Container elevating supporting structure
The design of the container elevated support structure solves the problems of container offset and falling, inconvenience in disassembly, and easy deformation of C-shaped channel steel. It realizes the centered placement of containers, convenient transportation, and cable fixation, thereby improving service life and transportation efficiency.
Patent Information
- Application Number
- CN202520550181.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-26
AI Technical Summary
Existing container support structures have problems such as the risk of container shifting and falling during use, difficulty in disassembly and transportation, and easy deformation of C-shaped channel steel.
A container support structure was designed, which adopts a combination of side triangular brackets, bottom beams, diagonal bracing beams, top beams and positioning diagonal beams. It is detachable by bolt connection, and combined with rollers and spring cylinders to ensure that the container is placed in the center and moved easily. The first channel steel and the second channel steel are used to increase the strength.
It enables the container to be placed in the center, improves the transportation efficiency of the supporting structure, extends its service life, and provides a fixing device for the cable, preventing the cable from being scattered on the ground.
Smart Images

Figure CN223836302U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mechanical tool technology, specifically to a container elevating support structure. Background Technology
[0002] The statements herein provide only background information related to this invention and do not necessarily constitute prior art.
[0003] During routine maintenance and upkeep of containers, several trestles are installed under the container. The container is then lifted onto the trestles using hoisting equipment, allowing the trestles to support the container from below and thus preventing it from falling. However, since these trestles used for container repair are generally quite large and inconvenient to move, some companies have gradually added rollers and other equipment to the trestles to facilitate their movement.
[0004] The structure of the trestle can refer to the mold repair trestle with a moving device in the announcement number CN219633703U. The rollers are equipped with brake springs, so that the trestle body can be moved easily by means of the moving device. When a mold is placed on the trestle body, the trestle body cannot move under the gravity of the mold. Furthermore, since the bottom of the support legs is also equipped with brake suction cups, the position of the trestle body is more fixed when a mold is placed on it.
[0005] (1) The container is wide and there is no limiting or guiding structure on the surface of the existing trestles. After the container is suspended and placed on the trestles, there is a situation where the container cannot be placed in the center on the trestles, which leads to the risk of the container shifting and falling.
[0006] (2) The above-mentioned trestle structure can move within a short distance. Due to the large volume and weight of the container, the trestle design size is large. Multiple trestles are required when supporting the container. When moving back and forth over a long distance, the entire trestle needs to be hoisted onto the transport vehicle by a hoisting machine. Since the hoisting machine has a certain volume, the transport vehicle can only transport a small number of trestles at a time. The existing trestle structure has the problem of not being able to be disassembled.
[0007] (3) The existing trestle top beam uses C-shaped channel steel. The C-shaped channel steel is arranged with the opening facing down and the container is placed on top of the C-shaped channel steel. If the container is heavy, after long-term use, the C-shaped channel steel will bend downward, affecting the service life of the trestle. Utility Model Content
[0008] The purpose of this invention is to provide a container support structure that can solve at least one of the above-mentioned technical problems.
[0009] To achieve the above objectives, this utility model proposes a container support structure, including a side triangular frame, a bottom beam, a diagonal brace beam, a top beam, and a positioning diagonal beam. The side triangular frame has a groove, and the top beam is fixedly placed in the groove by bolts. The positioning diagonal beam is welded and fixed at both ends of the top beam. The bottom beam is fixedly installed below the triangular frame by bolts. The diagonal brace beam is fixedly installed between the bottom beam and the top beam by bolts. Several rollers are installed on the side triangular frame by springs.
[0010] Further configured, the top beam includes a first channel steel, which is fixed in a groove by bolts, and a second channel steel is disposed inside the first channel steel.
[0011] Further, an anti-collision plate is fixed to the top of the second channel steel with bolts.
[0012] Further configuration involves fixing connecting rods between the side triangular frames, with the connecting rods used to install the diagonal bracing beam and the bottom beam via bolts.
[0013] Further configuration involves connecting rods at both ends of the bottom beam via support plates.
[0014] Further configured, the two ends of the diagonal brace beam are connected to the connecting rod and the top beam respectively through the bearing plate.
[0015] Further configured, the receiving plate is connected to the connecting rod by bolts, and the receiving plate is connected to the top beam by bolts.
[0016] A further configuration is provided, wherein spring cylinders are fixedly installed on the sidewalls of the connecting rod and on both sides of the bottom beam, and springs are provided inside the spring cylinders.
[0017] A further configuration is provided, wherein a support leg is fixedly installed below the spring, and a roller is installed at the end of the support leg.
[0018] A further configuration is provided, wherein the side tripod is provided with a mounting plate, and hooks are mounted on the mounting plate.
[0019] The beneficial effects of one or more of the above technical solutions:
[0020] (1) By welding positioning inclined beams at both ends of the top beam of the support structure, the container is suspended by the equipment and then falls between the positioning inclined beams under the guidance of the positioning inclined beams, ensuring that the container is placed in the center on the support structure.
