Transport and packaging sealing

BE1033308B1Active Publication Date: 2026-08-24DE KROMME BOOM
View PDF 8 Cites 0 Cited by

Patent Information

Application Number
BE2025000012
Authority / Receiving Office
BE · BE
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-01-30
Publication Date
2026-08-24
Estimated Expiration
2045-01-30

AI Technical Summary

Technical Problem

Stacked containers on pallets can become unstable due to deviation angles, leading to potential collapse during transport, and existing securing methods like cords or strapping straps can get caught or damaged, compromising stability and security.

Method used

A system of interlocking sealing models and centering pins is used to stabilize containers by forming a solid block, utilizing flexible substrates and sealing sheets that enclose container corners and walls, ensuring uniform distribution and locking across layers.

Benefits of technology

The system effectively prevents deviation angles, creating a stable load by forming a single block of containers, enhancing transport safety and reducing the risk of collapse while allowing for efficient space utilization and tracking capabilities.

✦ Generated by Eureka AI based on patent content.
Patent Text Reader

Abstract

The invention consists of stacking, but not limited to, containers (1) with flat corner (2), with centering pin (3), raised flat corner (2) or continuous wall (4) on pallets or platforms by means of sealing models, whereby these stacked containers (1) are interlocked and thus form a single block, thereby achieving stability and preventing the stacked containers (1) from tipping over. The invention also provides a solution for stacking and interlocking different types of containers (1) with one another, as well as stacking and interlocking containers (1) with centering pin (3) onto containers with flat corner (2) by means of the sealing models (52), (53) and (54) onto containers with flat corner (2). A sealing sheet (45) provided with sealing loops (46) allows entire layers of loaded containers (1) to be sealed and interlocked on a pallet (50).
Need to check novelty before this filing date? Find Prior Art

