A ROAD SAFETY BARRIER WITH A PLURALITY OF METAL CABLES

20200208362 ยท 2020-07-02

Assignee

Inventors

Cpc classification

International classification

Abstract

A road safety barrier with a plurality of metal cables, arranged along the side of a carriageway, for re-directing a vehicle in a case of impact, has a plurality of poles, fixed to the ground, which are distanced from one another and which are arranged one following another along the side of a carriageway. The safety barrier also has a plurality of metal cables supported by the poles, so that each metal cable is parallel to and at a predefined distance from the remaining metal cables in order to re-direct a vehicle in a case of impact. Each metal cable is fixed to each pole and is wound at least once about the lateral surface of each pole.

Claims

1. A road safety barrier with a plurality of metal cables, arranged along the side of a carriageway, for re-directing a vehicle in a case of impact, comprising: a plurality of poles which are fixed to the ground, which are distanced from one another and which are arranged one following another along the side of a carriageway; a plurality of metal cables which are supported by the poles of the plurality of poles, so that each metal cable of the plurality of metal cables is parallel to and at a predefined distance from the remaining metal cables of the plurality of metal cables in order to re-direct a vehicle in a case of impact; wherein: each metal cable of the plurality of metal cables is fixed to each pole of the plurality of poles, and is wound at least once about the lateral surface of the pole.

2. The road safety barrier of claim 1, wherein the metal cables of the plurality of metal cables are arranged so as to contact the vehicle in a case of impact.

3. The road safety barrier of claim 1, further comprising a plurality of slab-shaped elements, each of which is supported by at least two metal cables of the plurality of metal cables; the slab-shaped elements of the plurality of slab-shaped elements being connected to the metal cables of the plurality of metal cables in such a way as to maintain each metal cable of the plurality of metal cables parallel to and at a predefined distance from the remaining metal cables of the plurality of metal cables.

4. The road safety barrier of claim 3, wherein each slab-shaped element of the plurality of slab-shaped elements comprises at least two housings, each of which is conformed so as to be crossable by a metal cable of the plurality of metal cables, so that each slab-shaped element of the plurality of slab-shaped elements is slidably borne by the at least two metal cables of the plurality of metal cables which cross the at least two housings.

5. The road safety barrier of claim 3, wherein the slab-shaped elements of the plurality of slab-shaped elements are interposed between the metal cables of the plurality of metal cables and the carriageway.

6. The road safety barrier of claim 1, wherein each pole of the plurality of poles has a circular section.

7. The road safety barrier of claim 6, wherein a ratio between a diameter of each metal cable of the plurality of metal cables and a diameter of a circumference defined by the circular section is less than or equal to 0.2.

8. The road safety barrier of claim 1, wherein each pole of the plurality of poles has a polygonal section.

9. The road safety barrier of claim 8, wherein each pole of the plurality of poles is conformed so as to be without live edges at least at relative portions of lateral surface about which the metal cables of the plurality of metal cables are wound.

10. The road safety barrier of claim 8, wherein a ratio between a diameter of each metal cable of the plurality of metal cables and a diameter of a circumference inscribed in the polygonal section of each pole of the plurality of poles is less than or equal to 0.2.

Description

BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Specific embodiments of the invention will be described in the following part of the present description, according to what is set down in the claims and with the aid of the accompanying tables of drawings, in which:

[0013] FIG. 1 is a perspective view of a portion of road safety barrier of known type;

[0014] FIG. 2 illustrates detail J of FIG. 1 in larger scale;

[0015] FIG. 3 is a perspective view of a portion of road safety barrier according to the first embodiment of a first invention;

[0016] FIG. 4 illustrates detail W of FIG. 3 in larger scale and in a lateral view;

[0017] FIG. 5 is a perspective view of a portion of road safety barrier according to a second embodiment of the first invention;

[0018] FIG. 6 is a lateral view of the portion of road safety barrier of FIG. 5;

[0019] FIG. 7 is a view of section VII-VII of FIG. 6;

[0020] FIG. 8 illustrates detail Z of FIG. 7 in larger scale;

[0021] FIG. 9 is a perspective view of a portion of road safety barrier according to a further embodiment of the first invention;

[0022] FIG. 10 illustrates detail V of FIG. 9 in larger scale.

DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0023] With reference to FIGS. 3-10, reference numeral (1) is used to denote in its entirety a road safety barrier with metal cables, arranged along the side of a carriageway, for re-directing a vehicle in a case of impact, object of a first invention.

[0024] The road safety barrier (1) with a plurality of metal cables (4) comprises: a plurality of poles (2) which are fixed to the ground (3), which are distanced from one another and which are arranged one following another along the side of a carriageway (not illustrated); a plurality of metal cables (4) which are supported by the poles (2) of the plurality of poles (2), so that each metal cable (4) of the plurality of metal cables (4) is parallel to and at a predefined distance from the remaining metal cables (4) of the plurality of metal cables (4) in order to redirect a vehicle in a case of impact. Each metal cable (4) of the plurality of metal cables (4) is fixed to each pole (2) of the plurality of poles (2), and is wound at least once about the lateral surface (12) of the pole (2).

[0025] The metal cables (4) of the plurality of metal cables (4) are preferably arranged so as to contact the vehicle in the case of impact.

[0026] FIGS. 3, 4 illustrate a first embodiment of the first invention.

[0027] The metal cables (4) of the plurality of metal cables (4) are preferably at least three in number: in FIGS. 3-10, for example, they are four in number.

[0028] Further, the metal cables (4) of the plurality of metal cables (4) are preferably made of steel.

[0029] The poles (2) of the plurality of poles (2) are preferably made of metal, for example, steel.

[0030] In a second embodiment of the first invention, see for example FIGS. 5-8, the road safety barrier (1) further comprises: a plurality of slab-shaped elements (7), each of which is supported by at least two metal cables (4) of the plurality of metal cables (4). The slab-shaped elements (7) of the plurality of slab-shaped elements (7) are connected to the metal cables (4) of the plurality of metal cables (4) in such a way as to maintain each metal cable (4) of the plurality of metal cables (4) parallel to and at a predefined distance from the remaining metal cables (4) of the plurality of metal cables (4).

[0031] The slab-shaped elements (7) advantageously constitute a further constraint for maintaining each metal cable (4) of the plurality of metal cables (4) parallel to and at a predefined distance from the remaining metal cables (4) of the plurality of metal cables, so that there are still greater probabilities that a vehicle which were to wedge between the adjacent metal cables (4) of the plurality of metal cables (4) would not be able to distance from them and pass beyond the road safety barrier (1).

[0032] Further, where the space between the adjacent metal cables (4) of the plurality of metal cables (4) is occupied by the slab-shaped elements (7) of the plurality of slab-shaped elements (7), the risk that a vehicle might also only wedge in this space is also eliminated.

[0033] In the example illustrated in FIGS. 5, 6, all the spaces between the adjacent metal cables (4) are advantageously occupied by the slab-shaped elements (7) of the plurality of slab-shaped elements (7).

[0034] The slab-shaped elements (7) of the plurality of slab-shaped elements (7) are made of a transparent material, so as to limit the environmental impact.

[0035] The slab-shaped elements (7) of the plurality of slab-shaped elements (7) are preferably made of polycarbonate and glass, so that they are transparent and therefore have a low environmental impact, but at the same time they can have high resistance to impact and scratching as well as a high degree of durability.

[0036] Each slab-shaped element (7) of the plurality of slab-shaped elements (7) can be connected to all the cables (4) of the plurality of cables (4), as shown in FIGS. 5, 6 and 7.

[0037] Each slab-shaped element (7) of the plurality of slab-shaped elements (7) preferably comprises at least two housings (9), each of which is conformed so as to be crossable by a metal cable (4) of the plurality of metal cables (4), so that each slab-shaped element (7) of the plurality of slab-shaped elements (7) is slidably supported by the at least two metal cables (4) of the plurality of metal cables (4) which cross the at least two housings (9).

