or more panels and, in the case for example of solar power systems with forced circulation, by an electrical connection for a probe for detecting the temperature of the water at the panel manifolds.
Such a complex installation is costly both in terms of time, since each duct and the wiring cable each require a dedicated path with a dedicated seat or chase or in any case must be laid each independently of the other, and in terms of space occupation, since according to currently applicable statutory provisions each duct for heat transfer fluids must be insulated thermally with layers of insulation which, in order to ensure the required performance, cause the individual duct to produce a diametrical space occupation of more than six centimeters.
In order to obviate the cited drawbacks of the background art, this same Applicant has devised a multilayer tube for the hydraulic connection and wiring of solar panels, which comprises
Such a multilayer tube allows to connect hydraulically one or more solar panels quickly and with very small space occupation, far lower than the space occupation required by known means.
Further, such multilayer tube is in compliance with statutory provisions, and in terms of performance and efficiency is not inferior to currently known thermally insulated tubes.
The aim of the present invention is to provide an apparatus for manufacturing a multilayer tube for the hydraulic connection and wiring of solar panels as described above.
Within this aim, an object of the invention is to provide an apparatus that can be managed easily with a small workforce.
Another object of the invention is to provide an apparatus that is flexible and easily adaptable to the production requirements of the user.
Another object of the invention is to propose an apparatus for manufacturing a multilayer tube for the hydraulic connection and wiring of solar panels that can be manufactured with known technologies.
This aim, as well as these and other objects that will become better apparent hereinafter, are achieved by an apparatus for manufacturing a multilayer tube for the hydraulic connection and wiring of solar panels, characterized in that it comprises
Further characteristics and advantages of the invention will become better apparent from the following detailed description of two preferred but not exclusive embodiments of the apparatus according to the invention, illustrated by way of non-limiting example in the accompanying drawings, wherein:
With reference to the figures, an apparatus for manufacturing a multilayer tube for the hydraulic connection and wiring of solar panels according to the invention is generally designated by the reference numeral 10 in its first embodiment.
The apparatus 10 comprises:
Downstream of the means 21 for the longitudinal closure of the sheath there are means 22 for the advancement of the finished multilayer tube 23, which are followed by coiling means 24. The apparatus 10 also comprises means 25 for cutting into tapes 26 of preset width thermally insulating material in roll form 27.
The material in roll form 27 is Aerogel.
The means 11 for covering the two flexible tubes 12 and 13 receive the tapes 14 and 15 from corresponding rolls, for example 28 and 29, which are provided by way of the cutting means 25 of the Aerogel shown in
The flexible tubes 12 and 13 likewise arrive from corresponding spools 30 and 31.
The flexible tubes 12 and 13 are for example corrugated metallic tubes.
The means 11 for covering the two tubes 12 and 13 comprise two conical inlets 33 and 34, which are contoured to receive the tape 14 or 15 spread flat and to fold it during its advancement so as to wrap completely around the respective tube 12 or 13.
The tubes 12 and 13 wrapped in the respective tapes of Aerogel 14 and 15 exit from the conical inlets 33 and 34 in order to pass through the tying means 16, which are constituted for example by corresponding stranding devices 35 and 36, of a per se known type, each with one, two or four auxiliary strand carrying spools 37 and 38.
Both stranding devices 35 and 36 are actuated by a single electric motor 39, a sprocket which is keyed on the shaft of the motor 39, which acts on corresponding external sets of teeth of the rings that support the respective stranding devices.
The covered tubes 18 and 19 reach the means 17 for covering them with a protection and containment sheath 20 and are arranged mutually side-by-side and parallel.
At least one electrical cable is closed together with the two covered tubes 18 and 19 by the sheath 20 to the side of one of the two covered tubes.
The covering means 17 comprise an inlet 40, which is designed to arrange a central region 20a of the tape of sheath 20 under the two tubes 18 and 19, while the lateral flaps 20b and 20c are raised, to be then folded, by a subsequent passage element 42 provided with two conical channels, in order to wrap around each one of the two tubes 18 and 19, until the edges 20d and 20e of the flaps are moved into contact with the upper face of the central region 20a, as shown in
The means 21 for the longitudinal closure of the sheath 20 on the covered pipes 18 and 19 are shown schematically in cross-section in
Such a heat-sealing device 50 is to be understood as being of a per se known type, for example having a hot presser 51 moved by a press 52.
