Vertical electrical cabinet for glass toughening equipment
By designing a vertical electrical cabinet, strong cables and weak cables are introduced and exited from the top and bottom respectively, solving the problem of signal interference between weak cables and safety hazards of strong cables, and improving the safety of cable layout of fiberglass tempering equipment.
Patent Information
- Application Number
- CN202422391398.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-29
AI Technical Summary
In the prior art, the strong electric cables and weak electric cables of the glass tempering equipment are mixed into the electrical cabinet, causing the weak electric cable signals to be disturbed by the strong electric cables, and the strong electric cables drawn from below the electrical cabinet have safety risks.
A vertical electrical cabinet is designed, and strong cables and weak cables are introduced from the top and bottom respectively, and are led out from the top and bottom respectively to avoid contact in the electrical cabinet, and ensure the safe separation and layout of the cables through structures such as partitions and support rods.
Effectively prevent weak-electric cable signals from being interfered with, avoid safety hazards when strong cables are laid on the ground or under the surface, and improve the safety of cable layout of fiberglass tempering equipment.
Smart Images

Figure CN223167861U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electrical cabinets, in particular to a vertical electrical cabinet for glass tempering equipment. Background Art
[0002] The glass tempering equipment not only includes a fan motor, a conveyor roller path, a lifting device and related power devices, but also includes control devices for temperature detection, temperature control, pressure control and gas path control. Therefore, a large number of strong electric cables and weak electric cables are required.
[0003] If the strong electric cables and weak electric cables are mixed and enter the electrical cabinet of the prior art, after the strong electric cables and weak electric cables are mixed in the electrical cabinet and connected to the corresponding electrical components, and then led out from the electrical cabinet and laid to the glass tempering equipment, it is easy to cause the signals of the weak electric cables to be interfered by the strong electric cables, and the strong electric cables need to pass through the ground or lay the wire grooves under the ground surface after being led out from the lower part of the electrical cabinet before they can extend to the corresponding parts of the glass tempering equipment, so that the strong electric cables in the wire grooves laid on the ground or under the ground surface have potential safety hazards. Summary of the Utility Model
[0004] Aiming at the above deficiencies, the purpose of the utility model is to provide a vertical electrical cabinet for glass tempering equipment to solve the problems that the signals of the electric cables are easily interfered and the strong electric cables led out from the lower part of the electrical cabinet have potential safety hazards.
[0005] To achieve the above object, the utility model adopts the following technical solutions:
[0006] A vertical electrical cabinet for glass tempering equipment is installed between the electrical cabinet and the glass tempering equipment, and includes a cover body and a cabinet body that are connected in sequence from top to bottom; both the cover body and the cabinet body are hollow;
[0007] A first strong electric cable inlet hole and a second strong electric cable inlet hole are respectively arranged on the right side surface and the rear end surface of the cover body, and at least one strong electric cable outlet hole is arranged on the top surface of the cover body;
[0008] At least one weak electric cable inlet hole and at least one weak electric cable outlet hole are arranged at the bottom of the cabinet body. An electrical component mounting plate is vertically installed in the cabinet body. The top edge of the electrical component mounting plate is close to the strong electric cable outlet hole, and the bottom edge of the electrical component mounting plate is close to the weak electric cable outlet hole;
[0009] The rear plate surface of the electrical component mounting plate is set as the mounting surface, and an upper mounting area and a lower mounting area are sequentially distributed on the mounting surface from top to bottom;
[0010] The upper installation area is used for installing electrical components connected to strong electrical cables, and the lower installation area is used for installing electrical components connected to weak electrical cables.
[0011] Specifically, the lower installation area is divided into an upper half and a lower half;
[0012] The upper half of the lower installation area is used for installing weak electrical components that control air pipelines and oil pipelines, and the lower half of the lower installation area is used for installing weak electrical components that control non-air pipelines and non-oil pipelines.