Description

2 The bins(1) can be subdivided, for example, but not limited to, into those with flat corners(2) where the height of the wall is the same height over the entire perimeter, those with flat corners(2) where these corners are raised relative to the walls(4), or bins(1) with centering pins(3) at the corners, whereby the stacked bins(1) are centered, arranged via the free space provided at the corners of the bottom. Stacking crates (1) means that they form a column, Fig. 21 and Fig. 22, which can create an angle of deviation (7) which creates an unstable situation and as a result the columns can exert pressure on one another, causing the entire load to fall. For this reason, a cord, strapping strap or plastic film is used to eliminate this risk. However, there is a risk that during loading or transport the cord or strapping strap may get caught on obstructions or the film may be damaged, meaning the protection applied does not achieve its purpose. The center of gravity of a loaded pallet with a height of 1.80 meters is higher than that of aloaded pallet of 1 meter whereby the stability during transport of pallets of 1.80 meters is affected more quickly with the associated risks. 15 The invention provides a combination of solutions that depend on the type of container(1) and the solution to achieve stability. The invention can also be provided with a label(55), a code, company details, product info but not limited to this, so that tracking is possible and the label is placed between the bins(1) sealed to prevent loss. A loaded pallet(50) can also contain a set of different customers and be distinguishable from one another by means of the label. The label(55) can also be used to check freshness by noting or piercing, but not limited to, a year, month, week or day, thereby determining freshness at a glance. This makes the full detail of delivery available via the label(55) and by sealing the label(55), that at different locationscan be placed, loss disabled. The label (55) can also be provided with a QR code or a 25 RAD technology. The invention encompasses the locking of containers(1) whereby both the open type and the closed base plate made of flat cardboard or wood are locked, thereby establishing stability during transport or movement with some examples described below, but not limited to: 30 • containers connected together(1) whose corners are provided with a centering pin(3) ■ containers connected together(1) with flat(2) corner ■ connected corners where it is possible to place containers(1) with centering pin(3) onto containers (1) with flat corner(2) ■ locking of the walls(4) by profiling or for profiled models with 35 sealing bridge(28) and with or without sealing surface(27), without sealing flank(29), BE2025 / 0012 3 ■locking of the walls(4)by profiling or for profiled models, with sealing bridge(28)and with or without sealing surface(27),and sealing flank(29)■ covering by means of a sealing sheet(45) which creates a forming profile(51) ​​or a pre-profiled forming profile(51) ​​in sealing sheet(45) 5 • locking by means of anti-slip pins(17)—(30)—(31)—(34) or substrate(36) The invention consists of the fact that the stability of a loaded pallet in the center, center zone, the load is locked and thereby a solid block is formed as a result of the interlocking of the boxes(1). In some models sealing surfaces(27) are provided which can contribute to extra reinforcement or to prevent torsion of the locking model. 10 To apply this to the different models and containers(1), a more detailed description of the invention for loading and locking containers(1) onto pallets follows below, but is not limited to this. The invention can also be applied to loading platforms such as those used in air freight. With containers(1) equipped with centering pins(3), where the containers(1) are stacked so that the centering pins(3) in the provided free space in the corner of the base of the container(1) stacked on top of it.15 fit and in this way are both centered and locked relative to each other. With bins(1) with a flat angle(2), the insert foot(6) of the stacked bin(1) fits into the open space of the underlying bin(1) and in this way are both centered and locked relative to each other. As shown in Fig. 21 and Fig. 22, a deviation angle(7) can occur which affects the nearest column or columns. To solve this problem, the following solution is provided by means of the invention. With regard to bins(1) equipped with a centering pin(3). When these bins(1) are placed next to each other, different bin(1) arrangements are obtained, namely the arrangement at the corner of the pallet(50) where bin(1) with centering pin(3) is placed, the location on the pallet where two corners of bins(1) with centering pin(3) connect to each other, and the location of the pallet where quadrilaterals of bins(1) with centering pin(3) connect to each other. In fact, three types of islands are created, those with one corner and those where two or quadrilaterals ofcontainers(1)connect to each other with a centering pin(3). These are locked by means of this invention to stabilize the load containers(1) and prevent them from falling off the pallet. 30When setting up the first layer of bins(1)with centering pin(3)on the pallet, a four-sided sealing model(10a) provided with an opening(8)on the corner with centering pin(3)is placed, then a four-sided sealing model(9) provided with an opening(8)around the four centering pins(3)of the four adjacent corners with centering pin(3)is placed and then a four-sided sealing model(10) provided with an opening(8)around the two centering pins(3)of the two on the outside of the adjacent 35corners with centering pin(3)is placed.By this invention the bins placed on the outside of the pallet(1) and those placed in the middle, or center zone, on the adjacent BE2025 / 0012 4 corners with centering pins(3) are respectively(10) provided with an opening(8) for the side, a model (9) provided with an opening (8) is placed in the center zone. The placement of a four-sided sealing model (10a) provided with an opening (8) on the corners of the bins (1) placed on the corners of the pallet (50) is because when repeatedly repeating the disassembly procedure 5 with, for example, 15 layers, this creates an inclination of 22.5 mm or 30 mm respectively with a sealing model of 1.5 mm or 2 mm thickness, which we certainly want to avoid as shown in Fig. 21 and Fig. 22 by means of the deviation angle (7). For this reason, each layer is provided with an equal distribution and assembly of the sealing models (9), (10) and (10a). The islands, the connected corners and the individual corner are positioned respectively centrally, which the four-sided 10 sealing model(9) on the outside as regards the four-sided sealing model(10) and on the corner as regards (10a). This procedure of assembling the four-sided sealing models(9) and(10) and(10a) provided with opening (8) can be repeated when stacking the next layer where the centering pins(3) arelocking in the base of the containers stacked on it(1) and the opening(8) of the sealing models(9), 15(10) and(10a) also enclose the centering pins(3) and lock them by means of this invention, which prevents a deviation angle(7) from occurring. In this way, the entire load of containers stacked on the pallet(1) forms a single block. The repetitive assembly procedure can be adjusted with respect to the loads and can thus be applied to, for example, every subsequent third layer with final assembly on the penultimate layer. 