Anti-rollover device

The anti-rollover device secures wheeled containers to vertical supports using a cage system with hinged flaps that automatically lock the handle, addressing the issue of container overturning without lifting, ensuring stability and ease of use.

FR3167935A1Pending Publication Date: 2026-05-01BAIL MICHEL
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Patent Information

Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
BAIL MICHEL
Filing Date
2024-10-30
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Wheeled waste containers are prone to being knocked over by animals or strong winds, causing nuisance and potential spillage, and existing immobilization methods require lifting the container to secure the handle.

Method used

An anti-rollover device with a cage system that immobilizes the handle to a vertical support, featuring hinged flaps that automatically switch between open and closed states to secure the handle without lifting, using a mechanical linkage to facilitate simultaneous locking of multiple handle portions.

Benefits of technology

Secures wheeled containers to vertical supports, preventing overturning without lifting, allowing easy loading and unloading, and accommodating handle obstacles, thus enhancing stability and usability.

✦ Generated by Eureka AI based on patent content.

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Abstract

This disclosure relates to an anti-rollover device (1) for a wheeled container (RC) configured to immobilize a laterally projecting handle (PG) of the container to a vertical support (VS) such as a wall (M) or furniture extending vertically from a floor, said anti-rollover device comprising: - a first cage (Ca1) and a second cage (Ca2) spaced apart from each other by a free clearance (DG), each comprising an upper wall (10), a lower wall (11), a bottom wall (12) defining a groove forming a longitudinal housing (LG) for a horizontal bar of the handle, the groove having a lateral opening (OL) to allow insertion of the horizontal bar of the handle into the groove, - a first closing means (131) and a second closing means (132) synchronized by a mechanical link (LI),The closing means configured to transition from an open state (EO) to a closed state (EF) of the lateral opening, ensuring immobilization of the handle. Figure from the abstract: Figure 4,
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Description

Title of the invention: Anti-rollover device

[0001] This disclosure relates to an anti-rollover device for a wheeled container, in particular a two-wheeled or four-wheeled container, said device configured to immobilize a handle of the container, protruding laterally, to a vertical support, such as a wall or furniture extending vertically from a floor.

[0002] The present disclosure further relates to equipment comprising a wheeled container having a laterally projecting handle, a floor on which the container is configured to be moved on its wheels, and an anti-rollover device fixed at a height relative to the floor and configured to immobilize wheeled containers by its handle. technical field

[0003] The present disclosure falls within the field of waste containers, such as for example standardized containers NF EN 840, and / or DIN EN 840, forming a container made of plastic material, equipped with a hinged lid, and a handle, protruding laterally from the container and articulated wheels at the base of the container and allowing the container to be moved by rolling it on the ground.

[0004] The present disclosure finds application for two-wheeled containers, typically with a capacity between 50 liters and 400 liters, such as 120 liters, 240 liters requiring a slight tilting of the container to place the load on the two wheels, but also for four-wheeled containers, typically with a larger capacity, typically greater than 400 liters such as 500 liters, 660 liters or more.

[0005] Such waste containers are typically left outdoors for extended periods and can attract animals searching for food due to the odors. It is not uncommon for the containers to be knocked over by wild animals, typically wild boars, causing a nuisance, or overturned due to strong winds. This problem of overturning can also arise when the ground is moving, for example, when the containers are on the deck of a boat. Previous technique

[0006] However, prior art US 2017 / 02177677 discloses equipment comprising a niche including a raised platform on which the container can be housed, the container being immobilized by its handle by a retaining device comprising a U-shaped hook, requiring the waste container to be lifted to insert the handle into the top opening of the hook, then lower the bin to secure the handle in the hook.

[0007] According to the inventor's findings, such a state of the art can be improved. Summary

[0008] This disclosure relates to an anti-rollover device for a wheeled container, in particular a two-wheeled or four-wheeled container, said device configured to immobilize a laterally projecting handle of the container to a vertical support such as a wall or furniture extending vertically from a floor, said anti-rollover device comprising: - a first cage comprising an upper wall, a lower wall, and a bottom wall defining a groove forming a first longitudinal housing for a first portion of a horizontal handle bar, the groove having a lateral opening to allow the insertion of the first portion of the horizontal handle bar into the groove or, conversely, to allow the extraction of the first portion of the horizontal bar from the groove by rolling the container on the ground on its wheels - a first closing means configured to pass: — a state of openness of the lateral opening allowing the insertion of the first portion of the horizontal bar into the first longitudinal housing through said lateral opening, or allowing the extraction of the first portion of the horizontal bar from the first longitudinal housing — a closed state of the lateral opening ensuring immobilization of the first portion of the handle bar held captive by the first closing means in the first cage, - a second cage comprising an upper wall, a lower wall, and a bottom wall defining a groove forming a second longitudinal housing for a second portion of a horizontal handle bar, the groove having a lateral opening to allow the insertion of the second portion of the horizontal handle bar into the groove or, conversely, to allow the horizontal bar to be extracted from the groove by rolling the container on the ground on its wheels - a second closing method configured to pass: — a state of openness of the lateral opening allowing the insertion of the first portion of the horizontal bar into the second longitudinal housing through said lateral opening, or allowing the extraction of the first portion of the horizontal bar from the longitudinal housing — a closed state of the lateral opening ensuring immobilization of the second portion of the handle bar held captive by the second closing means in the second cage and in which: - The first cage and the second cage are braced, leaving a free space between the first and second housing units - the first closing means and the second closing means are linked by a mechanical link passing over the free clearance and the upper walls of the first cage and the second cage.

[0009] Depending on optional features, this disclosure may have all or some of the following features:

[0010] The groove formed by the upper wall, the lower wall and the bottom wall can extend lengthwise over the first longitudinal housing over a distance of between 40 mm and 120 mm, and in particular between 60 mm and 100 mm such that 80 mm and the groove formed by the upper wall, the lower wall and the bottom wall extends lengthwise over the second longitudinal housing over a distance of between 40 mm and 120 mm, and in particular between 60 mm and 100 mm such that 80 mm.

[0011] A section of the first housing and a section of the second housing are configured to receive a horizontal bar with a diameter between 25 mm and 35 mm, for example 30 mm.

[0012] According to one embodiment: - The first closing means may include a mechanism having a first hinged flap configured to retract from the closed state to the open state by an insertion action of the first portion of a horizontal bar pushing the first flap, and configured to automatically switch from the open state to the closed state, once the horizontal bar in the housing has released the first flap, said first flap closing the lateral opening by keeping the first portion captive in the first cage, - The second closing means may include a mechanism having a second hinged flap configured to retract from the closed state to the open state by an insertion action of the second portion of horizontal bar pushing the second flap, and configured to automatically switch from the open state to the closed state, once the second portion of horizontal bar in the housing has escaped the second flap, said second flap closing the lateral opening by keeping the second portion captive in the second cage.

[0013] The first flap may be a hinged flap, pivoting along a pivot axis parallel to an axis of the groove, at the level of the upper or lower wall, said first flap being free to move from the closed state to the open state by pivoting in a first direction towards the inside of the groove, the flap configured to pivot in a second direction until it reaches a stop. in the closed state, and in particular the first flap is hinged at the level of the upper wall,

[0014] The second flap is a hinged flap, pivoting along an axis of articulation parallel to an axis of the groove, at the level of the upper or lower wall, said second flap being free to move from the closed state to the open state by pivoting in a first direction towards the inside of the groove, the second flap configured to pivot in a second direction until the flap is stopped in the closed state, and in particular the second flap is hinged at the level of the upper wall, the second flap configured to switch from the open state to the closed state.

