EP3283400B1 - Transportverfahren - Google Patents

Transportverfahren Download PDF

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Publication number
EP3283400B1
EP3283400B1 EP16723420.2A EP16723420A EP3283400B1 EP 3283400 B1 EP3283400 B1 EP 3283400B1 EP 16723420 A EP16723420 A EP 16723420A EP 3283400 B1 EP3283400 B1 EP 3283400B1
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EP
European Patent Office
Prior art keywords
frame
storage device
trench
disposed
median axis
Prior art date
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Active
Application number
EP16723420.2A
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English (en)
French (fr)
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EP3283400A1 (de
Inventor
Gabriel DUMONT
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Gd Innov
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Sollase-Soblinter
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Publication of EP3283400A1 publication Critical patent/EP3283400A1/de
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Publication of EP3283400B1 publication Critical patent/EP3283400B1/de
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D88/00Large containers
    • B65D88/02Large containers rigid
    • B65D88/12Large containers rigid specially adapted for transport
    • B65D88/129Transporter frames for containers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D90/00Component parts, details or accessories for large containers
    • B65D90/004Contents retaining means
    • B65D90/006Contents retaining means fixed on the floor of the container

Definitions

  • the present invention relates to a method for transporting armor.
  • a tidying up and storage device is disclosed which finds applications in particular in the field of construction and public works (BTP). It is intended, among other things, for the safety of equipment and men during storage, transport and handling of armor.
  • a shield is made up of two plates made of a resistant material such as for example iron or aluminum which are spaced apart and connected by jacks.
  • the positioning of the jacks depends on the cables and / or pipes which pass or which are likely to pass in the trench.
  • the shielding must respond among other things to two problems which are the securing of the trench and the creation of a sufficient working space in the trench for the people.
  • Shields of this type are disclosed by the documents GB-2519223A and WO2010 / 068014A2 .
  • An armor is a relatively large material with a relatively large mass which requires the use of a specific lifting device such as for example a mechanical shovel and which moreover is not easy to store and transport.
  • a dump truck is generally used in which the armor is deposited.
  • the latter are often transported “assembled” and rest on the sides of the skip.
  • the armor can slip in the dumpster and be impacted during transport.
  • the shields are partially disassembled and are transported (and stored) dismantled in the skip. So, it is difficult to know the condition and number of shields when the equipment returns from a job site.
  • the object of the present invention is therefore to provide a method of transport with a tidying up and storage device in which the shields are stored in complete safety.
  • the present invention also makes it possible to easily know the state and the number of shields placed on the arrangement and storage device.
  • the present invention provides a method for transporting trench armor according to claim 1.
  • the trench shields when placed on the frame, they can be positioned and held in a stable manner thanks to the retaining studs and the stops and the assembly can be easily transported thanks to the means enabling the device to be lifted.
  • a first embodiment provides for the chassis to include at least two side members arranged symmetrically with respect to the median axis and parallel to the latter.
  • each shield rests on at least two of the four ties.
  • first stud and the second stud are mounted on a first cross member.
  • first cross member a first cross member.
  • a support is arranged between each stop and each side member.
  • the stops have a higher altitude than those sleepers.
  • the stops are symmetrical with respect to a vertical axis allowing a blocking in the two longitudinal directions of the armor plates on the support.
  • the stops have for example an L-shape.
  • a storage box is arranged on the frame in the center of the arrangement and storage device.
  • the means for allowing the lifting of the arrangement and storage device comprise posts extending from the frame in the same direction and provided at their end opposite the frame with hooking means.
  • These attachment means are, for example, chosen from all the elements comprising the plates provided with a hole, the rings, the hooks, the snap hooks and the stirrups.
  • two longitudinal bars are advantageously provided to connect two posts each time.
  • handling rings can be fixed directly on the frame.
  • handling rings can for example be attached to the ends of the side members or else to the junction between a side member and a cross member.
  • a trench armor comprises two parallel plates spaced apart from each other by means of jacks, a jack comprising an end piece to ensure the connection with a first plate, an end piece to ensure the connection with a second plate and at least one cylinder extension arranged between the two end pieces, in which the chassis of the storage and storage device has a face called the upper face, wherein the trench armor plates extend longitudinally and perpendicular to said upper face, wherein the plates corresponding to a first trench armor are disposed between a retaining pad and an outer edge of the frame, and wherein the plates corresponding to another trench armor are longitudinally aligned each with a stopper.
  • the trench shields are positioned on the storage and storage device and said assembly can be easily transported using a winch and chains, or the like, to load it onto a truck bed or unload it.
