Detachable electromechanical integration module support and support integration system
By designing a detachable electromechanical integrated module bracket, the problems of increased module weight and material costs were solved, enabling rapid modular assembly and disassembly, improving space utilization and the orderly management of pipe fittings, and reducing transportation and installation costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-04-14
AI Technical Summary
Existing electromechanical integrated module brackets suffer from increased module weight and higher prefabricated production material costs during the manufacturing process.
Design a detachable electromechanical integrated modular bracket, including a modular base frame, a pipeline single bracket, crossbars, and pipe fixing and sorting components. The modular design enables rapid assembly and disassembly. The detachable crossbars connect the pipeline single brackets to form an integrated structure, and the pipe fixing and sorting components are set in the storage space to improve space utilization and management convenience.
The modular design facilitates rapid assembly and disassembly, improves space utilization and the orderly management of pipe fittings, reduces transportation and installation costs, and enhances the stability and load-bearing capacity of the support.
Smart Images

Figure CN224124352U_ABST
Abstract
Description
Technical Field
[0001] In the field of electromechanical assembly support equipment technology, this utility model relates more specifically to a detachable electromechanical integrated module support and support integration system. Background Technology
[0002] With the rapid development of modular integrated buildings in China, prefabricated installation technology for electromechanical engineering is also gaining popularity. Modern buildings are characterized by integrated functions, which presents challenges for electromechanical engineering, such as system complexity and limited installation space. Based on these challenges, electromechanical integrated modules have emerged.
[0003] In the application of electromechanical prefabrication technology, to achieve modular integration, a large amount of steel is often used to make integrated supports, and pipelines are installed inside the integrated supports to form electromechanical integrated modules. Compared with traditional electromechanical construction, this type of support has the advantages of convenient production and rapid installation. However, the use of a large amount of steel not only increases the self-weight of the modules, but also significantly increases the material cost of prefabrication, failing to achieve the goal of cost reduction and efficiency improvement in the project.
[0004] It is evident that how to provide a detachable electromechanical integrated module bracket to solve the problem of rising costs in the process of electromechanical modular production is a technical problem that urgently needs to be solved by those skilled in the art. Utility Model Content
[0005] In view of the above-mentioned defects or improvement needs of the existing technology, in order to solve the problems of module self-weight and increased material costs caused by prefabrication during the manufacturing of integrated brackets, in the first aspect, this utility model provides a detachable electromechanical integrated module bracket, including: a module base frame, a pipeline single bracket, a crossbar, and also includes a pipe fixing and sorting component.
[0006] The module base frame is symmetrically equipped with connection points;
[0007] The pipeline support is located at the connection point of the bottom frame;
[0008] The crossbars are detachably installed between the pipeline single supports to connect the pipeline single supports into an integrated structure;
[0009] The crossbar and the pipeline single support form a storage space for loading and transporting pipe fittings.
[0010] The fitting fixing and sorting component is located in the storage space and is used to sort and fix the fittings stored in the storage space.
[0011] In the first aspect, the pipeline single support has a pair of protrusions, which are symmetrically located on opposite sides of the pipeline single support, and each of the protrusions is provided with a lifting lug for hoisting;
[0012] The pipeline single support also includes a base frame, which is connected to the protrusion via a connector, and the connector is detachably connected to the protrusion.
[0013] In the first aspect, the connector includes a connecting plate, on which a first connecting hole and a second connecting hole are symmetrically arranged, and a third connecting hole and a fourth connecting hole are provided on the base frame. The position of the first connecting hole on the connecting plate coincides with the position of the third connecting hole on the base frame, and they are connected by a first screw. The position of the second connecting hole on the connecting plate coincides with the position of the fourth connecting hole on the base frame, and they are connected by a second screw.
[0014] In the first aspect, the fitting fixing and combing assembly includes several fixing rings, each fixing ring being formed by winding a rod to create a semi-enclosed structure. A pair of free ends of the semi-enclosed structure are fixed within the storage space, and the annular space of the semi-enclosed space structure is used to insert the rod.
[0015] In the first aspect, the semi-enclosed structure of the retaining ring includes multiple accommodating sizes for fitting the pipes of different diameters.
[0016] In the first aspect, a clamping space is formed between two adjacent fixing rings for clamping the pipe fitting.
[0017] In the first aspect, the pipeline single support includes a pair of vertical struts and a horizontal bar disposed between the bottom of the pair of vertical horizontal bars, forming a "door" shaped support. The horizontal bar is fixedly disposed at the connection point. The vertical strut includes a first member and a second member. One end of the first member is fixed to the horizontal bar, and the other end of the first member is connected to the second member. The second member is telescopically oriented relative to the first member. An interference portion is provided at the end of the second member away from the first member, and the interference portion is oriented toward the storage space.
