Heating equipment mounting disc
By adopting a design with parallel side plates and inclined connectors on the heating equipment mounting plate, the collision problem during the mounting plate's advancement is solved, improving structural stability and heating efficiency, and achieving stable operation and efficient heating of the equipment.
Patent Information
- Application Number
- CN202520198607.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-08
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-02-08
AI Technical Summary
The existing heating equipment mounting plate is prone to collision with the interference mechanism during the advancement process, which can lead to damage and affect the maximization of heating efficiency.
A heating equipment mounting tray is designed, in which a first side plate and a second side plate are installed parallel to each other on a first plate. Connectors are connected at an angle through the first and second inclined plates to form an open storage space. Insert plates cooperate with strip grooves to enhance connection strength and avoid collisions. Heat transfer is optimized by using heat insulation and heat conduction plates.
The structural strength and stability of the mounting plate have been improved, collisions have been avoided, equipment installation and maintenance have been facilitated, and heating efficiency and energy utilization efficiency have been improved.
Smart Images

Figure CN223973990U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of liquid crystal substrate glass processing technology, and in particular to a heating equipment mounting plate. Background Technology
[0002] Overflow molding is a crucial production method in the processing of LCD substrate glass. In this process, the heating equipment plays a key role, providing auxiliary heating to the near and far ends of the overflow brick, and is the core equipment in the hot-end molding area. In actual process adjustments, once the heating equipment reaches a certain power, further increasing the power does not significantly improve the heating effect on the overflow brick. To improve heating efficiency, the heating equipment needs to be moved closer to the overflow brick, reducing the distance between them. However, existing heating equipment mounting plates have numerous problems, severely hindering the optimization and adjustment of the heating equipment.
[0003] Due to the complex internal structure of the furnace, there are numerous interference mechanisms. As the heating equipment mounting plate advances further, the two rear corners of the existing mounting plate will collide with these interference mechanisms, leading to damage to the mounting plate. This not only affects the normal advancement of the heating equipment but also prevents the maximization of heating efficiency. Utility Model Content
[0004] In order to solve the technical problems existing in the background art, this utility model proposes a heating equipment mounting plate.
[0005] This utility model proposes a heating equipment mounting tray, comprising: a first plate, a second plate, a first side plate, a second side plate, and a connector. The first side plate is mounted on the first plate and has a first outer wall on a first surface. The second side plate is mounted on the first plate and has a second outer wall on a second surface. The second plate is mounted on the first plate and has a third outer wall on a third surface. One end of the connector is located on the third surface, and the other end of the connector is located on the first / second surface. The connector connects the second plate, the first side plate, and the second side plate, and together they form an open storage space on one side of the first plate.
[0006] Preferably, the first surface is parallel to the second surface and perpendicular to the third surface.
[0007] Preferably, the connector includes a first inclined plate and a second inclined plate. The first inclined plate is installed between the second plate and the first side plate, with its two ends located on the first surface and the third surface, respectively. The second inclined plate is installed between the second plate and the second side plate, with its two ends located on the second surface and the third surface, respectively.
[0008] Preferably, one end of the first inclined plate has a first insert plate, the second plate has a first strip groove that can be adapted to accommodate the first insert plate, the other end of the first inclined plate has a second insert plate, the first side plate has a second strip groove that can be adapted to accommodate the second insert plate, the bottom of the first inclined plate has a third insert plate, and the first plate has a third strip groove that can be adapted to accommodate the third insert plate.
[0009] Preferably, one end of the second inclined plate has a fourth insert plate, the second plate body has a fourth slot that can accommodate the fourth insert plate, the other end of the second inclined plate has a fifth insert plate, the second side plate has a fifth slot that can accommodate the fifth insert plate, the bottom of the second inclined plate has a sixth insert plate, and the first plate body has a sixth slot that can accommodate the sixth insert plate.
[0010] Preferably, the first plate is further provided with a storage groove, and a third plate is inserted into the storage groove.
[0011] Preferably, both the second plate and the third plate are located on the vertical line of the first plate.
[0012] Preferably, the second plate is a heat insulation plate and the third plate is a heat-conducting plate.
