Heavy-load solid-liquid multipurpose carrying box
By designing a heavy-load solid-liquid multi-purpose transport box with top beam, pallet and support column plug-in connection, the problem of existing transport boxes being easily damaged when carrying excessive cargo is solved, and efficient load-bearing, easy recycling and excellent transportation performance are achieved.
Patent Information
- Application Number
- CN202510530916.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2025-06-17
AI Technical Summary
Existing heavy-load transport boxes are prone to damage when carrying excessive cargo and are not easy to reuse, making it inconvenient to transport and recycling.
A heavy-load solid-liquid multi-purpose carrier box is designed, which adopts the top beam with transverse metal reinforcement ribs. The pallet and the top beam are connected by plugging and unplugging through supporting columns. The bottom of the pallet is equipped with a raised reinforcement structure to cooperate with the Sichuan strips to achieve integrated stress. The box body is integrated stress from the top to the bottom, and has strong overall load-bearing capacity.
It realizes efficient cargo bearing, the box structure is detachable, easy to recycle and reuse, excellent transportation performance, strong collision resistance and low cost.
Smart Images

Figure CN120156776A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of heavy-duty solid-liquid transportation, and particularly to a heavy-duty solid-liquid multi-purpose carrier box. Background Art
[0002] The statements in this part are only to provide background art related to the disclosure of the present invention, and do not necessarily constitute prior art.
[0003] For the transportation boxes for heavy-duty transportation of non-hazardous liquids, powders and particles, they are usually made of wooden strip support frames and plastic or metal frame supports, and are used for the gravity-bearing transportation of various agricultural and sideline food products and other goods.
[0004] Generally speaking, due to the material characteristics, the heavy-duty solid-liquid multi-purpose carrier box made of wooden strip support frames has a weak bearing capacity, and is only suitable for the transportation and bearing of lighter goods. For overweight goods, the wooden strips are easy to break or be damaged. The transportation box supported by plastic has poor anti-breakage and anti-collision effects.
[0005] Moreover, the heavy-duty transportation boxes made of the above several materials are not easy to be reused, and are not very convenient for individual transportation and recycling. Summary of the Invention
[0006] In order to overcome the deficiencies of the above-mentioned prior art, the present invention provides a heavy-duty solid-liquid multi-purpose carrier box that can meet the transportation of solid substances suitable for pallet boxes, and can also be adapted to the bearing of liquid property substances such as non-hazardous liquids, powders, and particles with a slight modification. The bearing capacity is transmitted from the transverse metal reinforcing ribs of the top beam to the support columns, trays and crossbars in sequence to achieve integrated force application. The overall bearing capacity is strong, and it can be widely used. It can meet the transportation of solid substances and the bearing of liquid property substances such as non-hazardous liquids, powders, and particles. Moreover, it is convenient for assembly and storage, the volume is flexibly adjustable, the cost is low, and it has strong anti-collision performance and good transportation performance.
[0007] The technical solution adopted by the present invention is: a heavy-duty solid-liquid multi-purpose carrier box, including a box body, a top beam, a tray and a crossbar. The top beam is provided with transverse metal reinforcing ribs inside; the tray and the top beam are connected by plugging and unplugging through a plurality of support columns, and a convex reinforcing structure adapted to the support columns is further provided at the bottom of the tray corresponding to the support columns; the crossbar is provided with a matching crossbar support part and a concave reinforcing matching part corresponding to the convex reinforcing structure.
[0008] In this technical solution, an extension part matching with the support column is arranged at the bottom of the convex reinforcing structure, the extension part extends to the bottom of the concave reinforcing matching part, and a plurality of circumferentially arranged convex reinforcing ribs are arranged between the extension part and the tray.
[0009] In this technical solution, a metal reinforcing strip is further provided at the bottom of the tray, and a metal tube of the cross bar is further provided at the bottom of the cross bar where it is located at the concave reinforcing mating part. The metal reinforcing strip and the metal tube of the cross bar are provided to enhance the top load-bearing limit of the tray and the cross bar.
[0010] In this technical solution, a water leakage hole is provided at the bottom of the extension part for draining foreign objects entering the tray.