20 The sealing models (9), (10) and (10a) provided with an opening (8) can be provided with a large recess of the opening (8) with respect to the trays (1) according to the type and location of the centering pin (3) and in the respective ratio. The sealing models (9), (10) and (10a) provided with an opening (8) can be manufactured in a type of cardboard, whether or not water-resistant or reinforced version, PVC, polymer or whether or not recyclable material, provided that the thickness does not affect the25 locking of the centering pin(3) of the container(1) placed on it. Fig. 24 shows the respective sealing models, specifically(10a) at the corners,(9) centrally at the four adjacent corners and(10) at the laterally adjacent corners with centering pins(3). With regard to the locking model(9),(10) and(10a), the sets can also be made in a three-dimensional model so that the walls(4) are encapsulated or enclosed and thus extra strength is obtained with regard to the containers with centering pin(3) where the mass of the filled containers(1) can have a significant influence on the load. The flat-angle trays (1) are covered by the invention of the two connected angles (2) and the four connected angles (2) with an overlapping flexible substrate (11) and (12), whereby the foil is pressed into the underlying tray (1) by the insert foot (6) at the bottom of the tray (1) and within the open space of the underlying tray (1) falls a forming profile (51) and in this way the angles are encapsulated, making them a single whole and a solid unit BE2025 / 00125 forms. This flexible substrate can also have the size of the entire surface of the pallet loaded with containers. A model is further explained in this invention. By means of this invention, the corners form a coupled island, as mentioned above, and can be sealed and locked by means of this invention. By repeating this procedure of placing an overlapping flexible substrate(11) and(12) on the subsequent layers, a block of stacked containers(1) is formed whereby the containers(1) are coupled together and form a stable unit by means of the invention. This invention can be used by using, instead of overlapping flexible substrate(11) and(12), which form a uniform profile(51) ​​by stacking containers(1), pre-profiled models as shown in Fig. 19, provided with a sealing bridge(28) and with or without a sealing surface(27 10 or three-dimensional models(42),(43) or(44), which can be mounted in the respective places, whereby the insert foot(6) of the above container(1) which as a model in the open space ofThe underlying container(1) can thus be fitted to the deposition of the sealing bridge(28), whether or not provided with a sealing surface(27), and lock them by means of models(42),(43),(44). By providing the models mentioned in the invention, shown in Fig.9 to Fig.18 with a sealing surface 15(29), a variety of containers(1) as well as boxes in combination with containers can be stacked, whereby the sealing surfaces(29) ensure that the boxes remain within the defined space of the containers(1) stacked on the pallet. The sealing bridges(28), whether or not provided with sealing surfaces(27), ensure the complete stability of the whole and the formation of a single block. The modular sealing bridges (42), (43) and (44) allow containers of different sizes to be connected with a card and locked in this way for transport as shown in Fig. 51. This application can be used for loading containers onto platforms such as those used in air freight, thereby eliminating the excess weight of the pallets and allowing the quantity to be transported to be reduced.raised. In this air cargo configuration, the sealing sheet(45) with reinforced sealing eyes(6) and / or reinforcement profile(47) can be used on a platform in the above-mentioned configuration. 25 There are containers(1) for fruit and vegetables, Fig. 20(Aa),(Ba),(Ca) and(Da), with a flat bottom plate in wood or cardboard where a version of sealing models shown in Fig. 31, Fig. 32, Fig. 33, Fig. 34, Fig. 35, Fig. 36, Fig. 37 can be used or by means of an anti-slip pin(17),(30),(31),(34) with a reinforcing back(35) or anti-slip substrate(36) which allows these containers(1) to be interlocked so that a single unit is formed, especially as a single block with stacked containers(1). 30 The different models such as angled locking model(34), central locking model(22) and side locking model(23) which the anti-slip pins(17),(30)and(31). The different anti-slip pins depend on the materials used in the production of the bins(1), wood or cardboard but are not limited to this. For some bins(1) anti-slip substrate(36) can be used.By means of a flexible substrate such as (11) and (12) placed between two containers, a depth profile or forming profile (51) is formed by means of the insert foot (6) located at the bottom of the top container (1) where the insert foot (6) fits inside the wall (4) of the BE2025 / 0012 6 bottom container (1). By means of this procedure, models (11) and (12) can be replaced by a single film, sealing sheet (45), the size of the surface area of ​​the number of containers on the pallet plus the overlap section provided with the sealing eyes (46) taking into account the film thickness, plus double the height of the insert foot (6) multiplied by the number of containers, this both length and width and this in proportion to the elasticity coefficient of the substrate, in order to form the forming profile (51) to be able to form and no upward force arises which can contribute to unlocking. By applying a sealing sheet(45) a wider variety of packaging models and containers can be locked for transport.The sealing eyes(46) are anchored behind the four outermost corners of the stacked bins(1). By placing a subsequent layer of bins(1) on the sealing sheet(45), the insert feet(6) of these bins(1), which fit inside the walls(4) of the bottom bins(1), form a forming profile(51) ​​so that the walls(4) are enclosed and the forming profile(51) ​​show zonal depressions in the bottom bins, resulting in shapes such as sealing bridges and sealing surfaces that create a complete locking of the pallet-loaded bins. 15 This encapsulation locks the entire layer. The procedure of placing the sealing sheet(45) can be repeated over the different layers of the pallet to be loaded. For specific and / or heavier containers(1), a sealing sheet(45) with reinforced