Strassenbelagsystem
20210062434 ยท 2021-03-04
Inventors
Cpc classification
E01C7/182
FIXED CONSTRUCTIONS
E01C3/06
FIXED CONSTRUCTIONS
International classification
Abstract
The present invention relates to a road surfacing system, in particular an asphalt road, which comprises at least one main layer which is at least partially and at least in places permeable to liquids and gases for absorbing compressive and shear forces generated on the main layer by load bodies, for example vehicles, travelling and/or standing on the main layer, wherein the main layer is arranged on a drainage layer through which liquids and/or gases can flow, and further where-in the drainage layer is again arranged on top of a drainage layer which is arranged and intended to at least partially drain liquids from the road surfacing system passing through the main and drainage layers, characterized in that the main layer is substantially free from aggregates and instead is formed with adhering ball elements formed with a plastic and/or a metal.
Claims
1. Road surfacing system (100), in particular an asphalt road, comprising at least one main layer (1), at least partially and at least in places permeable to liquids and gases, for absorbing compressive and shear forces generated on the main layer (1) by load bodies moving and/or standing on the main layer (1), for example vehicles, wherein the main layer (1) is arranged on a drainage layer (2) through which liquids and/or gases can flow, and further wherein the drainage layer (2) is again arranged all around on a drainage layer (3), drain layer (3), which is arranged and provided for at least partially draining liquids from the road surface system (100) through the main and drainage layers (1, 2), characterized by, the main layer (1) is substantially free from aggregates, and instead is formed with ball elements (11) adhering to each other, which are formed with a plastic and/or a metal.
2. The road surfacing system (100) according to claim 1, the drainage layer (2) is at least partially formed with aggregates.
3. The road surfacing system (100) according to claim 1, characterized by, the ball elements (11) produce a void content in volume % within the main layer (1) of at least 10 to at most 35, preferably of at least 20 to at most 30, more preferably of at least 22.0 to at most 28.0.
4. The road surfacing system according to claim 1, characterized by, the ball elements (11) are each formed with a hard core (110) and an outer layer (111) which preferably completely surrounds the hard core (110), whereby the outer layer (111) is formed with a material which is softer than the hard core (110) on a Shore D scale.
5. The road surfacing system (100) according to claim 4, characterized by, the outer layer (111) is softer by at least two points on the Shore D scale than the hard core (110) of each of the ball elements (11).
6. The road surfacing system (100) according to claim 4, characterized by, the hard core (110) is formed with a metal, while the outer layer (111) is formed with the plastic and/or or an adhesive.
7. The road surfacing system (100) according to claim 6, characterized by, ball elements (11) are mechanically bonded to one another by means of their outer layers (111), which are cured after previous heating, and/or by means of a cured bonding agent (112), for example a bonding adhesive.
8. The road surfacing system (100) according to claim 7, characterized by, the outer layer (111) of the balls (11) and/or the connecting means (112) is formed by means of an organic or inorganic adhesive.
9. Main layer (1), in particular as part of an asphalt road, wherein the main layer (1) is at least partially and at least in places permeable to liquids and gases, and the main layer (1) is arranged and provided to withstand pressure and/or shear forces generated thereon by load bodies, for example vehicles, moving and/or standing on it, characterized by, the main layer (1) is substantially free from aggregates, and instead is formed with ball elements (11) adhering to each other, which are formed with a plastic and/or a metal.
10. Method for producing a road surfacing system (100), in particular an asphalt road, comprising the steps of application of a drainage layer (3) on a road floor (4), application of a drainage layer (2) on the run-off layer (3), application of a main layer (1) to the drainage layer (2), wherein the main layer (1) is at least partially and at least in places permeable to liquids and gases, and the main layer (1) is designed and intended to withstand pressure and/or shear forces generated thereon by load bodies, for example vehicles, moving and/or standing on it, the drainage layer (2) is adapted to be at least partially permeable to liquids and/or gases, and further wherein the drainage layer (3) is arranged and intended to at least partially drain liquids from the road surfacing system (100) through the main and drainage layers (1, 2), characterized by, the main layer (1) is substantially free from aggregates and is instead formed with ball elements (11) formed with a plastic and/or metal, in particular wherein an outer surface (110A) of the ball elements (11) are applied to the drainage layer (2) in the still heated state, which can be bonded thereto, so that after application, the individual ball elements (11) cool down to an ambient temperature during cooling and thus bond to each other, so that a hardened road surface, in particular in the form of the main layer (1), results.
Description
[0047] In the following the inventions are described in more detail by means of two figures.
[0048]
[0049] In the figures, the same or similarly acting components are provided with the same reference lines, even if individual elements may be represented in exaggerated detail.
[0050]
[0051] The main layer 1 is essentially free of aggregates and instead is formed with adherent ball elements 11, which are formed with a plastic and/or a metal.
[0052] The drainage layer 2 is designed in such a way that liquids and gases can flow through it, so that drainage in the direction of the drainage layer 3 is ensured.
[0053] The drainage layer 3 is designed to allow liquids from the entire road surface system to run off at least partially (as shown in the longitudinal section as an example, V-shaped and on both sides towards the side), but preferably completely, in particular by itself, starting from an outer surface of the drainage layer 3 passing through the main layer 1 in the direction of the drainage layer 3.
[0054] This can mean that the existing drainage layer is formed in at least one version with aggregates, preferably completely with aggregates, which fundamentally distinguishes the existing drainage layer in its material, structural formation from main layer 1.
[0055] The spherical elements 11 form clearly recognisable cavities between one another in
[0056] The ball elements 11 are each formed with a hard core 110 and an outer layer 111 (In
[0057] Alternatively or additionally, instead of the formation of the ball elements 11 in the form of a hard core 110 with surrounding outer layer 111, the ball element 11 itself can be formed with a hard core 110, in which case the outer layer 111 is omitted. In such a case, however, it may be provided that instead of the outer layer 111, the individual hard cores 110 are joined together by means of a bonding adhesive, for example an organic or inorganic adhesive, arranged on the outer surface of the hard cores 110.
[0058] The main layer 1 shown in
[0059] The invention is not limited by the design example, but comprises any invention and any combination of features, even if these features are not explicitly described in the patent application.