[0011] In this technical solution, a cross-shaped anti-collision reinforcing strip is provided around the outer edge of the tray to enhance the anti-collision function on the outer side of its bottom.
[0012] In this technical solution, bottom depressions that cooperate in opposite directions are provided at the bottom of the top beam, and a bundling strap is provided above the bottom depressions for fixing the support columns in the bottom depressions, or a good transportation effect can be maintained by directly sleeving a storage bag outside the stored tray and support columns.
[0013] In this technical solution, at least one locking hole is provided on each side of the tray, and the locking holes are used for the loading bag inserted into the box body to be bound to the top beam and the tray.
[0014] In this technical solution, a surface groove is provided on the upper surface of the tray near one side of the support column for inserting the box body. At this time, the box body is a fence, which is used for transporting non-liquid goods.
[0015] In this technical solution, the transverse metal reinforcing ribs and the support columns are steel pipes.
[0016] In this technical solution, an equipment compartment is provided at the bottom of the cross bar corresponding to the bottom of the support column for accommodating equipment such as labels and positioning equipment.
[0017] In this technical solution, the box body is of a fence structure.
[0018] In this technical solution, the box body is a loading bag.
[0019] Compared with the prior art, the beneficial effects of the present invention are:
[0020] 1. Good detachability and strong recyclability: The heavy-duty solid-liquid multi-purpose transport box with an integral structure is designed such that the tray and the top beam are connected by inserting and pulling out several support columns, and the bottom of the tray is integrally connected to the cross bar through a reinforcing connection structure. When parts or local parts of the tray, top beam, cross bar, and support columns are damaged, corresponding parts of other damaged heavy-duty solid-liquid multi-purpose transport boxes of the same specification can be directly replaced. At the same time, sufficient spare parts of the tray, top beam, cross bar, and support columns can be appropriately reserved for repair and replacement at any time. Compared with the traditional IBC plastic barrel, after the present invention is disassembled and recycled, more products can be stored in the same-size vehicle, that is, the recycling ratio is higher, saving freight costs.
[0021] 2. Good transportation performance: A bundling strap is provided above the storage groove to fix the support columns in the storage groove, or a storage bag can be directly put on the outside of the stored tray and support columns to maintain good transportation effect.
[0022] 3. The load-bearing capacity is sequentially transmitted from the transverse metal reinforcing ribs of the top beam to the support columns, the tray and the cross bars. These structures are connected and fastened to each other to achieve integral stress. The box body is stressed integrally from top to bottom and from bottom to top, and the overall load-bearing capacity is strong.
[0023] 4. A bulkhead structure and a loading bag box body are designed, which can be assembled into two structures. After inserting the support columns between the top beam and the tray and putting on load-bearing bags such as woven bags and mesh bags, it can be used to load non-dangerous liquids, powders, granules and other liquid substances. It can also directly insert the bulkhead structure and cover the top cover to meet the transportation of solid substances.
[0024] 5. Use light-weight and low-cost materials such as steel pipes and plastics, which are environmentally friendly and recyclable materials, to manufacture the heavy-duty solid-liquid multi-purpose transport box.
[0025] 6. It has strong anti-collision performance: A circle of cross-shaped anti-collision reinforcement strips is provided at the outer edge of the tray to enhance the anti-collision function of the outer bottom.
[0026] 7. The volume is conveniently adjustable: By adjusting the length of the support columns and the height of the bulkhead structure, the volume and load-bearing capacity of the entire heavy-duty solid-liquid multi-purpose transport box can be flexibly adjusted.
[0027] 8. The box body is a bulkhead structure or a loading bag, and the base is assembled with a common tray and cross bars. Two types of lids are respectively provided. The base assembled with the tray and cross bars can meet the use of the above two box bodies, and can also be used alone as an ordinary tray.
