A support strapping member for industrial modular devices

By designing support and binding components for industrial modular devices, and employing longitudinal and lateral stops and a split base, the high lifting risk and operational difficulty of large modular devices during relocation are resolved, thereby improving stability and safety.

CN224361969UActive Publication Date: 2026-06-16COSCO MARINE ENG LOGISTICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
COSCO MARINE ENG LOGISTICS CO LTD
Filing Date
2025-05-13
Publication Date
2026-06-16

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Abstract

The utility model relates to transportation equipment technical field especially a kind of support binding component for industrial modularization device, it include: on deck along longitudinal interval distribution several rows of support unit, each row of support unit has several module components along transverse interval distribution;Wherein it further includes longitudinal stop and transverse stop, longitudinal stop is distributed in the two ends of several module components along longitudinal arrangement, transverse stop is distributed in the two ends of each row several module components, in the utility model, modularization split type base and connecting piece are also used to module component, by respectively assembling then welding mode, reduce the difficulty of module transfer and interference impact risk, to effectively improve the security and installation convenience of module, split modular design can also realize subsequent reciprocating use, reduce use cost.
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Description

Technical Field

[0001] This utility model relates to the field of transportation equipment technology, and in particular to a support and binding component for industrial modular devices. Background Technology

[0002] In recent years, the petrochemical industry has flourished, with plant construction trending towards larger scale, greater integration, and greater scale. Simultaneously, modular design and construction technologies have continuously innovated, and the technological level and equipment capabilities of transportation equipment, hoisting equipment, and manufacturing plants have also significantly improved. Driven by these factors, plant construction methods are gradually shifting from traditional construction models to large-scale modular models.

[0003] However, large modular devices are usually equipped with supporting steel at the bottom for supporting and fixing the device. When installing the module, in order to avoid the lower attached structure of the module hitting the upper end of the supporting steel, the module needs to be lifted to a height higher than the upper end of the supporting steel before it can be moved and placed. Since the supporting steel is usually quite high, this poses a challenge to lifting the module. At the same time, the higher transfer height also increases the risk of module transfer and the difficulty of operation. Utility Model Content

[0004] The purpose of this invention is to address the shortcomings of existing technologies, such as the significant transfer risks and high operational difficulties caused by the high lifting height of modules during transfer, and to propose a support and binding component for industrial modular devices.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] Design a support and binding member for industrial modular devices, including:

[0007] Several rows of support units are distributed longitudinally on the deck, and each row of support units has several modular components distributed laterally.

[0008] It also includes longitudinal stops and transverse stops. The longitudinal stops are distributed at both ends of several modular components arranged longitudinally, and the transverse stops are distributed at both ends of several modular components in each row.

[0009] Furthermore, the module components include:

[0010] The base and the connector are placed on top of the base. Before the module is transferred, the connector is fixed to the bottom of the module. After the module is transferred to the deck, the base and the connector are welded and fixed.

[0011] Furthermore, the base includes a rectangular support portion, on both sides of which triangular plates are fixedly installed. The triangular plates are welded to the deck. Stop blocks are installed at the front and rear ends of the rectangular support portion and are welded to the deck.

[0012] Furthermore, the connector includes a middle section and connecting plates connected to both ends of the middle section. A pad is placed between the connecting plate at the upper part of the middle section and the module. Several reinforcing corner plates are fixedly installed between the connecting plate and the middle section. The connecting plate at the lower part is connected to the upper part of the rectangular support.

[0013] Furthermore, the longitudinal stop includes a long longitudinal diagonal brace and a short longitudinal diagonal brace;

[0014] The longitudinal long diagonal brace connects the ends of the deck and the module, and the longitudinal short diagonal brace connects the bottom of the deck and the module.

[0015] Furthermore, the lateral stop includes a short lateral brace that connects between the deck and the bottom of the module, and between the base and the end of the module.

[0016] Furthermore, the lateral stop also includes a long lateral brace, which connects the deck and the end of the module.

[0017] Furthermore, it also includes several internal bracing members symmetrically distributed along the bottom axis of the module. The internal bracing members are connected between the deck and the module and are arranged parallel to their adjacent longitudinal stop members.

[0018] The present invention proposes a support and binding component for industrial modular devices, which has the following advantages: the present invention uses multiple modular components to connect and support the modules, and with the help of longitudinal and lateral stoppers, overcomes the lateral / longitudinal forces, overturning forces and upward pulling forces generated by the modules during transportation, thereby improving the stability of module transportation.

[0019] Secondly, this utility model also adopts a modular and separate base and connector for the modular components. By assembling them separately and then welding them, the difficulty of moving the modules and the risk of interference and impact are reduced, thereby effectively improving the safety and ease of installation of the modules. The separate modular design can also realize subsequent reusable use and reduce the cost of use. Attached Figure Description

[0020] Figure 1 This is a top view of the support unit of this utility model on the deck;

[0021] Figure 2 for Figure 1 Sectional view at point AA along the middle;

[0022] Figure 3 This is a schematic diagram of the modular component structure of this utility model;

[0023] Figure 4 for Figure 1 Sectional view at the middle edge BB;

[0024] Figure 5 This is a schematic diagram of the transverse short diagonal brace structure of this utility model;

[0025] Figure 6 This is a schematic diagram of the transverse long diagonal brace structure of this utility model.