[0015] In particular, the first flap and the second flap can automatically switch from the open state to the closed state under the action of one or more spring elements or solely by gravity.

[0016] According to one embodiment, the first cage and the second cage are braced by a wall extending from the bottom wall of the first cage and the bottom wall of the second cage, delimiting a bottom of the free clearance between the first cage and the second cage.

[0017] According to one embodiment, the device may include a portion of attachment having at least two holes for fasteners, such as screws, the holes offset along the direction of the longitudinal housings, the fixing holes configured for fixing the anti-rollover device on a vertical wall ensuring a positioning of the housing along a preferably horizontal direction, in particular said portion of attachment including the wall of which form a fixing plate intended to be fixed on a vertical wall ensuring a positioning of the first housing and the second housing along a horizontal direction, and in particular the part of attachment including tabs carrying the holes in extension of the bottom walls of the first cage and the second cage extending in projection above and below the first cage and the second cage.

[0018] According to one embodiment, the two orifices are oblong orifices, the oblong orifices directed along a direction perpendicular to the axis of the groove, configured to allow adjustment of the height of said anti-reversal device.

[0019] According to one embodiment, the upper wall, the lower wall and the bottom wall forming the first longitudinal housing and the upper wall, the lower wall and the bottom wall forming the second longitudinal housing, as well as the extending wall and preferably the attachment portion having the holes for the fixing devices form a single component obtained from a pre-cut and folded sheet.

[0020] According to one embodiment, the first flap of the first closing means, the second flap of the second closing means and the connection are formed by a single component obtained from a pre-cut and folded sheet metal.

[0021] According to one embodiment, the first cage and the second cage are formed respectively by two independent components, and in which the mechanical link is formed by a component attached to the first closing means and to the second closing means, in particular to the first flap and the second flap, and fixed by removable fixing means.

[0022] This disclosure further relates to a kit for obtaining an anti-rollover device comprising, in its disassembled state: - the first cage, on which the first closing mechanism may be pre-mounted, - the second cage, on which the second locking mechanism may be pre-mounted, - the mechanical linkage.

[0023] The present disclosure further relates to equipment comprising a wheeled container having a laterally projecting handle having a first horizontal bar portion and a second horizontal bar portion, a floor on which the container is configured to be moved on its wheels, and an anti-rollover device according to the present disclosure, fixed to a vertical support, such as a wall or furniture, at a corresponding height of the handle of the wheeled container, such that the first horizontal bar portion of the handle and the second horizontal bar portion are configured to be inserted respectively into the first slot of the first cage and into the second slot of the second cage of the anti-rollover device, through the lateral openings of the first and second cages, by rolling the wheeled container on the floor,then immobilized in the cage by the transition of the first and second closing means from the open state to the closed state.

[0024] According to one embodiment, the handle of the wheeled container has an intermediate obstacle between the first horizontal bar portion and the second horizontal bar portion, such as a reinforcement extending between a wall of the container and the horizontal bar, or an intermediate hinge of a container lid, pivotally articulated to the handle between said first horizontal bar portion and the second horizontal bar portion, and wherein, in the closed states of the first closing means and the second closing means immobilizing the first bar portion and the second bar portion respectively in the first cage and in the second cage, said intermediate obstacle is housed in the free clearance between the first cage and the second cage and while the mechanical link extends astride above said obstacle. Brief description of the drawings

[0025] Other features, details and advantages will become apparent from reading the detailed description below and from analyzing the accompanying drawings, in which: Fig. 1

[0026] [Fig.1] is a schematic view of equipment comprising a two-wheeled (or four-wheeled) container, including a handle projecting laterally from a wall of the container, and an anti-rollover device comprising a cage formed by a U-shaped folded sheet forming a lower wall, an upper wall and a bottom wall, defining a groove having a lateral opening, the groove receiving a horizontal bar of the handle, the bar held captive in the groove by a closing means in the form of an articulated flap, in a closed state blocking a lateral opening, preventing extraction of the handle, the bottom wall forming a portion of attachment fixed to a vertical wall by bearing an external surface of the wall against the vertical wall of a vertical support, such as a wall, the bottom wall having fixing holes for fixing devices. Fig. 2

[0027] [Fig.2] is a schematic view of the equipment according to [Fig.1], illustrating the operation of the mechanism, a mechanism having the hinged flap configured to retract from the closed state to the open state by an insertion action of the horizontal bar pushing the flap, and configured to automatically switch from the open state to the closed state, once the horizontal bar in the housing has released the flap, closing the lateral opening by keeping the handle captive in the cage. Fig. 3

[0028] [Fig.3] illustrates a second embodiment of the anti-rollover device, which is notable, compared to the first embodiment, in the presence of two angled legs extending outward from the bottom wall intended to be fixed to a vertical wall, ensuring an offset between the bottom wall and the vertical wall. Fig. 4

[0029] [Fig. 4] illustrates an embodiment of the anti-rollover device with two cages spaced apart, forming a single, monobloc component. The two cages are joined together and separated by an intermediate wall forming a mounting plate, extending from the bottom walls of the cages. A free clearance is defined between a first longitudinal housing of the first cage and a second longitudinal housing of the second cage, the two housings being aligned. first cage having a (first) lateral opening and second cage having a (second) lateral opening, both lateral openings facing the same direction, a first opening / closing flap being articulated to the first cage, configured to move from a closed state to an open state of a first housing of the first cage, and a second closing flap being configured to move from a closed state to an open state of a second housing of the second cage, the first flap and the second flap being synchronized in opening and closing by a mechanical linkage, the mechanical linkage the first flap and the second flap being formed by a single component obtained from a pre-cut and folded sheet metal Fig. 4A

[0030] [Fig.4A] is front view of the anti-rollover device and according to an alternative where the link is an element added to the shutters.

[0031] ., Fig. 4Abis

[0032] [Fig.4Abis] is a variant of the anti-rollover device which is notable in that the intermediate wall is an extension of the bottom walls of the two cages, and of reduced height compared to [Fig.4A]. Fig. 4B

[0033] [Fig.4B] is a sectional view along section plane AA of [Fig.4A], and according to an alternative where the connection is an element added to the flaps. Fig. 5

[0034] [Fig.5] is a view of the two-cage anti-rollover device, in the open state of the first flap and second flap. Fig. 5B

[0035] [Fig.5B] is a view of the two-cage anti-rollover device, in the open state of the first and second flaps and according to a cross-sectional view. Fig. 6

[0036] [Fig. 6] is a view of a wheeled container configuration comprising a first horizontal handle bar portion and a second horizontal handle bar portion, and a container lid hinged about an axis of the handle and comprising an intermediate hinge articulated between the first handle portion and the second handle portion. The two-cage anti-rollover device is configured to house the first handle portion in the first cage and the second handle portion in the second cage, in a closed state in which the first and second flaps respectively hold the first portion captive in the first cage. and the second portion in the second cage, and while the obstacle formed by the intermediate hinge is arranged in the intermediate clearance between the first and second cages, the mechanical linkage between the first flap and the second closing flap being preferably in a position above the intermediate clearance, or even a position set back towards the bottom to allow the lid to be opened while the first portion of the handle and the second portion of the handle are locked in the first cage and the second cage. Fig. 7

[0037] [Fig.7] is another embodiment of the double cage anti-rollover device which is notable in that the first cage and the second cage are respectively formed by two distinct, non-monobloc components, the first cage comprising a first opening / closing flap configured to close and open a first housing and the second cage comprising a second opening / closing flap configured to close and open and in which the mechanical linkage is designed as an element added to the first flap and the second flap allowing adjustment of the spacing between the two cages, for example by means of fixing openings along the mechanical linkage, the anti-reversal device being illustrated in the closed state. Fig. 8

[0038] [Fig.8] is a view of the anti-rollover device according to [Fig.7] in the open state. Fig. 9

[0039] [Fig.9] is a view of a stop between the first and second flap assemblies and said mechanical link, said assembly mounted pivotally relative to the first cage and the second cage, in the open state of the shutters, so that the center of gravity of the shutter assembly and mechanical link is arranged relative to the pivot axis of the shutters on the cages so as to cause the shutters to close, solely by gravity. Description of the implementation methods

[0040] This disclosure relates to an anti-rollover device 1 for a wheeled container CR, in particular two-wheeled or four-wheeled.

