Further characteristics and advantages of an extruded honeycombed panel according to the present invention shall become clearer from the following description, given as an example and not for limiting purposes, referring to the attached schematic drawings, in which:
With reference to the figures, an extruded honeycombed panel 10 is shown, in particular for application as roofs and/or buffer walls in the construction industry, for example for prefabricated products or for greenhouses.
The honeycombed panel 10 made from thermoplastic material comprises two or more flat sheets 13 that are parallel to each other, spaced apart and connected by a plurality of ribs 14 that are incident with respect to such sheets 13.
The extruded honeycombed panels 10 can be made up of just two sheets 13 that define a layer or else they can comprise a greater number of overlapping layers.
In the case of a single-layer panel, shown schematically in
In the multi-layer configurations the ribs 14 of a first layer of the panel 10 can, for example, have a different undulating longitudinal extension to the undulating longitudinal extension of the ribs 14 of a second layer, as shown in the separated detail of
Moreover, in the multi-layer panels 10 according to the present invention it is sufficient for the ribs 14 of a single layer to have an undulating longitudinal extension.
As shown in
The arrangement in the panel 10 of at least one layer of ribs with undulating longitudinal extension increases the rigidity of the structure in the transversal direction to an increasing extent the more accentuated is the undulated profile of the ribs. In such a way, indeed, the ribs are more distributed on the surface avoiding the presence of longitudinal portions or channels without reinforcement ribs and subject to bending.
The honeycombed structure can be made from polycarbonate, or else other transparent or opaque synthetic materials, e.g. alloys of thermoplastic materials with similar chemical-physical characteristics to polycarbonate.
In the case of extruded honeycombed panels made from transparent materials, the presence of the ribs with undulating extension determines the diffusion of the light rays through the panel at the same time preventing it from crossing it directly.
Indeed, the sun's rays that strike the panel 10 at a rib 14 shall be diffused, whereas at the honeycomb, in other words in the portion between two ribs 14, direct crossing is possible. In the extruded honeycombed panel 10 according to the invention the ribs 14 are more distributed on the surface of the panel and the sun's rays shall never meet an entire longitudinal portion without ribs 14 to be crossed, but shall be diffused by them.
It is therefore advantageously possible to forgo applying an outer screen of pigments to the panels to screen the sun's rays, which substantially reduces the transmission of light.
The extruded honeycombed panel object of the present invention has the advantage of having improved the characteristics of mechanical strength in the transversal direction maintaining a simple and light structure.
The extruded honeycombed panel according to the present invention, made from transparent material advantageously has an excellent light diffusion factor.
When used as a heat exchanger the extruded honeycombed panel object of the present invention has the advantage of prolonging the flow times of the fluids promoting heat exchange.
The extruded honeycombed panel with high mechanical strength thus conceived is susceptible to numerous modifications and variants, which are all covered by the invention itself; moreover, all of the details can be replaced with technically equivalent elements. In practice, the materials used, as well as their sizes, can be whatever according to the technical requirements.