Container device with lifting protection function

CN224797670UActive Publication Date: 2026-09-25CHENGDU MOLO ELECTRIC
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Patent Information

Application Number
CN202521830724.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2026-09-25
Estimated Expiration
2035-08-27

AI Technical Summary

Technical Problem

这些部件本身结构强度有限,且与舱体的连接强度不足以承受吊装过程中的直接作用力

Benefits of technology

[0017]1、本实用新型所提供的一种具有吊装保护功能的集装箱装置,在不需要单独设计、生产、使用对应撑杆吊具的情况下,也能采用吊绳或吊带,安全可靠且不会对箱体凸出结构造成挤压应力变形的吊装保护。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a container device with hoisting protection function, including container main part, the top of container main part is equipped with box top cover, and the box top cover includes galvanized roof board layer, frame structure layer and decorative board layer, and the edge of box top cover is equipped with hoisting protection piece, and hoisting protection piece is flush with the top of container main part. The bottom of container main part is equipped with the hanging point, and the hanging point is linearly symmetrical and is distributed at the bottom of container main part. The side of container main part is equipped with the heat dissipation net door and container door, and the heat dissipation net door and container door are rotatably connected with container main part. A kind of container device with hoisting protection function provided by the utility model can also use lifting rope or lifting belt without needing separate design, production, use corresponding support pole lifting appliance, and it is safe and reliable and will not cause extrusion stress deformation of the hoisting protection of box convex structure.
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Description

Technical Field

[0001] This utility model belongs to the field of container handling technology, specifically relating to a container device with hoisting protection function. Background Technology

[0002] Existing non-standard sized and weight containers have many structural design flaws that are unfavorable for lifting operations, bringing a series of problems to the lifting process.

[0003] 1. From the perspective of the external structure of the container, the protruding water-retaining strips, door locks, and hinges on its walls are all structures that protrude from the surface of the container. These components themselves have limited structural strength, and their connection strength with the container is insufficient to withstand the direct forces during hoisting. Once these components are directly subjected to force during hoisting, they are very prone to deformation or even damage, which will affect the sealing performance and normal use of the container.

[0004] 2. In terms of size and weight, there are significant differences in weight and dimensions between different specifications of containers, and there is a lack of unified standards. This structural diversity makes it difficult for lifting tools designed for one specification of container to be adapted to other specifications.

[0005] 3. At the same time, existing containers are not designed with a universal and convenient lifting connection structure, which means that special strut spreaders must be used during lifting. These strut spreaders are generally composed of rigid struts (such as steel sections or aluminum alloy trusses) and spreaders (wire ropes and slings) to form a lifting frame. Their design and manufacturing must be strictly matched to the weight and size of the corresponding container.

[0006] Due to the aforementioned structural defects, each time a different container is lifted, a corresponding spreader strut must be specially designed and manufactured. These spreader struts are typically quite heavy and must be transported along with the container, increasing transportation costs. During the lifting operation, the spreader strut must first be hoisted onto the top of the container and connected to the main spreader at both ends before lifting can proceed. This undoubtedly increases the complexity and difficulty of the lifting process, making the entire lifting operation cumbersome and significantly increasing production and transportation costs. Utility Model Content

[0007] The purpose of this utility model is to solve the above-mentioned problems and provide a container device that can open the lifting ropes during hoisting to avoid squeezing the container, and also has the function of blocking water and providing hoisting protection.

[0008] To solve the above technical problem, the technical solution of the present utility model is: a container device with hoisting protection function, comprising a container body, a container top cover is arranged on the top of the container body, the container top cover comprises a galvanized top plate layer, a frame structure layer and a decorative plate layer, a hoisting protection member is arranged at the edge of the container top cover, and the hoisting protection member is flush with the top of the container body; hanging points are arranged at the bottom of the container body, and the hanging points are linearly and symmetrically distributed at the bottom of the container body; a heat dissipation mesh door and a container door are arranged on the side of the container body, and the heat dissipation mesh door and the container door are rotatably connected with the container body.

[0009] Preferably, the frame structure layer comprises a top fixing frame and a top fixing support, the top fixing frame comprises first rectangular tubes and second rectangular tubes, two first rectangular tubes and two second rectangular tubes are connected and welded into a "square" shape; the top fixing support comprises third rectangular tubes and fourth rectangular tubes, the third rectangular tubes and fourth rectangular tubes are connected and welded into a "feng (abundant)" shape, and the top fixing support is located in the top fixing frame and welded therewith.