The means 22 for the advancement of the finished multilayer tube 23 are of the stepwise type.
The stepwise advancement means 22 comprise locking jaws 54 designed to grip the finished multilayer tube 23 to then perform a translational motion on rails 56 for the advancement of the finished multilayer tube by actuators 55.
The translational motion of the jaws 54 is synchronized with the movements of the press 52, so that the advancement of the finished multilayer tube 23 occurs when the presser 51 is lifted.
Downstream of the advancement means 22 there are the coiling means 24, which comprise, in addition to a motorized reel 58 onto which the multilayer tube 23 is to be wound, means 60 for diverting the multilayer tube 23 which are adapted, to direct the multilayer tube 23 so as to optimize winding onto the reel 58.
The diverting means 60 comprise a pair of mutually opposite pulleys 61, between which the finished multilayer tube 23 passes; such pulleys are supported by a support 62 designed to be translated to the right and to the left alternately by lead screw and worm screw means 63 of a per se known type, which are managed by an electric motor 64, as shown by way of example in
The means 25 for cutting into tapes 26 of preset width the Aerogel in roll form 27, shown in
Each pair of blades, for example 65a, comprises two circular blades 66 and 67, each keyed on a corresponding driving shaft 68 and 69 of two drive shafts with parallel axes.
The blades 66 and 67 of each pair have superimposed cutting edges so that the quality of the cut is the same for all the edges of all the tapes 14 that are provided.
The blades 66 and 67 are supported by collars 68 that can be opened to reposition the blades on the respective driving shafts, so as to allow to adjust the width of the tapes 26 to be provided.
In a second embodiment of the apparatus according to the invention, the means 111 for covering two flexible tubes 112 and 113, shown schematically in
The means 111 process a single flexible tube 112 instead of two as in the first embodiment of the apparatus.
The means 111 for covering the tube 112 comprise a conical inlet 133 and a stranding device 135 of a per se known type and as described above.
The covered tube 118 is directed to a spool 170.
The apparatus 110 in its second embodiment, exemplified in
The rest of the apparatus 110 in its second embodiment corresponds to what has been described for the first embodiment of the apparatus 10.
Advantageously, means 172 for diverting the covered tube 118 are associated with the spool 170 and are adapted to direct such tube so as to optimize the winding of the spool 170.
The diverting means 172 comprise a pair of mutually opposite pulleys 173, between which the finished multilayer tube 23 passes, such pulleys being supported by a support 174 designed to be translated to the right and to the left alternately by lead screw and worm screw means 175, of a per se known type, which are managed by an electric motor 176, as exemplified in
In practice it has been found that the invention achieves the intended aim and objects.
In particular, the invention provides an apparatus for manufacturing a multilayer tube for the hydraulic connection and wiring of solar panels as described in the introduction to the present description.
Further, the invention provides an apparatus that can be managed easily with a small workforce, since all the parts of the apparatus can be substantially automated, except in the second embodiment, in which a conveyance of spools of covered tube occurs.
Moreover, the invention provides an apparatus that is flexible and easily adaptable to the production requirements of the user, since it is possible to vary the type and size of the flexible tubes and the width of the tapes of Aerogel according to the requirements and needs.
Not least, the invention provides an apparatus for manufacturing a multilayer tube for the hydraulic connection and wiring of solar panels that can be manufactured with per se known technologies.
The invention thus conceived is susceptible of numerous modifications and variations, all of which are within the scope of the appended claims; all the details may further be replaced with other technically equivalent elements.
In practice, the materials used, as well as the contingent shapes and dimensions, may be any according to requirements and to the state of the art.
The disclosures in Italian Patent Application No. PD2009A000314 from which this application claims priority are incorporated herein by reference.
Where technical features mentioned in any claim are followed by reference signs, those reference signs have been included for the sole purpose of increasing the intelligibility of the claims and accordingly such reference signs do not have any limiting effect on the interpretation of each element identified by way of example by such reference signs.
Number | Date | Country | Kind |
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PD2009A000314 | Oct 2009 | IT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2010/066125 | 10/26/2010 | WO | 00 | 4/26/2012 |