  • a trench armor (the largest) is then positioned using the holding pads, a trench armor (the smallest) is positioned relative to the stops while the third armor takes place between the other two and is maintained by these and by the retaining pads.
  • a stowage and storage device and shields comprising at least three shields each having a different width and arranged on the frame in a vertical position and mounted in a pull-out position, each shield having two parallel plates spaced apart and held by the at least four jacks, the jacks comprising at least one jack extension and two end pieces and being perpendicular to the shielding plates, at least one additional first jack extension being mounted on a first retaining stud and at least one second extension additional jack being mounted on a second retaining stud, the two additional jack extensions extending perpendicular to the frame and maintaining the first shielding transversely.
  • the figure 1 schematically shows a storage and storage device 2 intended in particular for shielding a trench.
  • This device comprises a frame 4 on which there are, on the one hand, means for holding the trench armor and, on the other hand, means for allowing the device to be lifted, possibly with trench armor.
  • the frame 4 shown in the drawing is a metal frame formed by side members and cross members welded to each other.
  • the frame 4 comprises a first spar 6 and a second spar 8 which are parallel and symmetrical to a longitudinal axis A-A ', forming the longitudinal axis and / or median axis of the frame 4.
  • the first spar 6 and the second spar 8 are for example spaced at a distance of 1 meter in order to guarantee a good distribution of the loads on the frame 4.
  • the first spar 6 and the second spar 8 have a length identical for example of 2.85 m.
  • the arrangement and storage device 2 is compatible with shields of standard dimensions.
  • the arrangement and storage device 2 is loaded into a body of a standard truck such as a 6x4 for example.
  • a first cross member 10 a second cross member 12, a third cross member 14 and a fourth cross member 16 are arranged on and perpendicular to the two side members 6 and 8 ( figure 1 ). They all have the same length, for example 1.85 m and are parallel to each other. Each cross is preferably welded to the two side members 6 and 8 which improves the solidity of the storage and storage device 2.
  • the first cross member 10 is positioned at the level of the first ends of the first spar 6 and of the second spar 8.
  • the fourth cross member 16 is positioned at the level of the second ends of the first spar 6 and of the second spar 8.
  • the same space separates the second cross member 12. of the first cross member 10 and the third cross member 14 of the fourth cross member 16.
  • the first cross member 10, the second cross member 12, the third cross member 14 and the fourth cross member 16 are for example arranged symmetrically with respect to an axis BB 'median and perpendicular to axis A-A '.
  • the side members 6 and 8 as well as the cross members 10, 12, 14 and 16 are produced using metal beams such as for example IPN.
  • IPNs can be made of steel.
  • Means are provided on the frame 4 for positioning and maintaining trench armor. These means comprise stops and studs described below.
  • a first support 18 for a first stop 56 is positioned on the first spar 6 between the first cross member 10 and the second cross member 12 against the second cross member 12.
  • the purpose of this support is to bring the first stop 56 up to the height of the upper face of the cross members 10, 12, 14, 16 of the frame 4.
  • a second support 20 for a second stop 58 is positioned on the second spar 8 between the third cross member 14 and the fourth cross member 16 against the third cross member 14 in order also to place this second stop 58 at the height of the upper face of the cross members.
  • the supports are optional and the stops could be fixed directly on one or the other of the cross members.
  • the first support 18 and the second support 20 here have the same dimensional characteristics and are preferably made with the same IPNs as those used to make the crossbars 10, 12, 14 and 16.
  • the first support 18 and the second support 20 have a length of 0.3 meters.
  • first stop 56 is welded to the first support 18 and the second stop 58 is welded to the second support 20.
  • the first stop 56 and the second stop 58 are produced using two sections of a square tubular metal profile arranged so as to form a stop in the form of L (or square).
  • the first stop 56 and the second stop 58 have geometric characteristics adapted to be able to wedge a shield. For example, these stops have a height of 5 cm for a length of the branches of the L of the order of 15 cm.
  • the first stop 56 is positioned so that one branch of the L is parallel to the first spar 6 and the other branch of the L is parallel to the first cross member 10, the L of the first stop 56 facing back to the second spar 8.
  • the first stop 56 is positioned so that a plate arranged vertically and longitudinally on the arrangement and storage device 2 comes to be wedged inside the L of the first stop 56.
  • the second stop 58 is positioned so that one branch of the L is parallel to the second spar 8 and the other branch of the L is parallel for example to the fourth cross member 16; the L of the second stop 58 facing back to the first spar 6.
  • the second stop 58 is positioned so that a plate arranged vertically and longitudinally on the storage and storage device 2 comes to be wedged inside the L of the second stop 58.
  • the stops described above make it possible to position and hold a plate of a trench armor longitudinally and transversely. However, it is also important to keep them upright and prevent them from falling.
  • the holding studs described below are used and their operation is illustrated on the figure 3 .