[0013] Furthermore, a partition is also installed inside the cabinet;
[0014] The partition extends in the horizontal direction, one side of the partition abuts against the rear plate surface of the electrical component mounting plate, and the partition is used to isolate the upper half and the lower half of the lower installation area.
[0015] Furthermore, a sewage outlet is also opened on the side surface of the cabinet;
[0016] The sewage outlet is close to the bottom surface of the cabinet and is located below the partition.
[0017] Furthermore, a plurality of support rods are also installed inside the cabinet;
[0018] The support rods extend in the horizontal direction, and both ends of the support rods are respectively connected to the plate surface of the electrical component mounting plate or the inner side wall surface of the cabinet.
[0019] Furthermore, a plurality of cabinet doors are also installed on the cabinet;
[0020] The cabinet doors are located on the front end surface or the rear end surface of the cabinet, and the plurality of cabinet doors are respectively opposite to the upper installation area, the upper half of the lower installation area, the lower half of the lower installation area, and the front plate surface of the electrical component mounting plate.
[0021] Furthermore, the electrical component mounting plate is also provided with wire passing through holes;
[0022] The wire passing through holes penetrate through the plate surface of the electrical component mounting plate and are arranged close to the top surface of the partition.
[0023] Furthermore, feet are also installed at the bottom of the cabinet;
[0024] The top of the feet is connected to the bottom surface of the cabinet for supporting, and the bottom of the feet is used for fixing to the equipment installation surface. A wiring gap is formed between the weak electrical cable inlet hole and the weak electrical cable outlet hole and the equipment installation surface.
[0025] Further, a plurality of heat dissipation holes are formed in both the left and right sides of the cabinet body.
[0026] Further, a cover plate is also installed on the top surface of the cover body;
[0027] The strong cable outlet hole is formed in the cover plate.
[0028] The technical solution of a vertical electric cabinet for a glass tempering device proposed by the present utility model has the following beneficial effects: by using the vertical electric cabinet for a glass tempering device, the strong cables and weak cables can be respectively introduced into the vertical electric cabinet from the top and bottom of the vertical electric cabinet, and then the strong cables and weak cables after being connected to the electrical components can be respectively led out from the top and bottom of the vertical electric cabinet, which can avoid the mutual contact of the strong cables and weak cables in the vertical electric cabinet, prevent the interference of the signals of the weak cables, and can also avoid the occurrence of potential safety hazards existing in the strong cables laid in the wire grooves on the ground or underground, so that the cables outside the glass tempering device and the vertical electric cabinet have good safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 FIG. is a schematic structural diagram of an embodiment of a vertical electric cabinet for a glass tempering device of the present utility model;
[0030] Figure 2 For Figure 1 the upward view structure diagram;
[0031] Wherein: cover body 1; cabinet body 2; cover plate 11; first strong cable inlet hole 12; second strong cable inlet hole 13; strong cable outlet hole 111; support feet 21; sewage outlet 22; cabinet door 23; heat dissipation holes 24; air element mounting plate 25; weak cable inlet hole 26; weak cable outlet hole 27; support rod 28; wire passing through hole 251. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0032] The following Figure 1-2 and further illustrate the technical solution of the present utility model through specific embodiments.
[0033] The drawings are only for illustrative purposes and cannot be construed as a limitation of this patent; for better illustrating this embodiment, some components in the drawings will be omitted, enlarged or reduced, and do not represent the actual size of the product; for those skilled in the art, it is understandable that some well-known structures and their descriptions in the drawings may be omitted.
[0034] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installation" and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be said that there is a connection inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0035] A vertical electrical cabinet for a glass tempering device, which is installed between the electrical cabinet and the glass tempering device, includes a cover body 1 and a cabinet body 2 that are connected in sequence from top to bottom; both the cover body 1 and the cabinet body 2 are hollow.
