Rapid heat dissipation mold for automobile glass processing
By introducing cooling water tanks, heat dissipation box, heat dissipation cooling plates and installation components into the automotive glass processing mold, the problem of mold slippage and heat dissipation efficiency is solved, and a stable and efficient heat dissipation effect is achieved.
Patent Information
- Application Number
- CN202510743745.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-05
- Publication Date
- 2025-08-15
AI Technical Summary
The existing fast heat dissipation molds used for automotive glass processing have problems such as the bending mold slipping on the cooling plate, the small contact area between the coolant and the cooling plate leads to low heat dissipation efficiency, and the fan setting affects the pick-up and placement of the mold.
A cooling assembly including a cooling water tank, a heat dissipation box, a heat dissipation cooling plate, a heat dissipation fin and a conveyor pipe is designed. Combined with the installation assembly and the installation side panel, the heat dissipation is assisted by limiting, large-area coolant contact and a heat dissipation fan to prevent slipping and improve heat dissipation efficiency.
The stability and efficient heat dissipation of the bending mold are achieved, preventing slippage, increasing the contact area of the coolant, and combining with fan-assisted heat dissipation, improving the heat dissipation effect and avoiding pick-up and placement interference.
Smart Images

Figure CN120483502A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field related to automobile glass processing molds, and in particular to a rapid heat dissipation mold for automobile glass processing. Background Art
[0002] Automotive glass is a protective accessory for automotive bodies. During the bending process, as the temperature of the glass rises, the softened glass is bonded to the bending mold to form a curved glass. During this process, the heat generated by the bending mold is high. Traditional methods of using fans or static cooling are inefficient, necessitating an urgent need for heat dissipation from the bending mold. For example, Publication No. CN113562964A discloses a rapid heat dissipation mold for automotive glass processing, relating to the field of automotive glass manufacturing technology. The mold comprises a bending mold and a heat exchanger. The top end surface of the bending mold is curved to mimic the surface of glass, and the interior of the bending mold is a hollow structure. This allows low-temperature gas from the intake pipe to enter the bending mold to cool the mold, and the high-temperature gas from the bending mold is discharged into the return pipe. This improves the cooling efficiency of the automotive glass at the top of the bending mold, avoids uneven heat dissipation of the automotive glass, and thus affects the optical properties of the automotive glass. The gas does not directly contact the automotive glass, thereby fundamentally preventing the problem of impurities carried by the gas from contaminating the automotive glass. For example, announcement number CN222159989U discloses a rapid heat dissipation mold for automobile glass processing, comprising a fixed platform: a connecting block is installed in the middle of the fixed platform, the bottom of the connecting block is rotatably connected to one end of a rotating frame, a first cylinder is installed on the rotating frame, the first cylinder is fixedly connected to a movable frame, and a second cooling fin is installed on the movable frame. The first cooling fin and the second cooling fin are attached to both sides of the automobile processing mold by the provided first cooling fin and the second cooling fin, and the first cooling fin and the second cooling fin are cooled by a circulation component, thereby fully cooling and dissipating heat from both sides of the automobile processing mold. In addition, the automobile processing mold can be air-cooled and dissipated by the air-cooling component, so that the cold air on the first cooling fin and the second cooling fin can flow and cool the automobile processing mold, thereby achieving a better heat dissipation effect. However, the existing rapid heat dissipation molds for automotive glass processing still have the following shortcomings: 1. Existing rapid heat dissipation molds for automotive glass processing usually place the bending mold directly on the cooling fins. The two lack a limiter component, and the bending mold is prone to slipping and falling on the cooling fins. 2. Existing rapid heat dissipation molds for automotive glass processing mostly use heat dissipation pipes in contact with cooling fins. The coolant in the heat dissipation pipes removes the heat from the cooling fins to continuously dissipate heat to the bending mold. However, the contact area between the coolant in the cooling pipes and the cooling fins is small. This inadequate contact results in limited heat removal, low actual heat dissipation efficiency, and the cooling effect of the coolant needs to be improved. 3. In the existing rapid heat dissipation mold for automotive glass processing, when fans are used to assist in heat dissipation of the bending mold, the fans are directly set on the front and back sides of the entire equipment. However, the bending mold is large in size, and when the bending mold is placed in the cooling position, there will be interference between the fans, which will affect the placement and removal of the bending mold.
