A command console based on modular design
Patent Information
- Application Number
- CN202522076126.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-26
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-09-26
AI Technical Summary
[0007]本实用新型核心在于通过结构化设计解决现有技术中存在的拼接流程复杂、配件易丢失、需人工精细校准问题,同时可满足不同使用状态的安装需求
[0018]相比于现有技术,本实用新型的优点在于:
Smart Images

Figure CN224791892U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of control consoles, and in particular to a command control console based on modular design. Background Technology
[0002] As the core equipment of command centers in fields such as transportation, energy, and security, the command console is mainly used to carry hardware such as displays, operating terminals, and control modules, and to provide operators with a stable operating space. With the increasing flexibility of command scenarios (such as the construction of temporary command points and the switching of workstations in multiple scenarios), modular command consoles with splicing capabilities are gradually becoming the mainstream demand.
[0003] The prior art CN218945125U discloses an experimental operating table, including a hanging cabinet, a reagent rack, and a central operating table. A middle support is connected between two crossbeams, and the middle support is connected to the side support through a horizontal frame. This design gives the table a simple structure, strong support performance, and quick assembly, thus reducing the difficulty of assembly.
[0004] Existing technology CN221492572U discloses an experimental workbench, including: an experimental table, a tool cabinet, and a workstation chair. This application features a simple overall structure, complete functions, and the integrated design of the tool cabinet, experimental table, and workstation chair facilitates overall movement. It also allows for adjustment of the height and level of the experimental table, provides a collaborative working environment, and is easy to use.
[0005] As the demands for control consoles in command scenarios increase, existing modular control consoles suffer from complex assembly processes, easy loss of parts, and the need for precise manual calibration. This application simplifies the assembly process through structural design, achieves part-limiting and anti-loss, and provides a modular command control console that eliminates the need for precise calibration, while also meeting the installation requirements of different usage scenarios. Utility Model Content
[0006] 1. Technical problems to be solved
[0007] The core of this utility model lies in solving the problems of complex splicing process, easy loss of parts, and need for precise manual calibration in the existing technology through structural design, while meeting the installation requirements of different usage states.
[0008] 2. Technical Solution
[0009] To solve the above problems, the present invention adopts the following technical solution.
[0010] A command console based on modular design includes a console assembly. The console assembly includes a pair of interlocking table bodies. A barrier surface is fixedly connected to the upper end of each table body. A locking assembly is fixedly connected to the side end of each table body. The locking assembly includes a fixed side seat fixedly connected to the left inner wall of the table body. An extension spring band is fixedly connected to the lower end of the fixed side seat. An outer ring block is fixedly connected to the lower end of the extension spring band. A bearing ring is fixedly connected to the inner end of the outer ring block. An anti-loss bolt is installed at the inner end of the bearing ring. A side groove is provided on the right end of the table body. A set of U-shaped seats is fixedly connected to the inner side wall of the side groove. A rotating block is rotatably connected to the inner end of the U-shaped seats. A threaded locking pin is fixedly connected to the end of the rotating block away from the U-shaped seats. A tapered insert is fixedly connected to the end of the threaded locking pin away from the U-shaped seats. Two symmetrically arranged threaded inner holes are provided on the left end of the table body.
[0011] Furthermore, the anti-loss bolt is locked in place by an external thread on the threaded locking post, and a magnetic limit strip is fixedly connected to the left inner wall of the operating table.
[0012] Furthermore, the magnetic limit strip and the anti-loss bolt are magnetically connected at the gap, and the side end of the enclosure platform is fixedly connected with an alignment component.
[0013] Furthermore, the alignment component includes a fixing strip fixedly connected to the right inner wall of the enclosure platform, with a rotating plate cover hinged to the upper end of the fixing strip.
[0014] Furthermore, a protruding locking strip is fixedly connected to the end of the rotating plate cover away from the fixing strip, and a strip-shaped locking groove is opened on the upper left side of the enclosure platform.
[0015] Furthermore, the protruding card strip and the corresponding strip-shaped card slot engage with each other.