[0018] In the first aspect, the bottom of the module base is provided with a sliding component, the sliding component including a plurality of balls;
[0019] The module base frame has mounting slots spaced apart. A portion of each of the ball bearings is rolled in the mounting slot, while another portion of each ball bearing protrudes from the module base frame to form a sliding assembly, thereby driving the module base frame to slide.
[0020] Secondly, this utility model proposes a bracket integration system, the system including the detachable electromechanical integrated module bracket described in any one of the above.
[0021] In summary, compared with the prior art, the above-described technical solution conceived by this utility model can achieve the following beneficial effects:
[0022] 1. Modular Design: The modular design of the electromechanical integrated support system is achieved through the combination of a modular base frame, pipeline single supports, and crossbars. This facilitates rapid assembly and disassembly according to different needs. Furthermore, the structure is stable, and the crossbars are detachably installed between the pipeline single supports, connecting them to form a unified structure, enhancing the overall stability and load-bearing capacity of the support system. The storage space created between the crossbars and the pipeline single supports effectively utilizes space for the loading and transportation of pipe fittings, improving space utilization.
[0023] 2. Convenient pipe management: The pipe fixing and sorting components are located in the storage space, which can sort and fix the pipes stored in the storage space, making pipe management more organized and convenient for maintenance and repair.
[0024] 3. Easy to transport and install: Due to the detachable nature of the bracket, it can be easily transported and installed, reducing on-site construction time and costs. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the structure of the detachable electromechanical integrated module bracket in an embodiment of this utility model. Figure 1 ;
[0026] Figure 2 This is an exploded view of the detachable electromechanical integrated module bracket in an embodiment of this utility model;
[0027] Figure 3 This is a schematic diagram of the detachable electromechanical integrated module bracket loading pipe in an embodiment of this utility model;
[0028] Figure 4 This is a schematic diagram of the connector structure in an embodiment of this utility model;
[0029] Figure 5 This is a structural diagram of a non-removable support frame.
[0030] Explanation of reference numerals in the attached figures:
[0031] 1. Modular base frame; 101. Connection points; 102. Basic frame; 103. Protrusions;
[0032] 2. Pipeline single support; 201. Vertical strut; 202. Horizontal strut;
[0033] 3. Crossbar;
[0034] 4. Pipe fitting fixing and combing assembly; 401. Fixing ring;
[0035] 5. Hanging lugs;
[0036] 6. Connector; 601. Connecting plate; 602. First connecting hole; 603. Second connecting hole; 604. First screw; 605. Second screw;
[0037] 7. Pipe fittings. Detailed Implementation
[0038] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only for explaining the present utility model and are not intended to limit the present utility model. Furthermore, the technical features involved in the various embodiments of the present utility model described below can be combined with each other as long as they do not conflict with each other.
[0039] Example 1:
[0040] like Figure 1-5 As shown, Embodiment 1 of this utility model proposes a detachable electromechanical integrated module bracket, including: a module base frame 1, a pipeline single bracket 2, a crossbar 3, and a pipe fixing and sorting assembly 4;
[0041] The module base frame 1 is symmetrically provided with connection points 101, and the pipeline single support 2 is provided at the connection points 101 of the bottom frame; the crossbars 3 are detachably provided between the pipeline single supports 2 to connect the pipeline single supports 2 to form an integrated structure; wherein, the crossbars 3 and the pipeline single supports 2 form a storage space for loading and transporting pipe fittings; the pipe fitting fixing and sorting component 4 is provided in the storage space to sort and fix the pipe fittings 7 stored in the storage space.
[0042] Specifically, the implementation method of this detachable electromechanical integrated modular bracket is further refined as follows: The modular base frame 1 adopts a standardized design and has multiple symmetrically distributed connection points 101. These points enable quick connection of pipeline single brackets 2 through pre-set bolt holes or quick-release buckles. The pipeline single brackets 2 are directly installed on the connection points 101 of the base frame, forming a stable support structure. The crossbars 3 are designed to be detachable and are installed between the pipeline single brackets 2 through plug-in or snap-fit methods, connecting multiple single brackets into an integral frame. The storage space enclosed by the crossbars 3 and the single brackets is used to fill pipe fittings, facilitating overall transportation. The pipe fitting fixing and sorting assembly 4 is built into the storage space, using elastic clamps or fixing straps to ensure the stability of the pipe fittings during transportation, while also facilitating subsequent pipe fitting installation and maintenance.