[0003] Therefore, we propose a rapid heat dissipation mold for automobile glass processing to solve the above problems. Summary of the Invention
[0004] The purpose of the present invention is to provide a fast heat dissipation mold for automobile glass processing, so as to solve the problem proposed in the above background technology that the bending mold is usually placed directly on the cooling fin, the two lack a limiting component, and the bending mold is prone to slipping and falling on the cooling fin. In addition, most of them use heat dissipation pipes to contact the cooling fins, and the coolant in the heat dissipation pipes takes away the heat of the cooling fins to continuously dissipate heat to the bending mold. However, the contact area between the coolant in the cooling pipe and the cooling fins is small, and the insufficient contact leads to limited heat removal, low actual heat dissipation efficiency, and the cooling effect of the coolant needs to be improved. Moreover, when using a fan to assist in heat dissipation of the bending mold, the fan is directly set on the front and back sides of the entire equipment, and the bending mold is large in size. When the bending mold is placed on the cooling plate, there will be interference between the fans, which will affect the placement and removal of the bending mold.
[0005] To achieve the above-mentioned object, the present invention provides the following technical solutions: a rapid heat dissipation mold for automobile glass processing, comprising a cooling water tank and a bending mold; Also includes: The cooling assembly is composed of a heat dissipation box body provided at the upper end of the cooling water tank, heat dissipation cooling fins fixed at the upper end of the heat dissipation box body, heat dissipation fins provided at equal intervals at the lower end of the heat dissipation cooling fins, and a delivery pipe provided at the lower end of the heat dissipation box body. The heat dissipation cooling fins are fitted on the lower end of the bending mold, the heat dissipation fins are immersed in the coolant in the inner cavity of the heat dissipation box body, and the lower end of the delivery pipe is curved and immersed in the cooling water flowing inside the cooling water tank. The mounting assembly is symmetrically arranged on the left and right sides of the heat dissipation box, and the mounting assembly limits the bending mold on the upper end of the heat dissipation cooling fin; The side panels are installed, the upper end of which is provided with a cooling fan, and the outer side of the upper end of the side panels is clamped and provided with a dust screen, and the side panels form a flip structure at the front and rear sides of the cooling water tank.
[0006] Preferably, a water inlet pipe is provided at the upper left end of the cooling water tank, and a drain pipe is provided at the lower right end of the cooling water tank, and control valves are provided on both the water inlet pipe and the drain pipe.
[0007] Preferably, support plates are fixedly connected to the left and right sides of the upper end of the cooling water tank, and the upper end of the support plates is fixedly connected to a heat dissipation box body, the lower end of the heat dissipation box body is fixedly connected to a delivery pipe, and a water pump is installed at the right end of the delivery pipe.
[0008] Preferably, the mounting assembly includes a movable plate fitted on the outer side of the heat sink, a fixed baffle fixedly connected to the front and rear ends of the movable plate, a vertical plate fixed to the lower end of the movable plate, a limit block fixed to the middle of the outer side of the heat sink, a fixing rod fixed to the middle of the upper end of the movable plate, a hollow plate fixed to the upper end of the outer side of the heat sink, and a fixing cap for locking and limiting.
[0009] Preferably, the movable plate drives the vertical plate and the limit block to form an up and down sliding structure, and the movable plate drives the fixed rod slot to be set in the hollow plate, the outer surface of the fixed rod is threadedly connected to a fixing cap, and the fixing cap is snap-connected to the middle of the hollow plate.
[0010] Preferably, the fixed baffle is fitted at the corner of the upper end of the heat dissipation box, and the fixed baffle is fitted at the left and right sides of the bending mold respectively, and the fixed baffle moves up and down at the corner of the heat dissipation box.
[0011] Preferably, auxiliary plates are fixedly connected to the middle parts of the front and rear sides of the cooling water tank, and the outer sides of the auxiliary plates are rotatably installed with mounting side plates. At the same time, the upper ends of the mounting side plates are fixed to the dust screen by fastening bolts, and when the mounting side plates are flipped upward to a vertical state, they are fitted between the side columns fixed to the front and rear sides of the upper end of the cooling water tank.
