Fabricated laboratory partition wall system

Through the prefabricated laboratory partition system, the problems of long construction period, high noise and structural stability of traditional laboratory renovation are solved, and rapid and flexible laboratory space construction and iterative updates are achieved, reducing material waste.

CN223048252UActive Publication Date: 2025-07-01HUBEI CHINA TOBACCO INDUSTRY CO LTD
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Patent Information

Application Number
CN202421887168.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-07-01
Estimated Expiration
2034-08-06

AI Technical Summary

Technical Problem

The renovation of block walls in traditional laboratories is difficult, with long construction periods and high noise. The transformation process may damage structural stability and cannot quickly adapt to changes in the product testing environment.

Method used

A prefabricated laboratory partition system is provided, including a roof panel module, an inner partition module, a multi-functional column, a ground rail base and a connector. Users can assemble it as needed to quickly build an experimental space.

Benefits of technology

It realizes rapid laboratory transformation, flexible and convenient, high efficiency and small workload, avoids the problems of high noise and structural stability in traditional transformation, adapts to the needs of rapid iteration and updates in laboratories, and promotes the secondary utilization of materials and reduces waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an assembly type laboratory partition wall system which comprises a top plate module, an inner partition wall module, a multifunctional stand column, a ground rail base and a connecting piece, the inner partition wall module comprises a top rail, a ground rail and at least two sliding doors, and the sliding doors are slidably connected with the top rail and the ground rail and staggered with the top rail and the ground rail; the top rail is connected with the top plate module through a connecting piece, and the ground rail is connected with the ground rail base through a connecting piece. The multifunctional stand columns are arranged between the adjacent inner partition wall modules, and the tops and the bottoms of the multifunctional stand columns are connected with the top plate module and the ground rail base through connecting pieces correspondingly. An air switch and a socket are arranged in the multifunctional stand column, and the air switch is electrically connected with the socket and the power source. According to the assembly type laboratory partition wall system, a user can assemble the system according to needs, so that the required experiment space is quickly constructed, and the system is flexible, convenient, high in efficiency and small in workload.
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Description

Technical Field

[0001] This application relates to the technical field of laboratory structures, and particularly to a prefabricated laboratory partition wall system. Background Art

[0002] In the current rapid social development, the products that need to be tested are also updated and iterated at a relatively fast speed, which also puts diverse requirements on the product test environment. Corresponding experimental scenarios (such as laboratory area, height, test conditions, etc.) need to be adapted according to the test products. Therefore, the upgrading and transformation of laboratories and the adjustment and change of laboratory patterns are becoming increasingly frequent.

[0003] However, traditional laboratories have block walls, which are difficult to improve, and problems such as "heavy workload", "long construction period", and "high noise" have emerged. Repeatedly knocking down the walls and then re - building also damages the stability of the main structure to a certain extent. Some renovation projects even require structural reinforcement before construction can be carried out, and it is impossible to quickly transform the laboratory to meet the needs of product testing. Utility Model Content

[0004] To solve the above - mentioned technical problems, the first object of the present utility model is to provide a prefabricated laboratory partition wall system. The prefabricated laboratory partition wall system provided by this application can be assembled by users according to needs, so as to quickly realize the construction of the required experimental space, which is flexible, convenient, efficient, and has a small workload.

[0005] The technical solution provided by the present utility model is as follows:

[0006] A prefabricated laboratory partition wall system, comprising: a top plate module, an inner partition wall module, a multi - functional column, a floor rail base, and a connecting piece.

[0007] The inner partition wall module includes a top rail, a floor rail, and at least two sliding doors, and the sliding doors are respectively slidably connected to the top rail and the floor rail and are staggered from each other.

[0008] The top rail is connected to the top plate module through a connecting piece, and the floor rail is connected to the floor rail base through a connecting piece.

[0009] The multi - functional column is arranged between adjacent inner partition wall modules, and the top and bottom of the multi - functional column are respectively connected to the top plate module and the floor rail base through connecting pieces.