[0016] Optionally and preferably, the side end of the operating table is movably connected to a replaceable locking component. The replaceable locking component includes a threaded locking post 2 that passes through the two horizontally corresponding U-shaped seats. The left and right sides of the threaded locking post 2 are symmetrically connected with locking bolts.
[0017] 3. Beneficial Effects
[0018] Compared with existing technologies, the advantages of this utility model are:
[0019] (1) This solution greatly simplifies the splicing process through the structured design of the locking components. The side groove can quickly achieve the pre-positioning of the operating table, avoiding repeated adjustments. The tapered structure of the tapered plug can guide the threaded locking pin to align with the threaded inner hole. The extension spring band at the lower end of the fixed side seat can limit the anti-loss bolt, preventing the loss of accessories. No manual fine calibration is required, making it suitable for scenarios that require frequent disassembly and assembly, such as temporary command points and multi-scene switching workstations.
[0020] (2) By using the alignment components, the two enclosure platforms are spliced together without misalignment or gaps, which not only ensures the flatness of the platform connection, but also enhances the lateral stability of the operating table, and avoids the impact of platform offset on equipment placement and operating comfort after high-frequency disassembly and assembly.
[0021] (3) For long-term fixed use scenarios, the threaded locking pins in the replaceable locking components are used to horizontally penetrate the threaded inner holes of the two operating tables to form an integral force-bearing structure. No additional modification or replacement of basic components is required, reducing the structural adjustment cost when switching scenarios. Attached Figure Description
[0022] Figure 1 This is a diagram of the control panel assembly of this utility model;
[0023] Figure 2 For the present utility model Figure 1 Enlarged view of a partial truncation at point A in the middle;
[0024] Figure 3 This is a structural diagram of the alignment component of this utility model;
[0025] Figure 4 This is a structural diagram of the operating table body of this utility model;
[0026] Figure 5 For the present utility model Figure 4 Enlarged view of a partial truncation at point B in the middle;
[0027] Figure 6 This is a diagram showing the threaded locking post of this utility model in its stored state.
[0028] Figure 7 This is a side sectional view of the outer ring block of this utility model;
[0029] Figure 8 This is a structural diagram of the replaceable locking component of this utility model.
[0030] Explanation of the labels in the diagram:
[0031] 1. Operating table assembly; 100. Operating table body; 101. Enclosure table surface; 2. Locking assembly; 200. Side groove; 201. U-shaped seat; 202. Rotating block; 203. Threaded locking post one; 204. Conical insert rod; 205. Fixed side seat; 206. Extension spring band; 207. Outer ring block; 208. Bearing ring; 209. Anti-loss bolt; 210. Threaded inner hole; 211. Magnetic limit strip; 3. Alignment assembly; 300. Fixing strip; 301. Rotating plate cover; 302. Protruding retaining strip; 303. Strip-shaped retaining groove; 4. Replaceable locking assembly; 400. Threaded locking post two; 401. Locking bolt. Detailed Implementation
[0032] The technical solution will now be clearly and completely described with reference to the accompanying drawings in the embodiments of this utility model.
[0033] Example 1:
[0034] Please see Figures 1-7 The system includes an operating table assembly 1, which comprises a pair of interlocking operating table bodies 100. A retaining table surface 101 is fixedly connected to the upper end of each operating table body 100. A locking assembly 2 is fixedly connected to the side end of each operating table body 100. The locking assembly 2 includes a fixed side seat 205 fixedly connected to the left inner wall of the operating table body 100. An extension elastic band 206, made of rubber, is fixedly connected to the lower end of the fixed side seat 205. An outer ring block 207 is fixedly connected to the lower end of the extension elastic band 206, and a bearing ring 2 is fixedly connected to the inner end of the outer ring block 207. 08. An anti-loss bolt 209 is installed on the inner end of the bearing ring 208. A side groove 200 is provided on the right end of the operating table body 100. A set of U-shaped seats 201 is fixedly connected to the inner side wall of the side groove 200. A rotating block 202 is rotatably connected to the inner end of the U-shaped seat 201. A threaded locking post 203 is fixedly connected to the end of the rotating block 202 away from the U-shaped seat 201. A tapered insert rod 204 is fixedly connected to the end of the threaded locking post 203 away from the U-shaped seat 201. Two symmetrically arranged threaded inner holes 210 are provided on the left end of the operating table body 100.