[0028] In summary, the heavy-duty solid-liquid multi-purpose transport box of the present invention has good disassembly performance and strong recyclability. Its load-bearing capacity is sequentially transmitted from the transverse metal reinforcing ribs of the top beam to the support columns, the tray and the cross bars to achieve integral stress. The overall load-bearing capacity is strong and it can be widely used. It can meet the transportation of solid substances and the loading of non-dangerous liquids, powders, granules and other liquid substances. And the assembly, storage and transportation are convenient, the volume is flexibly adjustable, the cost is low, and it has strong anti-collision performance and good transportation performance. Brief Description of the Drawings
[0029] Figure 1 It is a three-dimensional structure diagram of an embodiment of the heavy-duty solid-liquid multi-purpose transport box;
[0030] Figure 2 It is Figure 1 Another three-dimensional structure diagram of the embodiment in another direction;
[0031] Figure 3 is the enlarged view of part A of Figure 2 ;
[0032] Figure 4 is Figure 1 the schematic structural view after the implementation example of the hidden tray of
[0033] Figure 5 is the three-dimensional structural diagram of an implementation example where the box body 60 is for the loading bag 90;
[0034] Figure 6 is Figure 5 the enlarged view of part B of the implementation example of
[0035] Figure 7 is Figure 5 the enlarged view of part C of the implementation example of
[0036] Figure 8 is the three-dimensional structural diagram of an implementation example of the strip 40;
[0037] Figure 9 is the three-dimensional structural diagram of an implementation example where the box body 60 is for the gusset structure 80;
[0038] Figure 10 is Figure 1 the three-dimensional structural diagram of the implementation example with the loading bag 90;
[0039] Figure 11 is the three-dimensional structural diagram of an implementation example where the support column 20 of the heavy-duty solid-liquid multi-purpose transport box is received between the top beam and the tray 30;
[0040] Figure 12 is the three-dimensional structural diagram of an implementation example of the top beam 10;
[0041] Figure 13 is Figure 12 the three-dimensional structural diagram of the transverse metal reinforcing rib 11 inside the top beam 10 of the implementation example of
[0042] Figure 14 is the detailed structural diagram of the bottom of the tray 30;
[0043] Figure 15 is the partial connection structural diagram of the tray 30 and the strip 40;
[0044] Figure 16 is Figure 8 the partial enlarged view of
[0045] Figure 17 is the cross-sectional view at the connection position of the metal reinforcing rib 35 and the support column 20;
[0046] Wherein: 10 - top beam, 101 - support hole, 102 - limit concave / convex structure, 103 - bottom depression; 11 - transverse metal reinforcing rib, 12 - receiving groove;
[0047] 20 - support column;
[0048] 30 - tray, 31 - surface groove, 32 - convex reinforcing structure, 321 - extension part, 322 - water leakage hole; 33 - cross-shaped anti-collision reinforcing strip, 34 - extension part reinforcing rib, 35 - reinforcing metal strip;
[0049] 40 - cross bar, 41 - cross bar support part, 42 - concave reinforcing mating part, 43 - cross bar reinforcing rib, 44 - cross bar metal pipe, 45 - equipment bin, 46 - toothed meshing part;
[0050] 50 - binding strap, 60 - box body, 70 - lock hole, 80 - enclosure structure, 90 - loading bag, 100 - top cover, 110 - pressure belt. Detailed implementation manners
[0051] The embodiments of the present invention will be described in detail below. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements with the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present invention and should not be construed as a limitation to the present invention.
[0052] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "front", "rear", "left", "right", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the indicated combination or element must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present invention. In addition, during the description of the embodiments of the present invention, the positional relationships of "upper", "lower", "front", "rear", "left", "right", etc. of all the devices in the drawings are based on Figure 1 as the standard.