[0026] In the diagram: 1. Deck; 2. Support unit; 21. Module component; 22. Base; 221. Rectangular bearing part; 222. Stop block; 223. Triangular plate; 23. Connector; 231. Middle section; 232. Connecting plate; 233. Pad; 234. Reinforcing angle plate; 3. Longitudinal stop; 31. Longitudinal long diagonal brace; 32. Longitudinal short diagonal brace; 4. Lateral stop; 41. Lateral short diagonal brace; 42. Lateral long diagonal brace; 5. Module; 6. Internal support diagonal brace; 7. Reinforcing plate. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0028] Reference Figure 1-6 As one embodiment of this utility model, a support and binding member for an industrial modular device is disclosed. Specifically, the support member includes several rows of support units 2 spaced longitudinally on a deck 1, and each row of support units 2 has several modular members 21 spaced laterally, such as... Figure 1 As shown, in this embodiment, five rows of support units 2 are preferably provided on the deck 1, and each row of support units 2 is configured with seven modular components 21. Of course, in other embodiments, those skilled in the art can also make adaptive adjustments to the number of modular components 21 according to the size of the module 5. Here, there is no specific limitation on the specific number of rows and the specific number of components.

[0029] It also includes longitudinal stop 3 and transverse stop 4. The longitudinal stop 3 is distributed at both ends of several module components 21 arranged longitudinally, and the transverse stop 4 is distributed at both ends of several module components 21 in each row. The design of the longitudinal stop 3 and transverse stop 4 is to support and stop the module 5 on its four sides after the module component 21 supports and fixes the module 5, so as to overcome the transverse / longitudinal force, overturning force and upward pulling force generated by the module 5 during transportation, and improve the transportation stability of the module 5.

[0030] In some embodiments, the module component 21 of this invention includes:

[0031] The base 22 and the connector 23 are placed on top of the base 22. Before the transfer, the connector 23 is fixed to the bottom of the module 5. After the module 5 is transferred to the deck 1, the base 22 and the connector 23 are welded and fixed.

[0032] In other words, the base 22 and the connector 23 described in this utility model are fixed by post-welding. When fixing the module 5, the base 22 is first welded and fixed to the deck 1 at a predetermined position, and the connector 23 is welded and fixed to the bottom of the module 5. The module 5 is then transferred to the deck 1 with the help of a transfer device. After aligning the base 22 and the connector 23, the module 5 can be placed down, and subsequent welding can be performed.

[0033] It should be noted that, since the overall height of the modular component 21 composed of the base 22 and the connector 23 is relatively high, during the transfer of the module 5, the module 5 needs to be lifted to a relatively high height so that the prefabricated components at its bottom can avoid the upper end of the connector 23 to prevent mutual collision. This increases the difficulty of lifting and transferring the module 5. Therefore, in this utility model, the base 22 and the connector 23 are designed as separate modular components. By assembling them separately and then welding them, the module 5 does not need to be lifted too high during the transfer process. Therefore, the transfer difficulty is reduced, which can ensure the convenient transfer and positioning of the module 5 and the safety of the operation, thereby effectively improving the ease of installation of the module 5.

[0034] Furthermore, in this embodiment, the base 22 includes a rectangular support portion 221, and triangular plates 223 are fixedly installed on both sides of the rectangular support portion 221. The triangular plates 223 are welded and fixed to the deck 1. Stop blocks 222 are installed at the front and rear ends of the rectangular support portion 221, and the stop blocks 222 are welded and fixed to the deck 1.

[0035] Based on the above embodiments, the connector 23 in this embodiment includes a middle section 231 and connecting plates 232 connected to both ends of the middle section 231. Preferably, the middle section 231 in this embodiment is configured as a cylindrical structure. A pad 233 is placed between the connecting plate 232 on the upper part of the middle section 231 and the module. A plurality of reinforcing angle plates 234 are fixedly installed between the connecting plate 232 and the middle section 231. Of course, the reinforcing angle plates 234 are also configured as triangular structures. The lower connecting plate 232 is connected to the upper part of the rectangular support part 221, and the upper connecting plate 232 is welded and fixed to the lower part of the module 5.

[0036] Optionally, the longitudinal stop 3 in this embodiment includes a longitudinal long diagonal brace 31 and a longitudinal short diagonal brace 32;

[0037] The longitudinal long diagonal brace 31 is connected between the end of the deck 1 and the module 5, and the longitudinal short diagonal brace 32 is connected between the bottom of the deck 1 and the module 5. The longitudinal long diagonal brace 31 and the longitudinal short diagonal brace 32 are provided to support the longitudinal ends of the module 5 to improve its longitudinal resistance and thus ensure the stability of transportation.