[0036] A first strong wire cable inlet hole 12 and a second strong wire cable inlet hole 13 are respectively provided on the right side surface and the rear end surface of the cover body 1, and at least one strong wire cable outlet hole 111 is provided on the top surface of the cover body 1.
[0037] At least one weak wire cable inlet hole 26 and at least one weak wire cable outlet hole 27 are provided at the bottom of the cabinet body 2. An electrical component mounting plate 25 is vertically installed in the cabinet body 2. The top edge of the electrical component mounting plate 25 is close to the strong wire cable outlet hole 111, and the bottom edge of the electrical component mounting plate 25 is close to the weak wire cable outlet hole 27.
[0038] The rear plate surface of the electrical component mounting plate 25 is set as the mounting surface, and an upper mounting area and a lower mounting area are distributed in sequence from top to bottom on the mounting surface.
[0039] The upper mounting area is used to mount electrical components connected to strong wire cables, and the lower mounting area is used to mount electrical components connected to weak wire cables.
[0040] Figure 1 It is a schematic structural diagram of an embodiment of a vertical electrical cabinet for a glass tempering device of the present utility model. Figure 2 For Figure 1 The bottom view.
[0041] The glass tempering equipment requires a large number of high-voltage cables and low-voltage cables. If the high-voltage cables and low-voltage cables are mixed together and enter the electrical cabinet, after the high-voltage cables and low-voltage cables are mixed in the electrical cabinet and connected to the corresponding electrical components, and then led out from the electrical cabinet and laid to the glass tempering equipment, it is not only easy to cause the signal of the low-voltage cables to be interfered by the high-voltage cables, but also there are safety hazards for the high-voltage cables located in the cable troughs laid under the ground or underground surface after the high-voltage cables are led out from the lower part of the electrical cabinet and extend to the glass tempering equipment through the cable troughs laid under the ground or underground surface. Therefore, for the vertical electrical cabinet with the above structure, the high-voltage cables and low-voltage cables can be introduced into the vertical electrical cabinet from the top and bottom respectively, and then led out from the top and bottom of the vertical electrical cabinet respectively while keeping the high-voltage cables and low-voltage cables not in contact in the vertical electrical cabinet, which can prevent the signal of the low-voltage cables from being interfered and avoid the occurrence of safety hazards of the high-voltage cables laid in the cable troughs on the ground or underground surface.
[0042] Specifically, the lower installation area is divided into an upper half and a lower half;
[0043] The upper half of the lower installation area is used to install low-voltage electrical components for controlling the air pipeline and the oil pipeline, and the lower half of the lower installation area is used to install low-voltage electrical components for controlling non-air pipelines and non-oil pipelines.
[0044] Beneficial effect: Placing the low-voltage electrical components (such as the double union or solenoid valve) for controlling the air pipeline or the oil pipeline in the lower half of the lower installation area can prevent the dripping air or oil from affecting the safe operation performance of other low-voltage electrical components.
[0045] Furthermore, a partition is also installed in the cabinet body 2;
[0046] The partition extends in the horizontal direction, one side of the partition abuts against the rear plate surface of the electrical component mounting plate 25, and the partition is used to isolate the upper half and the lower half of the lower installation area.
[0047] Beneficial effect: In this way, it can be avoided that the moisture contained in the leaked gas rises to the lower installation area and / or the upper installation area.
[0048] Furthermore, a sewage discharge port 22 is also opened on the side surface of the cabinet body 2;
[0049] The sewage discharge port 22 is close to the bottom surface of the cabinet body 2, and the sewage discharge port 22 is located below the partition.
[0050] Beneficial effect: As Figure 1 and Figure 2 shown, the water or oil dripping from the connection ports of the air pipeline or the oil pipeline can be discharged to the outside through the sewage discharge port 22.
[0051] Further, a plurality of support rods 28 are also installed inside the cabinet body 2;
[0052] The support rods 28 extend in the horizontal direction, and two ends of each support rod 28 are respectively connected to the plate surface of the electrical component mounting plate 25 or the inner side wall surface of the cabinet body 2.