[0010] An air switch and a socket are arranged inside the multi - functional column. The air switch is electrically connected to the socket and is also electrically connected to the power supply.

[0011] Preferably, the sliding door includes a door frame, a glass window, and an inner wall ceiling board.

[0012] The top and bottom of the door frame are respectively slidably matched with the top rail and the floor rail.

[0013] The glass window and the interior wall ceiling board are respectively installed inside the gantry.

[0014] Preferably, the gantry is composed of three horizontal support rods and two vertical support rods, and both ends of the three horizontal support rods are fixedly connected to the vertical support rods respectively;

[0015] The two horizontal support rods located at the top and the bottom are respectively in sliding fit with the top rail and the ground rail;

[0016] The glass window is installed above the horizontal support rod in the middle, and the interior wall ceiling board is installed below it.

[0017] Preferably, the gantry further includes an inner support rod which is vertically arranged, with one end connected to the horizontal support rod in the middle and the other end connected to the horizontal support rod at the bottom.

[0018] The interior wall ceiling board is installed in the space enclosed by the horizontal support rod, the vertical support rod and the inner support rod.

[0019] Preferably, the horizontal support rod and the vertical support rod, and the horizontal support rod and the inner support rod are respectively connected by connecting pieces.

[0020] Preferably, the glass window is a double-layer airtight glass window.

[0021] Preferably, the top plate module includes a plurality of cross beams, longitudinal beams, top support frames and ceiling buckles.

[0022] The cross beams and the longitudinal beams are assembled, and after installing the ceiling buckles, they form the top plate plane. The top support frames are vertically arranged and hoist the top plate plane onto the top of the laboratory.

[0023] Preferably, both ends of the longitudinal beam are respectively connected to the adjacent cross beams, and the top support frame is fixedly connected to the cross beam.

[0024] Preferably, the cross beam and the top support frame are aluminum profiles of 90x90mm; the longitudinal beam is an aluminum profile of 45x90mm.

[0025] Preferably, the connecting piece is specifically a bolt, and / or

[0026] The multi-functional column is also provided with a communication connection port.

[0027] The present application provides a prefabricated laboratory partition wall system, including: a top plate module, an inner partition wall module, a multi-functional column, a floor rail base, and a connecting piece. The inner partition wall module includes a top rail, a floor rail, and at least two sliding doors. The sliding doors are respectively slidably connected to the top rail and the floor rail and are staggered from each other. The top rail is connected to the top plate module through a connecting piece, and the floor rail is connected to the floor rail base through a connecting piece. The multi-functional column is arranged between adjacent inner partition wall modules, and the top and bottom of the multi-functional column are respectively connected to the top plate module and the floor rail base through connecting pieces. An air switch and a socket are arranged in the multi-functional column. The air switch is electrically connected to the socket and is electrically connected to the power supply. The prefabricated laboratory partition wall system provided by the present application can be assembled by users according to needs, so as to quickly realize the construction of the required experimental space, which is flexible, convenient, efficient, and has a small workload. The prefabricated laboratory partition wall system provided by the present application solves the problems of high noise, damage to structural stability, and long construction period in the construction and renovation projects of traditional laboratories, and can meet the requirements of rapid iteration and update of laboratories. It not only helps to quickly realize the required experimental space, but also enables some original splicing materials to be reused in the later renovation process, reducing the movement and waste generated by the renovation, and being safer, more environmentally friendly. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments recorded in the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0029] Figure 1 It is a schematic structural diagram of the prefabricated laboratory partition wall system in the embodiment of the present utility model;

[0030] Figure 2 It is a schematic structural diagram of the connection between the cross beam and the top rail of the prefabricated laboratory partition wall system in the embodiment of the present utility model through a connecting piece;

[0031] Reference numerals: 1 - top plate module; 11 - cross beam; 12 - longitudinal beam; 13 - top support frame; 14 - ceiling buckle plate; 2 - inner partition wall module; 21 - top rail; 22 - floor rail; 23 - sliding door; 231 - glass window; 232 - inner wall buckle plate; 233 - transverse support rod; 234 - longitudinal support rod; 235 - inner support rod; 3 - multi-functional column; 31 - air switch; 32 - socket; 4 - floor rail base; 5 - connecting piece. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0032] To enable those skilled in the art to better understand the technical solutions in this application, the technical solutions in the embodiments of this application will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope protected by this application.