[0053] Such as Figure 1 and Figure 2As shown in the figure, the overload solid-liquid multi-purpose transport box includes a box body 60, and also includes a top beam 10, a plurality of support columns 20, a tray 30, and a cross bar 40. A transverse metal reinforcing rib 11 is arranged inside the top beam 10; the tray 30 and the top beam 10 are connected by inserting and pulling through a plurality of support columns 20, and a convex reinforcing structure 32 adapted to the support columns 20 is further arranged at the bottom of the tray 30 corresponding to the support columns 20; the cross bar 40 is provided with a matching cross bar support part 41 and a concave reinforcing matching part 42 corresponding to the convex reinforcing structure 32. With this structural design, the side force-bearing columns formed by the top beam 10 and the support columns 20 and the tray 30 and the bottom cross bar 40 can be completely connected into an integral force-bearing structure through a plurality of support columns 20. The load-bearing capacity is sequentially transmitted from the transverse metal reinforcing rib 11 of the top beam 10 to the support columns 20, the tray 30, and the cross bar 40. These several structures are connected and fastened to each other to achieve integral force-bearing, and the box body bears force integrally from top to bottom and from bottom to top, with strong overall load-bearing capacity.
[0054] Moreover, this design can have two types of box bodies, namely a side plate structure and a loading bag, and can be assembled into two structures. After inserting support columns between the top beam and the tray and sleeving load-bearing bags such as woven bags and mesh bags, non-dangerous liquids, powders, granular and other liquid property substances can be loaded. It is also possible to directly insert the support columns and then insert the side plate structure inside the support columns and cover the top cover to meet the transportation of solid substances.
[0055] In at least one embodiment, as Figure 2 and Figure 3 、 Figure 7 、 Figure 15As shown, an extension part 321 matching the support column is provided at the bottom of the convex reinforcement structure 32. The extension part 321 extends to the bottom of the concave reinforcement matching part 42, and a number of convex reinforcement ribs 322 arranged circumferentially are provided between the extension part 321 and the tray 30, which play a role in limiting and strengthening, and can ensure that the Aopai box can carry heavier goods. In a specific setting, the convex reinforcement structure 32 is a structure extended from the tray 30, which is used to connect and fix the channel bar. It can be seen from the small round holes on both sides of the structure of the convex reinforcement structure 32 that it is used to cooperate with the protrusions on both sides of the channel bar 40 to form a dead buckle, so that the channel bar 40 and the tray 30 will not fall off after being assembled, and at the same time, the force received can be transmitted to the channel bar 40 and then to the ground, forming a certain force transmission. The extension part 321 is used to accommodate, carry and limit the support column 20, and at the same time, other structures cooperating with the extension part 321 are all for stabilizing and strengthening this structure. If there is only the extension part 321 alone, when the support column is under considerable pressure and shakes, the structure of the extension part 321 alone is very fragile, which will cause damage to this part of the base and destroy the overall force transmission. In order to support the extension part 321, its cooperating reinforcement structures are all in a mesh or sun shape, and the length of the extension part 321 is designed to directly contact the channel bar 40 (which can be made of plastic). The above-mentioned parts are in direct contact to form a whole, so as to ensure stable force transmission up and down and conduct the force, so that the product can meet the requirements of high load-bearing and high weight-bearing multi-layer stacking.
[0056] In order to further achieve better strengthening to improve the bearing strength, a channel bar reinforcement rib 43 and a tooth-shaped meshing part 46 for cooperating with the support column 20 for snap-fitting and positioning can be provided inside the concave reinforcement matching part 42. For the design of the tooth-shaped meshing part 46, a cooperating meshing structure needs to be designed on the support column 20 at the same time, which will not be elaborated separately here. This can be seen in Figure 8 the enlarged view Figure 16 It can be seen from the figure. The channel bar reinforcement rib 43 and the tooth-shaped meshing part 46 are the reinforcement ribs of the channel bar depression. The reason for making such a structure is mainly that it is more convenient for mold processing and simple to form, and at the same time, it can also improve the strength. The same is true for the reinforcement ribs inside 321. One of the reasons for the tooth-shaped meshing part 46 reinforcement rib is convenient for processing, and the other is to improve the anti-collision strength of the corners of the channel bar where the structure is located.