[0041] CR wheeled containers can be waste containers, such as for example standardized containers NF EN 840, or DIN EN 840, forming a container made of plastic material, equipped with a hinged lid, and a handle, projecting laterally from the container and hinged wheels at the base of the container and allowing the container to be moved by rolling it on the ground.

[0042] The present disclosure finds application for two-wheeled containers, typically with a capacity between 50 liters and 400 liters, such as 120 liters, 224 liters requiring a slight tilting of the container to place the load on the two wheels, but also for four-wheeled containers, typically with a larger capacity, typically greater than 400 liters such as 500 liters, 660 liters or more.

[0043] Said anti-rollover device is configured to immobilize a laterally projecting handle PG of the container to a vertical support SV such as a wall M or a piece of furniture extending vertically from the ground. The wall can typically be an exterior wall of a house or building. The vertical support SV can also be a piece of furniture, for example, a vertical post anchored to the ground.

[0044] The PG handle extends laterally from the container, typically on the same side as the two wheels of a two-wheeled container. The handle includes a horizontal bar oriented in this horizontal direction when the container is supported on its wheels. The horizontal bar is typically made of plastic and typically has a diameter of approximately 3 cm.

[0045] The container typically includes a lid hinged to the container body. The hinge axis of the lid can typically be coaxial with the axis of the horizontal bar of the PG handle.

[0046] The anti-rollover device comprises a cage having an upper wall 10, a lower wall 11, a bottom wall 12 delimiting a groove forming a longitudinal housing LG for a horizontal bar of the handle.

[0047] The cage can be formed by a sheet metal folded into a U forming the bottom wall 12, the lower wall 11, and the upper wall 10, a first fold substantially at 90° delimiting the lower wall 11, and the bottom wall 12, and a second fold substantially at 90°, parallel to the first fold delimiting the bottom wall 12 and the upper wall 10.

[0048] Notably, the groove has a lateral opening OL to allow the horizontal bar of the handle to be inserted into the groove or, conversely, to allow the horizontal bar to be extracted from the groove by rolling the container on the ground on its wheels. The U-shaped folded sheet metal is therefore lying flat during use.

[0049] Generally, the lateral opening OL can be delimited by the space in two longitudinal edges of the bent sheet metal, at the ends of the upper wall 10 and the lower wall 11.

[0050] In use, the cage is fixed to the vertical support so that the longitudinal housing LG extends horizontally, said lateral opening opening laterally so as to permit insertion, by rolling the container on the ground on its wheels.

[0051] The reversing device further comprises: - a closing method 13 configured to pass: — an open state EO of the lateral opening OL allowing the horizontal bar to be inserted into the housing through said lateral opening OL, or allowing the horizontal bar to be extracted from the longitudinal housing — of a closed state EF of the lateral opening ensuring immobilization of the handle held captive by the closing means 13 in the cage.

[0052] In all cases, the tipping device 1 thus allows the container to be secured by its handle to a robust, vertical support, and released by rolling the container on its wheels along the ground, thereby eliminating the need to lift the container and its contents. Referring to [Fig. 2], it can be seen that the kinematics of the handle, from a position outside the cage until its movement through the lateral opening OL in the groove, with the horizontal bar extending lengthwise in the longitudinal housing LG, follows a substantially horizontal trajectory.

[0053] Generally, even when the PG handle is immobilized in the LG housing, it remains possible to open the lid of the wheeled container. The anti-tipping device does not prevent the lid from opening or closing by pivoting, particularly when the lid pivots about an axis of the handle. The wheeled container can still be loaded through its top opening, even when secured by the anti-tipping device via its handle.

[0054] According to one embodiment, the groove formed by the upper wall 10, the lower wall 11, and the bottom wall 12 extends lengthwise over a distance between 40 mm and 120 mm, and in particular between 60 mm and 100 mm, such as 80 mm. Such a groove length greater than or equal to 40 mm and less than or equal to 120 mm prevents shearing of the horizontal bar of the handle.

[0055] Generally, a section of the longitudinal housing is configured to receive a horizontal bar with a diameter between 25 mm and 35 mm, for example 30 mm.

[0056] According to one embodiment, the closing means 13 may include a mechanism having a hinged flap configured to retract from the closed state EF to the open state EO by an insertion action of the horizontal bar pushing the flap, and configured to preferably switch automatically from the open state EO to the closed state EF, once the horizontal bar in the housing has released the flap, the flap closing the lateral opening OL while holding the handle captive in the cage. Alternatively, the switching from the open state EO to the closed state EF may be manual, operated by moving the mechanical linkage LI.

[0057] The flap can be a hinged flap, pivoting along a hinge axis A parallel to an axis of the groove, at the level of the upper wall 10 or the lower wall 11; said free-moving shutter from the closed state to the open state EO by pivoting in a first direction towards the inside of the groove, the shutter configured to pivot in a second direction until the shutter is stopped in the closed state EF.

[0058] Inserting the handle into the groove and securing it with the flap is made easier because it only requires inserting the handle into the longitudinal housing LG, in particular requiring no additional action from the user on the closing means.

[0059] In particular, the flap can be hinged at the level of the upper wall, in particular at the level of the free edge of the upper wall 10, the flap configured to switch from the open state to the closed state under the action of gravity on the flap.

[0060] If an operator attempts to extract, the handle the latter constrains the shutter to rotate in the second direction until the shutter is brought to a stop, and in particular a stop of the shutter against an edge of the free edge of the upper wall 10.

[0061] The flap can, however, as an alternative, be hinged at the lower wall 11. In such a case, a return spring, in particular a torsion spring, can be provided to constrain the flap from the open state EO to the closed state EF.

[0062] Generally, the anti-rollover device may include a portion of the attachment having at least two OR holes for fasteners, such as screws, the holes offset along the direction of the longitudinal housing, the fixing holes configured for fixing the anti-rollover device to a vertical wall ensuring a positioning of the housing along a horizontal direction.

[0063] In particular, said attachment portion may include the bottom wall 12 which has the two fixing holes, the bottom wall forming on the side opposite the housing, a fixing plate intended to be fixed on a vertical wall of the vertical support, and as illustrated in [Fig.1].

[0064] According to another embodiment, said attachment portion may include two angled tabs 14 extending outward from the bottom wall 12 intended to be fixed to a vertical wall of the vertical support, ensuring an offset between the bottom wall and the vertical wall, along a depth direction of the groove.