[0053] Beneficial effects: As Figure 1 shown, cables can be grouped and fixed to the adjacent support rods 28 through wire clips or nylon cable ties, so as to improve the convenience of finding corresponding cables during maintenance, and can also improve the installation stability of the cables in the cabinet body 2.
[0054] Further, a plurality of cabinet doors 23 are also installed on the cabinet body 2;
[0055] The cabinet doors 23 are located on the front end face or the rear end face of the cabinet body 2, and the plurality of cabinet doors 23 are respectively opposite to the upper installation area, the upper half of the lower installation area, the lower half of the lower installation area, and the front plate surface of the electrical component mounting plate 25.
[0056] Beneficial effects: As Figure 1 and Figure 2 shown, by closing the cabinet doors 23, the electrical components inside the cabinet body 2 can be shielded, and the electrical components can be prevented from being accidentally triggered or opened due to being collided.
[0057] Further, a wire passing through hole 251 is also formed in the electrical component mounting plate 25;
[0058] The wire passing through hole 251 penetrates through the plate surface of the electrical component mounting plate 25 and is arranged close to the top surface of the partition board.
[0059] Beneficial effects: As Figure 1 shown, the cables connected to the electrical components in the upper half of the lower installation area can pass through the wire passing through hole 251 and then enter and exit from the weak current cable inlet hole 26 and the weak current cable outlet hole 27 at the bottom of the cabinet body 2, so as to avoid the obstruction of the electrical components and cables in the lower half of the lower installation area.
[0060] Further, feet 21 are also installed at the bottom of the cabinet body 2;
[0061] The top of the feet 21 is connected to the bottom surface supporting the cabinet body 2, the bottom of the feet 21 is used for being fixed to the equipment installation surface, and a wiring gap is formed between the weak current cable inlet hole 26 and the weak current cable outlet hole 27 and the equipment installation surface.
[0062] Beneficial effects: As Figure 1 and Figure 2As shown, the legs 21 are used to form a wiring gap between the weak-current cable inlet hole 26 and the weak-current cable outlet hole 27 and the equipment installation surface, which can improve the convenience of laying weak-current cables on the equipment installation surface and the bottom of the cabinet 2.
[0063] Furthermore, a plurality of heat dissipation holes 24 are provided on both the left and right sides of the cabinet 2 .
[0064] Beneficial effects: such as Figure 1 and Figure 2 As shown, the heat inside the cabinet 2 can be dissipated in time through the multiple heat dissipation holes 24 on the left and right sides, avoiding failure of electrical components due to excessive temperature.
[0065] Furthermore, a cover plate 11 is installed on the top surface of the cover body 1;
[0066] The high-voltage cable outlet hole 111 is formed on the cover plate 11 .
[0067] Beneficial effects: such as Figure 2 As shown, the cover plate 11 covers the top surface of the cover body 1 , thereby preventing foreign matter from entering the cover body 1 and the interior of the cabinet body 2 .
[0068] In summary, if Figure 1-2 In the embodiment of the utility model shown, the vertical electrical cabinet for glass tempering equipment is used, so that the high-current cables and the low-current cables can be introduced into the vertical electrical cabinet from the top and bottom respectively, and then the high-current cables and the low-current cables connected with the electrical components are led out from the top and bottom respectively of the vertical electrical cabinet. This can avoid the high-current cables and the low-current cables from contacting each other in the vertical electrical cabinet, prevent the signals of the low-current cables from being interfered with, and avoid the safety hazard of the high-current cables laid in the cable troughs on the ground or under the ground, so that the cables around the glass tempering equipment and the vertical electrical cabinet have good safety.
[0069] The technical principles of the present invention have been described above with reference to specific embodiments. These descriptions are intended solely to illustrate the principles of the present invention and should not be construed in any way as limiting the scope of protection of the present invention. Based on the explanations herein, those skilled in the art will be able to devise other specific implementations of the present invention without inventive effort, and such implementations will fall within the scope of protection of the present invention.
