Mosaic instrument control screen connecting mechanism

By using a mosaic instrument control screen coupling mechanism in Taichung of the mosaic disk, the adjustment amount of the first waist groove is used to solve the problem of connecting adjacent control screens, enhance the installation strength and space utilization rate, and achieve beautiful operation and use effects.

CN223040366UActive Publication Date: 2025-06-27HANGZHOU BANGHUI AUTOMATION ENG TECH CO LTD
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Patent Information

Application Number
CN202421944851.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-06-27
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

In Mosaic Disk Taichung, when multiple mosaic instrument control screens are installed in the same cabinet, how to solve the connection problem between two adjacent mosaic instrument control screens to enhance installation strength.

Method used

A mosaic instrument control screen coupling mechanism is adopted, the mechanism including a first coupling plate, a second coupling plate and a first bolt set for fastening both. Through the adjustment of the first waist groove, two adjacent mosaic instrument control screens can maintain connection under manufacturing and installation errors, enhancing the firmness of the connection with the cabinet.

Benefits of technology

The installation firmness of the mosaic instrument control screen is improved, and the two adjacent control screens are installed closely, which improves the space utilization of the cabinet, is easy to operate and use, and has a beautiful appearance.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

A mosaic type instrument control screen connecting mechanism is used for a mosaic disc table and is characterized in that the mosaic disc table comprises a machine cabinet, a control screen connecting mechanism and at least two mosaic type instrument control screens; the mosaic type instrument control screen is fixedly connected with the cabinet and is composed of a mosaic function assembly, a mosaic cover plate and a mosaic framework. The control screen connecting mechanism at least comprises a first connecting plate, a second connecting plate and a first bolt group for fastening the first connecting plate and the second connecting plate; for two adjacent mosaic type instrument control screens, the first connecting plate and the second connecting plate are respectively and fixedly connected with one mosaic type instrument control screen, the first connecting plate and the second connecting plate are respectively provided with a first waist groove, and during assembly, due to manufacturing and mounting errors, when one mosaic type instrument control screen moves or rotates, the first waist grooves are formed in the first connecting plate and the second connecting plate. And by utilizing the adjustment amount of the first waist groove, two adjacent mosaic instrument control screens can still be connected together through the control screen connecting mechanism.
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Description

Technical Field

[0001] The utility model belongs to the technical field of mosaic instrument control panels, and particularly relates to a connection mechanism for a mosaic instrument control panel. Background Art

[0002] The mosaic console is an important part of the dispatching and monitoring system of large and medium-sized enterprises, and its application scenarios include industries such as nuclear power, coal, environmental protection, railway, aviation, and chemical industry. At present, a complete set of mosaic consoles often includes a cabinet, a mosaic instrument control panel, and cables. The mosaic instrument control panel consists of mosaic function components, a mosaic cover plate, and a mosaic skeleton. The mosaic function components include various instruments and instrument enclosures. Common instruments include combination switches, change-over switches, control buttons, control knobs, terminal blocks, annunciator lights, analog display meters (including digital display meters, pointer meters, recorders, integrators, etc.). In this technical field, according to different functions, the mosaic function components are generally divided into switch-type function components, indication / alarm-type function components, and analog display-type function components. In a mosaic console, multiple mosaic instrument control panels often need to be installed in the same cabinet to improve the space utilization rate of the cabinet, reduce the use space of the mosaic console, and facilitate maintenance and operation. How to solve this problem has become an issue to be addressed. Summary of the Invention

[0003] The technical problem to be solved by the utility model is: when multiple mosaic instrument control panels are installed in the same cabinet in a mosaic console, how to solve the connection problem between two adjacent mosaic instrument control panels to enhance the installation strength of the mosaic instrument control panel.