[0065] The angled legs 14 can be obtained by folding the sheet metal forming the cage. A fold line, substantially perpendicular to the longitudinal axis of the groove, delimits the bottom wall 12 and a proximal end of the angled leg 14. The angled leg 14 then extends substantially horizontally away from the bottom wall, along a first portion of the leg that provides the deposit. Another fold line delimits a second portion of the leg, at a right angle. of the first portion. This second portion 15 has a fixing hole OR and preferably extends parallel to the bottom wall. The two second portions 15 of the angled legs are coplanar, configured to bear against the vertical wall of the vertical support.

[0066] Generally, the two orifices OR can be oblong orifices, the oblong orifices being directed in a direction perpendicular to the axis of the groove, the orifices configured to allow adjustment of the height of said anti-rollover device 1 relative to the vertical support SV.

[0067] The length of the oblong orifices can be greater than 1 cm, or even greater than 2 cm, or even greater than 3 cm.

[0068] Generally, and as illustrated by the examples in Figures 1 and 3, the upper wall 10, the lower wall 11 and the bottom wall 12 forming the longitudinal housing, and more generally the cage, and preferably the attachment portion having the holes for the fastening elements, form a single component obtained from a pre-cut and folded sheet.

[0069] When the closing mechanism includes the hinged flap, the flap may include a hinge shaft integral with the flap, or two coaxial studs, the ends of the hinge shaft, or the two coaxial studs being axially projecting, configured to pivot in lugs, at the longitudinal ends of the longitudinal housing LG.

[0070] The ears can be obtained by folding the bent sheet metal, with two sheet metal extensions forming two flanges, parallel to each other, the flanges having orifices for the two coaxial studs, or the longitudinal ends of the shaft.

[0071] The present disclosure further relates to equipment comprising a wheeled container CR having a handle PG projecting laterally, a floor S on which the container is configured to be moved on its wheels, and an anti-rollover device 1 according to this disclosure, fixed to a vertical support SV, such as a wall or furniture, at a corresponding height of the handle PG of the wheeled container CR.

[0072] The height is such that the horizontal bar of the handle is configured to be inserted into the housing of the anti-rollover device, through the side opening OL, by rolling the wheeled container on the ground, and then immobilized in the cage by the passage of the closing means 13 from the open state EO to the closed state EF.

[0073] The height of the longitudinal housing LG relative to the ground can typically be between 90 cm and 115 cm, such as 102 cm.

[0074] For certain configurations of CR wheeled containers, the horizontal handle bar may have two discontinuous horizontal bar portions intended to to be gripped by the cage of the anti-rollover device, with the presence of an intermediate obstacle OBT between a first portion PG1 of the handle and a second portion PG2 of the bar.

[0075] For example, and as illustrated in [Fig.6] some containers have a handle which includes the first portion PG1 of bar and the second portion PG2 of bar, aligned along a horizontal direction, and provided with a gap between the two portions.

[0076] A CV cover of the CR wheel container is hinged along an axis passing through the axis of the first bar portion and the second bar portion the handle, by means of hinges of the CV cover, and typically two hinges hinged respectively externally to the first portion and the second portion, on either side of the bars of the two portions, but also by an intermediate CHR hinge of the container, hinged between the first portion PG1 and the second portion PG2.

[0077] In such a case, a single cage-type anti-tipping device cannot be positioned to lock the handle, in the closed state EF, either to accommodate the first bar portion PG1 or the second bar portion PG2, and according to a position of the anti-tipping device offset along the direction of the handle relative to a median plane of the container. Such a position of the retaining device is not ideal for absorbing and limiting the shearing of the handle, a typically plastic element, when a force is exerted on the container and while the handle is blocked by the anti-tipping device.

[0078] We now describe a second embodiment, illustrated in particular by figures 4, 4A, 4b, 5 and 5A with two cages Cal, Ca2 or a third embodiment illustrated in particular by figures 8 to 9 which improve the situation compared to this first single cage embodiment, by allowing the first portion PG1 and the second portion PG2 to be blocked simultaneously in the two cages Cal, Ca2.

[0079] Such a two-cage anti-rollover device Cal, Ca2 comprises: - a first cage Cal comprising an upper wall 10, a lower wall 11, and a bottom wall 12 defining a groove forming a first longitudinal recess LG1 for a first portion PG1 of a horizontal handle bar, the groove having a lateral opening OL to allow the insertion of the first portion of the horizontal handle bar into the groove or, conversely, to allow the extraction of the first portion of the horizontal bar from the groove by rolling the container on the ground on its wheels - a first closing method 131 configured to pass: — of an open state EO of the lateral opening OL allowing the insertion of the first portion of the horizontal bar into the first longitudinal housing through said lateral opening OL, or allowing the extraction of the first portion of the horizontal bar from the first longitudinal housing — of a closed state EF of the lateral opening ensuring immobilization of the first portion of the handle bar held captive by the first closing means 131 in the first cage Cal, - a second cage Ca2 comprising an upper wall 10, a lower wall 11, and a bottom wall 12 defining a groove forming a second longitudinal housing LG2 for a second portion PG2 of a horizontal handle bar, the groove having a lateral opening OL to allow the insertion of the second portion of the horizontal handle bar into the groove or, conversely, to allow the extraction of the horizontal bar from the groove by rolling the container on the ground on its wheels - a second closing method 132 configured to pass: — an open state EO of the lateral opening OL allowing the insertion of the first horizontal bar portion into the second longitudinal housing LG2 through said lateral opening OL, or allowing the extraction of the first horizontal bar portion from the longitudinal housing — of a closed state EF of the lateral opening ensuring immobilization of the second portion of the handle bar held captive by the second closing means 132 in the second cage Ca2.

[0080] Notably, the first cage Cal and the second cage Ca2 are braced leaving a free clearance DG, between the first longitudinal housing LG1 and the second longitudinal housing LG2.

[0081] Generally, and according to a first possibility, the first cage Cal and the second cage Ca2 can be formed from a single, monobloc component, as illustrated for example in the embodiment shown in [Fig. 4] to [Fig. 5B]. Such a monobloc embodiment facilitates installation but does not allow adjustment of the spacing between the first cage Cal and the second cage Ca2.

[0082] According to a second possibility, the first cage Cal and the second cage Ca2 can be formed by two distinct components, allowing in particular an adjustment of the spacing between the two cages Cal and Ca2, and as illustrated in the embodiment of figures 7 and 8.

[0083] In particular, the first cage Cal and the second cage Ca2 can be spaced along the direction of the first and second housings by a distance typically between 80 mm and 120 mm for a two-wheeled container, or even by a greater spacing typically between 500 mm and 1000 mm for a container with four wheels. According to the inventor's findings, such a spacing of the cages along the direction of the housings LG1, LG2 makes it possible to secure most wheeled containers, even those with an obstacle OBT in an intermediate position which then comes to rest in the free clearance DL, when the first and second portions of the bar are secured by the first and second closing means 131, 132, in the closed state EF, respectively in the first housing LG1 and the second housing LG2.

[0084] Preferably, and according to a notable preferred feature, the first locking means 131 and the second locking means 132 can be linked by a mechanical linkage LI passing over the free clearance DG and the upper walls 11 of the first cage Cal and the second cage Ca2. Advantageously, the mechanical linkage LI can be manipulated with one hand during an unlocking operation to simultaneously move the first locking means 131 and the second locking means 132 from the closed state EF to the open state EO. This advantageously facilitates unlocking operations.

