US2021230823A1PendingUtilityA1

Signalling and barrier system and process of handling thereof

Assignee: S I E SOC INTERNACIONAL DE EMBALAGENS S APriority: Jul 25, 2018Filed: Jul 16, 2019Published: Jul 29, 2021
Est. expiryJul 25, 2038(~12 yrs left)· nominal 20-yr term from priority
E01F 13/022E01F 15/088E01F 13/02E01F 15/086
20
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Claims

Abstract

The present invention refers to a signalling and barrier system, such as for traffic regulation, comprising a plurality of modules ( 1 ) adapted so that can collect a ballast means and that can be connected laterally to each other, said modules ( 1 ) presenting a base ( 11 ) and a top part ( 12 ). The present invention further refers to a process of handling of said signalling and barrier system.

Claims

exact text as granted — not AI-modified
1 . A system for providing signaling and barrier functions, such as for regulation of road traffic, comprising a plurality of modules adapted so that they can be engaged with each other in respective lateral edge regions, each module presenting:
 a central region developing in a first direction and with a front wall and a back wall developing upwards from j base region adapted for placement on a paved surface,   two lateral regions that develop outwards from opposite lateral edges of said central region, in a second direction, backwards and forming a shape angle non-orthogonal in relation to said central region,   whereby said central region and lateral regions are provided as a single piece and where the front and back walls are devoid of through openings,   characterized in that said module presents the central region with a cross-section when seen in a side view, of different shape and different dimension from the cross-section of the lateral regions when seen in the side view.   
     
     
         2 . The system according to  claim 1 , in which said module presents front and back walls that develop in an oblique direction in relation to a direction of a gravity force in said central region and that develops at least approximately parallel to the gravity direction in said lateral regions. 
     
     
         3 . The system according to  claim 1 , in which said module presents, in said central region, a lateral cross-section of generally trapezoidal shape when seen in a side view, whereby respective base regions present a width that is smaller than half, preferentially smaller than a quarter of the length, and are bigger, preferentially at most two times bigger than respective top regions. 
     
     
         4 . The system according to  claim 1 , in which said module presents a central region that corresponds to at least half, preferentially to more than half of a total extension of said module along said first direction, and
 in which the transition regions between said central region and said lateral regions develop at least approximately in curve, devoid of sharp edges between plane surfaces.   
     
     
         5 . The system according to  claim 1 , in which said module presents a central region and lateral regions that confine a common collection space adapted so that they can collect a ballast means inside thereof. 
     
     
         6 . The system according to  claim 1 , in which said shape angle (α), corresponding to a smaller angle formed by a central plane of said lateral regions a central plane of said central region of the module, is comprised between 10° and 80°, preferentially between 30° and 60°. 
     
     
         7 . The system according to  claim 1 , in which said module presents a base part and a top part that extend along the extension of the module in a first direction, and are provided as at least one of:
 a single piece that confines a single interior space and presenting a single entry by means of ballast and fluid communication between said base and top parts,   in two separate pieces that confine two interior spaces provided with respective entries of ballast means,   whereby said entries of the ballast means are adapted so that thy can be closed by a module connection means, in particular by a cavity element.   
     
     
         8 . The system according to  claim 1 , in which said module further comprises a module connection means adapted so that the module connection means provides a removable connection with laterally disposed neighbouring modules, and
 in that said module connection means are provided on opposite lateral edge parts of said module,   whereby one of said lateral edge parts is provided on said base part and the other lateral edge part is provided on said top part, and   whereby one of said lateral edge parts presents a downwards-oriented tooth element, and the other lateral edge part presents an upwards-oriented cavity element, at a height and configured in corresponding manner to said tooth element, in a manner of male-female type connection.   
     
     
         9 . The system according to  claim 8 , which said module connection means presents cavity elements configured as lids of openings adapted for providing filling of a space confined inside with a ballast means, whereby said lids preferentially further present a mechanic engagement, for example of a screw thread type or similar, for removable retention of the cavity elements in respective openings. 
     
     
         10 . The system according to  claim 1 , in which said module connection means are provided in opposite lateral edge regions of said base and top parts that develop in an alignment similar to that of said central region, including a lateral edge region of the lateral region of said base part, whereby in this case includes a cavity element, and on a lateral edge region of the opposite lateral region of said top part, whereby in this case includes a cavity element and a tooth element, whereby said tooth element and cavity element present an engagement shape of tubular type with a cross-section for example of a circular shape. 
     
     
         11 . The system according to  claim 1 , in which said module presents:
 a base part presenting a base region adapted so that the module can be placed upon a paved surface, and a top region, and   a top part presenting a base region and with a width that corresponds at least approximately to the width of the top region of said base part, whereby said base and top parts are provided as different pieces.   
     
     
         12 . The system according to  claim 1 , in which said module presents respective frontal and posterior walls that develop along directions that are similar and symmetric with relation to a central plane of said central region and lateral regions, configured so that a plurality of modules can be disposed adjacently to each other, for example with ones stacked upon the others, in dispositions with respective base and top regions successively alternated. 
     
     
         13 . The system according to  claim 1 , in which said module is produced in a synthetic material, preferentially by means of a plastic extraction method or by a similar method. 
     
     
         14 . A process of handling of a barrier and signalling system, in particular of a system according to  claim 1 , which comprises the following steps:
 providing a first module disposed standing upon a base region thereof, or laying upon a back wall of the central region thereof and with respective edge regions oriented upwards;   providing a second module adjacently next to said first module and standing upon a top region thereof, or laying upon the back wall of the central region thereof and with respective edge regions oriented upwards, respectively in alternated manner respective to said first module,   optionally, repeating at least one of previous steps with additional modules.   
     
     
         15 . The process according to  claim 14 , including:
 connecting two modules arranged successively along a barrier alignment by means of engagement of a tooth element provided on a second lateral edge of a first module inside of a lid element provided on a first lateral edge of a second module;   optionally, repeating the previous step with additional modules, and preferentially, further includes the steps:   filling an interior of a first module with a ballast means, for example water, after removing the lid element provided on a second lateral edge of the module;   emptying the interior of a first module of respective ballast means, after removing at least one of the lid elements provided on a first and on a second lateral edge of said module.

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