[0043] In a preferred embodiment, the pipeline single support has a pair of protrusions 103, which are symmetrically located on opposite sides of the pipeline single support. Each of the protrusions 103 is provided with a lifting lug 5 for hoisting. The pipeline single support also includes a base frame 102, which is connected to the protrusions 103 by a connector 6. The connector 6 is detachably connected to the protrusions 103.
[0044] Furthermore, the connector 6 includes a connecting plate 601, on which a first connecting hole 602 and a second connecting hole 603 are symmetrically arranged. The base frame 102 is provided with a third connecting hole and a fourth connecting hole. The position of the first connecting hole 602 on the connecting plate 601 coincides with the position of the third connecting hole on the base frame 102, and they are connected by a first screw 604. The position of the second connecting hole 603 on the connecting plate 601 coincides with the position of the fourth connecting hole on the base frame 102, and they are connected by a second screw 605.
[0045] Regarding the pipe fixing and combing assembly 4, it includes several fixing rings. Each fixing ring is formed by winding a rod to create a semi-enclosed structure. A pair of free ends of the semi-enclosed structure are fixed within the receiving space. The annular space of the semi-enclosed structure is used to insert the rod. The semi-enclosed structure of the fixing ring includes multiple accommodating sizes to accommodate different diameters. A clamping space is formed between two adjacent fixing rings to clamp the pipe.
[0046] In the preferred embodiment described above, the design of the pipeline single support takes into account the needs of hoisting and rapid assembly. A pair of protrusions 103 of the pipeline single support are symmetrically arranged on opposite sides of the support, and each protrusion 103 is equipped with a lifting lug 5 for convenient hoisting operations. The base frame 102 is connected to the protrusions 103 via a detachable connector 6, improving the flexibility and adaptability of the support. The connector 6 consists of a connecting plate 601 with symmetrical first and second connecting holes 603 corresponding to the third and fourth connecting holes on the base frame 102, achieving a secure connection via first and second screws 605.
[0047] The pipe fixing and combing assembly 4 consists of multiple fixing rings 401. These fixing rings 401 are formed by winding rods to create a semi-enclosed structure, with their free ends fixed within a storage space. The annular space is used to insert rods, achieving pipe fixing and combing. The semi-enclosed structure of the fixing rings 401 is designed with multiple accommodating sizes to fit pipes of different diameters, ensuring that various pipes 7 can be properly fixed. The clamping space formed between adjacent fixing rings 401 is used to clamp the pipes, enhancing the stability of the pipes 7.
[0048] Furthermore, the pipeline single support 2 is equipped with lifting lugs 5, which not only facilitates lifting operations but also suggests that the support design allows for lifting at different locations to adapt to various installation environments and requirements. This design enhances the versatility and practicality of the support, enabling it to adapt to a variety of complex electromechanical installation scenarios.
[0049] In a preferred embodiment, the pipeline single support includes a pair of vertical support rods 201 and a horizontal bar 202 disposed between the bottom of the pair of vertical horizontal bars 202, forming a "door" shaped support. The horizontal bar 202 is fixedly disposed at the connection point 101. The vertical support rod 201 includes a first rod and a second rod. One end of the first rod is fixed to the horizontal bar 202, and the other end of the first rod is connected to the second rod. The second rod is telescopically oriented relative to the first rod. An interference portion is provided at the end of the second rod away from the first rod, and the interference portion is oriented toward the storage space.
[0050] The design of the pipeline single support is further refined in the above-described embodiment to enhance its stability and flexibility. Specifically, the pipeline single support consists of a pair of vertical struts 201 and a bottom horizontal bar 202, forming a "gate"-shaped structure. This structure has high stability due to its symmetry and simplicity. The horizontal bar 202 is fixed to the connection point 101 of the module base frame 1, ensuring a stable connection between the support and the base frame. The vertical struts 201 consist of a first member and a second member, with one end of the first member fixed to the horizontal bar 202 and the other end connected to the second member. This design allows the second member to extend or retract relative to the first member, providing height adjustment to accommodate pipes of different stacking heights. Simultaneously, one end of the second member has an interference portion facing the storage space, which provides a clamping effect when the pipes are installed in the storage space, preventing movement or detachment of the pipes during transportation or use. This design not only improves the practicality of the support but also enhances its safety.
[0051] In a preferred embodiment, the bottom of the module base frame 1 is provided with a sliding component, which includes a plurality of balls; wherein, the module base frame 1 is provided with mounting grooves at intervals, a portion of the plurality of balls is rolled in the mounting grooves, and another portion of the balls protrudes from the module base frame 1 to form the sliding component, so as to drive the module base frame 1 to slide.