[0085] According to one embodiment, notably illustrated in Figures 4 and 5, the two-cage rollover protection device is self-supporting, the first cage Cal and the second cage Ca2 being joined together by a wall extending from the bottom walls 12 of the two cages Cal, Ca2. In other words, the first cage Cal and the second cage Ca2 can be braced by a wall 120 extending from the bottom wall 12 of the first cage Cal and the bottom wall 12 of the second cage Ca2, defining a bottom of the free clearance DG between the first cage Cal and the second cage Ca2.

[0086] According to one embodiment, in particular illustrated in [Fig.4A], the intermediate wall 120 arranged as an extension between the bottom walls 12 of the first and second cage Cal Ca2 can extend over the entire height of the bottom walls of the cages Cal and Ca2.

[0087] According to another advantageous embodiment, the intermediate wall 120 extends only over the upper portions of the bottom walls 12 of the Cal and Ca2 cages, such that the lower portions of the bottom walls 12 are without an extension wall, as illustrated by way of example in [Fig. 4Abis]. The notch formed between the two bottom walls 12 and the intermediate wall 120 limits the risk of interference with the container, and in particular an OBT obstacle between the first portion PG1 and the second portion BG2 of the handle; as described below.

[0088] According to another embodiment, in particular illustrated in figures 7 and 8 the first cage Cal and the second cage Ca2 are independent, and not joined together by their bottom wall 12.

[0089] In general: - the groove formed by the upper wall 10, the lower wall 11 and the bottom wall 12 extends lengthwise over the first longitudinal housing LG1 over a distance between 40 mm and 120 mm, and in particular between 50 mm and 100 mm such that 70 mm; - the groove formed by the upper wall 10, the lower wall 11 and the bottom wall 12 extends lengthwise over the second longitudinal housing LG2 over a distance between 40 mm and 120 mm, and in particular between 50 mm and 100 mm such that 70 mm.

[0090] Generally, a section of the first housing (LG1) and a section of the second housing LG2 are configured to receive a horizontal bar with a diameter between 25 mm and 35 mm, for example 30 mm.

[0091] According to one embodiment: - the first closing means 131 comprises a mechanism having a first hinged flap, configured to retract from the closed state EF to the open state EO by an insertion action of the first portion PG1 of the horizontal bar pushing the first flap, the first flap configured to automatically switch from the open state EO to the closed state EF, once the horizontal bar in the housing having released the first flap, said first flap closing the lateral opening OL by keeping the first portion of the handle captive in the first cage, - the second closing means 132 includes a mechanism having a second hinged flap configured to retract from the closed state EF to the open state EO by an action of insertion of the second portion PG2 of horizontal bar pushing the second flap, the second flap configured to switch automatically from the open state EO to the closed state EF, once the second portion of horizontal bar in the housing having escaped the second flap, said second flap closing the lateral opening OL by keeping the second portion of the handle captive in the second cage Ca2.

[0092] The automatic tilting of the first flap and the tilting of the second flap from the open state EO to the closed state EF can typically be obtained by gravity alone, or more specifically, and typically in addition to the action of gravity, obtained by means of a spring and typically synchronized by the mechanical link LI.

[0093] The first flap is a hinged flap, pivotally articulated along an axis of articulation A, parallel to an axis of the groove, at the level of the upper wall 10 or the lower wall 11, said first flap free to move from the closed state to the open state by pivoting in a first direction towards the inside of the groove, the first flap configured to pivot in a second direction until it is in shutter stop in the closed position, and in particular the first shutter is hinged at the level of the upper wall, - the second flap is a hinged flap, pivoting along said articulation axis A, parallel to an axis of the groove, at the level of the upper wall 10 or the lower wall 11, said second flap free to move from the closed state to the open state by pivoting in a first direction towards the inside of the groove, the second flap configured to pivot in a second direction until the flap is stopped in the closed state, and in particular the second flap is hinged at the level of the upper wall.

[0094] The first flap and the second flap can automatically switch from the open state to the closed state under the action of one or more RT spring members.

[0095] Alternatively, the first and second flaps automatically pivot from the open to the closed state under the action of gravity (only). In particular, and as illustrated in [Fig. 9], a stop BT can be provided between the first flap assembly 131 and the second flap assembly 132 and said mechanical linkage LI, said assembly being pivotally mounted about the first cage Cal and the second cage Ca2 around the axis A. Said stop BT limits the rotation of said assembly to the open state EO of the flaps, so that the center of gravity of the flap assembly 131, 132 and mechanical linkage LI is arranged with respect to the axis A in an unstable position in the open state, and so that said assembly pivots in the direction of flap closure solely by gravity.

[0096] In other words, the BT stop prevents said assembly from pivoting in rotation into a stable position for which gravity constrains said assembly and its flaps in the open state EO.

[0097] Alternatively, the switch from the open state to the closed state is not automatic and requires manipulation by the operator of the mechanical link.

[0098] The anti-rollover device may include an attachment portion having at least two OR holes for fasteners, such as screws, the holes offset along the direction of the longitudinal housings, the fixing holes configured for fixing the anti-rollover device to a vertical wall ensuring a positioning of the housing along a horizontal direction, in particular said attachment portion including the bottom wall 12 of the first cage Cal and the bottom wall 12 of the second cage Ca2, or even the wall 120 in extension.

[0099] The bottom walls 12 of the two cages Cal and Ca2 and the intermediate extension wall 120 can form a fixing plate intended to be fixed onto a vertical wall ensuring positioning of the first housing LG1 and the second housing LG2 in a horizontal direction and in particular according to the embodiment of figures 4, 5.

[0100] Alternatively, and when the two cages are designed as independent, according to the embodiment of figures 7 and 8 in particular, each of the two cages Cal and Ca2 can be fixed on a vertical wall, by supporting their bottom wall 12.

[0101] The attachment part may include tabs 16 carrying the holes OR tabs extending from the bottom walls 12 of the first cage Cal and the second cage Ca2 projecting above and below the first cage Cal and the second cage Ca2. For example, two tabs 16 extend from the bottom wall 12 respectively above and below the first cage Cal and two other tabs extend from the bottom wall 12 respectively above and below the second cage Ca2, in particular whether it is the embodiment of Figures 4 and 5 for which the two cages form a single self-supporting component, or the embodiment of Figures 7 and 8 for which the two cages are independent.

[0102] Generally, the two OR ports can be oblong ports, the oblong ports directed along a direction perpendicular to the axis of the groove, configured to allow adjustment of the height of said anti-reversal device.

[0103] According to one embodiment, the upper wall 10, the lower wall 11, and the bottom wall 12 forming the first longitudinal housing LG1, and the upper wall 10, the lower wall 11, and the bottom wall 12 forming the second longitudinal housing LG2, as well as the extending wall 120 (and preferably the attachment portion having the holes for the fasteners), form a single component obtained from a pre-cut and folded sheet metal. Such an embodiment, in which the two cages form a single-piece component (as illustrated in the embodiments of Figures 4 and 5), facilitates installation.

[0104] Thus, the bottom wall 12 of the first cage Cal, and the bottom wall 12 of the second cage, and the intermediate wall 120 brace the two cages are coplanar and form the fixing plate, typically with the tabs 16 carrying the orifices OR which are arranged above and below the cages Ca, and Ca2 eti extend in the same plane.