[0013] This utility model proposes a heating equipment mounting plate with the following advantages: The first and second side plates are cooperating and installed on the first plate body, with the first surface parallel to the second surface and perpendicular to the third surface. This geometric layout ensures balanced force on both sides of the mounting plate under various working conditions, improving the overall structural strength and stability, guaranteeing stable equipment operation, and facilitating installation with other equipment components. The connecting parts utilize a first and second inclined plate, respectively installed between corresponding components. This inclined connection not only enhances the connection strength but also prevents collisions between the two corners of the first plate body's tail and the interference mechanism, solving the interference problem during the advancement of existing mounting plates. Multiple sets of insert plates and slots are used between components, such as between the first inclined plate and the second plate body, between the first side plate and the first plate body, and between the second inclined plate and related components, greatly improving the stability and reliability of the connection and effectively preventing relative displacement between components. An open storage space on one side facilitates the placement of heating equipment components, simplifying installation and maintenance; simultaneously, the design of the insert plates and slots facilitates the installation of each component, reducing operational difficulty. The second plate acts as a heat insulation plate, effectively preventing heat from being transferred to unnecessary areas and improving energy efficiency; the third plate acts as a heat conduction plate, which can quickly transfer heat to the overflow brick, meeting the high-efficiency heating requirements of the heating equipment in the processing of LCD substrate glass. Attached Figure Description
[0014] Figure 1 This is an overall structural diagram of a heating equipment mounting plate proposed in this utility model;
[0015] Figure 2This is a top view of a heating device mounting plate proposed in this utility model;
[0016] Figure 3 This is an internal structural diagram of a heating device mounting plate proposed in this utility model.
[0017] Figure 4 This is a top view of the internal structure of a heating device mounting plate proposed in this utility model;
[0018] Figure 5 This is a structural diagram of the first inclined plate of a heating equipment mounting plate proposed in this utility model. Detailed Implementation
[0019] refer to Figure 1-5 This utility model proposes a heating equipment mounting tray, mainly comprising a first plate 1, a second plate 2, a first side plate 3, a second side plate 7, and a connector. The first side plate 3 is mounted on the first plate 1 and has a first outer wall on the first surface. The second side plate 7 is also mounted on the first plate 1 and has a second outer wall on the second surface. Together with the first side plate 3, they ensure the stability of the overall structure of the mounting tray. The second plate 2 is mounted on the first plate 1 and has a third outer wall on the third surface. The connector plays a crucial role in connection and structural optimization. One end of the connector is located on the third surface, and the other end is located on the first / second surface. The connector tightly connects the second plate 2, the first side plate 3, and the second side plate 7, thus creating an open storage space on one side of the first plate 1. This storage space can be used to place related components of the heating equipment, facilitating the installation and maintenance of the equipment.
[0020] The first and second surfaces are parallel, which helps maintain a balance of forces on both sides of the mounting plate, ensuring its stability under various operating conditions. Simultaneously, the first and third surfaces are perpendicular, creating a regular geometric shape that facilitates installation with other equipment components and improves overall structural strength.
[0021] The connector includes a first inclined plate 4 and a second inclined plate 8. The first inclined plate 4 is installed between the second plate 2 and the first side plate 3, with its two ends located on the first and third surfaces, respectively. This inclined connection method enhances the connection strength between the second plate 2 and the first side plate 3, while preventing the two tail corners of the first plate 1 from colliding with the interference mechanism. The second inclined plate 8 is installed between the second plate 2 and the second side plate 7, with its two ends located on the second and third surfaces, also serving to strengthen the connection and prevent collisions.