  • a first retaining pad 52 is fixed (by welding for example) on the fourth cross member 16 and is spaced a determined distance from the first end of the fourth cross member 16.
  • a second retaining pin 54 is also fixed on the fourth cross member 16.
  • the second retaining pin 54 is spaced a determined distance from the second end of the fourth cross member 16.
  • the first retaining pad 52 and the second retaining pad 54 are arranged symmetrically with respect to the median axis A-A 'of the frame 4. They both have the same dimensional characteristics and are made of the same material, for example steel. They are for example welded to the fourth cross member 16.
  • the first retaining pad 52 and the second retaining pad 54 have the shape of a male end of cylindrical, solid or tubular shape, and each have a transverse bore. It is disclosed that each retaining stud 52, 54 consists of a tip of an extension of a shielding jack.
  • the fixing of the posts is adapted to the frame structure.
  • a first end of a first main post 22 is attached to a first end of the first cross member 10.
  • a first end of a second main post 24 is attached to the second end of the first. cross 10.
  • a first end of a third main post 26 is fixed to the first end of the fourth cross member 16 and a first end of a fourth main post 28 is fixed to the second end of the fourth cross member 16.
  • the four main posts 22, 24, 26 and 28 all have the same length depending on the heights of the shields intended to be placed on the device. Thus for shields from 1.5 m to 1.8 m, the height of these posts will be 0.90 m and have a tubular shape of rectangular section.
  • first main horizontal bar 30 is then positioned between the first main post 22 and the third main post 26 at the level of the second ends of these two main posts 22 and 26.
  • the first main horizontal bar 30 is in the longitudinal position, that is to say say parallel for example to the first spar 6.
  • a second main horizontal bar 32 is positioned between the third main post 24 and the fourth main post 28 at the level of the second ends of these two main posts 24 and 28.
  • the second main horizontal bar 32 is in a longitudinal position. that is to say parallel for example to the second spar 8.
  • the first main bar 30 as well as the second main bar 32 are for example welded to the main posts and have a tubular profile of square or rectangular section. A structure similar to that of a railing is thus produced on the two longitudinal edges of the frame 4.
  • Tabs 34 are welded in a vertical position to the second ends of each main post 22, 24, 26, 28.
  • the tabs 34 each have a hole to accommodate, for example, a hook.
  • the tongues 34 are made of a mechanically resistant material such as for example steel with a thickness of the order of 10 mm.
  • four hooks can be used to couple lifting chains to the tabs 34 to allow the organizer and storage device 2 to be transported (lifted and set down) to a dumpster.
  • the hooks as well as the lifting chains are not shown in any of the figures.
  • the embodiment also provides four secondary posts 36, 38, 40 and 42 each fixed by one of their ends to the ends of the second cross member 12 and of the third cross member 14 and by their second ends to horizontal beams.
  • secondary 44, 46, 48, 50 each connected to a corresponding main post ( figure 1 ).
  • the secondary posts here are U-sections, fixed parallel to the main posts and each time arranged between them.
  • the secondary horizontal beams each connect a secondary column to a neighboring main column.
  • the main posts tend to move closer to each other.
  • the reinforcements formed by the first main bar 30 and the second main bar 32 make it possible to maintain a space between the corresponding main posts which also come to rest on the secondary posts.
  • a storage box 60 is positioned on the cross members 10, 12, 14, 16 and has a length substantially identical to the length of the side members 6 and 8. Its height can be, for example, 50 cm.
  • the storage box 60 can be made of sheet steel and be welded to the crosspieces 10, 12, 14, 16.
  • a first shield 62 ( figure 3 ) will be used as an example to explain the different elements constituting a shield.
  • the first shield 62 has a first plate 64 and a second plate 66 held parallel to each other by at least four cylinders 100 which are perpendicular to the plates 64 and 66.
  • a cylinder 100 generally comprises two end pieces 120 and several cylinder extensions 110 The end pieces 120 each ensure the connection with the corresponding plate.
  • the cylinder extensions 110 are each composed of a tubular body with a solid end piece of external diameter corresponding to the internal diameter of the tubular body, the cylinder extensions 110 making it possible to adjust a spacing between the first plate 64 and the second plate 66.
  • the first plate 64 has an outer face 63 which is intended to bear against an inner wall of a trench and an inner face 65 which receives first fixing means 88 intended to cooperate with one of the two end pieces 120 d. 'a cylinder 100.
  • the second plate 66 has in a similar manner an outer face 67 which is intended to rest with an inner wall of a trench and an inner face 68 which is intended to receive second fixing means 88 intended to cooperate with another of the two end pieces 120 of a jack 100.
  • the first plate 64 and the second plate 66 are generally made of steel with a thickness of the order for example of 6 cm.
  • the four jacks 100 are fixed to the fixing means 88 of the plates 64 and 66 using pins for example (not shown in the figures). Thus, it is possible in a minimum of time to dismantle or mount the jacks 100 on the plates.
  • the figure 3 illustrates two other shields 72 and 82. Since the structures of shields 72 and 82 are identical to that of shield 62, they will not be explained in detail here.
  • the positioning of the shields on the storage device described in the paragraphs will be presented. previous ones.