[0010] Preferably, the first rectangular tube is a standard rectangular tube with a size of 120mm*120mm*5mm, and the second rectangular tube is a standard rectangular tube with a size of 80mm*80mm*3mm.

[0011] Preferably, the galvanized top plate layer comprises a galvanized top plate, the galvanized top plate has a length of 2370mm, a width of 1200mm and a thickness of 2.0mm, the galvanized top plate is of a corrugated structure, wherein the wave height is 25mm, the wave width is 91mm, the slope width is 13.5mm, the bending arc angle is R30mm, and the spacing between adjacent corrugations is 91mm.

[0012] Preferably, the decorative plate layer comprises a decorative plate, the decorative plate has a width of 1200mm, a length of 2000mm and a thickness of 2mm.

[0013] Preferably, the hoisting protection member comprises a channel steel and a channel steel sealing plate, both ends of the channel steel are cut with bevel angles to form a triangular shape; both ends of the channel steel sealing plate are of bent structure, and the channel steel sealing plate is welded with the channel steel.

[0014] Preferably, the channel steel sealing plate is processed and manufactured from a weathering steel plate with a thickness of 2.5mm.

[0015] Preferably, the hanging points are of a column structure, the cross section of each hanging point is T-shaped, the number of the hanging points is 8, every 4 hanging points form one hanging point group, and the two hanging point groups are symmetrically distributed on both sides of the container body.

[0016] The beneficial effects of the present utility model are:

[0017] 1. The container device with lifting protection function provided by this utility model can use lifting ropes or slings to provide lifting protection without the need for separate design, production or use of corresponding support rods and lifting tools. It is safe, reliable and will not cause extrusion stress deformation to the protruding structure of the container.

[0018] 2. After production, containers require multiple hoisting operations for transportation and installation. Conventional hoisting methods would be cumbersome and inefficient. This invention integrates the hoisting struts and water-retaining strips into the container body. This eliminates the need for hoisting tools and struts; the container can be directly hoisted using ropes or slings attached to the bottom of the container. This significantly improves the efficiency of hoisting, moving, and transporting prefabricated containers. Attached Figure Description

[0019] Figure 1 This is a structural schematic diagram of a container device with hoisting protection function according to this utility model;

[0020] Figure 2 This is a utility model Figure 1 A schematic diagram of the lateral structure;

[0021] Figure 3 This is a utility model Figure 2 A magnified view of a portion of the image;

[0022] Figure 4 This is a top view of the main body of the container of this utility model.

[0023] Figure 5 This is a utility model Figure 4 A cross-sectional schematic diagram;

[0024] Figure 6 This is a schematic diagram of the frame structure layer of this utility model;

[0025] Figure 7 This is a utility model Figure 4 A magnified view of a portion of the image;

[0026] Figure 8 This is a schematic diagram of the channel steel structure of this utility model;

[0027] Figure 9 This is a schematic diagram of the channel steel sealing plate structure of this utility model;

[0028] Figure 10 This is a structural schematic diagram of the hoisting protective component of this utility model.

[0029] Explanation of reference numerals in the attached drawings: 1. Container body; 2. Container top cover; 21. Galvanized top plate layer; 22. Frame structure layer; 23. Decorative panel layer; 3. Lifting protection components; 4. Lifting point; 11. Ventilation mesh door; 12. Container door; 13. First inspection door; 14. Second inspection door; 15. First water barrier; 16. Second water barrier; 31. Channel steel; 32. Channel steel sealing plate; 221. First rectangular tube; 222. Second rectangular tube; 223. Third rectangular tube; 224. Fourth rectangular tube. Detailed Implementation

[0030] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:

[0031] like Figures 1 to 10 As shown, this utility model provides a container device with lifting protection function, including a container body 1. The top of the container body 1 is provided with a container top cover 2, which includes a galvanized top plate layer 21, a frame structure layer 22, and a decorative panel layer 23. Lifting protection components 3 are provided at the edges of the container top cover 2, and are flush with the top of the container body 1. Lifting points 4 are provided at the bottom of the container body 1, and are linearly and symmetrically distributed at the bottom of the container body 1. The sides of the container body 1 are provided with a ventilation mesh door 11 and a container door 12, which are rotatably connected to the container body 1.