[0105] According to another embodiment: - the upper wall 10, the lower wall 11 and the bottom wall 12 of the first cage forming the first longitudinal housing LG1 and preferably the attachment portion in particular the tabs 16 having the fixing holes of the first cage form a first component in one piece obtained from a pre-cut and folded sheet metal, -- the upper wall 10, the lower wall 11 and the bottom wall 12 of the first cage forming the second longitudinal housing LG2 and preferably the attachment portion in particular the tabs 16 having the fixing holes of the second cage form a second component in one piece obtained from a pre-cut and folded sheet.

[0106] Generally, the upper wall 10 and the lower wall 11 of each Cal or Ca2 cage can be obtained by two lines of folds, with a first fold between the upper wall 10 and an upper edge of the bottom wall 12, and a second fold between the lower wall 11 and an lower edge of the bottom wall (see the embodiment of Figures 4 and 5 or that of Figures 7 and 8).

[0107] It is noted that the upper legs 16 extending above the cages Cal and Ca2 can be obtained by cutting material from the upper walls 10, while the lower legs 16 extending below the cages Cal and Ca2 can be obtained by cutting material from the lower walls 11 (see the embodiment of Figures 4 and 5 or that of Figures 7 and 8).

[0108] When the closing mechanism has two hinged flaps (first and second), each flap may have a hinge shaft fixed to the flap, or two coaxial studs, the ends of the hinge shaft, or the two coaxial studs being axially projecting, configured to pivot in lugs, at the longitudinal ends of the longitudinal housing, namely the first housing LG1 for the first flap, or the second flap for the second flap.

[0109] The ears can be obtained by bending the folded sheet metal, with two sheet metal extensions forming two flanges, parallel to each other, the flanges having orifices for the two coaxial studs, or the longitudinal ends of the shaft.

[0110] The two flanges of the first housing LG1 can be obtained by folding downwards the two lateral edges of the upper wall 10 of the first cage Cal and the two flanges of the first housing LG2 can be obtained by folding downwards the two lateral edges of the upper wall 10 of the second cage Ca2. The two flanges of the first housing LG1 (or of the second housing LG2) have openings for the articulation shaft.

[0111] According to an advantageous embodiment, and in particular when the first cage and the second cage form a single-piece component, the first flap of the first closing means 131, the second flap of the second closing means 132 and the connection L1 can be formed by a single-piece component obtained from a pre-cut and folded sheet metal ([Fig.4] in particular).

[0112] According to another possible embodiment, the mechanical link LI can be designed as an added element (see in particular [Fig. 4B]), fixed to the first and second panels. In particular, the first panel can be a first sheet of metal cut and bent, the second part a second sheet of folded and cut metal, and the mechanical link a third sheet of folded metal.

[0113] In the case of a monobloc manufacture from the same sheet as illustrated in figures 4 and 5, it is noted that the first flap and the second flap extend in the same plane, and while the mechanical connection 11 securing the first flap and the second flap, includes a portion of the sheet which is folded with respect to the plane of the flaps, and contained in a plane inclined with respect to the plane of the flaps in particular at a right angle.

[0114] In the case of a fabrication where the mechanical link LI is referred to the first and second flaps. It is noted that the first flap can comprise a folded sheet comprising a first portion opening or closing the lateral opening OA respectively in the open state EO and in the closed state, and a second portion inclined at 90° to the first portion extending above the upper wall 10 in the open state of the flap.

[0115] It is further noted that each flap (first or second) may include tabs bent at right angles to the plane of the flap, the tabs positioned opposite the flanges of the upper wall 10. The hinge axis passes through the tabs of each flap and the flanges to ensure the articulation of the first flap (respectively second flap) with respect to the upper wall 10 of the first cage (respectively of the second cage Ca2). Each hinge shaft (of the first flap or the second flap) may include a rod with an enlarged head or a clevis pin. The rod is inserted simultaneously through the flanges of the cage (first or second) and the tabs, until the enlarged head is butted against one side of the cage, and while the opposite end of the rod protrudes from the other flange. The rod can be locked in position by adding a fastening element, such as a nut cooperating with an end thread of the rod.The fastening element can also be a pin inserted into a transverse hole in the rod, or an external elastic ring, preferably locking into a groove in the rod. According to the independent cage embodiment, the first cage Cal and the second cage Ca2 can be formed respectively by two independent components, and the mechanical link LI can be formed by a component attached to the first closing means 131 and to the second closing means 132, in particular a link on the first flap and the second flap.

[0116] The mechanical linkage is fixed to the closing means 131, 132, in particular to the shutters, by removable fastening means. The fastening means may include, in particular, openings between the shutter (first or second) and the mechanical linkage through which a fastening element, such as a bolt, rivet, or other fastener, passes.

[0117] According to one embodiment, the mechanical link LI may include means for adjusting the spacing between the first cage Cal and the second cage Ca2, and in particular several adjustment openings distributed along a longitudinal direction of said mechanical link selectively allowing several mounting positions between the mechanical link and the first closing means 131, and / or several mounting positions between the mechanical link and the second closing means 132. Such an embodiment is illustrated in [Fig.7] or 8.

[0118] Such an embodiment is advantageous compared to the one-piece embodiment of [Fig. 4] in that it allows for adjustment of the spacing between the two cages Cal, Ca2, and thus enables it to adapt to all sizes of wheeled containers, particularly narrow widths for two-wheeled containers, or wide widths for four-wheeled containers. The mechanical link LI, when excessively long, can be shortened so as not to protrude beyond the cages, i.e., beyond the sides of the cages opposite the free clearance DG.

[0119] According to one embodiment (not illustrated), the added mechanical link may longitudinally comprise a first part and a second part.

[0120] The first part is fixed to the first closing means 131, in particular to the first flap, by at least one first of the fixing means, at the level of a first end of the first part.

[0121] The second piece is fixed to the second closing means 132, in particular to the second flap, by at least one second of the fixing means, at the level of a first end of the second piece.

[0122] The first and second parts can be fixed to each other at their second ends, in an extension, in various positions, in particular by a third fastening means, so as to allow adjustment of the length of the mechanical link LI resulting from the association of the two parts. For this purpose, the first and / or second part may have adjustment holes, or at least one oblong hole, allowing such adjustment.

[0123] This disclosure further relates to a kit for obtaining such an anti-rollover device which, in its disassembled state, comprises: - the first cage Cal, on which the first closing means 131 is possibly pre-mounted, in particular the first flap via a first rotation shaft - the second cage Ca2, on which is possibly pre-mounted the second closing means 132, in particular the first flap via a first rotation shaft - the mechanical link 11 which can be in one piece or comprising the first piece and the second piece preferably in the disassembled state.

[0124] During assembly, the user can then adjust the spacing between the first cage Cal and the second cage Ca2, and in particular according to the dimensions separating the first portion PG1 and the second portion PG2, before attaching the mechanical link LI, respectively to the first closing means 131 articulated to the first cage, in particular to the first flap, and to the second closing means 132 articulated to the second cage, in particular to the second flap. The mechanical link LI can optionally be trimmed so as not to protrude outwards from the cages Cal and Ca2. Alternatively, and when the mechanical link results from the joining of two parts, the first part and the second part, the two parts can be assembled by adjusting the length of the mechanical link, as explained above.

[0125] A two-piece mechanical linkage design limits the kit's size, particularly for long mechanical links, as the two parts of the kit's mechanical linkage are preferably in a disassembled state. This also allows the length of the mechanical linkage to be adjusted by assembling the two parts, thus eliminating the need for cutting.