[0033] It should be noted that when an element is referred to as "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly disposed on the other element; when an element is referred to as "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.

[0034] It should be understood that the orientation or positional relationship indicated by terms such as "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to this application.

[0035] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of this application, the meanings of "a plurality" and "several" are two or more, unless otherwise specifically defined.

[0036] It should be noted that the structures, ratios, sizes, etc. shown in the drawings of this specification are only used to cooperate with the content disclosed in the specification for those familiar with this technology to understand and read, and are not used to limit the limited conditions under which this application can be implemented. Therefore, they do not have a technical essence. Any modification of the structure, change of the proportional relationship, or adjustment of the size, without affecting the effects that this application can produce and the purposes that can be achieved, should still fall within the scope covered by the technical content disclosed in this application.

[0037] As shown in the figure, an embodiment of the present utility model provides a prefabricated laboratory partition wall system, including: a top plate module 1, an inner partition wall module 2, a multi-functional column 3, a floor rail base 4, and a connector 5.

[0038] The inner partition wall module 2 includes a top rail 21, a floor rail 22, and at least two sliding doors 23. The sliding doors 23 are respectively slidably connected to the top rail 21 and the floor rail 22 and are staggered from each other.

[0039] The top rail 21 is connected to the top plate module 1 through the connecting member 5, and the floor rail 22 is connected to the floor rail base 4 through the connecting member 5;

[0040] The multi-functional column 3 is arranged between adjacent inner partition wall modules 2, and the top and bottom of the multi-functional column 3 are respectively connected to the top plate module 1 and the floor rail base 4 through the connecting member 5;

[0041] An air switch 31 and a socket 32 are arranged in the multi-functional column 3. The air switch 31 is electrically connected to the socket 32 and is also electrically connected to the power supply.

[0042] The present application provides a prefabricated laboratory partition wall system, including: a top plate module 1, an inner partition wall module 2, a multi-functional column 3, a floor rail base 4, and a connecting member 5. The inner partition wall module 2 includes a top rail 21, a floor rail 22, and at least two sliding doors 23. The sliding doors 23 are respectively slidably connected to the top rail 21 and the floor rail 22 and are staggered from each other; the top rail 21 is connected to the top plate module 1 through the connecting member 5, and the floor rail 22 is connected to the floor rail base 4 through the connecting member 5; the multi-functional column 3 is arranged between adjacent inner partition wall modules 2, and the top and bottom of the multi-functional column 3 are respectively connected to the top plate module 1 and the floor rail base 4 through the connecting member 5; an air switch 31 and a socket 32 are arranged in the multi-functional column 3. The air switch 31 is electrically connected to the socket 32 and is also electrically connected to the power supply. The prefabricated laboratory partition wall system provided by the present application can be assembled by users according to needs, so as to quickly realize the construction of the required experimental space, which is flexible, convenient, efficient, and has a small workload. The prefabricated laboratory partition wall system provided by the present application solves the problems of high noise, damage to structural stability, and long construction period in traditional laboratory construction and renovation projects, and can meet the requirements of rapid iteration and update of laboratories. It not only helps to quickly realize the required experimental space, but also enables some original splicing materials to be reused in the later renovation process, reducing the movement and waste generated during renovation, and being safer, more environmentally friendly.