[0012] Preferably, a bidirectional electric telescopic rod for driving is installed at the bottom of the cooling water tank, and the output end of the bidirectional electric telescopic rod is fixedly connected to a movable push block, and linear guide rails are inserted on both sides of the upper end of the movable push block; Wherein, a front-to-back sliding structure is formed between the movable push block and the linear guide rail, and the linear guide rail is fixed on the front and back sides of the bottom of the cooling water tank.
[0013] Preferably, the movable push block is hingedly connected to a movable connecting block on one side away from the vertical central axis of the cooling water tank, and the movable connecting block is sleeved on the outer surface of the movable push rod, and a sliding structure is formed between the movable connecting block and the movable push rod; Wherein, the movable push rod is fixed to the lower end of the mounting side plate.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: the rapid heat dissipation mold for automobile glass processing can limit the bending mold at the upper end of the heat dissipation box during heat dissipation through the setting of the mounting assembly, thereby preventing slippage and improving stability during the heat dissipation process; through the setting of the cooling assembly, the heat dissipation fins are immersed in the coolant of the heat dissipation box, and the lower end of the delivery pipe enters the water flowing in the cooling water tank, which can continuously cool down the temperature; and the heat dissipation cooling fins and the coolant in the heat dissipation box have a very large contact area, which can quickly transfer the heat from the bending mold to the heat dissipation cooling fins, thereby quickly dissipating the heat of the bending mold continuously and efficiently; combined with the heat dissipation fan, the bending mold can be blown to assist in heat dissipation; and when the bending mold is taken and placed, the side panels are installed to flip it away from the bending mold at the front and rear sides of the cooling water tank, thereby preventing the installation of the side panels and the heat dissipation fan from interfering with the taking and placing of the bending mold, and leaving enough space for taking and placing the bending mold; 1. Equipped with an installation component, which includes a movable plate, a fixed baffle, a vertical plate, a limit block, a fixing rod, a hollow plate and a fixing cap. The installation of the installation component can play a certain role in limiting the bending mold, preventing the bending mold from slipping and falling during the heat dissipation process, and improving the stability of the bending mold during the heat dissipation process; 2. A cooling assembly is provided, which includes a heat dissipation box, heat dissipation cooling fins, heat dissipation fins and a delivery pipe. The bending mold is immersed in the coolant in the heat dissipation box, which increases the contact area between the heat dissipation cooling fins and the coolant, and quickly takes away the heat from the heat dissipation cooling fins, thereby achieving efficient and continuous heat dissipation of the bending mold; 3. It is equipped with mounting side panels, cooling fans and dust-proof nets. The cooling fans can assist in blowing air to dissipate heat for the bending mold. The dust-proof nets are engaged with the outer sides of the mounting side panels to prevent the cooling fan from blowing dust toward the bending mold when sucking air. The mounting side panels can be flipped on the front and back sides of the cooling water tank to prevent interference during the placement and removal of the bending mold. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the structure of the present invention when viewed from above; Figure 3 This is a schematic diagram of the top view of the structure of the present invention; Figure 4 This is a schematic diagram of the cross-sectional structure of the present invention; Figure 5 This is a schematic diagram of the exploded structure of the heat dissipation box, heat dissipation cooling sheet, heat dissipation fin and bending mold in a bottom view of the present invention; Figure 6 This is a schematic diagram of the overall structure of the bending mold and installation components of the present invention; Figure 7 This is a schematic diagram of the exploded structure of the installation assembly of the present invention; Figure 8 This is a schematic diagram of the exploded structure of the cooling water tank, heat dissipation box, heat dissipation cooling sheet, heat dissipation fins and delivery pipe of the present invention; Figure 9 This is a schematic diagram of the exploded structure of the heat dissipation box, heat dissipation cooling plate, heat dissipation fins and conveying pipe of the present invention; Figure 10 This is a schematic diagram of the structure of the side panels installed on the front and rear sides of the cooling water tank according to the present invention; Figure 11 This is a schematic diagram of the explosion structure of the side panels and dust screen installed in the present invention; Figure 12 It is a bottom view structural diagram of the movable push block, linear guide rail, movable connecting block and movable push rod of the present invention.