[0057] In at least one embodiment, as Figure 4 and Figure 17 shown, a transverse metal reinforcement rib 11 is provided in the top beam 10, and a metal reinforcement strip 35 is also provided at the bottom of the tray 30. The metal reinforcement strip 35 is provided to enhance the top load-bearing limit of the tray 30 and the channel bar 40. When the tray 30 is loaded with items, it is stressed to prevent deformation and improve its overall bearing strength. At the same time, referring to Figure 5 and Figure 7As shown, a strip metal tube 44 is provided at the bottom of the strip 40 located at the recessed reinforcing fitting portion 42, which is used to enhance the overall load-bearing strength of the strip 40 and construct a solid strip 40, thereby performing multi-structural reinforcement on the heavy-duty solid-liquid multi-purpose transport box in the entire structure, thereby improving its overall load-bearing strength, increasing its service life, and reducing the cost of use.
[0058] In at least one embodiment, Figure 3 As shown, a leakage hole 322 is provided at the bottom of the extension portion 321. The structure of the leakage hole 322 can be a regular or irregular round hole, a square hole, etc., and is designed to be used to empty foreign matter that enters the bottom of the tray 30, thereby keeping the bottom of the tray 30 clean and tidy. There is no need to turn the entire tray over for cleaning, and cleaning is convenient, thereby facilitating repeated use of the heavy-load solid-liquid multi-purpose transport box.
[0059] In at least one embodiment, Figure 2 and Figure 3 As shown, a circle of cross-shaped anti-collision reinforcement strips 33 are provided at the outer edge of the tray 30 to enhance the anti-collision function of the outer side of the bottom thereof, and the inner part may not be reinforced, so as to reduce the total weight of the heavy-load solid-liquid multi-purpose transport box as much as possible on the basis of load bearing; Figure 14 As shown, a plurality of circumferential extension reinforcement ribs 34 are also provided on the outside of the extension portion 321, which are used to further realize the connection strength between the support column 20 and the pallet 30 and the river bar 40, thereby enhancing the overall bearing strength of the entire heavy-duty solid-liquid multi-purpose transport box.
[0060] In at least one embodiment, Figure 12 As shown, a bottom depression 103 is provided at the bottom of the top beam 10 in a relative direction, which is used to dismantle the support column 20 for transportation when the Austrian box is loaded with items. The folded state during transportation is shown in FIG. Figure 11 As shown, the entire heavy-load solid-liquid multi-purpose transport box can be fully folded, thereby improving the efficiency of transportation.
[0061] In at least one embodiment, Figure 12 As shown, a pressure belt 110 is arranged above the bottom depression 103 to limit the jumping of the support column 20 after being laid flat, and is used to fix the support column 20 in the bottom depression 103, or directly put a storage bag on the outside of the stored pallet 30 and the support column 20 to maintain a good transportation effect. The strapping belt 50 provided with the loading bag 90 is used to fix it on the top beam 10.
[0062] In at least one embodiment, Figure 10As shown, at least one locking hole 70 is provided on each side of the top beam 10 and the pallet 30, and the locking hole 70 is provided for the loading bag inserted into the box body 60 to be bound to the top beam 10 and the pallet 30. When in use, the strapping belt 50 of the loading bag passes through the hole position of the support hole on the long side to self-lock to prevent jumping during transportation. The strapping belt 50 can be replaced by Velcro, ordinary strapping belt or other strapping belt.
[0063] In at least one embodiment, Figure 1 As shown, the upper surface of the tray 30 is provided with a surface groove 31 near the support column 20 for plugging into the box 60. At this time, the box 60 is a panel structure diagram, as shown in FIG. Figure 9 As shown, it is used to carry non-liquid cargo.
[0064] In at least one embodiment, the transverse metal reinforcement rib 11, the support column 20, the metal reinforcement strip 35, and the cross-section metal tube 44 are all designed as steel tubes, and ready-made steel tube models can be selected for processing, and the overall material cost and processing cost are relatively low. Figure 13 As shown, the top beam 10 is provided with a plurality of support holes 101 for inserting support columns 20 for support. Figure 1 As shown, a limiting concave / convex structure 102 can also be set on the top beam 10 to better place the storage belt 50. A bottom depression 103 is also set at the bottom of the top beam 10 to observe the number of steel pipes during recycling and ensure complete recycling.
[0065] In at least one embodiment, Figure 5 and Figure 6 As shown, an equipment compartment 45 is provided at the bottom of the strip 40 corresponding to the bottom of the support column 20 for accommodating labels, positioning equipment, other electronic equipment or documents and other equipment.