[0043] Specifically, the top plate module 1 is fixedly connected to the house ceiling to shield and enclose the exposed ceiling and avoid the problem of dust falling; and wires and pipelines can pass through between the house ceiling and the top plate module, which is convenient for sorting and also meets the cleanliness requirements of the laboratory. The floor rail base 4 is fixed on the house floor to provide positioning and support for the installation of the top rail 21 and the floor rail 22 of the inner partition wall module 2; after the top rail 21 and the floor rail 22 are installed in place, the sliding doors 23 can be assembled in place to realize the partitioning of the house and meet the requirements of the laboratory for product testing, etc.; while the multi-functional column 3 is arranged between adjacent inner partition wall modules 2 and is provided with a socket 32, which is convenient and fast for supplying power to experimental equipment, and the provided air switch 31 can provide protection for electrical equipment. At the same time, the top rail 21 is connected to the top plate module 1 through the connecting member 5, and the floor rail 22 is connected to the floor rail base 4 through the connecting member 5, which is convenient for disassembly and assembly and has high construction efficiency.

[0044] In this application, the air switch 31 and the socket 32 of the multi-functional column 3 are electrically connected to the power supply, providing power for the internal equipment in the laboratory, which can integrate wires, etc., facilitating installation and having high safety; the number of multi-functional columns 3 is set according to needs, and can be set between every two adjacent inner partition wall modules 2, facilitating equipment power connection, and at the same time forming a complete wall with the inner partition wall modules 2; it can also be set at the required places according to the design, and the direct connection between the unnecessary inner partition wall modules 2 forms a complete wall.

[0045] Preferably, the sliding door 23 includes a door frame, a glass window 231 and an inner wall ceiling plate 232.

[0046] The top and bottom of the door frame are respectively in sliding fit with the top rail 21 and the floor rail 22.

[0047] The glass window 231 and the inner wall ceiling plate 232 are respectively installed inside the door frame.

[0048] Preferably, the sliding door 23 includes a door frame, a glass window 231 and an inner wall ceiling plate 232. The top and bottom of the door frame are respectively in sliding fit with the top rail 21 and the floor rail 22. The glass window 231 and the inner wall ceiling plate 232 are respectively installed inside the door frame. Then the sliding door 23 can also be quickly formed by assembly, without customization, facilitating disassembly and assembly; at the same time, according to the needs of the laboratory, the size of the sliding door 23 can be flexibly adjusted, and the corresponding size of the glass window 231 and the inner wall ceiling plate 232 can be matched, or modular glass windows 231 and inner wall ceiling plates 232 can be used, and different numbers of glass windows 231 and inner wall ceiling plates 232 can be installed on sliding doors 23 of different sizes.

[0049] Preferably, the door frame is composed of three horizontal support rods 233 and two vertical support rods 234, and the two ends of the three horizontal support rods 233 are respectively fixedly connected to the vertical support rods 234.

[0050] The two horizontal support rods 233 at the top and bottom are respectively in sliding fit with the top rail 21 and the floor rail 22.

[0051] The glass window 231 is installed above the horizontal support rod 233 in the middle, and the inner wall ceiling plate 232 is installed below it.

[0052] The door frame is preferably assembled and formed by three horizontal and two vertical rods, specifically three horizontal support rods 233 and two vertical support rods 234. The three horizontal support rods 233 are within the two vertical support rods 234, and the two ends are respectively fixedly connected to the vertical support rods 234.

[0053] The two horizontal support rods 233 located at the top and bottom also achieve sliding cooperation with the top rail 21 and the floor rail 22, which can be realized through the cooperation of the slide rail and the slide groove well-known in the art; corresponding fittings can be installed on the horizontal support rod 233. The horizontal support rod 233 located in the middle plays a role in strengthening the structure and also plays a role in partitioning. A glass window 231 is installed above it and an interior wall ceiling plate 232 is installed below it to achieve the enclosure of the plane of the sliding door 23.

[0054] Preferably, the door frame further includes an inner support rod 235. The inner support rod 235 is vertically arranged, one end is connected to the horizontal support rod 233 located in the middle, and the other end is connected to the horizontal support rod 233 located at the bottom.