[0021] (2) A detachable structure is set up. In this scheme, the side triangular frame, bottom beam, diagonal brace beam and top beam are all connected by bolts. Before transportation, the support structure is disassembled into the side triangular frame, bottom beam, diagonal brace beam and top beam and then stacked in the transport vehicle. The transport vehicle can transport multiple support structures at one time.
[0022] (3) By placing the first channel steel and the second channel steel vertically, and then fitting the second channel steel into the first channel steel, the vertically placed first channel steel and the second channel steel are less likely to deform, and the fitted first channel steel and the second channel steel further increase the strength.
[0023] (4) When maintaining a container, various cables on the container can be wrapped around and placed on hooks to prevent them from falling to the ground. Attached Figure Description
[0024] The accompanying drawings, which form part of this application, are used to provide a further understanding of this application. The illustrative embodiments of this application and their descriptions are used to explain this application and do not constitute a limitation thereof.
[0025] Figure 1 This is a structural schematic diagram of Embodiment 1 of the present utility model.
[0026] Figure 2 This is a schematic diagram of the structure of Embodiment 2 of this utility model.
[0027] In the diagram, 1 is the side triangular frame; 2 is the bottom beam; 3 is the diagonal brace beam; 4 is the top beam; 5 is the positioning diagonal beam; 6 is the groove; 7 is the bolt; 8 is the connecting rod; 9 is the positioning diagonal beam; 10 is the roller; 11 is the first channel steel; 12 is the second channel steel; 13 is the anti-collision plate; 14 is the receiving plate; 15 is the spring cylinder; 16 is the support leg; 17 is the hook; and 18 is the mounting plate. Detailed Implementation
[0028] The specific implementation of this embodiment will now be described with reference to the accompanying drawings.
[0029] Example 1
[0030] Reference Figure 1 This utility model proposes a container frame support structure, including a side triangular frame 1, a bottom beam 2, a diagonal brace beam 3, a top beam 4, and a positioning diagonal beam 95. The side triangular frame 1 has a groove 6, and the top beam 4 is fixedly placed in the groove 6 by bolts 7. The positioning diagonal beam 95 is welded and fixed at both ends of the top beam 4. The bottom beam 2 is fixedly installed below the triangular frame by bolts 7. The diagonal brace beam 3 is fixedly installed between the bottom beam 2 and the top beam 4 by bolts 7. The side triangular frame 1 is equipped with several rollers 10 by springs and is connected by existing high-strength M8 bolts 7.
[0031] The top beam 4 includes a first channel steel 11, which is fixed in the groove 6 by bolts 7. A second channel steel 12 is installed in the first channel steel 11. An anti-collision plate 13 is fixed to the top of the first channel steel 11 by bolts 7. The anti-collision plate 13 is made of existing PP material for protection, so as to avoid direct contact between the lower side wall of the container and the first channel steel 11 and cause damage to the metal surface.
[0032] A connecting rod 8 is fixedly installed between the side triangular brackets 1. The connecting rod 8 is used to install the diagonal brace beam 3 and the bottom beam 2 through bolts 7. The two ends of the bottom beam 2 are connected to the connecting rod 8 through the bearing plate 14. The bearing plate 14 increases the contact area between the end of the bottom beam 2 and the connecting rod 8.
[0033] The two ends of the diagonal bracing beam 3 are connected to the connecting rod 8 and the top beam 4 respectively through the support plate 14. The support plate 14 is connected to the connecting rod 8 through the bolt 7, and the support plate 14 is connected to the top beam 4 through the bolt 7. The support plate 14 increases the contact area between the end of the diagonal bracing beam 3 and the connecting rod 8 or the top beam 4, and at the same time reserves space for the installation of the bolt 7.
[0034] Spring cylinders 15 are fixedly installed on the side wall of the connecting rod and on both sides of the bottom beam 2. Springs are installed inside the spring cylinders 15. Support legs 17 are fixedly installed below the springs. Rollers 10 are installed at the ends of the support legs 17. A total of 4 lifting rollers 10 are provided to facilitate the movement of the support. When a container is placed on the support body, the support body cannot move under the weight of the container.
[0035] The side tripod 1 is equipped with a mounting plate 18, and a hook 17 is installed on the mounting plate 18. When maintaining the container, various cables on the container can be wrapped and draped over the hook 17 to prevent the cables from falling to the ground.
[0036] The installation steps for the support structure are as follows:
[0037] First, the connecting rods 8 of the two side triangular frames 1 are installed with nuts through the receiving plate 14 to fix the bottom beam 2 between the two side triangular frames 1. Then, one end of the diagonal brace beam 3 is connected to the first channel steel 11 of the top beam 4 through the receiving plate 14, and the first channel steel 11 and the second channel steel 12 are fixed by bolts 7. The other end of the diagonal brace beam 3 is connected to the connecting rod 8 through the receiving plate 14.