sealing eyes(46) and / or reinforcement profile(47) can be used so that extra forces are absorbed during transport. The sealing sheet(45) can be rolled up(49) and provided with perforation(48) so that for use20 This efficient and pre-perforated version (48) can be torn off for use. To enable the efficient use of the various models in this invention, there is the version in simple production, in set with perforation or on a roll with perforation wound for quick use. Some examples but not limited to these: 25 • locking model whether or not on a roll with perforation according to type and spacing for quick use • sealing sheet with sealing eyelets whether or not reinforced or on a roll with perforation according to type and spacing for quick use • anti-slip tape on a roll • locking model in an elastic flexible or rigid material to achieve better enclosure of the 30 centering pins or flat corners • locking models in a three-dimensional shape to thereby enclose the corners and walls by means of the pre-formed locking bridges (28) and / or locking surfaces. A more extensive and detailed description of the invention is further described. Enclosed containers, boxes or containers(1) with a flat bottom plate, in cardboard or wood but not for this purpose35 limited, to be locked, use can be made of anti-slip pin(17) or anti-slip substrate(36). BE2025 / 0012 7 To obtain a better and stronger locking, the anti-slip pin(17) can be manufactured in a reinforced version with a reinforcing back(35), resulting in an anti-slip pin(39). The reinforcing back(35) makes bending more difficult in order to obtain a solid locking. By positioning the anti-slip pin(17) or(39) alternately clockwise or counterclockwise with an angle difference of 45°, so that they can provide the locking in each direction at 0°, 45°, 90°, 135°, 180°, 225°, 270°, 315°, it is prevented that this load shifts by means of variable directional positions of the anti-slip pins and thereby the load is locked. The locking of containers(1) with a flat bottom plate only requires locking pins in the upward direction. The upward-downward locking pins are intended for containers(1) and boxes 10 or closed containers where both the bottom and the lid are provided with a flat plate or surface. InIn these cases, use can also be made of the strips or bands provided with anti-slip pins in single upward-facing locking pins or upward-downward-facing locking pins, depending on the stacked version of the containers(1) or boxes. The advantage of the locking models equipped with a sealing flank(29) is that this offers the possibility of sealing a closed packaging 15 such as boxes on containers(1) because these models enclose the walls(4) of the containers(1) and the sealing flanks(29) lock the boxes and prevent them from sliding outside the frame of the loaded containers(1). With this invention, a combination of different types of bins (1) and boxes or closed packaging can be loaded onto a pallet, thereby saving space and achieving efficiency for loading and unloading loaded pallets at suppliers and customers. For example, a pallet with 10 bins (A), a pallet with 20 bins (half A) and 10 boxes can all be loaded onto one pallet. The advantage is space saving in the truck—one pallet space instead of three—and faster loading and unloading of the orderedgoods per customer. When using a sealing sheet(45), the locking of the loaded pallet is guaranteed, but it can also serve to prevent dehydration of fruit or vegetables or "over-" cooling phenomena caused by direct contact of cooled air in refrigerated trucks, but is not limited to this. The sealing sheets(45) contribute to achieving more uniform cooling throughout the load. With regard to the variety of locking / sealing, use can be made of 30 materials, polymers, fibers, barks, mycelium-structured substrates in flat or three-dimensional forms and respectively in flexible or rigid form depending on the use. This use can be in single application, on rolls, perforated or non-perforated models, three-dimensional assembly in single or molded sheets but is not limited to this. An anti-slip coating can contribute in certain models to strengthening the locking or sealing. 35Since technology and communication are increasingly integrated into the trade and transport ofgoods there is also the possibility to implement or add a QR code or an RFID, but not limited to this, to the locking or sealing models BE2025 / 0012 8 so that it is possible to process information from both the producer and the product by means of an information system when loading, unloading or moving palletized containers, crates or boxes. A clarification of the figures is shown below: Fig. 1: Top view of a locking model (9) with open space (8) for locking four connected corners of containers (1) that are provided with centering pins (3) at the corners, where these centering pins (3) fit into the provided free space in the respective corner in the base of the container, box or crate (1) placed on it. The container (1) has a centering pin (3) at the corners in the base, in the extension of the centering pin (3), a free space in which a centering pin (3) fits for locking. Fig. 1a: Front view of Fig. 1 in two-dimensional version Fig. 1b: Front view of Fig. 1 in three-dimensional version Fig. 2: Top view of:a locking model(10) for locking two connected corners of containers 15(1) that are fitted with centering pins(3) at the corners, where these centering pins(3) fit into the provided clearance in the respective corner in the base of the container, box or crate(1) placed on top of them. ■ a locking model(10a) for positioning the corners of containers(1) that are fitted with centering pins(3) at the corners, where these centering pins(3) fit into the provided clearance 20 in the respective corner in the base of the container, box or crate(1) placed on top of them. Fig. 2a: Front view of Fig. 2 in two-dimensional version Fig. 2b: Front view of Fig. 2 in three-dimensional version Fig. 3: Top view of a locking model with wall blocking for locking four connected corners of bins(1) with flat(2) corner bases where a free recessed space is provided between the corners of the bins, boxes or crates and the corner bases are positioned at a raised height Fig. 21. Fig. 4: Top view of a locking model for locking four connected cornersof bins(1)with flat(2)corner bases where a free recessed space is provided between the corners of the bins, boxes or crates and the corner bases are raised Fig. 21. 