[0055] The interior wall ceiling plate 232 is installed in the space surrounded by the horizontal support rod 233, the vertical support rod 234 and the inner support rod 235.

[0056] More preferably, the door frame further includes an inner support rod 235. The inner support rod 235 is vertically arranged, one end is connected to the horizontal support rod 233 located in the middle, and the other end is connected to the horizontal support rod 233 located at the bottom, further playing a role in strengthening the support and avoiding the settlement due to the too heavy weight of the glass window 231. At the same time, the interior wall ceiling plate 232 is installed in the space surrounded by the horizontal support rod 233, the vertical support rod 234 and the inner support rod 235. Different interior wall ceiling plates 232 are installed on both sides of the inner support rod 234, reducing the area of a single interior wall ceiling plate 232, facilitating installation and replacement, and the interior wall ceiling plate 232 with a smaller area also has higher strength.

[0057] Preferably, the horizontal support rod 233 and the vertical support rod 234, and the horizontal support rod 233 and the inner support rod 235 are respectively connected by a connecting member 5.

[0058] Preferably, the horizontal support rod 233 and the vertical support rod 234, and the horizontal support rod 233 and the inner support rod 235 are also connected by a connecting member 5. The connecting member is standardized, making disassembly and assembly more convenient.

[0059] Preferably, the glass window 231 is a double-layer airtight glass window.

[0060] Preferably, the glass window 231 is a double-layer airtight glass window, which has good sound insulation and sealing effects, maintains the laboratory environment within a suitable range, and facilitates the smooth progress of tests and experiments.

[0061] Preferably, the top plate module 1 includes a plurality of cross beams 11, longitudinal beams 12, top support frames 13 and ceiling ceiling plates 14.

[0062] The cross beams 11 and the longitudinal beams 12 are assembled, and after installing the ceiling ceiling plates 14, they form the top plate plane. The top support frames 13 are vertically arranged, and the top plate plane is hoisted above the laboratory.

[0063] Preferably, both ends of the longitudinal beam 12 are respectively connected to adjacent cross beams 11, and the top support frame 13 is fixedly connected to the cross beam 11.

[0064] Preferably, the cross beam 11 and the top support frame 13 are aluminum profiles with a size of 90x90mm; the longitudinal beam 12 is an aluminum profile with a size of 45x90mm.

[0065] Preferably, the top plate module 1 includes a plurality of cross beams 11, longitudinal beams 12, top support frames 13 and ceiling buckles 14. The cross beams 11 and the longitudinal beams 12 are assembled, and after installing the ceiling buckles 14, a top plate plane is formed. The top support frames 13 are arranged vertically, and the top plate plane is hoisted on the top of the laboratory, which is modularly assembled and has high installation efficiency.

[0066] More preferably, both ends of the longitudinal beam 12 are respectively connected to adjacent cross beams 11, the top support frame 13 is fixedly connected to the cross beam 11, the cross beam 11 plays a main supporting and connecting role, and the longitudinal beam 12 plays a secondary supporting and connecting role. More preferably, the cross beam 11 and the top support frame 13 are aluminum profiles with a size of 90x90mm, which have stronger strength; while the longitudinal beam 12 is an aluminum profile with a size of 45x90mm, which saves materials and meets the strength requirements.

[0067] During installation, first assemble the cross beam 11 and the longitudinal beam 12, then use the top support frame 13 to install it on the ceiling of the house, and then embed the ceiling buckle 14 into the main frame and install it in place. Thus, a complete top plate module 1 is formed.

[0068] Preferably, the connecting piece 5 is specifically a bolt, and / or

[0069] The multi-functional column 3 is also provided with a communication connection port.

[0070] Preferably, the connecting piece 5 is a bolt, which passes through each workpiece and cooperates with gaskets, etc. to achieve quick fixation and is also convenient for disassembly.