[0038] Example 2
[0039] Reference Figure 2 The system includes a side triangular frame 1, a bottom beam 2, a diagonal brace beam 3, a top beam 4, and a positioning diagonal beam 95, all welded together. The side triangular frame 1 has a groove 6, in which the top beam 4 is welded and fixed. The positioning diagonal beam 95 is welded and fixed at both ends of the top beam 4. The bottom beam 2 is welded and fixed at the bottom of the triangular frame. The diagonal brace beam 3 is welded and fixed between the bottom beam 2 and the top beam 4. The side triangular frame 1 is equipped with several rollers 10 via springs.
[0040] The top beam 4 includes a first channel steel 11, which is fixed in the groove 6 by bolts 7. A second channel steel 12 is installed in the first channel steel 11. An anti-collision plate 13 is fixed to the top of the first channel steel 11 by bolts 7. The anti-collision plate 13 is made of existing PP material for protection, so as to avoid direct contact between the lower side wall of the container and the first channel steel 11 and cause damage to the metal surface.
[0041] A connecting rod 8 is fixedly installed between the side triangular frames 1. The connecting rod 8 is welded to the inclined brace beam 3 and the bottom beam 2. The two ends of the bottom beam 2 are connected to the connecting rod 8 through the bearing plate 14, which increases the contact area between the end of the bottom beam 2 and the connecting rod 8.
[0042] The two ends of the diagonal bracing beam 3 are connected to the connecting rod 8 and the top beam 4 respectively through the receiving plate 14. The receiving plate 14 is welded to the connecting rod 8 and the top beam 4. The receiving plate 14 increases the welding area between the end of the diagonal bracing beam 3 and the connecting rod 8 or the top beam 4.
[0043] Spring cylinders 15 are fixedly installed on the side wall of the connecting rod and on both sides of the bottom beam 2. Springs are installed inside the spring cylinders 15. Support legs 17 are fixedly installed below the springs. Rollers 10 are installed at the ends of the support legs 17 for four lifting rollers 10 to facilitate the movement of the support. When a container is placed on the support body, the support body presses down on the springs inside the spring cylinders 15 under the weight of the container, so that the side tripod 1 contacts the ground and the rollers 10 cannot move.
[0044] The side tripod 1 is equipped with a mounting plate 18, and a hook 17 is installed on the mounting plate 18. When maintaining the container, various cables on the container can be wrapped and draped over the hook 17 to prevent the cables from falling to the ground.
[0045] Although the specific embodiments of the present utility model have been described above in conjunction with the accompanying drawings, this is not intended to limit the scope of protection of the present utility model. Those skilled in the art should understand that various modifications or variations that can be made by those skilled in the art without creative effort based on the technical solution of the present utility model are still within the scope of protection of the present utility model.
Claims
1. A container elevating support structure, characterized in that, It includes a side tripod, a base beam, a diagonal brace beam, a top beam, and a positioning diagonal beam. The side tripod has a groove, and the top beam is fixed in the groove by bolts. The positioning diagonal beams are welded to both ends of the top beam. The base beam is fixed to the bottom of the tripod by bolts. The diagonal brace beam is fixed between the base beam and the top beam by bolts. The side tripod is equipped with several rollers by springs.
2. The container frame support structure according to claim 1, characterized in that, The top beam includes a first channel steel, which is fixed in a groove by bolts, and a second channel steel is provided inside the first channel steel.
3. The container frame support structure according to claim 1, characterized in that, The top of the second channel steel is fixed with a shockproof plate by bolts.
4. The container scaffolding support structure according to claim 1, characterized in that, A connecting rod is fixed between the side triangular brackets, and the connecting rod is used to install the diagonal bracing beam and the bottom beam.
5. The container frame support structure according to claim 1, characterized in that, The bottom beam is connected to connecting rods at both ends via bearing plates.
6. The container scaffolding support structure according to claim 5, characterized in that, The two ends of the diagonal brace are connected to the connecting rod and the top beam through the bearing plate, respectively.
7. The container scaffolding support structure according to claim 5, characterized in that, The receiving plate is connected to the connecting rod by bolts, and the receiving plate is connected to the top beam by bolts.
8. The container scaffolding support structure according to claim 5, characterized in that, Spring cylinders are fixedly installed on the sidewalls of the connecting rod and on both sides of the bottom beam, and springs are installed inside the spring cylinders.
9. The container frame support structure according to claim 8, characterized in that, A support leg is fixedly installed below the spring, and a roller is installed at the end of the support leg.
10. The container scaffolding support structure according to claim 9, characterized in that, The side tripod is equipped with a mounting plate, and hooks are installed on the mounting plate.
Citation Information
Patent Citations
Mould renovating horse stool with moving device
CN219633703U