[0038] In some embodiments, the lateral stop 4 of the present invention includes a lateral short diagonal brace 41, which is connected between the bottom of the deck 1 and the module 5, and between the base 22 and the end of the module 5.

[0039] In addition, the transverse stop 4 in this embodiment also includes a transverse long diagonal brace 42, which is connected between the ends of the deck 1 and the module 5. That is, in this embodiment, the ends of the module 5 in the transverse position can be supported and fixed by transverse short diagonal brace 41 and transverse long diagonal brace 42 respectively. Of course, the transverse short diagonal brace 41 and transverse long diagonal brace 42 are fixed to the deck 1, the base 22 and the module 5 by welding.

[0040] Furthermore, since each diagonal brace is inclined, in order to enhance the welding stability at its ends and improve the load-bearing capacity, in this embodiment, a reinforcing plate 7 is welded between the ends of each diagonal brace. The reinforcing plate 7 can be set as a triangular plate, thereby improving the connection strength of each diagonal brace.

[0041] Considering the need to reinforce the connection at the bottom center of module 5, this embodiment also includes several internal bracing members 6 symmetrically distributed along the bottom axis of module 5. The internal bracing members 6 are connected between the deck 1 and module 5. The internal bracing members 6 are arranged parallel to the longitudinal stop member 3 that is close to them. That is to say, in this utility model, since the internal bracing members 6 are symmetrically arranged and parallel to the longitudinal stop member 3, they can improve the connection strength between module 5 and deck 1, and also improve the longitudinal stopping effect on module 5. In addition, in this embodiment, both ends of the internal bracing members 6 are also set on the reinforcing plate 7. That is, the two ends of the internal bracing members 6 are welded to the deck 1 and the bottom of module 5 through the reinforcing plate 7, which further optimizes the support stability of module 5.

[0042] In summary, the present invention uses multiple modular components 21 to connect and support the module 5, and in conjunction with the longitudinal stop 3 and the transverse stop 4, it overcomes the transverse / longitudinal forces, overturning forces and upward pulling forces generated by the module 5 during transportation, thereby improving the transportation stability of the module 5.

[0043] Secondly, this utility model also adopts a modular split base 22 and connector 23 for the module component 21. By assembling them separately and then welding them, the difficulty of moving the module 5 and the risk of interference and impact are reduced, so as to effectively improve the safety and installation convenience of the module 5. The split modular design can also realize subsequent reusable use and reduce the cost of use.

[0044] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A support and binding member for industrial modular devices, characterized in that, include: Several rows of support units (2) are distributed longitudinally on the deck (1), and each row of support units (2) has several modular components (21) distributed laterally. It also includes longitudinal stops (3) and transverse stops (4). The longitudinal stops (3) are distributed at both ends of a plurality of modular components (21) arranged longitudinally, and the transverse stops (4) are distributed at both ends of a plurality of modular components (21) in each row. The modular components (21) include: The base (22) and connector (23) are placed above the base (22). Before the transfer, the connector (23) is fixed to the bottom of the module (5). After the module (5) is transferred to the deck (1), the base (22) and connector (23) are welded and fixed. The base (22) includes a rectangular support part (221). Triangular plates (223) are fixedly installed on both sides of the rectangular support part (221). The triangular plates (223) are welded and fixed to the deck (1). Stop blocks (222) are installed at the front and rear ends of the rectangular support part (221). The stop block (222) is welded and fixed to the deck (1). The connector (23) includes a middle section (231) and connecting plates (232) connected to both ends of the middle section (231). A pad (233) is placed between the connecting plate (232) on the upper part of the middle section (231) and the module (5). Several reinforcing angle plates (234) are fixedly installed between the connecting plate (232) and the middle section (231). The lower connecting plate (232) is connected to the upper part of the rectangular bearing part (221). The longitudinal stop (3) includes a longitudinal long diagonal brace (31) and a longitudinal short diagonal brace (32). The longitudinal long diagonal brace (31) is connected between the ends of the deck (1) and the module (5), and the longitudinal short diagonal brace (32) is connected between the bottom of the deck (1) and the module (5).

2. The support and binding member for an industrial modular device according to claim 1, characterized in that: The lateral stop (4) includes a lateral short brace (41) which is connected between the bottom of the deck (1) and the module (5) and between the base (22) and the end of the module (5).

3. A support and binding member for an industrial modular device according to claim 2, characterized in that: The lateral stop (4) also includes a lateral long diagonal brace (42) which connects the ends of the deck (1) and the module (5).

4. A support and binding member for an industrial modular device according to claim 1, characterized in that: It also includes several internal bracing members (6) symmetrically distributed along the bottom axis of the module (5), the internal bracing members (6) being connected between the deck (1) and the module (5), and the internal bracing members (6) being arranged parallel to the longitudinal stop members (3) nearby.