[0071] According to needs, the multi-functional column 3 can also be integrally provided with a communication connection port.

[0072] Preferably, the cross beam 11, the longitudinal beam 12, the top support frame 13, as well as the top rail 21, the floor rail 22, etc. are made of stainless steel, which is simple, easy to obtain, has good strength, is easy to clean, and meets the requirements of the laboratory.

[0073] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. An assembled laboratory partition system, characterized in that: include: A top plate module (1), an inner partition wall module (2), a multifunctional column (3), a ground rail base (4) and a connecting piece (5), The inner partition wall module (2) comprises a top rail (21), a floor rail (22), and at least two sliding doors (23); the sliding doors (23) are slidably connected to the top rail (21) and the floor rail (22) and are staggered with each other; The top rail (21) is connected to the top plate module (1) via a connecting piece (5), and the ground rail (22) is connected to the ground rail base (4) via a connecting piece (5); The multifunctional column (3) is arranged between adjacent inner partition wall modules (2), and the top and bottom of the multifunctional column (3) are connected to the top plate module (1) and the ground rail base (4) respectively via connecting pieces (5); An air switch (31) and a socket (32) are provided in the multifunctional column (3); the air switch (31) is electrically connected to the socket (32) and is also electrically connected to a power source.

2. The assembled laboratory partition system according to claim 1 is characterized in that: The sliding door (23) comprises a door frame, a glass window (231) and an inner wall gusset plate (232). The top and bottom of the door frame are respectively slidably matched with the top rail (21) and the ground rail (22); The glass window (231) and the inner wall gusset plate (232) are respectively installed inside the door frame.

3. The assembled laboratory partition system according to claim 2 is characterized in that: The door frame is composed of three transverse support rods (233) and two longitudinal support rods (234), and the two ends of the three transverse support rods (233) are respectively fixedly connected to the longitudinal support rods (234); Two transverse support rods (233) located at the top and the bottom are respectively slidably matched with the top rail (21) and the ground rail (22); A glass window (231) is installed above the transverse support rod (233) located in the middle, and an inner wall gusset plate (232) is installed below.

4. The assembled laboratory partition system according to claim 3 is characterized in that: The door frame further comprises an inner support rod (235), wherein the inner support rod (235) is arranged vertically, one end of the inner support rod is connected to the transverse support rod (233) located in the middle, and the other end of the inner support rod is connected to the transverse support rod (233) located at the bottom. The inner wall gusset plate (232) is installed in a space surrounded by the transverse support rod (233), the longitudinal support rod (234) and the inner support rod (235).

5. The assembled laboratory partition system according to claim 4 is characterized in that: The transverse support rod (233) and the longitudinal support rod (234), and the transverse support rod (233) and the inner support rod (235) are respectively connected via connecting pieces (5).

6. The assembled laboratory partition system according to any one of claims 2 to 5, characterized in that: The glass window (231) is a double-layer airtight glass window.

7. The assembled laboratory partition system according to claim 1, characterized in that: The roof module (1) comprises a plurality of cross beams (11), longitudinal beams (12), a top support frame (13) and a ceiling gusset plate (14). The cross beam (11) and the longitudinal beam (12) are assembled, and the ceiling gusset plate (14) is installed to form a top plate plane. The top support frame (13) is vertically arranged to hang the top plate plane on the top of the laboratory.

8. The assembled laboratory partition system according to claim 7, characterized in that: The two ends of the longitudinal beam (12) are respectively connected to the adjacent cross beams (11), and the top support frame (13) is fixedly connected to the cross beam (11).

9. The assembled laboratory partition system according to claim 8, characterized in that: The cross beam (11) and the top support frame (13) are 90x90mm aluminum profiles; the longitudinal beam (12) is 45x90mm aluminum profiles.

10. The assembled laboratory partition system according to claim 1, characterized in that: The connecting member (5) is specifically a bolt; and / or, The multifunctional column (3) is also provided with a communication connection port.