[0052] Specifically, the bottom of the modular base frame 1 is equipped with a sliding component, which consists of several ball bearings. Some of these ball bearings are embedded in mounting slots on the modular base frame 1, while others protrude outside the base frame, forming the sliding component. This design allows the modular base frame 1 to slide easily on a flat surface, facilitating rapid deployment and adjustment of the bracket in different locations. The spacing of the mounting slots ensures the even distribution of the ball bearings, providing smooth sliding performance, while also increasing the durability and stability of the base frame. Through this sliding component design, the movement and positioning of the entire electromechanical integrated modular bracket becomes more flexible and efficient, suitable for a variety of different installation environments and occasions.
[0053] Example 2:
[0054] This utility model proposes a bracket integration system, which includes the detachable electromechanical integrated module bracket described in any one of the above-mentioned embodiments. This detachable electromechanical integrated module bracket enables a modular design of the electromechanical integrated module bracket, facilitating rapid assembly and disassembly according to different needs.
[0055] Those skilled in the art will readily understand that the above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A detachable electro-mechanical integrated module holder, characterized by, The utility model relates to a kind of detachable electromechanical integration module support, including: Module chassis (1), which is symmetrically provided with a connection point (101) on it; Pipeline single support (2) is arranged at the connection point (101) of the module chassis; Crosspiece (3) is detachably arranged between the pipeline single support (2), for connecting the pipeline single support (2) to form an integrated structure; Wherein, the crosspiece (3) and the pipeline single support (2) are surrounded to form a storage space to load and transport the pipe fitting (7); It also includes a pipe fitting fixing and combing assembly (4) arranged in the storage space for combing and fixing the pipe fitting (7) stored in the storage space.
2. The detachable electromechanical integration module support of claim 1, wherein: The pipeline single support has a pair of protrusions (103) symmetrically located on opposite sides of the pipeline single support, and each of the protrusions (103) is provided with an ear (5) for lifting; The pipeline single support further includes a base frame (102), and the base frame (102) and the protrusions (103) are connected by a connecting piece (6), and the connecting piece (6) is detachably connected with the protrusions (103).
3. The detachable electromechanical integration module support of claim 2, wherein: The connecting piece (6) includes a connecting plate (601), and the connecting plate (601) is symmetrically provided with a first connecting hole (602) and a second connecting hole (603), and the base frame (102) is provided with a third connecting hole and a fourth connecting hole, the position of the first connecting hole (602) on the connecting plate (601) coincides with the third connecting hole on the base frame (102), and is connected by a first screw (604), and the position of the second connecting hole (603) on the connecting plate (601) coincides with the fourth connecting hole on the base frame (102), and is connected by a second screw (605).
4. The detachable electromechanical integration module support of claim 3, wherein: The pipe fitting fixing and combing assembly (4) includes a plurality of fixing rings (401), the fixing ring is formed into a semi-enclosed structure by a rod, and a pair of free ends of the semi-enclosed structure are fixed in the storage space, and the annular space of the semi-enclosed structure is used for inserting the rod.
5. The detachable electromechanical integration module support of claim 4, wherein: The semi-enclosed structure of the fixing ring includes a plurality of accommodation sizes for adapting to pipe fittings of different diameters.
6. The detachable electromechanical integration module support of claim 4 or 5, wherein: A clamping space is formed between adjacent two fixing rings for clamping the pipe fitting.
7. The detachable electromechanical integration module support of claim 1, wherein: The pipeline single support comprises a pair of vertical support rods (201) and a cross rod (202) arranged between the bottoms of the pair of vertical support rods (201), forming a "door" shaped support, the cross rod (202) is fixedly arranged at the connection point (101), the vertical support rod (201) comprises a first rod and a second rod, one end of the first rod is fixedly connected with the cross rod (202), the other end of the first rod is connected with the second rod, and the second rod is telescopically arranged relative to the first rod, an interference part is arranged at the end of the second rod away from the first rod, and the interference part is arranged towards the direction of the receiving space.
8. The detachable electro-mechanical integrated module support of claim 1, wherein: The bottom of the module chassis (1) is provided with a sliding assembly, and the sliding assembly comprises a plurality of ball bearings; Part of the ball bearings is arranged in the mounting groove, and the other part of the ball bearings protrudes from the module chassis (1) to form the sliding assembly, so as to drive the module chassis (1) to slide.
9. A support integrated system, characterized in that: The system comprises the detachable electro-mechanical integrated module support of any one of claims 1-8.