30Fig. 5: Top view of a locking model for locking four connected corners of bins(1)with flat(2)corner bases where the four walls are clamped in the sealing bridges(28) and enclosed by the sealing surfaces(27) formed by the insert foot(6) of the top-placed bin(1) in a flexible substrate locking model(11) or(12) or as a pre-formed model as shown in Fig. 19. BE2025 / 0012 9 Fig. 5a: Front view of a locking model for locking four connected corners of bins(1) with flat(2) angle bases where the four walls are clamped in the sealing bridges(28) and enclosed by the sealing surfaces(27) Fig. 6: Top view of a locking model for locking two connected corners 5 of bins(1) with flat(2) angle bases where the four walls, two laterally and two centrally,are clamped in the sealing bridges(28) and enclosed by the sealing surfaces(27) Fig.6a: Front view of a locking model for locking two connected corners of bins(1) with a flat(2) angle base where the four walls, two laterally and two centrally, are clamped in the sealing bridges(28) and enclosed by the sealing surfaces(27) 10Fig.7: Top view of a locking model for locking four connected corners of bins(1) with a flat(2) angle base where the four walls are clamped in the sealing bridges(28) and enclosed by the sealing surfaces(27) formed by the insert foot (6) of the top-placed bin(1) in a flexible substrate locking model(11) or(12) or as a pre-formed model as shown in Fig.19 and the design of the sealing surfaces are 15 rounded off to prevent damage to goods or injuries. Fig. 8: Top view of a locking model for locking two connected corners of bins (1) with a flat (2) angle base where the four walls, two laterally and two centrally,are clamped in the sealing bridges(28) and enclosed by the sealing surfaces(27) and the design of the sealing surfaces is rounded to prevent damage to goods or injuries 20. Fig.9: Top view of a locking model for locking four connected corners of bins(1) with flat(2) angle bases equipped with sealing surfaces(27) and sealing flanks(29). Fig.9a: Front view of a locking model for locking four connected corners 25 of bins(1) with flat(2) angle bases equipped with sealing surfaces(27) and sealing flanks(29). Fig.9b: Perspective view of a locking model for locking four connected corners of bins(1) with flat(2) angle bases equipped with sealing surfaces(27) and sealing flanks(29). 30Fig.9c:Perspective view of a locking model for locking four connected corners of bins(1) with flat(2) angle bases provided with sealing flanks(29), and wheresealing bridges(28) non-sealing surfaces(27) formed by means of insert base(6). Fig.9d: Front view of a locking model for locking four connected corners of bins(1) with flat(2) angle base provided with sealing flanks(29), and where 35 sealing bridges(28) with sealing surfaces(27), formed by means of insert base(6) BE2025 / 0012 10 Fig.10: Top view of a locking model for locking two connected corners of bins(1) with flat(2) angle base provided with sealing surfaces(27) and sealing flanks (29). Fig.10a: Front view of a locking model for locking two connected corners of bins(1) with flat(2) angle base provided with sealing surfaces(27) and sealing flanks (29). Fig. 10b: Perspective view of a locking model for locking two connected corners of boxes (1) with flat (2) corner bases provided with sealing surfaces (27) and sealing flanks (29).10Fig.10c: Perspective view of a locking model for locking two connected corners of bins(1) with a flat(2) angle base provided with sealing flanks(29), and where sealing bridges(28) with sealing surfaces(27) formed by means of an insert foot(6). Fig.10d: Front view of a locking model for locking two connected corners of bins(1) with a flat(2) angle base provided with sealing flanks(29), and where 15 sealing bridges(28) with sealing surfaces(27) formed by means of an insert foot(6). Fig. 11: Top view of a locking model for locking four connected corners of bins (1) with flat (2) corner bases provided with sealing surfaces (27) and sealing flanks (29) where the design of the sealing surfaces is rounded to prevent damage to goods or injuries. 20 Fig. 11a: Front view of a locking model for locking four connected corners of bins (1) with flat (2) corner bases provided with sealing surfaces (27) and sealing flanks(29) where the design of the sealing surfaces is rounded to prevent damage to goods or injury. Fig. 11b: Perspective view of a locking model for locking four connected corners of bins (1) with flat (2) corner bases provided with sealing surfaces (27) and sealing flanks (29) where the design of the sealing surfaces is rounded to prevent damage to goods or injury. Fig. 11c: Perspective view of a locking model for locking four connected corners of bins (1) with flat (2) corner bases provided with sealing flanks (29) and where 30 sealing bridges (28) with sealing surfaces (27) formed by means of insert base (6) but also the design of the sealing surfaces is rounded to prevent damage to goods or injury. Fig. member: Front view of a locking model for locking four connected corners of boxes(1) with flat(2) corner bases provided with sealing flanks(29 and where35 sealing bridges(28) with sealing surfaces(27) formed by means of an insert base(6) but BE2025 / 0012 11 also the design of the sealing surfaces are rounded to prevent damage to goods or injury. Fig.12: Top view of a locking model for locking two connected corners of bins(1) with flat(2) corner base provided with sealing surfaces(27) and sealing flanks 5(29) where the design of the sealing surfaces is rounded to prevent damage to goods or injury. Fig. 12a: Front view of a locking model for locking two connected corners of bins (1) with a flat (2) corner base provided with sealing surfaces (27) and sealing flanks (29) where the design of the sealing surfaces is rounded to prevent damage to goods 10 or injuries. Fig. 12b: Perspective view of a locking model for locking two connected corners of bins (1) with a flat (2) corner base provided with sealing surfaces (27) andsealing flanks(29) where the design of the sealing surfaces is rounded to prevent damage to goods or injury. 15Fig.12c: Perspective view of a locking model for locking two connected corners of bins(1) with flat(2) angle bases provided with sealing flanks(29) and where sealing bridges(28) with sealing surfaces(27) formed by means of an insert foot(6) but the shape of the sealing surfaces is also rounded to prevent damage to goods or injury 20Fig.12d: Front view of a locking model for locking two connected corners of bins(1) with flat(2) angle bases provided with sealing flanks(29) and where sealing bridges(28) with sealing surfaces(27) formed by means of an insert foot(6) but the shape of the sealing surfaces is also rounded to prevent damage to goods or injury 25Fig.13: Front view of a locking model for locking four connected cornersof boxes(1)with flat(2)angle base provided with sealing surfaces(27), sealing bridges(28)and sealing flanks(29). Fig.13a: Top view of a locking model for locking four connected corners of boxes(1)with flat(2)angle base provided with sealing surfaces(27), sealing bridges30(28)and sealing flanks(29). Fig.13b: Perspective view of a locking model for locking four connected corners of boxes(1)with flat(2)angle base provided with sealing surfaces(27), sealing bridges(28)and sealing flanks(29). Fig.14: Front view of a locking model for locking four connected corners of