  • three shields 62, 72, 82 are arranged in a row on the storage and storage device 2.
  • the first shield 62 has a length of 3 meters
  • the second shield 72 has a length of 2 meters
  • the third shield 82 has a length of 1.3 meters.
  • the shields 62, 72, 82 have an identical height, for example 2 meters.
  • the space between the plates of each armor is adjustable with the aid of jacks 100.
  • the plates of the three armors 62, 72, 82 are placed so as to be parallel to the longitudinal axis AA 'and are in a position. vertical position.
  • the first shield 62 is positioned on the arrangement and storage device 2 so that a lower part of its first plate 64 (part which usually comes into the bottom of the trench) is in contact with the four crossbars 10, 12, 14 and 16.
  • the first shield 62 is centered in the longitudinal direction on the arrangement and storage device 2 for a good distribution of the loads.
  • the first shield 62 is positioned on the arrangement and storage device 2 so that on the one hand the lower part of its first plate 64 is placed between the third main post and the first holding pin 52 and on the other hand that a lower part of its second plate 66 is placed between the fourth main post 28 and the second retaining stud 54. It is thus positioned outermost on the arrangement and storage device 2, c ' that is to say that it is placed as close as possible to the main posts and the main bars 30 and 32, outside of the retaining studs 52 and 54.
  • the second shield 72 (2 meters wide) is longitudinally centered relative to the storage and storage device 2.
  • the jacks 100 of the second shield 72 have a determined number of extension jacks 110 so that an outer face of a first plate 74 of the second shield 72 is in contact with the inner face 65 of the first plate 64 of the first shield 62 and that an outer face of a second plate 76 of the second shield 72 is in contact with an inner face 68 of the second plate 66 of the first armor 62.
  • the first plate 74 and the second plate 76 of the second armor 72 are here aligned longitudinally with the first retaining pad 52 and the second retaining pad 54 respectively.
  • the third shield 82 is also centered longitudinally with respect to the storage and storage device 2.
  • the third shield 82 is positioned so that a lower part of a first plate 84 of the third shield 82 is against and inside the shield. L of the first stop 56 and that a lower part of a second plate is against and inside the L of the second stop 58.
  • the third shield 82 cannot move. in the longitudinal direction.
  • the two stops 56, 58 are positioned so that an outer face of the first plate 84 of the third shield 82 is in contact with an inner face of the first plate 74 of the second shield 72 and that an outer face of the second plate of the third shield 82 is in contact with an interior face of the second plate 76 of the second shield 72.
  • the shields 62, 72, 82 are centered on the frame 4, thus allowing good distribution of the mass.
  • At least one additional jack extension 110 is housed on the first retaining stud 52.
  • the additional jack extension 110 is kept in a vertical position and forms a rigid pillar, the height of which can be modulated as a function of the number of additional cylinder extensions 110 stacked.
  • a key can be used.
  • the additional jack extension 110 as well as the first retaining stud 52 have holes having identical diameters and facing each other.
  • another additional jack extension 110 is housed on the second retaining stud 54.
  • the additional jack extension 110 is maintained in a vertical position and forms a pillar. rigid, the height of which can be modulated according to the number of additional cylinder extensions 110 stacked.
  • a key can be used to prevent the additional jack extension 110 from becoming detached from the second retaining stud 54.
  • the additional jack extension 110 as well as the second retaining stud 54 have holes having identical diameters and facing each other.
  • the first shield 62 cannot move transversely.
  • the jacks 100 of each shield 62, 72, 82 are adjusted so that the second shield 72 rests on the first shield 62 and that the third shield 82 is supported on the second shield 72.
  • each main post is arranged between the second ends of each main post and the first shield 62.
  • a first wedge 90 is interposed between the second end of the fourth main post 28 and the outer face 67 of the second plate 66 of the first shield 62.
  • the shields are better stabilized in the vertical position.
  • two other holding studs similar to the two holding studs 52, 54 are arranged on the first cross member 10.
  • two other supports with two other stops are arranged symmetrically to the axis BB 'with respect to the two supports 18, 20 and to the stops 56, 58. Thanks to the retaining studs cooperating with the cylinder extensions as well as at the stops, the centering of the shields on the frame 4 is facilitated, which makes it possible to obtain a storage and storage device 2 with a well balanced load.
  • the positions of the retaining pads and the stops are adapted according to the shields to be transported.
  • the arrangement and storage device described above and illustrated in the drawing it is possible to store three shields in the pull-out position on said arrangement and storage device.
  • the three shields are held stably in an upright position.
  • the device thus makes it possible, on the one hand, to hold the shields in complete safety during storage and transport and, on the other hand, to know quickly when returning from work, for example, the number as well as the condition of the shields.
  • spare keys and / or jacks and / or cylinder extensions can be stored in the storage box.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Package Frames And Binding Bands (AREA)
  • Packaging Of Annular Or Rod-Shaped Articles, Wearing Apparel, Cassettes, Or The Like (AREA)