[0004] In order to achieve the above object, the utility model adopts the following technical solutions:

[0005] A mosaic - type instrument control panel connection mechanism is used for a mosaic console. Its characteristics are as follows: The mosaic console includes a cabinet, a control panel connection mechanism, and at least two mosaic - type instrument control panels; The mosaic - type instrument control panel is fixedly connected to the cabinet and is composed of a mosaic functional component, a mosaic cover plate, and a mosaic skeleton; The control panel connection mechanism at least includes a first connection plate, a second connection plate, and a first bolt group for fastening the two; For two adjacent mosaic - type instrument control panels, the first connection plate and the second connection plate are respectively fixedly connected to one of the mosaic - type instrument control panels. Both the first connection plate and the second connection plate are provided with first waist - shaped slots. During assembly, due to manufacturing and installation errors, when a certain mosaic - type instrument control panel moves or rotates relative to another mosaic - type instrument control panel, by using the adjustment amount of the first waist - shaped slots, the two adjacent mosaic - type instrument control panels can still be connected together through the control panel connection mechanism. In this way, the connection between the mosaic - type instrument control panel and the cabinet is made more firm; The two adjacent mosaic - type instrument control panels are closely installed, making the cabinet space more compact and the appearance more beautiful. It should be noted that the mosaic - type instrument control panel is prior art and is involved in ZL2023209561805 and ZL2020218935917, so it will not be elaborated here.

[0006] Preferably, the first connection plate and the second connection plate have the same structure, both being L - shaped folding plates and made of stainless steel.

[0007] Preferably, the mosaic skeleton is a metal skeleton, which is composed of sheet plates and columns arranged vertically and horizontally and intersecting with each other. Columns are arranged at the intersections of the sheet plates and form several through - slots, and counter - bores are provided on the columns.

[0008] Preferably, the control panel connection mechanism is equipped with a pressing plate assembly. The pressing plate assembly includes a pressing plate and a second bolt group; The first connection plate and the second connection plate are both closely attached to one side of the mosaic skeleton, while the pressing plate is located on the other side of the mosaic skeleton. By tightening the second bolt group, the first connection plate, the second connection plate, and the mosaic - type instrument control panel are fixedly connected. Further, when second waist - shaped slots are provided on the first connection plate and the second connection plate, the second bolt group includes bolts and nuts; When first threaded holes are provided on the first connection plate and the second connection plate, the second bolt group is equipped with screws. It should be noted that bolts, nuts, and screws are all standard parts.

[0009] Preferably, the control panel connection mechanism includes a third bolt group. By using the counterbored holes on the mosaic skeleton, the first connection plate and the second connection plate are directly fixed on the mosaic skeleton. Further, when the second threaded holes are opened on the first connection plate and the second connection plate, the third bolt group includes screws. When the third waist slots are opened on the first connection plate and the second connection plate, the third bolt group includes bolts and nuts. Bolts, nuts, and screws are all standard parts.

[0010] The beneficial effects brought by the present utility model are as follows: In the mosaic console, when multiple mosaic instrument control panels are installed in the same cabinet, for two adjacent mosaic instrument control panels, the control panel connection mechanism (3) is used for connection, which improves the installation firmness of the mosaic instrument control panel; the adjacent mosaic instrument control panels are installed closely to each other, which improves the space utilization rate of the cabinet, facilitates the operation and use of the mosaic console, and has a beautiful appearance. Description of the Drawings

[0011] Figure 1 Shows the first structural schematic diagram of the mosaic console according to the present utility model; (single mosaic instrument control panel)

[0012] Figure 2 Shows the second structural schematic diagram of the mosaic console according to the present utility model; (double mosaic instrument control panels)

[0013] Figure 3 Shows the effect diagram when the control panel connection mechanism is fixed to the mosaic instrument control panel according to the present utility model.

[0014] Figure 4 Shows the structural schematic diagram of the mosaic instrument control panel according to the present utility model.

[0015] Figure 5 Shows the structural schematic diagram of the first embodiment of the control panel connection mechanism according to the present utility model. (First embodiment)

[0016] Figure 6 Shows the partial exploded view of the first embodiment of the control panel connection mechanism according to the present utility model. (First embodiment)

[0017] Figure 7 Shows the first structural schematic diagram of the first connection plate and the second connection plate according to the present utility model. (First embodiment)

[0018] Figure 8 Shows the second structural schematic diagram of the first connection plate and the second connection plate according to the present utility model. (First embodiment)

[0019] Figure 9 Shows the structural schematic diagram of the second embodiment of the control panel connection mechanism according to the present utility model. (Second embodiment)

[0020] Figure 10 Shows the third structural schematic diagram of the first connection plate and the second connection plate under the present utility model (the second embodiment).