bins(1) with flat(2) angle base provided with a recess(32), sealing surfaces(27), sealing bridges(28) and sealing flanks(29). BE2025 / 0012 12 Fig.14a: Top view of a locking model for locking four connected corners of bins(1) with flat(2) angle base provided with a recess(32), sealing surfaces(27),sealing bridges(28) and sealing flanks(29). Fig.14b: Perspective view of a locking model for locking four connected corners of bins(1) with flat(2) angle base provided with a recess(32), sealing surfaces(27), sealing bridges(28) and sealing flanks(29). Fig.15: Front view of a locking model for locking two connected corners of bins(1) with flat(2) angle base provided with sealing surfaces(27), sealing bridges(28) and sealing flanks(29). Fig.15a: Top view of a locking model for locking two connected corners of bins(1) with flat(2) angle base provided with sealing surfaces(27), sealing bridges(28) and sealing flanks(29). Fig. 15b: Perspective view of a locking model for locking two connected corners of boxes (1) with flat (2) corner bases provided with sealing surfaces (27), 15 sealing bridges (28) and sealing flanks (29).Fig.16: Front view of a locking model for locking two connected corners of bins(1) with a flat(2) angle base provided with a recess(33), sealing surfaces(27), sealing bridges(28) and sealing flanks(29). Fig.16a: Top view of a locking model for locking two connected corners 20 of bins(1) with a flat(2) angle base provided with a recess(33), sealing surfaces(27), sealing bridges(28) and sealing flanks(29). Fig.16b: Perspective view of a locking model for locking two connected corners of bins(1) with a flat(2) angle base provided with a recess(33), sealing surfaces(27), sealing bridges(28) and sealing flanks(29). 25Fig.17: Front view of a locking model for locking four connected corners of bins(1) with flat(2) angle bases provided with a model recess(13), adapted sealing surfaces(27), sealing bridges(28) and sealing flanks(29).Fig.17a: Top view of a locking model for locking four connected corners of bins(1) with a flat(2) angle base provided with a model recess(13), adapted sealing surfaces(27), sealing bridges(28) and sealing flanks(29). Fig.17b: Perspective view of a locking model for locking four connected corners of bins(1) with a flat(2) angle base provided with a recess(13), adapted sealing surfaces(27), sealing bridges(28) and sealing flanks(29). Fig.18: Front view of a locking model for locking two connected corners of boxes(1) with a flat(2) angle base provided with a recess(13), adapted sealing surfaces(27), sealing bridges(28) and sealing flanks(29). BE2025 / 0012 13 Fig.18a: Top view of a locking model for locking two connected corners of boxes(1) with a flat(2) angle base provided with a recess(13), adapted sealing surfaces(27), sealing bridges(28) and sealing flanks(29).Fig. 18b: Perspective view of a locking model for locking two connected corners of containers (1) with flat (2) corner base provided with a recess (13), adapted sealing surfaces (27), sealing bridges (28) and sealing flanks (29). Fig. 19A: Front view of the locking models with sealing bridges (28) measured without sealing surfaces (27). Fig. 19B: Top view of the locking models with sealing bridges (28) measured without 10 sealing surfaces (27), without sealing flanks (29). Fig. 19C: Perspective view of the locking models with sealing bridges (28) measured without sealing surfaces (27), without sealing flanks (29). Fig.19D: Top view of the locking models with sealing bridges(28) measured without modified sealing surfaces(27), without sealing flanks(29). 15Fig.19E: Perspective view of the locking models with sealing bridges(28) measured without modified sealing surfaces(27), without sealing flanks(29).Fig.20A: Front view of bins(1) with centering pin(3) or flat corners(2), with or without insert foot(6) Fig.20B: Top view of bins(1) with centering pin(3) or flat corners(2) Fig.20C: Top view of bins(1) with centering pin(3) or flat corners(2) where the quadrangles 20 connect to each other. Fig.20D: Top view of bins(1) with centering pin(3) or flat corners(2) where the four raised corners are locked by means of locking model(24), by means of sealing bridges(28) and sealing surfaces(27) this with regard to bins(1) with flat corner(2) or locking model(9) with regard to bins(1) with centering pin(3) 25Fig.21: Stacked containers(1) equipped with a flat angle(2) and insert foot(6) showing the angle of deviation(7) when they are stacked. Fig.22: Stacked containers(1) equipped with an angle with centering pin(3) showing the angle of deviation(7) when they are stacked. Fig.23Al: Front view of container, box or crate(1) with flat angles(2) and continuous wall(4)30Fig.23A2: Top view of container, box or crate(1) with flat corners(2), continuous wall(4) and bottom(5). Fig.23A3: Bottom view of container, box or crate(1) with continuous wall(4) and insert foot(6). Fig.23A4: Bottom view of four containers(1) where the four flat corners(2) connect to each other and where the lateral and central corners are locked with sealing bridges(28) and sealing surfaces(27) by means of the BE2025 / 0012 14 insert foot(6) inside the open frame formed by the walls4 when they are placed on top of each other. Fig.23A5: Top view of a central locking module with sealing bridges(28) and sealing surfaces(27) that lock the quadrilaterals. Fig.23A6: Perspective view of a central locking module with sealing bridges(28) and sealing surfaces(27) that lock the quadrilaterals. Fig.23B1: Front view of a box, crate or box(1) with flat corners(2) and lowered wall(4). Fig.23B2: Top view of a box, crate or box(1) with flat corners(2), lowered wall(4) and bottom(5).Fig.23B3: Bottom view of box, box or crate(1) with continuous wall(4) and insert foot(6). Fig.23B4: Bottom view of four boxes(1) where the quadrilateral corners are joined together and the lateral central corners are locked by means of sealing bridges(28) and sealing surfaces(27) by means of a pre-profiled model or by pressing flexible foil into the open frame formed by the walls4 when they are placed on top of each other. Fig.23B5: Top view of lateral locking module with sealing bridges(28) and sealing surfaces(27) that lock the two corners. Fig.23B6: Perspective view of lateral locking module with sealing bridges(28) and sealing surfaces(27) that lock the two corners. Fig. 24: Top and side view of stacked bins (1) with centering pin (3) on which the corner locking model (10a), central locking module (9) and side locking modules 20 (10) are placed to lock the set.Fig. 25: Top view of four bins (1) where the central quadrilaterals connect to each other and on which a flexible central locking module (11) and four flexible side locking modules (12) are placed. Fig. 26: Top view of four bins (1) where the quadrilaterals connect to each other and the flexible central locking modules (11) and four flexible side locking modules (12) are pressed in by means of the 25 insert