[0126] The present disclosure further relates to equipment comprising a wheeled container CR having a laterally projecting handle having a first portion PG1 of a horizontal bar and a second portion PG2 of a horizontal bar, a floor on which the container is configured to be moved on its wheels, and an anti-rollover device 1 according to the present disclosure with two cages Cal, Ca2, fixed to a vertical support, such as a wall or furniture, at a corresponding height of the handle of the wheeled container, such that the first horizontal bar portion PG1 of the handle and the second horizontal bar portion PG2 are configured to be inserted respectively into the first longitudinal slot LG1 of the first cage Cal and into the second longitudinal slot LG2 of the second cage Ca2 of the anti-rollover device, through the lateral openings OL, by rolling the wheeled container on the floor,Then the first and second portions PG1, PG2 are immobilized in the cage by the passage of the first closing means 131 and the second closing means 132 from the open state EO to the closed state EF.

[0127] The vertical support can be a wall, stakes to be sealed, or even a rigid wire mesh on which the retaining device can be fixed, using a clamping plate.

[0128] Generally, and when the first portion PG1 and the second portion PG2 are immobilized in the first compartment LG1 and the second compartment LG2, it remains possible to open the lid of the wheeled container, namely that the anti-rollover device does not obstruct the opening or closing of the lid, in particular when the lid is pivoting about an axis of the handle. The container The wheel can always be loaded through its top opening, even when secured by the anti-tip device by its handle.

[0129] According to one embodiment, the handle of the wheeled container CR has an intermediate obstacle OBT between the first horizontal bar portion PG1 and the second horizontal bar portion PG2, such as a reinforcement extending between a wall of the container and the horizontal bar, or an intermediate hinge CHR of a lid CV of the container, pivoting to the handle between said first horizontal bar portion and the second horizontal bar portion.

[0130] Advantageously and in the closed states EF of the first closing means 131 and the second closing means 132 immobilizing the first portion of bar PG1 and the second portion of bar PG2 respectively in the first cage Cal and the second cage Ca2, said intermediate obstacle OBT, (in particular the intermediate hinge CHR) is housed in the free clearance DG between the first cage Cal and the second cage Ca2 and while the mechanical link L1 extends astride said obstacle OBT.

[0131] According to one embodiment, the mechanical linkage LI extends along the length of the free clearance. The closed state EF, above the clearance, can be arranged, when viewed along the depth direction of the housings LG1 LG2, to be offset rearward relative to the flaps, namely towards the bottom walls 12. This advantageously allows the lid CV of the wheeled container to always be opened, even when it is secured by locking the first portion PG1 in the first cage and locking the second portion PG2 in the cage, and while the intermediate hinge CHR is housed in the free clearance DL. Offsetting the mechanical linkage 11 rearward allows the lid to be opened without the intermediate hinge CHR interfering with the mechanical linkage LI when pivoting with the lid CV during the lid opening process.

[0132] For example, we notice in [Fig.4] that the mechanical link LI is offset towards the rear, in the direction of the bottom 12, by an offset A relative to the axis of rotation A of the flaps, and following the depth direction of the housings LG1, LG2.

[0133] According to one embodiment, the height of the first and second longitudinal housing relative to the ground is between 90 cm and 115 cm such that 102 cm.

[0134] Thus, the anti-tipping device may offer all or some of the following advantages: - 1. Increased safety: The device effectively immobilizes the wheeled container, preventing it from being overturned by animals or adverse weather conditions. - 2. Ease of use: Insertion and extraction of the handle is done without lifting the container, thanks to an automatic closing mechanism which simplifies the operation - 3. Robustness: The design with two cages and independent closing means ensures a solid and reliable immobilization of the handle. - 4. Adaptability: The device is compatible with different types of containers, whether they have two or four wheels, and can adapt to handles of different diameters. - 5 Ease of installation: installation is quick and easy on a vertical element such as a wall. - 6. Flexible installation: The oblong fixing holes allow for height adjustment, facilitating installation on various vertical supports. - 7. Optimized design: The mechanical link between the closing means allows for synchronized handling, making the device practical and quick to use. List of reference signs

[0135] First embodiment with a single cage

[0136] - 1: Anti-rollover device, - A. Pivot axis of the closing flap - CR. Wheeled containers, - SV. Vertical support, - Mr. Mur, - 10. Upper wall, - 11. Lower wall, - 12. Back wall, - 13. Means of closure, - 14. Elbowed legs, - 15. Second portion (bent leg), - LG. Longitudinal housing, - OL. Side opening, - PG. Handle, - EF. State of closure, - EO. State of opening, - OR. Fixing holes

[0137] Double cage embodiment

[0138] - 1: Anti-rollover device, - A. Pivot axis of the first and second panels, - Cal. First cage, - PG1. First portion (Handful), - Ca2 Second cage, - PG2. Second portion (Handful) - 10. Upper wall, -11. Lower wall, -12. Back wall, -131. First means of closure, -13. Second means of closure, - 16. Legs (extending from the bottom walls 12), - LG1. First longitudinal housing, - - LG1. First longitudinal housing, - OL. Side opening, - EF. State of closure, - EO. State of opening, - OR. Fixing holes - CR. Wheeled containers, - CV. Lid (wheeled containers).

Claims

1. Demands Anti-rollover device (1) for a wheeled container (RC), in particular a two-wheeled or four-wheeled container, said device configured to immobilize a handle (PG) of the container, projecting laterally, to a vertical support (SV) such as a wall (M) or furniture extending vertically from a floor, said anti-rollover device comprising: - a first cage (Cal) comprising an upper wall (10), a lower wall (11), and a bottom wall (12) defining a groove forming a first longitudinal housing (LG1) for a first portion (PG1) of a horizontal handle bar, the groove having a lateral opening (OL) to allow the insertion of the first portion of the horizontal handle bar into the groove or, conversely, to allow the extraction of the first portion of the horizontal bar from the groove by rolling the container on the ground on its wheels - a first closing method (131) configured to pass: — an open state (EO) of the lateral opening (OL) allowing the insertion of the first horizontal bar portion into the first longitudinal housing through said lateral opening (OL), or allowing the extraction of the first horizontal bar portion from the first longitudinal housing — of a closed state (EF) of the lateral opening ensuring immobilization of the first portion of the handle bar held captive by the first closing means (13) in the first cage (Cal), - a second cage (Ca2) comprising an upper wall (10), a lower wall (11), and a bottom wall (12) defining a groove forming a second longitudinal housing (LG2) for a second portion (PG2) of a horizontal handle bar, the groove having a lateral opening (OL) to allow the insertion of the second portion of the horizontal handle bar into the groove or, conversely, to allow the extraction of the horizontal bar from the groove by rolling the container on the ground on its wheels - a second closing method (132) configured to pass: — an open state (EO) of the lateral opening (OL) allowing the insertion of the first portion of the horizontal bar into the second longitudinal housing (LG2) through said lateral opening (OL), or allowing the extraction of the first portion of the horizontal bar out of the longitudinal housing — a closed state (EF) of the lateral opening ensuring immobilization of the second portion of the handle bar held captive by the second closing means (132) in the second cage (Ca2) and in which: - the first cage (Cal) and the second cage (Ca2) are braced leaving a free clearance (DG), between the first housing (LG1) and the second housing (LG2) - the first closing means (131) and the second closing means (132) are linked by a mechanical link (LI) passing over the free clearance (DG) and the upper walls (11) of the first cage (Cal) and the second cage (Ca2).