[0032] The ventilation mesh door 11 is connected to the container body 1 via hinges, and the door surface of the ventilation mesh door 11 has a mesh structure. The container door 12 is connected to the container body 1 via existing container door hinges, and the container door 12 is equipped with existing container door locks for opening and locking. The container door 12 serves as the main hatch for personnel to enter and exit the container body 1.

[0033] In this embodiment, the heat dissipation mesh door 11 is a door panel structure made of 2.0mm galvanized steel sheet, and has a 50mm*50mm rectangular through hole. The bottom of the container body 1 is provided with a first inspection door 13 and a second inspection door 14. Both the first and second inspection doors 13 and 14 are connected to the container body 1 via hinges. The first and second inspection doors 13 and 14 have the same structure, both being existing door opening and closing structures. The first and second inspection doors 13 and 14 are used for maintenance operations. The top of the first inspection door 13 is provided with a first water-blocking strip 15, and the second inspection door 14 is provided with a second water-blocking strip 16. Both the first and second water-blocking strips 15 and 16 are elongated structures. The cross-section of the first water-blocking strip 15 is arc-shaped, with the center of the arc facing the inspection door 13. The cross-section of the second water-blocking strip 16 is the same as that of the first water-blocking strip 15, but the length of the first water-blocking strip 15 is greater than the length of the second water-blocking strip 16.

[0034] The frame structure layer 22 includes a top fixing frame and a top fixing support. The top fixing frame comprises a first rectangular tube 221 and a second rectangular tube 222, wherein two first rectangular tubes 221 and two second rectangular tubes 222 are connected and welded into a "□"-shaped structure. The top fixing support includes a third rectangular tube 223 and a fourth rectangular tube 224, the third rectangular tube 223 and the fourth rectangular tube 224 are connected and welded into a "丰"-shaped structure, and the top fixing support is located in the top fixing frame and welded therewith.

[0035] The first rectangular tube 221 is a standard rectangular tube with a dimension of 120mm*120mm*5mm, the cross-sectional dimension parameter of the second rectangular tube 222 is the same as that of the first rectangular tube 221, and the length of the first rectangular tube 221 is greater than the length of the second rectangular tube 222.

[0036] The third rectangular tube 223 is a standard rectangular tube with a dimension of 80mm*80mm*3mm, the cross-sectional dimension parameter of the fourth rectangular tube 224 is the same as that of the third rectangular tube 223, and the length of the third rectangular tube 223 is greater than the length of the fourth rectangular tube 224.

[0037] A plurality of fourth rectangular tubes 224 arranged adjacently and in parallel are sequentially welded onto the third rectangular tube 223. The length of the third rectangular tube 223, the length and number of the fourth rectangular tubes 224, and the distance between adjacent fourth rectangular tubes 224 are all determined according to actual use requirements. In this embodiment, the distance between adjacent fourth rectangular tubes 224 is 1150 mm.

[0038] The galvanized roof plate layer 21 includes a galvanized roof plate, the galvanized roof plate has a length of 2370 mm, a width of 1200 mm, and a thickness of 2.0 mm. The galvanized roof plate has a corrugated structure, wherein the wave height is 25 mm, the wave width is 91 mm, the slope width is 13.5 mm, the bending arc angle is R30 mm, and the spacing between adjacent corrugations is 91 mm.

[0039] The decorative plate layer 23 includes a decorative plate, the decorative plate has a width of 1200 mm, a length of 2000 mm, and a thickness of 2 mm.

[0040] The hoisting protector 3 includes a channel steel 31 and a channel steel sealing plate 32, both ends of the channel steel 31 are cut with 30° bevels to form a triangular shape. Both ends of the channel steel sealing plate 32 are of bent structures, and the channel steel sealing plate 32 is welded to the channel steel 31.

[0041] The channel steel sealing plate 32 is processed and manufactured from a weathering steel plate with a thickness of 2.5 mm. The end bending angle of the channel steel sealing plate 32 is the same as the end bevel angle of the channel steel 31.

[0042] A container underframe is provided at the bottom of the container main body 1, the container underframe includes a first underframe support rod 101 and a second underframe support rod 102, and the container underframe is fixedly connected to the bottom of the container main body 1.

[0043] The first support rod 101 of the base frame is located on top of and fixedly connected to the second support rod 102 of the base frame. The first support rod is a channel steel structure, and the second support rod 102 is a cuboid structure. The ends of the second support rod 102 are inclined, thus making the sides of the second support rod 102 trapezoidal. There are two second support rods 102 arranged symmetrically, and adjacent second support rods 102 are connected by connecting rods. The hanging point 4 is fixedly connected to the second support rod 102 of the base frame.