[0066] In at least one embodiment, the box body 60 is a panel structure 80, such as Figure 9 As shown, this type of box is suitable for transporting solid goods. When in use, it is only necessary to insert the enclosure structure 80 firmly and cover the top cover 100 on the top of the enclosure before use.
[0067] In at least one embodiment, the box 60 is a carrying bag 90, such as Figure 5 As shown, this type of box is suitable for loading most non-hazardous liquids, particles, powders, etc. When the box body 60 is a loading bag 90, it is generally covered with a top beam 10, which can be used after being bound or covered. The top beam 10 can be bound with the strapping tape 50 provided with the loading bag 90, and the strapping tape 50 can be replaced with Velcro or ordinary strapping tape or other strapping tapes.
[0068] The embodiments disclosed in the present invention are preferred embodiments, but not limited thereto. Those of ordinary skill in the art can easily understand the spirit of the present invention based on the above embodiments and make different extensions and changes. As long as they do not depart from the spirit of the present invention, they are within the protection scope of the present invention.
Claims
1. A heavy-load solid-liquid multi-purpose transport box, comprising a box body (60), characterized in that: include: Top beam (10); as well as A tray (30), wherein the tray (30) and the top beam (10) are plug-in connected via a plurality of support columns (20), and a protruding reinforcement structure (32) adapted to the support column (20) is provided at the bottom of the tray (30) corresponding to the support column (20); and The strip (40) is provided with a matching strip support portion (41) and a recessed reinforcement matching portion (42) corresponding to the raised reinforcement structure (32).
2. The heavy-duty solid-liquid multi-purpose transport box according to claim 1, characterized in that: An extension portion (321) matching the support column is provided at the bottom of the raised reinforcement structure (32), the extension portion (321) extends to the bottom of the recessed reinforcement matching portion (42), and a plurality of raised reinforcement ribs (322) arranged circumferentially are provided between the extension portion (321) and the tray (30).
3. The heavy-duty solid-liquid multi-purpose transport box according to claim 2, characterized in that: A transverse metal reinforcement rib (11) is provided in the top beam (10), a metal reinforcement strip (35) is provided at the bottom of the tray (30), and a strip metal tube (44) is provided at the bottom of the strip (40) located at the recessed reinforcement matching portion (42).
4. The heavy-duty solid-liquid multi-purpose transport box according to claim 3, characterized in that: A water leakage hole (322) is provided at the bottom of the extension portion (321).
5. The heavy-duty solid-liquid multi-purpose transport box according to any one of claims 1 to 4, characterized in that: A circle of cross-shaped anti-collision reinforcement strips (33) is provided at the outer edge of the tray (30).
6. The heavy-duty solid-liquid multi-purpose transport box according to claim 1, characterized in that: A bottom recess (103) that matches in opposite directions is provided at the bottom of the top beam (10), and a binding belt (50) is provided above the bottom recess (103).
7. The heavy-duty solid-liquid multi-purpose transport box according to claim 1, characterized in that: At least one locking hole (70) is provided on each side of the pallet (30), and the locking hole (70) is used to bind a loading bag inserted into the box body (60) to the top beam (10) and the pallet (30).
8. The heavy-duty solid-liquid multi-purpose transport box according to claim 1, characterized in that: A surface groove (31) is provided on the upper surface of the tray (30) near the support column (20) for plugging into the box body (60).
9. The heavy-duty solid-liquid multi-purpose transport box according to claim 1, characterized in that: The transverse metal reinforcement ribs (11) and the support column (20) are steel pipes, and an equipment bin (45) is provided at the bottom of the strip (40) corresponding to the bottom of the support column (20).
10. The heavy-duty solid-liquid multi-purpose transport box according to claim 5, characterized in that: The box body (60) is a panel structure (80).
11. The heavy-duty solid-liquid multi-purpose transport box according to any one of claims 1 to 4 or any one of claims 6 to 9, characterized in that: The box body (60) is a loading bag (90).
Citation Information
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