Claims
1. A vertical electrical cabinet for a glass tempering device, installed between the electrical cabinet and the glass tempering device, characterized in that, It includes a cover body and a cabinet body that are connected in sequence from top to bottom; both the cover body and the cabinet body are hollowly arranged; A first strong wire cable inlet hole and a second strong wire cable inlet hole are respectively provided on the right side surface and the rear end surface of the cover body, and at least one strong wire cable outlet hole is provided on the top surface of the cover body; At least one weak wire cable inlet hole and at least one weak wire cable outlet hole are provided at the bottom of the cabinet body. An electrical component mounting plate is vertically installed in the cabinet body. The top edge of the electrical component mounting plate is close to the strong wire cable outlet hole, and the bottom edge of the electrical component mounting plate is close to the weak wire cable outlet hole; The rear plate surface of the electrical component mounting plate is set as the mounting surface, and an upper mounting area and a lower mounting area are sequentially distributed from top to bottom on the mounting surface; The upper mounting area is used for mounting electrical components connected to strong wire cables, and the lower mounting area is used for mounting electrical components connected to weak wire cables.
2. The vertical electrical cabinet for glass tempering equipment according to claim 1, characterized in that, The lower mounting area is divided into an upper half and a lower half; The upper half of the lower mounting area is used for mounting weak electrical components that control air pipelines and oil pipelines, and the lower half of the lower mounting area is used for mounting weak electrical components that control non-air pipelines and non-oil pipelines.
3. The vertical electrical cabinet for glass tempering equipment according to claim 2, characterized in that, A partition is also installed in the cabinet body; The partition extends in the horizontal direction, and one side of the partition abuts against the rear plate surface of the electrical component mounting plate. The partition is used to isolate the upper half and the lower half of the lower mounting area.
4. The vertical electrical cabinet for glass tempering equipment according to claim 3, characterized in that, A sewage discharge port is also opened on the side surface of the cabinet body; The sewage discharge port is close to the bottom surface of the cabinet body, and the sewage discharge port is located below the partition.
5. The vertical electrical cabinet for glass tempering equipment according to claim 1, characterized in that, A plurality of support rods are also installed in the cabinet body; The support rods extend in the horizontal direction, and both ends of the support rods are respectively connected to the plate surface of the electrical component mounting plate or the inner side wall surface of the cabinet body.
6. The vertical electric cabinet for glass tempering equipment according to claim 2, characterized in that, A plurality of cabinet doors are also installed on the cabinet body; The cabinet doors are located on the front end surface or the rear end surface of the cabinet body. The plurality of cabinet doors are respectively opposite to the upper mounting area, the upper half of the lower mounting area, the lower half of the lower mounting area, and the front plate surface of the electrical component mounting plate.
7. The vertical electrical cabinet for glass tempering equipment according to claim 3, characterized in that, The electrical component mounting plate is also provided with a wire passing through hole; The wire passing through hole penetrates the plate surface of the electrical component mounting plate and is arranged close to the top surface of the partition.
8. The vertical electrical cabinet for glass tempering equipment according to claim 1, characterized in that, Support feet are also installed at the bottom of the cabinet body; The top of the support feet is connected to the bottom surface of the cabinet body for support, and the bottom of the support feet is used for fixing to the equipment mounting surface. A wiring gap is formed between the weak wire cable inlet hole and the weak wire cable outlet hole and the equipment mounting surface.
9. The vertical electrical cabinet for glass tempering equipment according to claim 1, wherein A plurality of heat dissipation holes are opened on both the left and right sides of the cabinet body; 10. The vertical electrical cabinet for glass tempering equipment according to claim 1, characterized in that, A cover plate is also installed on the top surface of the cover body; The strong wire cable outlet hole is opened on the cover plate.