[0035] The anti-loss bolt 209 is locked in the external thread of the threaded locking post 203. A magnetic limiting strip 211 is fixedly connected to the left inner wall of the operating table 100. The magnetic limiting strip 211 and the anti-loss bolt 209 are magnetically connected at the gap. An alignment component 3 is fixedly connected to the side end of the enclosure platform 101. The alignment component 3 includes a fixing strip 300 fixedly connected to the right inner wall of the enclosure platform 101. A rotating plate cover 301 is hinged to the upper end of the fixing strip 300. A protruding locking strip 302 is fixedly connected to the end of the rotating plate cover 301 away from the fixing strip 300. A strip-shaped slot 303 is opened on the upper left side of the enclosure platform 101. The protruding locking strip 302 and the corresponding strip-shaped slot 303 are engaged with each other.
[0036] Please see Figures 1-7The operating table assembly 1 of this solution includes a pair of interlocking operating table bodies 100. Each operating table body 100 has a fixed guardrail surface 101 at its upper end. During assembly, the two operating table bodies 100 are first aligned horizontally so that the side groove 200 on the right end of one operating table body 100 fits and conforms to the left end of the other operating table body 100. The rotating block 202, which is rotatably connected to the inner end of the U-shaped seat 201, is rotated so that the rotating block 202 drives the threaded locking pin 203 at the end away from the U-shaped seat 201 to rotate synchronously until the tapered insert 204 at the end of the threaded locking pin 203 away from the U-shaped seat 201 is inserted. The tapered insert 204, with its tapered structure, guides the threaded locking pin 203 to precisely align with the threaded inner hole 210 at the left end of the other operating table 100. The two operating tables 100 are then pushed horizontally to complete the initial lateral positioning. The extension spring band 206, fixed at the lower end of the fixed side seat 205, has a certain elasticity, allowing the outer ring block 207 fixed at its lower end to flexibly adjust its position. Subsequently, the anti-loss bolt 209 installed inside the bearing ring 208 is tightened within the bearing ring 208 and engaged with the threaded locking pin 203 on its outer surface until the anti-loss bolt 209 is properly engaged with the threaded locking pin 203. With the threaded locking pin 203 fully engaged, the two operating table bodies 100 are horizontally and stably fixed through the cooperation of the threaded locking pin 203 and the anti-loss bolt 209. The magnetic limiting strip 211 fixed to the left inner wall of the operating table body 100 forms a gap magnetic connection with the anti-loss bolt 209, which avoids collisions and bumps when the anti-loss bolt 209 is disassembled or loosened, thus improving long-term stability. While the operating table bodies 100 are locked, the splicing of the enclosure platform 101 is ensured with precision by the alignment component 3. The fixing strip 300 fixed to the right inner wall of the enclosure platform 101 provides a hinge base for the rotating cover 301. The cover 301 is rotated upward around the fixing strip 300. After the two enclosure platform 101 are aligned, the cover 301 is rotated in the opposite direction. The protruding locking strip 302 fixed at the end of the cover 301 away from the fixing strip 300 is inserted into the strip groove 303 opened on the upper left side of the other enclosure platform 101. Through the engagement of the protruding locking strip 302 and the strip groove 303, it is ensured that the two enclosure platform 101 are spliced without misalignment or gaps. This ensures the overall flatness of the platform and also helps to enhance the splicing stability of the operating table 100. This solution is suitable for scenarios with frequent disassembly and assembly, such as temporary command points and multi-scene switching workstations.