2. An anti-rollover device according to claim 1, wherein the groove formed by the upper wall (10), the lower wall (11), and the bottom wall (12) extends lengthwise along the first longitudinal housing (LG1) over a distance of between 40 mm and 120 mm, and in particular between 60 mm and 100 mm such that 80 mm, and the groove formed by the upper wall (10), the lower wall (11), and the bottom wall (12) extends lengthwise along the second longitudinal housing (LG2) over a distance of between 40 mm and 120 mm, and in particular between 60 mm and 100 mm such that 80 mm

3. Anti-rollover device according to claim 1 or claim 2, wherein a section of the first housing (LG1) and a section of the second housing (LG2) are configured to receive a horizontal bar with a diameter between 25 mm and 35 mm, for example 30 mm.

4. Anti-rollover device according to any one of claims 1 to 3, wherein: - the first closing means (131) comprises a mechanism having a first hinged flap configured to retract from the closed state (EF) to the open state (EO) by an insertion action of the first portion (PG1) of a horizontal bar pushing the first flap, and configured to automatically switch from the open state (EO) to the closed state (EF), once the horizontal bar in the housing has escaped the first flap, said first flap closing the lateral opening (OL) by holding the first portion (PG1) captive in the first cage, - the second closing means (132) includes a mechanism having a second hinged flap configured to retract from the closed state (EF) to the open state (EO) by an insertion action of the second portion (PG2) of horizontal bar pushing the second flap, and configured to automatically switch from the open state (EO) to the closed state (EF), once the second portion of horizontal bar in the housing has escaped the second flap, said second flap closing the lateral opening (OL) by holding the second portion (PG2) captive in the second cage (Ca2).

5. Anti-reversal device according to claim 4, wherein: - the first flap is a flap hinged at a pivot, about an axis of articulation (A) parallel to an axis of the groove, at the level of the upper wall (10) or the lower wall (11), said first flap being free to move from the closed state to the open state by pivoting in a first direction towards the inside of the groove, the flap configured to pivot in a second direction until the flap comes to a stop in the closed state, and in particular the first flap is hinged at the level of the upper wall (10), - the second flap is a flap hinged at a pivot, about an axis of articulation (A) parallel to an axis of the groove, at the level of the upper wall (10) or the lower wall (11), said second flap being free to move from the closed state to the open state by pivoting in a first direction towards the inside of the groove,the second flap configured to pivot in a second direction until it reaches a stop in the closed state, and in particular the second flap is hinged at the upper wall (10), and wherein the first flap and the second flap automatically switch from the open state to the closed state under the action of one or more spring members (RT), or solely by gravity.

6. An anti-rollover device according to any one of claims 1 to 5, wherein the first cage (Cal) and the second cage (Ca2) are braced by a wall (120) extending from the bottom wall (12) of the first cage (Cal) and the bottom wall (12) of the second cage (Ca2) delimiting a bottom of the free clearance (DG) between the first cage (Cal) and the second cage (Ca2).

7. An anti-rollover device according to any one of claims 1 to 6, comprising an attachment portion having at least two holes (OR) for fasteners, such as screws, the holes offset along the direction of the longitudinal housings (LG1, LG2), the fastening holes configured for fixing the anti-rollover device to a vertical wall while ensuring positioning of the housing in a horizontal direction, in particular said attachment portion comprising the bottom wall (12) of the first cage (Cal) and the bottom wall (12) of the second cage (Ca2), or even the wall (120) as an extension when the device is according to claim 6, which form a fixing plate intended to be fixed to a vertical wall ensuring positioning of the first housing (LG1) and the second housing (LG2) in a horizontal direction,and in particular the attachment part comprising legs (16) bearing the openings (OR) extending from the bottom walls (12) of the first cage (Cal) and the second cage (Ca2) projecting above and below the first cage (Cal) and the second cage (Ca2).

8. Anti-rollover device according to claim 7, wherein the two orifices (OR) are oblong orifices, the oblong orifices directed in a direction perpendicular to the axis of the groove, configured to permit adjustment of the height of said anti-rollover device.

9. Anti-rollover device according to claim 6 alone or in combination with any one of claims 2 to 5, 7 and 8 wherein the upper wall (10), the lower wall (11) and the bottom wall (12) forming the first longitudinal housing (LG1) and the upper wall (10), the lower wall (11) and the bottom wall (12) forming the second longitudinal housing (LG1), as well as the wall (120) extending from it and preferably the attachment portion having the holes for the fastening members when the device is according to claim 7 or 8, form a single component obtained from a pre-cut and folded sheet.

10. Anti-rollover device according to claim 4 taken alone or in combination with any one of claims 2, 3 or 5 to 9, wherein the first flap of the first closing means (131), the second flap of the second closing means (132) and the link (L1) are formed by a single component obtained from a pre-cut and folded sheet metal.

11. Anti-rollover device according to any one of claims 1 to 5, 7, 8 wherein the first cage (Cal) and the second cage (Ca2) are formed respectively by two independent components, and wherein the mechanical link (LI) is formed by a component attached to the first closing means (131) and to the second closing means (132), in particular to the first flap and the second flap when the device is dependent on claim 4, and fixed by removable fixing means.

12. Anti-reversal device according to claim 11, the mechanical link (L1) comprising means for adjusting the spacing between the first cage (Cal) and the second cage (Ca2), and in particular several adjustment openings along a longitudinal direction of said mechanical link selectively allowing several mounting positions between the mechanical link and the first closing means (131), and / or several mounting positions between the mechanical link and the second closing means (132).

13. Kit for obtaining an anti-rollover device according to claim 11 or 12 comprising in the disassembled state: - the first cage (Cal), on which the first closing means (131) is optionally pre-mounted, - the second cage (Ca2), on which the second closing means (132) is optionally pre-mounted, - the mechanical link (11).

14. Equipment comprising a wheeled container (CR) having a laterally projecting handle (PG) having a first horizontal bar portion and a second horizontal bar portion, a floor (S) on which the container is configured to be moved on its wheels, and an anti-rollover device (1) according to any one of claims 1 to 12, fixed to a vertical support, such as a wall or furniture, at a corresponding height of the handle (PG) of the wheeled container (CR), such that the first portion (PG1) The horizontal bar of the handle and the second portion (PG2) of the horizontal bar are configured to be inserted respectively into the first housing (LG1) of the first cage (Cal) and into the second housing (LG2) of the second cage (Ca2) of the anti-rollover device, through the side openings (OL) of the first and second cages (Cal, Ca2), by rolling the wheeled container on the ground, and then immobilized in the cage by the passage of the first closing means (131) and the second closing means (132) from the open state (EO) to the closed state (EF).

15. Equipment according to claim 14, wherein the handle of the wheeled container (CR) has an intermediate obstacle (OBT) between the first horizontal bar portion (PG1) and the second horizontal bar portion (PG2), such as a reinforcement extending between a wall of the container and the horizontal bar, or an intermediate hinge (CHR) of a lid (CV) of the container, pivotally articulated to the handle between said first horizontal bar portion (PG1) and the second horizontal bar portion (PG2), and wherein in the closed states (EF) of the first closing means (131) and the second closing means (132) immobilizing the first bar portion and the second bar portion respectively in the first cage (Cal) and in the second cage (Ca2),The said intermediate obstacle (OBT) is located in the free clearance (DG) between the first cage (Cal) and the second cage (Ca2), and the mechanical link (Ll) extends astride the said obstacle (OBT).

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