[0038] In the case of an impact, the portions of metal cables (4) of the plurality of metal cables (4) between two successive poles (2) of the plurality of poles (2), set in traction by the impact itself, deform across the at least two housings (9) of each slab-shaped element (7) of the plurality of slab-shaped elements (7). The possibility of relative movement between said metal cables (4) and said slab-shaped elements (7) is advantageously such that the metal cables (4) can absorb the stresses associated to the impact by deforming without transmitting the stresses to the slab-shaped elements (7) which, not being provided with a deformability comparable to that of the metal cables (4), would not be able to absorb them.

[0039] The at least two housings (9) can comprise through-holes or hooks, as illustrated in FIG. 8, to enable the sliding of the metal cables (4).

[0040] Each slab-shaped element (7) of the plurality of slab-shaped elements (7) preferably comprises a number of housings (9) equal to the number of metal cables (4) of the plurality of metal cables (4).

[0041] Each slab-shaped element (7) of the plurality of slab-shaped elements (7) can also be arranged in such a way as to be connected to one or all the poles (2) of the plurality of poles (2), see in particular FIGS. 5 and 6.

[0042] The slab-shaped elements (7) of the plurality of slab-shaped elements (7) are preferably interposed between the metal cables (4) of the plurality of metal cables (4) and the carriageway.

[0043] This arrangement guarantees that in a case of impact the impacting vehicle comes into contact with one or more slab-shaped elements (7) of the plurality of slab-shaped elements (7) and not with the plurality of metal cables (4). The slab-shaped elements (7) advantageously dampen the impact and thus limit the risk that the impacting vehicle is cut by the metal cables (4) set in traction following the impact. Further, the possibility that a vehicle can wedge between two adjacent metal cables (4) of the plurality of metal cables (4) is reduced. This further improves the performance of the road safety barrier (1) in terms of safety for the occupants of the impacting vehicle.

[0044] This advantage is particularly important in a case in which the impact involves the more vulnerable road users, i.e. cyclists and motor cyclists, for whom the direct contact with the metal cables (4) of the plurality of metal cables (4), during the impact step, might in all probability be fatal.

[0045] In both embodiments of the first invention, each pole (2) of the plurality of poles (2) can preferably have a circular section, see from FIGS. 3 to 8.

[0046] The circular shape of the section advantageously facilitates the winding of each metal cable (4) of the plurality of metal cables (4) about the lateral surface (12) of each pole (2) of the plurality of poles (2).

[0047] The ratio between a diameter of each metal cable (4) of the plurality of metal cables (4) and a diameter of a circumference defined by the circular section (10) is preferably less than or equal to 0.2.

[0048] This advantageously enables each metal cable (4) of the plurality of metal cables (4) to be wound around each pole (2) of the plurality of poles (2), guaranteeing contact with the lateral surface (12) of the pole (2) along the entire extension of the winding.

[0049] Alternatively, in both embodiments of the first invention, described in the foregoing, each pole (2) of the plurality of poles (2) can have a polygonal section, see in particular FIGS. 9 and 10.

[0050] By polygonal section is meant, for example, a quadrilateral section, see FIGS. 9 and 10, or a pentagonal, hexagonal, octagonal, trapezoidal section (not illustrated).

[0051] In the case of a polygonal pole (2), the pole (2) of the plurality of poles (2) is preferably conformed so as to be without live edges at least at relative portions of lateral surface (12) about which the metal cables (4) of the plurality of metal cables (4) are wound.

[0052] The risk that the metal cable (4) of the plurality of metal cables (4), which winds about each pole (2) of the plurality of poles (2), will be damaged at the live edges of the pole (2) is advantageously minimised.

[0053] The ratio between a diameter of each metal cable (4) of the plurality of metal cables (4) and a diameter of a circumference inscribed in the polygonal section of each pole (2) of the plurality of poles (2) is preferably less than or equal to 0.2.

[0054] In this way it is advantageously possible to wind the metal cable (4) about each pole (2), thus guaranteeing contact of the metal cable (4) with the lateral surface (12) of the pole (2) along the whole extension of the winding.

[0055] It is understood that the above has been described by way of non-limiting example and that any technical-functional variants are considered to fall within the protective scope of the present technical solution, as claimed in the following.