[0021] Figure 11 Shows the fourth structural schematic diagram of the first connection plate and the second connection plate under the present utility model. (The second embodiment) Specific embodiments

[0022] For clearly describing the application scenarios and background technology of the present utility model, in combination with Figure 1 and Figure 2 it is described as follows: In Figure 1 , it can be seen that for a mosaic console with a single mosaic type instrument control panel, a rectangular hole (2.1) is often opened on the cabinet (2), and the mosaic type instrument control panel (1) is engaged with the rectangular hole (2.1), and its flange (100) is used to fix it to the cabinet (2). Obviously, all four peripheries of the mosaic type instrument control panel (1) are fixed, and the connection is relatively firm; for Figure 2 , the mosaic console has two mosaic type instrument control panels (1). For the sake of beauty and space saving, the two mosaic type instrument control panels (1) are installed closely, which makes it impossible for all four peripheries of the mosaic type instrument control panel (1) to be directly fixedly connected to the cabinet (2), and the firmness of the installation connection cannot be guaranteed. It should be noted that Figure 1 the solution is only a connection method between the mosaic type instrument control panel and the cabinet, and it is not limited to the only method.

[0023] Such as Figures 2 to 4As shown in the figure, a mosaic instrument control panel connection mechanism is used for a mosaic console. Its characteristics are as follows: The mosaic console includes a cabinet (2), a control panel connection mechanism (3), and at least two mosaic instrument control panels (1); The mosaic instrument control panel (1) is fixedly connected to the cabinet (2), and it consists of a mosaic functional component (1.1), a mosaic cover plate (1.2), and a mosaic skeleton (1.3); The control panel connection mechanism (3) includes at least a first connection plate (3.1), a second connection plate (3.2), and a first bolt group (3.3) for fastening the two; For two adjacent mosaic instrument control panels (1), the first connection plate (3.1) and the second connection plate (3.2) are respectively fixedly connected to one of the mosaic instrument control panels (1). The first connection plate (3.1) and the second connection plate (3.2) are both provided with a first waist slot (30). During assembly, due to manufacturing and installation errors, when a certain mosaic instrument control panel (1) moves or rotates relative to another mosaic instrument control panel (1), by using the adjustment amount of the first waist slot (30), the two adjacent mosaic instrument control panels (1) can still be connected together through the control panel connection mechanism (3). In this way, the connection between the mosaic instrument control panel (1) and the cabinet (2) is made more firm; The two adjacent mosaic instrument control panels (1) are closely installed, making the cabinet space more compact and the appearance more beautiful. It should be noted that the mosaic instrument control panel (1) is prior art and is involved in ZL2023209561805 and ZL2020218935917, so it will not be elaborated here.

[0024] Preferably, as Figures 3 to 11 shown, the first connection plate (3.1) and the second connection plate (3.2) have the same structure, both being L-shaped folding plates made of stainless steel.

[0025] Preferably, as Figure 4 shown, the mosaic skeleton (1.3) is a metal skeleton, which consists of sheet plates (1.3.1) and columns (1.3.2) arranged perpendicular to each other and crisscrossed. Columns (1.3.2) are arranged at the intersections of the sheet plates (1.3.1) to form several through slots (20), and counterbores (10) are provided on the columns (1.3.2).

[0026] Preferably, as Figures 4 to 6As shown in the figure, the control panel connection mechanism (3) is provided with a pressing plate assembly (3.4), and the pressing plate assembly (3.4) includes a pressing plate (3.4.1) and a second bolt group (3.4.2); the first connection plate (3.1) and the second connection plate (3.2) are both closely attached to one side of the mosaic skeleton (1.3), while the pressing plate (3.4.1) is located on the other side of the mosaic skeleton (1.3). By tightening the second bolt group (3.4.2), the first connection plate (3.1) and the second connection plate (3.2) are fixedly connected to the mosaic instrument control panel (1). Further, as Figure 7 shown, when the second waist slots (40) are formed on the first connection plate (3.1) and the second connection plate (3.2), the second bolt group (3.4.2) includes bolts and nuts; as Figure 8 shown, when the first threaded holes (50) are formed on the first connection plate (3.1) and the second connection plate (3.2), the second bolt group (3.4.2) is provided with screws. It should be noted that the bolts, nuts and screws are all standard parts.

