REFLECTORS
20170002526 · 2017-01-05
Inventors
Cpc classification
E01F9/553
FIXED CONSTRUCTIONS
E01F9/529
FIXED CONSTRUCTIONS
E01F9/524
FIXED CONSTRUCTIONS
International classification
E01F9/524
FIXED CONSTRUCTIONS
E01F9/512
FIXED CONSTRUCTIONS
Abstract
According to the present invention, there is an improved road reflector comprised by a support base (6), a top casing (1) and reflecting crystals (5), wherein said support base (6) is coupled with the top casing (1) through a plurality of fastening flanges (12) and through a plurality of vertical reinforcements (7) interlayed therebetween and at least two fastening channels (8) with angular walls (8a) that provide an adhesive and mechanical reinforcement.
Claims
1. An improved road reflector comprised by a support base (2), a top casing (1) and reflecting crystals (5); said support base 6 is coupled with the top casing (1) through a plurality of fastening flanges (12) and through a plurality of vertical reinforcements (7) interlayed therebetween; wherein the support base (2) has a lower surface with at least two fastening channels (8) with angular walls (8a) that provide an adhesive and mechanical reinforcement.
2. An improved road reflector as claimed in claim 1, wherein the main body (1) is comprised by two tilted walls (2) and two circular heads (3).
3. An improved road reflector as claimed in claim 2, wherein the tilted walls (2) form a bas-relief housing recess (11) that allows for the coupling of the reflecting crystals (5).
4. An improved road reflector as claimed in claim 1, comprising: a fastening area (4) that projects from the top end of the main body (1) up to a central point over the circular heads (3).
5. An improved road reflector as claimed in claim (1), wherein the support base (6) is comprised by a substantially flat-shaped main body, a plurality of parallel reinforcements (7) in the top portion and a substantially concave-shaped bas-relief area (9) located at the short ends of the support base (6).
6. An improved road reflector as claimed in claim 5, wherein the parallel reinforcements (7) have a substantially staggered shape.
7. An improved road reflector as claimed in claims and 5, wherein the fastening channels (8) have angular walls (8a) with a slope of less than 90.
8. An improved road reflector as claimed in claims and 5, wherein the free areas not comprised by the fastening channels (8) are comprised by a plurality of hexagonal anchoring recesses (10).
9. An improved road reflector as claimed in claim 8, wherein the hexagonal anchoring recesses (10) may be of any shape.
10. An improved road reflector as claimed in claim 1, wherein the reflecting crystals (5) are comprised by 178 high quality prisms with diagonal divisions (5a) that allow to maintain a higher effectiveness percentage during all the shelf life thereof.
11. An improved road reflector as claimed in claim 1, wherein the reflecting crystals (5) are comprised by 178 high quality prisms with diagonal divisions (5a) that allow to maintain a higher effectiveness percentage during all the shelf life thereof.
12. An improved road reflector as claimed in claim 1, wherein the parallel reinforcements (7) form middle receptor channels (7a).
13. An improved road reflector as claimed in claim 1, wherein the fastening flanges (12) form middle receptor channels (12a).
Description
BRIEF DESCRIPTION OF THE DRAWINGS OR FIGURES
[0018] The previous aspects and many of the concomitant advantages of this invention will be better understood upon reading the following detailed description and considering same along with the attached drawings, in which:
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DETAILED DESCRIPTION OF THE INVENTION
[0029]
[0030] The top casing (1) of the road reflector will be described, which is comprised by a main hollow body with at least two tilted walls (2) provided in opposed directions, and arranged for casing reflecting crystals (described below). Likewise, said main hollow body of the top casing (1) defines, in its free ends, circular heads (3) softer to transit, which reduce the impact of the tires of the vehicles when contacting the main body of the top casing (1); said characteristic prevents the risk of detachment of the road reflector. At least one fastening area (4) is formed with a bas-relief on the circular heads (3) for facilitating the handling of the road reflector once the adhesive is applied and thus, allow for the accommodation thereof in its final position.
[0031]
[0032] As it may be seen from
[0033]
[0034] As may be seen in
[0035]
[0036] As it may be seen from
[0037]
[0038] As it may be seen from FIG. (5), the fastening channels (8) have angular walls (8a) with a tilt that is lower than 90 (same that may be higher than 90 depending on the direction of the wall). Said fastening channels (8) comply with two important advantages: [0039] The first is to increase the contact area between the epoxy adhesive and the road reflector. [0040] The second is to allow for the adhesive to become a mechanical barrier for avoiding its detachment.
[0041] Thanks to the angular walls (8a) of the fastening channels (8), the permeated adhesive serves as a hook by fastening to the vertexes (8b) for providing a double reinforcement (adhesive and mechanical) thereby increasing the traction in the road reflector with respect to the road surface.
[0042]
[0043] As it may be seen in
[0044]
[0045] As it may be seen from
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[0047]
[0048] As it may be seen from
[0049] FIG. (9) shows a perspective view of a cut made to the road reflector.
[0050] As previously mentioned, the road reflector is formed by three main parts, the top casing (1), the support base (6) and the reflecting crystals (5). Regarding the top casing (1) and the support base (2), these are attached by the splicing between the vertical reinforcements (7) and the fastening flanges (12). Said fastening flanges (12) and vertical reinforcements (7) form a dovetail type attachment, which provides a greater resistance to the road reflector, making it unnecessary for the adhesive used to trespass the surfaces from the base up to the inner portion of the top casing (1), which results in a lower adhesive consumption. Furthermore, the implementation of a greater amount of adhesive for filling the top casing (1) would form a cake with a higher hardness and thus breakable, which would not comply with the function of avoiding the detachment of the top casing (1) as in the present invention.
[0051]
[0052] As it may be seen from
[0053] An embodiment of the invention is based on the fact of being able to manufacture a road reflector with any possible height.
[0054] Another embodiment of the invention is based on the fact that the fastening flanges may be of any shape and size.
[0055] Another embodiment of the invention is based on the fact that the vertical reinforcements may be of any shape and size.
[0056] Another embodiment of the invention allows to make the fastening channels with any angle of less than 90.
[0057] Another embodiment of the invention allows to make the fastening channels with any angle of more than 90.
[0058] Another embodiment of the invention allows to make the hexagonal anchoring recesses with any shape.
[0059] Another embodiment of the invention allows to make more than two fastening channels in the lower surface of the support base.
[0060] Another embodiment of the invention allows to make the road reflector of any polymeric type.
[0061] Another embodiment of the invention allows to use any type of epoxy adhesive.
[0062] Another embodiment of the invention allows to make the top casing of any shape, size or material.
[0063] Still another embodiment of the invention allows to make the support base of any shape, size or material.