[0016] In the figure: 1. Cooling water tank; 2. Support plate; 3. Heat dissipation box; 4. Heat dissipation cooling plate; 5. Heat dissipation fin; 6. Bending mold; 7. Fastening bolts; 8. Movable plate; 9. Fixed baffle; 10. Vertical plate; 11. Limit block; 12. Fixed rod; 13. Hollow plate; 14. Fixed cap; 15. Delivery pipe; 16. Water pump; 17. Auxiliary plate; 18. Mounting side plate; 19. Cooling fan; 20. Dustproof net; 21. Side column; 22. Two-way electric telescopic rod; 23. Movable push block; 24. Linear guide; 25. Movable connecting block; 26. Movable push rod. DETAILED DESCRIPTION
[0017] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0018] See also Figures 1-12 , the present invention provides the following technical solutions: In order to solve the problems existing in the prior art, the present invention adopts the following technical solutions: a rapid heat dissipation mold for automobile glass processing, provided with a cooling water tank 1 and a bending mold 6, the cooling assembly is composed of a heat dissipation box body 3 arranged at the upper end of the cooling water tank 1, heat dissipation cooling fins 4 fixed to the upper end of the heat dissipation box body 3, heat dissipation fins 5 arranged at the lower end of the heat dissipation cooling fins 4 at equal intervals, and a conveying pipe 15 arranged at the lower end of the heat dissipation box body 3, the heat dissipation cooling fins 4 are fitted on the lower end of the bending mold 6, the heat dissipation fins 5 are immersed in the coolant in the inner cavity of the heat dissipation box body 3, and the lower end of the conveying pipe 15 is curved and immersed in the cooling water flowing inside the cooling water tank 1, a cooling fan 19 is installed at the upper end of the mounting side panel 18, and a dustproof net 20 is mounted on the outer side of the upper end of the mounting side panel 18, and the mounting side panel 18 forms a flip structure at the front and rear sides of the cooling water tank 1; like Figure 1 、 Figure 5 、 Figure 6 and Figure 7 As shown, the left and right sides of the upper end of the cooling water tank 1 are fixedly connected with a support plate 2, and the upper end of the support plate 2 is fixedly connected with a heat dissipation box 3. There is sufficient coolant in the heat dissipation box 3, and the upper end of the heat dissipation box 3 is fixedly connected with a heat dissipation cooling fin 4. First, the bending mold 6 that needs to be cooled is placed on the upper end of the heat dissipation cooling fin 4. Through the setting of the mounting assembly, the mounting assembly is symmetrically arranged on the left and right sides of the heat dissipation box 3, and the mounting assembly limits the bending mold 6 at the upper end of the heat dissipation cooling fin 4. The mounting assembly includes a movable plate 8 that is fitted on the outer side of the heat dissipation box 3, a fixed baffle 9 fixedly connected to the front and rear ends of the movable plate 8, a vertical plate 10 fixed to the lower end of the movable plate 8, a limit block 11 fixed to the middle of the outer side of the heat dissipation box 3, a fixed rod 12 fixed to the middle of the upper end of the movable plate 8, and a fixed plate 13 fixed to the upper end of the heat dissipation box 3. The hollow plate 13 at the upper end of the outer surface of the box body 3 and the fixing cap 14 for locking and limiting, move the movable plate 8 upward, and the movable plate 8 drives the fixed baffle 9 to move upward, so that the fixed baffle 9 is fitted to the corner of the drying and bending mold 6, and the drying and bending mold 6 can be limited by the fixed baffle 9 to prevent the drying and bending mold 6 from slipping and falling during heat dissipation, thereby improving the stability of the drying and bending mold 6 during the heat dissipation process. At the same time, the movable plate 8 drives the vertical plate 10 to slide between the limiting block 11, and the movable plate 8 drives the fixing rod 12 to be connected to the middle part of the hollow plate 13 by the card slot, and then rotates the fixing cap 14 threadedly connected to the outer surface of the fixing rod 12 so that the fixing cap 14 is engaged with the middle part of the hollow plate 13, thereby facilitating the limitation between the fixing rod 12 and the hollow plate 13, and positioning the movable plate 8 and the fixed baffle 9; After positioning is completed, Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 8 and Figure 9As shown, the bending die 6 is fitted on the upper end of the heat dissipation cooling fin 4, and the heat of the bending die 6 is transferred to the heat dissipation cooling fin 4, which is heated, and the lower end of the heat dissipation cooling fin 4 is evenly spaced with heat dissipation fins 5, which are immersed in the coolant inside the heat