[0027] Preferably, as Figure 9 shown, the control panel connection mechanism (3) is provided with a third bolt group (3.5). By using the counterbore holes (10) on the mosaic skeleton, the first connection plate (3.1) and the second connection plate (3.2) are directly fixed on the mosaic skeleton (1.3); further, as Figure 10 shown, when the second threaded holes (60) are formed on the first connection plate (3.1) and the second connection plate (3.2), the third bolt group (3.5) is provided with screws; as Figure 11 shown, when the third waist slots (70) are formed on the first connection plate (3.1) and the second connection plate (3.2), the third bolt group (3.5) includes bolts and nuts.

[0028] The beneficial effects brought by the present utility model are as follows: in the mosaic console, when multiple mosaic instrument control panels are installed in the same cabinet, for two adjacent mosaic instrument control panels, the control panel connection mechanism (3) is used for connection, which improves the installation firmness of the mosaic instrument control panel; the adjacent mosaic instrument control panels are installed closely to each other, which improves the space utilization rate of the cabinet, facilitates the operation and use of the mosaic console, and has a beautiful appearance.

[0029] The above embodiments are only the preferred solutions of the present utility model, but are not limited to the above embodiments. For example, the mosaic console includes three mosaic instrument control panels, but the control panel connection mechanism or similar structures in the embodiments are adopted for two adjacent mosaic instrument control panels, which should be considered within the protection scope of the present utility model.

Claims

1. A mosaic instrument control screen connection mechanism, used for a mosaic panel table, characterized by: The mosaic panel table includes a cabinet, a control screen connecting mechanism and at least two mosaic instrument control screens; the mosaic instrument control screen is fixedly connected to the cabinet, and is composed of a mosaic functional component, a mosaic cover plate and a mosaic frame; the control screen connecting mechanism includes at least a first connecting plate, a second connecting plate and a first bolt group for fastening the two; for two adjacent mosaic instrument control screens, the first connecting plate and the second connecting plate are respectively fixedly connected to one of the mosaic instrument control screens, and the first connecting plate and the second connecting plate are both provided with a first waist groove. During assembly, due to manufacturing and installation errors, when a mosaic instrument control screen moves or rotates relative to another mosaic instrument control screen, the two adjacent mosaic instrument control screens can still be connected together through the control screen connecting mechanism by using the adjustment amount of the first waist groove.

2. The mosaic instrument control screen connection mechanism according to claim 1, characterized in that: The first connecting plate and the second connecting plate have the same structure, and are both L-shaped folded plates.

3. The mosaic instrument control screen connection mechanism according to claim 2 is characterized in that: The first connecting plate and the second connecting plate are made of stainless steel.

4. The mosaic instrument control screen connection mechanism according to claim 2 is characterized in that: The mosaic frame is a metal frame, which is composed of plates and columns arranged perpendicularly and crisscrossed to each other. The columns are arranged at the intersections of the plates to form a plurality of through grooves, and countersunk holes are arranged on the columns.

5. The mosaic instrument control screen connection mechanism according to claim 4, characterized in that: The control panel connection mechanism is provided with a pressure plate assembly, which includes a pressure plate and a second bolt group; the first connecting plate and the second connecting plate are both tightly attached to one side of the mosaic frame, and the pressure plate is located on the other side of the mosaic frame. By tightening the second bolt group, the first connecting plate, the second connecting plate and the mosaic instrument control panel are fixedly connected.

6. The mosaic instrument control screen connection mechanism according to claim 5, characterized in that: The first connecting plate and the second connecting plate are provided with a second waist groove, and the second bolt group includes bolts and nuts.

7. The mosaic instrument control screen connection mechanism according to claim 5, characterized in that: The first connecting plate and the second connecting plate are provided with first threaded holes, and the second bolt group includes screws.

8. The mosaic instrument control screen connection mechanism according to claim 4 is characterized in that: The control panel connection mechanism is provided with a third bolt group, and the first connection plate and the second connection plate are directly fixed on the mosaic frame by using the countersunk holes on the mosaic frame.

9. The mosaic instrument control screen connection mechanism according to claim 8, characterized in that: The first connecting plate and the second connecting plate are provided with second threaded holes, and the third bolt group includes screws.

10. The mosaic instrument control screen connection mechanism according to claim 8, characterized in that: The first connecting plate and the second connecting plate are provided with a third waist groove, and the third bolt group includes bolts and nuts.