[0022] One end of the first inclined plate 4 has a first insert plate 41, and the second plate 2 has a first slot 21 that can accommodate the first insert plate 41. This design of insert plate and slot not only facilitates the installation of the first inclined plate 4 and the second plate 2, but also effectively prevents relative displacement between the two after installation, ensuring the stability of the connection. The other end of the first inclined plate 4 has a second insert plate 42, the first side plate 3 has a second slot 31 that can accommodate the second insert plate 42, and the bottom of the first inclined plate 4 has a third insert plate 43. The first plate 1 has a third slot 11 that can accommodate the third insert plate 43. All of these are based on the same design concept. Through the cooperation of multiple insert plates and slots, the reliability of the connection between the first inclined plate 4 and other components is greatly improved. Similarly, one end of the second inclined plate 8 has a fourth insert plate, the second plate body 2 has a fourth slot 22 that can accommodate and store the fourth insert plate, the other end of the second inclined plate 8 has a fifth insert plate, the second side plate 7 has a fifth slot 71 that can accommodate and store the fifth insert plate, the bottom of the second inclined plate 8 has a sixth insert plate, and the first plate body 1 has a sixth slot 12 that can accommodate and store the sixth insert plate, further strengthening the connection between the second inclined plate 8 and other components.
[0023] The first plate 1 also has a storage groove 6, into which a third plate 9 is inserted. Both the second plate 2 and the third plate 9 are located on the vertical line of the first plate 1. The second plate 2 is a heat insulation plate, which effectively prevents heat from being transferred to unnecessary areas during the operation of the heating equipment, improving energy efficiency. The third plate 9 is a heat-conducting plate. In conjunction with the requirement to improve heating efficiency during process adjustments mentioned in the background, the heat-conducting plate can quickly transfer heat to the overflow brick, further improving the heating efficiency of the heater and meeting the high-efficiency requirements of the heating equipment in the liquid crystal substrate glass processing process.
[0024] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A heating equipment mounting plate, characterized in that, The utility model relates to a kind of plate structures, including: First plate body (1), second plate body (2), first side plate (3), second side plate (7) and connecting piece, first side plate (3) is installed on first plate body (1), and first side plate (3) has first outer wall on first face, second side plate (7) is installed on first plate body (1), and second side plate (7) has second outer wall on second face, second plate body (2) is installed on first plate body (1), and second plate body (2) has third outer wall on third face, one end of connecting piece is located third face, the other end of connecting piece is located first face / second face, and connecting piece links second plate body (2), first side plate (3) and second side plate (7) and is jointly spliced on first plate body (1) and forms a side open storage space.
2. A heating apparatus mounting plate according to claim 1, wherein First face and second face are parallel, and first face and third face are perpendicular.
3. A heating apparatus mounting plate according to claim 2, wherein Connecting piece includes first inclined plate (4) and second inclined plate (8), first inclined plate (4) is installed between second plate body (2) and first side plate (3), and both ends of first inclined plate (4) are located first face and third face respectively, and second inclined plate (8) is installed between second plate body (2) and second side plate (7), and both ends of second inclined plate (8) are located second face and third face respectively.
4. A heating apparatus mounting plate according to claim 3, wherein One end of first inclined plate (4) has first plugboard (41), and first plate body (2) has first strip slot (21) that can be adapted to store first plugboard (41), the other end of first inclined plate (4) has second plugboard (42), and first side plate (3) has second strip slot (31) that can be adapted to store second plugboard (42), and the bottom of first inclined plate (4) has third plugboard (43), and first plate body (1) has third strip slot (11) that can be adapted to store third plugboard (43).
5. The heating apparatus mounting plate of claim 3, wherein One end of second inclined plate (8) has fourth plugboard, and second plate body (2) has fourth strip slot (22) that can be adapted to store fourth plugboard, the other end of second inclined plate (8) has fifth plugboard, and second side plate (7) has fifth strip slot (71) that can be adapted to store fifth plugboard, and the bottom of second inclined plate (8) has sixth plugboard, and first plate body (1) has sixth strip slot (12) that can be adapted to store sixth plugboard.
6. The heating apparatus mounting plate of claim 1, wherein First plate body (1) is also provided with storage groove (6), and third plate body (9) is inserted in the inside of storage groove (6).
7. A heating appliance mounting tray according to claim 6, wherein, Second plate body (2) and third plate body (9) are located on the perpendicular line of first plate body (1).
8. A heating appliance mounting tray according to claim 7, wherein, Second plate body (2) is heat insulation plate, and third plate body (9) is heat conduction plate.