Claims (9)

  1. Verfahren zum Transport von Grabenverbaueinrichtungen, wobei jede Grabenverbaueinrichtung zwei parallele Platten umfasst, die mithilfe von Zylindern voneinander beabstandet sind, wobei ein Zylinder ein Endstück zur Gewährleistung der Verbindung mit einer ersten Platte, ein Endstück zur Gewährleistung der Verbindung mit einer zweiten Platte und wenigstens einen zwischen den zwei Endstücken angeordneten Zylinderauszugteil umfasst,
    dadurch gekennzeichnet, dass die Grabenverbaueinrichtung auf einem Rahmen einer Verstau- und Lagerungsvorrichtung angeordnet ist, die Folgendes aufweist:
    - eine Fläche, genannt obere Fläche,
    - wenigstens zwei Halteklötze (52, 54), die an dem Rahmen (4) befestigt sind und eine zylindrische Form aufweisen, wobei die zwei Halteklötze (52, 54) symmetrisch in Bezug auf eine Mittelachse (A-A') des Rahmens (4) angeordnet sind,
    - wenigstens zwei Anschlageinrichtungen (56, 58), die an dem Rahmen (4) befestigt sind und jeweils mit einer gleichen Entfernung von der Mittelachse (A-A') beabstandet sind, wobei der Abstand zwischen einer Anschlageinrichtung (56, 58) und der Mittelachse (A-A') kleiner ist als der Abstand zwischen jedem Halteklotz (52, 54) und derselben Mittelachse (A-A'), wobei die Anschlageinrichtungen (56, 58) in Bezug auf die Mittelachse in Längsrichtung verschoben sind, und
    - Mittel zum Ermöglichen des Anhebens der Verstau- und Lagerungsvorrichtung (2),
    dass sich die Platten der Grabenverbaueinrichtungen längs und senkrecht zu der oberen Fläche erstrecken,
    dass die Platten, die einer ersten Grabenverbaueinrichtung entsprechen, zwischen einem Halteklotz und einem Außenrand des Rahmens angeordnet sind,
    dass die Platten, die einer anderen Grabenverbaueinrichtung entsprechen, jeweils längs auf eine Anschlageinrichtung ausgerichtet sind, und
    dass die durch die Grabenverbaueinrichtungen und die Verstau- und Lagerungsvorrichtung gebildete Einheit mithilfe einer Seilwinde und von Ketten oder dergleichen transportiert wird, um sie auf die Ladefläche oder in einen Kipper eines Lastkraftwagens zu laden.
  2. Verfahren nach Anspruch 1, dadurch gekennzeichnet, dass wenigstens drei Verbaueinrichtungen (62, 72, 82), die jeweils eine unterschiedliche Breite aufweisen, auf dem Rahmen (4) in vertikaler Position angeordnet sind und in ineinandergeschachtelter Position montiert sind.
  3. Verfahren nach einem der Ansprüche 1 oder 2, dadurch gekennzeichnet, dass wenigstens ein zusätzlicher erster Zylinderauszugteil (110) an einem Halteklotz (52, 54) montiert ist.
  4. Verfahren nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass der Rahmen (4) ein geschweißter Rahmen ist, der wenigstens zwei Längsträger (6, 8), die symmetrisch in Bezug auf die Mittelachse (A-A') und parallel zu dieser angeordnet sind, sowie Querträger (10, 12, 14, 16) umfasst, die senkrecht dazu auf den Längsträgern (6, 8) angeordnet sind.
  5. Verfahren nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass die Anschlageinrichtungen (56, 58) eine L-Form aufweisen.
  6. Verfahren nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass ein Kasten zum Verstauen (60) an dem Rahmen (4) in der Mitte der Verstau- und Lagerungsvorrichtung (2) angeordnet ist.
  7. Verfahren nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass die Mittel zum Ermöglichen des Anhebens der Verstau- und Lagerungsvorrichtung Pfosten umfassen, die sich ausgehend von dem Rahmen (4) in der gleichen Richtung erstrecken und an ihrem dem Rahmen entgegengesetzten Ende mit Befestigungsmitteln (34) versehen sind.
  8. Verfahren nach Anspruch 7, dadurch gekennzeichnet, dass die Befestigungsmittel aus der Gruppe der Elemente ausgewählt sind, die mit einem Loch versehene Platten (34), Ringe, Haken, Karabiner und Klemmbügel umfasst.
  9. Verfahren nach einem der Ansprüche 7 oder 8, dadurch gekennzeichnet, dass zwei Längsstreben vorgesehen sind, um jeweils zwei Pfosten miteinander zu verbinden.
EP16723420.2A 2015-04-17 2016-04-18 Transportverfahren Active EP3283400B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR1553469A FR3035086B1 (fr) 2015-04-17 2015-04-17 Dispositif de rangement et de stockage
PCT/FR2016/050900 WO2016166495A1 (fr) 2015-04-17 2016-04-18 Dispositif de rangement et de stockage