foot (6) of the stacked bins (1), thereby forming sealing bridges (28) and sealing surfaces (27) as profiles. Fig. 27: Top view of four containers (1) where the quadrilaterals connect to each other and the flexible central locking modules (11) and four flexible lateral locking modules (12) are pressed in by means of the insert foot (6) of the stacked containers (1), thereby forming sealing bridges (28) and the sealing surface (27) is positioned flush with the wall. Fig. 28: Side view of stacked containers (1) locked and stable for transport by means of locking models (11) and (12).Fig. 29: Top view of four bins (1) whose four flat corners (2) connect to each other and are pressed in by means of the insert foot (6) of the stacked bins (1) the flexible central locking modules BE2025 / 0012 15 (11) and four flexible side locking modules (12) thereby forming sealing bridges (28) and sealing surfaces (27) as profiles. Fig. 30: Top view of four boxes (1) where the quadrangles connect with centering pins (3) and the stacked boxes (1) are locked with centering pins (3) by means of a central locking module (9) and 5 four-sided locking modules (10). Module (10a) can be placed but is not necessary for locking and only for compensation if every layer of the load is provided with model (9) and (10). Fig. 31A: Top view of an angled locking mechanism (34) with anti-slip pins (17) on the locking surface (14) to lock boxes (1) or boxes with flat, wood or cardboard processed material, base plate.Fig.31B: Front view of an angled lock with anti-slip pins(17) on locking surface(14) for locking trays(1) or boxes with flat, wood or cardboard processed material, base plate. Fig.31C: Rear view of an angled lock(34) with anti-slip pins(17) on locking surface 15(14) for locking trays(1) or boxes with flat, wood or cardboard processed material, base plate. Fig.31D: Perspective view of an angled lock(34) with anti-slip pins(17) on locking surface(14) for locking trays(1) or boxes with flat, wood or cardboard processed material, base plate. 20Fig.31E: Perspective view of the types of conical anti-slip pins(17), triangular upward anti-slip pins(30) or triangular downward anti-slip pins(31) to lock the bottom plate of trays(1) or boxes with flat, wood or cardboard material. Fig.32A: Top view(A) of a lateral locking(15) with anti-slip pins(17) on the locking surface(14) for trays(1) or boxes with flat, wood or cardboard material.25 lock. Fig.32B: Front view of a side lock(15) with anti-slip pins(17) on locking surface(14) to lock trays(1) or boxes with flat, wood or cardboard processed material, bottom plate. Fig.32C: Rear view of a side lock(15) with anti-slip pins(17) on locking surface 30(14) to lock trays(1) or boxes with flat, wood or cardboard processed material, bottom plate. Fig.32D: Side view of a side lock(15) with anti-slip pins(17) on locking surface(14) to lock trays(1) or boxes with flat, wood or cardboard processed material, bottom plate. BE2025 / 0012 16 Fig.32E: Perspective view of a side locking mechanism(15) with anti-slip pins(17) on locking surface(14) to lock a base plate of flat wood or cardboard processed trays(1) or boxes with flat material. Fig.33A: Perspective view of a central locking mechanism(22) with anti-slip pins(17) on locking surface(14) to lock a set of night trays(1) or boxes with flat wood or cardboard processed base plate.Fig.33B: Side view of a central locking mechanism(22) with anti-slip pins(17) on the locking surface(14) to lock a set of four trays(1) or boxes with flat, wood or cardboard material base plate. 10Fig.33C: Perspective view of a side locking mechanism(23) with anti-slip pins(17) on the locking surface(14) to lock a set of four trays(1) or boxes with flat, wood or cardboard material base plate. Fig.33D: Side view of a side locking mechanism(23) with anti-slip pins(17) on the locking surface(14) to lock a set of four trays(1) or boxes with flat, wood or cardboard material base plate 15. Fig. 34: Top and front view of locking model (16) equipped with anti-slip pins (17) in a versatile design for locking containers (1) or boxes with flat, wood or cardboard material, base plate. Fig. 35: Top and front view of locking model (16) equipped with anti-slip pins (17) in a circular design for locking containers (1) or boxes with flat, wood or cardboard material, base plate.Fig. 36: Top and front view of locking model(16) equipped with anti-slip substrate(36) in a versatile design to lock trays(1) or boxes with flat, wood or cardboard material, base plate. 25 Fig. 37: Top and front view of locking model(16) equipped with anti-slip substrate(36) in a circular design to lock trays(1) or boxes with flat, wood or cardboard material, base plate. Fig. 38: Top view of a locking strip(18) equipped with anti-slip substrate(36) to lock trays(1) or boxes with flat, wood or cardboard material, base plate. 30 Fig. 39: Top view of a locking strip(19) equipped with a perforation shape according to locking model(9), which allows four trays(1) to be locked with centering pin(3). Fig. 40: Top view of a locking strip (19) provided with a perforation shape according to locking model (10) or (10a), which allows two bins (1) to be locked with a centering pin (3). Fig. 41: Side view of a locking strip on a roll, type (18), (19, (20) but not limited to this, which on a35 according to dimension perforated spacing; locking model(9),(10),(10a),(24),(25)but not limited to this, arranged from each other for efficient use. BE2025 / 0012 17 Fig.42: Top view of a locking strip(37) equipped with upward-facing(30) or downward-facing(31) locking pins to lock trays(1) or boxes with flat, wood or cardboard processed material, base plate. Fig.43: Top view of a locking strip(38) equipped with upward-facing(30) locking pins to lock trays(1) or boxes with flat, wood or cardboard processed material, base plate. Fig.44A: Front view of a triangular anti-slip pin(17) Fig.44B: Side view of a triangular anti-slip pin(17) Fig.44C: Top view of a triangular anti-slip pin(17) Fig.44D: Perspective view of a triangular anti-slip pin(17) 10Fig.45A: Front view of a triangular anti-slip pin(39) with reinforcing back(35) Fig.45B: Side view of a triangular anti-slip pin(39) with reinforcing back(35)Fig.45C: Top view of a triangular anti-slip pin(39) with reinforced back(35) Fig.45D: Perspective view of a triangular anti-slip pin(39) with reinforced back(35) Fig.46: Top view of stacked bins(1) equipped with a multi-sided recess lock(24) to lock bins(1) with a flat(2) angle. Fig.47: Top view of stacked bins(1) equipped with a circular recess lock(24) to lock bins(1) with a flat(2) angle. Fig.48: Side view of stacked bins(1) equipped with a flat multi-sided recess lock(24) to lock bins(1) with a flat(2) angle. 