[0044] The lifting point 4 is a column structure with a "T" shaped cross section. There are 8 lifting points 4 in total, and every 4 lifting points 4 form a group of lifting points. The two groups of lifting points are symmetrically distributed on both sides of the container body 1.

[0045] After container production is completed, multiple lifting operations are required for transportation and installation. Conventional lifting methods would be cumbersome and inconvenient. The lifting protection component 3 of this utility model integrates the traditional container lifting support rod and water-blocking strip into the container body 1. This eliminates the need for lifting tools and support rods during lifting. The container body can be directly lifted by hanging it on the lifting point 4 at the bottom of the container using lifting ropes or slings. Ultimately, this greatly improves the efficiency of lifting, moving, and transporting prefabricated containers.

[0046] Those skilled in the art will recognize that the embodiments described herein are intended to help the reader understand the principles of this invention, and should be understood that the scope of protection of this invention is not limited to such specific statements and embodiments. Those skilled in the art can make various other specific modifications and combinations based on these technical teachings disclosed in this invention without departing from the essence of this invention, and these modifications and combinations are still within the scope of protection of this invention.

Claims

1. A container device with lifting protection function, characterized in that: It comprises a container body (1), a box body top cover (2) is arranged at the top of the container body (1), the box body top cover (2) includes a galvanized top plate layer (21), a frame structure layer (22) and a decorative plate layer (23), a hoisting protection member (3) is arranged at the edge of the box body top cover (2), and the hoisting protection member (3) is flush with the top of the container body (1); suspension points (4) are arranged at the bottom of the container body (1), and the suspension points (4) are linearly and symmetrically distributed at the bottom of the container body (1); a heat dissipation mesh door (11) and a container door (12) are arranged on the side of the container body (1), and the heat dissipation mesh door (11) and the container door (12) are rotatably connected to the container body (1).

2. A container device with lifting protection function according to claim 1, characterized in that: Said frame structure layer (22) comprises a top fixing frame and a top fixing bracket, the top fixing frame comprises a first rectangular tube (221) and a second rectangular tube (222), two first rectangular tubes (221) and two second rectangular tubes (222) are connected and welded into a "mouth" shape; the top fixing bracket comprises a third rectangular tube (223) and a fourth rectangular tube (224), the third rectangular tube (223) and the fourth rectangular tube (224) are connected and welded into a "feng" shape, and the top fixing bracket is located in the top fixing frame and welded thereto.

3. A container device with lifting protection function according to claim 1, characterized in that: Said first rectangular tube (221) is a standard rectangular tube with a dimension of 120mm*120mm*5mm, and said third rectangular tube (222) is a standard rectangular tube with a dimension of 80mm*80mm*3mm.

4. A container device with lifting protection function according to claim 1, characterized in that: Said galvanized top plate layer (21) comprises a galvanized top plate, the galvanized top plate has a length of 2370mm, a width of 1200mm, and a thickness of 2.0mm. The galvanized top plate is of a corrugated structure, wherein the wave height is 25mm, the wave width is 91mm, the slope width is 13.5mm, the bending arc angle is R30mm, and the spacing between adjacent corrugations is 91mm.

5. A container device with lifting protection function according to claim 1, characterized in that: Said decorative plate layer (23) comprises a decorative plate, the decorative plate has a width of 1200mm, a length of 2000mm, and a thickness of 2mm.

6. A container device with lifting protection function according to claim 1, characterized in that: Said hoisting protection member (3) comprises a channel steel (31) and a channel steel sealing plate (32), both ends of the channel steel (31) are cut with bevels to form a triangular shape; both ends of the channel steel sealing plate (32) are of a bent structure, and the channel steel sealing plate (32) is welded to the channel steel (31).

7. A container device with lifting protection function according to claim 1, characterized in that: Said channel steel sealing plate (32) is processed and manufactured from a weathering steel plate with a thickness of 2.5mm.

8. A container device with lifting protection function according to claim 1, characterized in that: Said suspension points (4) are of a column structure, the cross section of the suspension points (4) is a "T" shape, the number of the suspension points (4) is 8, every 4 suspension points (4) form one suspension point group, and the two suspension point groups are symmetrically distributed on both sides of the container body (1).