Publications (2)

Publication Number Publication Date
EP3283400A1 EP3283400A1 (de) 2018-02-21
EP3283400B1 true EP3283400B1 (de) 2020-07-29

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EP16723420.2A Active EP3283400B1 (de) 2015-04-17 2016-04-18 Transportverfahren

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EP (1) EP3283400B1 (de)
FR (1) FR3035086B1 (de)
WO (1) WO2016166495A1 (de)

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EP3453641B1 (de) * 2017-09-08 2020-03-11 Siemens Aktiengesellschaft Stützvorrichtung, cargo-vorrichtung, verfahren zum beladen eines behälters
CN112340331A (zh) * 2020-10-29 2021-02-09 广东电网有限责任公司 一种适用于agv叉车的货架

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DE29910896U1 (de) * 1999-06-28 2000-01-05 Hoffmann Nutzfahrzeuge Gmbh Container zum Transportieren von Coils
DE20209380U1 (de) * 2002-06-17 2003-04-03 Trenkamp & Gehle Sequenzgestell
KR100935006B1 (ko) * 2008-12-08 2010-01-06 엘에스씨산업기술 주식회사 상하수도 공사에 적합한 고심도용 간이 흙막이 구조물
GB2519223B (en) * 2013-09-11 2018-03-28 Mgf Trench Construction Systems Ltd Shoring Panels And Shoring Systems Incorporating Same

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FR3035086A1 (fr) 2016-10-21
WO2016166495A1 (fr) 2016-10-20
EP3283400A1 (de) 2018-02-21
FR3035086B1 (fr) 2017-05-26

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