[0037] Example 2:
[0038] Please see Figure 8 The side end of the operating table 100 is movably connected to a replaceable locking component 4. The replaceable locking component 4 includes a threaded locking post 400 that passes through the two horizontally corresponding U-shaped seats 201. The left and right sides of the threaded locking post 400 are symmetrically threaded with locking bolts 401.
[0039] The replaceable locking component 4 is designed for scenarios involving long-term fixed use and infrequent disassembly and assembly. By replacing part of the structure of the locking component 2 in the first embodiment, the replaceable locking component 4 ensures that the two operating table bodies 100 are initially fitted together without the need for additional adjustments to the basic structure. The threaded locking pin 400 is horizontally inserted through the corresponding threaded inner holes 210 on the two operating table bodies 100 to form a transverse through-type support. Then, locking bolts 401 are symmetrically screwed into the left and right sides of the threaded locking pin 400. Through the threaded engagement between the locking bolts 401 and the threaded locking pin 400, the two operating table bodies 100 are stably locked together.
[0040] The above are merely preferred embodiments of this utility model; they encompass all the protection scope of this utility model. Any equivalent substitutions or modifications made by those skilled in the art within the technical scope disclosed in this utility model, based on the technical solution and its improved concept, should be covered within the protection scope of this utility model.
Claims
1. A command console based on modular design, comprising a console assembly (1), characterized in that: The operating table assembly (1) includes a pair of operating table bodies (100) spliced together. A partition tabletop (101) is fixedly connected to the upper end of each operating table body (100). A locking assembly (2) is fixedly connected to the side end of each operating table body (100). The locking assembly (2) includes a fixed side seat (205) fixedly connected to the left inner wall of the operating table body (100). An extension elastic band (206) is fixedly connected to the lower end of the fixed side seat (205). An outer ring block (207) is fixedly connected to the lower end of the extension elastic band (206). A bearing ring (208) is fixedly connected to the inner end of the outer ring block (207). The inner end of the 08) is equipped with an anti-loss bolt (209). The right end of the operating table (100) is provided with a side groove (200). A set of U-shaped seats (201) is fixedly connected to the inner side wall of the side groove (200). A rotating block (202) is rotatably connected to the inner end of the U-shaped seat (201). A threaded locking pin (203) is fixedly connected to the end of the rotating block (202) away from the U-shaped seat (201). A tapered plug (204) is fixedly connected to the end of the threaded locking pin (203) away from the U-shaped seat (201). Two symmetrically arranged threaded inner holes (210) are provided on the left end of the operating table (100).
2. The command console based on modular design according to claim 1, characterized in that: The anti-loss bolt (209) is locked in the external thread of the threaded locking post (203), and a magnetic limiting strip (211) is fixedly connected to the left inner wall of the operating table (100).
3. A command console based on modular design according to claim 2, characterized in that: The magnetic limiting strip (211) and the anti-loss bolt (209) are magnetically connected at the gap, and the side end of the enclosure platform (101) is fixedly connected with the alignment component (3).
4. A command console based on modular design according to claim 3, characterized in that: The alignment component (3) includes a fixing strip (300) fixedly connected to the right inner wall of the enclosure platform (101), and the upper end of the fixing strip (300) is hinged to a rotating plate cover (301).
5. A command console based on modular design according to claim 4, characterized in that: The rotating cover (301) is fixedly connected to a protruding clip (302) at one end away from the fixing strip (300), and a strip-shaped slot (303) is provided on the upper left side of the enclosure platform (101).
6. A command console based on modular design according to claim 5, characterized in that: The protruding locking strip (302) and the corresponding strip-shaped locking groove (303) engage with each other, and the side end of the operating table (100) is movably connected with a replaceable locking component (4).
7. A command console based on modular design according to claim 6, characterized in that: The replaceable locking assembly (4) includes a threaded locking post 2 (400) that passes through two horizontally corresponding U-shaped seats (201), and locking bolts (401) are symmetrically threaded on the left and right sides of the threaded locking post 2 (400).
Citation Information
Patent Citations
Experiment operation table
CN218945125U
Experiment operation table
CN221492572U