20Fig.49: Side view of stacked bins(1) equipped with a three-dimensional multi-sided recess locking(24) to lock bins(1) with flat(2) angle. Fig.50: gives an overview of the procedure to place bins with centering pin(3) onto bins with flat angle(2) using the models(52),(53)and(54) equipped with pin model(26) value seriesD the angle arrangement with flat angle(2, the seriesE the two connected together25 angles with a flat angle (2) and the series F of the four connected angles with a flat angle (2). Fig.50Aa: Front view of a container, box or crate (1) with a flat angle (2) and lowered height of the wall (4). Fig.50Ab: Top view of a container, box or crate (1) with a flat angle (2), bottom (5) and lowered height of the wall (4). 30Fig.50Ba: Front view of a container, box or crate (1) with a flat angle (2) and continuous height of the wall (4). Fig.50Bb: Top view of a container, box or crate (1) with a flat angle (2), bottom (5) and continuous height of the wall (4). Fig.50Ca: Front view of a container, box or crate(1) with a centering pin(3) angle 35 Fig.50Cb: Top view of a container, box or crate(1) with a centering pin(3) angle, bottom(5) and wall(4) Fig.50Dl: Front view of corner locking model(52) with pin model(26) and sealing bridge(28) BE2025 / 0012 18 Fig.50D2: Top view of a corner locking model(52) with pin model(26), sealing surface(27) and sealing bridge(28) Fig.50D3: Perspective view(D3) of a corner locking model(52) with pin model(26), sealing surface(27) and sealing bridge(28)5Fig.50D4: Mounting of corner locking model(52) on a bin, box or crate with flat corner(2) ■D4a: Corner locking model(52) with pin model(26) and sealing bridge(28) •D4b: Bin, box or crate(D4b) with flat corner(2) ■D4c: Corner locking model(52) with pin model(26) and sealing bridge(28) mounted on the flat corner(2) of a bin, box or crate(D4b) 10Fig.50El: Front view of two-corner locking model(53) with double pin model(26) and sealing bridges(28) Fig.50E2: Top view of a side view of the two-corner locking model(53) with double pin model(26), sealing surface(27) and sealing bridge(28) Fig.50E3: Perspective view of a lateral two-corner locking model(53) with double pin model 15(26), sealing surface(27) and sealing bridge(28) Fig.50E4: Mounting of a lateral locking model(E2) on two boxes, boxes or crates with a flat angle(2) ■E4a: Lateral two-corner locking model(53) with two pin models(26), sealing surface (27) and sealing bridge(28) 20■E4b: Two connected corners of boxes, boxes or crates(E4b) with a flat angle(2)•E4c: Lateral two-corner locking model(53) with two-pin models(26), sealing bridge(28) and sealing bridge(28) mounted on the two connected corners(2) of two containers, boxes or crates(E4b) whereby the walls(4) and corners(2) of the two containers, boxes or crates (F4b) are locked. 25Fig.50F1: Front view of a central four-corner locking model(54) with four-pin models(26) and sealing bridges(28) Fig.50F2: Top view of a central four-corner locking model(54) with four-pin models(26), sealing surfaces(27) and sealing bridges(28) Fig.50F3: Perspective view of a central four-corner locking model(54) with four-pin models 30(26), sealing surfaces(27) and sealing bridges(28) Fig.50F4: Mounting of central four-corner locking model(54) on four boxes, boxes or crates with flat corner(2) ■F4a: Central four-corner locking model(54) with four-pin models(26), sealing surface(27) and sealing bridge(28) 35■F4b:Four connected corners of boxes, boxes or crates(F4b)with flat angle(2) BE2025 / 0012 19•F4c: Central four-corner locking model(54) with four-pin models(26), sealing surfaces(27) and sealing bridges(28) mounted on the four connected corners(2) of four bins, boxes or crates(F4b) whereby the walls(4) and corners(2) of the four bins, boxes or crates(F4b) are locked. 5Fig.51A—B: Top view of two different sizes of bins, boxes or crates(40) and(41) which, by their respective dimensions (where(A) has double the dimension of(B), can be stacked on the same pallet by means of the corner locking model(42), side locking model(43) and central locking model(44) and thus a load of different bins(1) can be stacked. 10Fig.51C: Front view(C) of two different types of bins, boxes or crates(40) and(41) that are locked together by the corner locking model(42), side locking model(43) and central locking model(44). Fig.52: Top view of bins, boxes or crates placed next to each other, type(40) and(41) ofvarious dimensions that are locked by the corner (42), side (43) and central (44) 15 locking modules. Fig.53: Top view of a sealing sheet(45) fitted with sealing eyes(46) at the corners Fig.54: Top view of a sealing sheet(45) fitted with reinforced sealing eyes(46) at the corners Fig.55: Top view of a sealing sheet(45) fitted with reinforced sealing eyes(46) at the corners and reinforcing wires(47) Fig.56: Top view of a sealing sheet(45) cut to length, fitted with spaced sealing eyes(46) at the corners, spaced perforation(48) where a front view shows the sealing sheets(45) wound on the roll(49) Fig.57: Top view of pallet(50) 25Fig.58: Top view of pallet(50) on which crates are stacked covered under a sealing sheet(45) provided with sealing eyes(46) and of which the wall(4) of the crate is visibly depicted Fig.59: Top view of pallet(50) on which crates are stacked covered under a sealing sheet(45)provided with sealing eyes(46), of which the wall(4) of the box is visibly shown and the sealing sheet(45) is pressed in by the insert foot(6) of the box stacked on top. 30Fig.60: Top view of boxes placed under the sealing sheet(45) provided with the sealing eyes(46) anchored behind the corners of the wall(4) and the sealing sheet(45) available in sizes and strengths according to the needs of the load to be sealed. Fig.61: Top view of pallet(50) on which boxes are stacked and wall(4) visibly shown. Fig. 62: Top view of boxes (1) under a sealing sheet (45), with perforation for ventilation and air circulation, arranged with sealing eyes (46) anchored behind the corners of the wall (4) visible and by placing boxes with insert foot (6) on the sealing sheet BE2025 / 0012 20 (45) the latter is pressed in within the walls (4) of the underlying boxes thus forming a forming profile (51) with a lowered level. Fig. 63: Top view of under a sealing sheet (45) provided with sealing eyes (46) stackedboxes of which the wall(4) of the box is visible and the sealing sheet(45) is pressed into the walls(4) of the underlying boxes by placing 5 boxes with insert foot(6) on the sealing sheet(45) the latter is pressed in such a forming profile(51) ​​with a lowered level. Fig.64:Perspective view of sealing sheet(45).

Citation Information

Patent Citations

  • device on four transport boxes, each bordering one another with a corner edge, for their mutual clamping

    CH485565A

  • device for mutual position fixing of at least two containers

    DE20010203U1

  • Device for aligning and securing stacked boxes or containers

    GB2389842A

  • Load collapse preventing sheet for loaded corrugated cardboard box, and corrugated cardboard box loading method using thereof

    JP1997058866A

  • The Storage Box having a connecting clip

    KR200472774Y1