dissipation box 3, and the left side of the cooling water tank 1 is provided with a water inlet pipe, and the right end of the cooling water tank 1 is provided with a water outlet pipe. When the valves on the water inlet pipe and the water outlet pipe are started, the cooling water in the cooling water tank 1 flows, and at the same time, the water pump 16 installed at the right end of the delivery pipe 15 is started. The water pump 16 extracts the coolant after heat exchange in the heat dissipation box 3, and the bottom of the delivery pipe 15 is The portion is curved and immersed in the bottom of the cooling water tank 1, fully in contact with the flowing cooling water, increasing the contact area between the delivery pipe 15 and the cooling water flowing in the cooling water tank 1. After the coolant is extracted, it is cooled by the flowing cooling water in the cooling water tank 1 and then re-enters the heat dissipation box 3. The cooling water in the heat dissipation box 3 is always in a low-temperature state, and the contact area between the coolant and the heat dissipation fins 5 and the heat dissipation cooling fins 4 is large, thereby being able to continuously dissipate heat from the heat dissipation cooling fins 4, quickly transferring the heat from the bending die 6 to the heat dissipation cooling fins 4 and dissipating the heat, thereby being able to continuously and efficiently dissipate heat from the bending die 6; Moreover, in the actual cooling process, Figure 1 、 Figure 2 、 Figure 10 、 Figure 11 and Figure 12 As shown, the bidirectional electric telescopic rod 22 installed at the bottom of the cooling water tank 1 can be started, and the bidirectional electric telescopic rod 22 pushes the movable push block 23 to slide with the linear guide rail 24, and the movable push block 23 rotates with the movable connecting block 25, thereby driving the movable connecting block 25 to slide with the movable push rod 26, and the movable push rod 26 is fixed to the lower end of the mounting side plate 18, thereby driving the mounting side plate 18 to rotate with the auxiliary plate 17, and the mounting side plate 18 is flipped at the front and rear sides of the cooling water tank 1, and flipped to a vertical state and the inner side is fitted with the side column 21. At this time, the cooling fan 19 installed at the upper end of the mounting side plate 18 is started. The cooling fan 19 is symmetrically arranged on the front and rear sides of the drying and bending mold 6. Auxiliary air blowing and heat dissipation can be performed on the bending mold 6, which further improves the heat dissipation effect. In addition, a dustproof net 20 is installed on the outer side of the mounting side panel 18, and the dustproof net 20 and the mounting side panel 18 are fixed by fastening bolts 7. The setting of the dustproof net 20 can prevent dust from being sucked in and blown toward the bending mold 6 during suction. In addition, when the bending mold 6 needs to be taken out from the upper end of the heat dissipation cooling fin 4 after use, the two-way electric telescopic rod 22 drives the movable push block 23 and the linear guide rail 24 to slide in the opposite direction, so that the movable push rod 26 drives the mounting side panel 18 to flip outward and away from the bending mold 6, preventing interference with the mounting side panel 18 during the process of taking and placing the bending mold 6, and making it more convenient to take and place the bending mold 6.
[0019] The contents not described in detail in this specification belong to the existing technology known to professional and technical personnel in this field. The standard parts used in the present invention can be purchased from the market, and special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part adopt mature conventional means such as bolts, rivets, welding, etc. in the existing technology. The machinery, parts and equipment all adopt conventional models in the existing technology, and the circuit connections adopt conventional connection methods in the existing technology, which will not be described in detail here.
[0020] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A rapid heat dissipation mold for automobile glass processing, comprising a cooling water tank (1) and a bending mold (6); It is characterized in that Also includes: A cooling assembly, the cooling assembly is composed of a heat dissipation box (3) arranged at the upper end of a cooling water tank (1), a heat dissipation cooling fin (4) fixed to the upper end of the heat dissipation box (3), heat dissipation fins (5) arranged at equal intervals at the lower end of the heat dissipation cooling fin (4), and a delivery pipe (15) arranged at the lower end of the heat dissipation box (3), wherein the heat dissipation cooling fin (4) is fitted on the lower end of the drying and bending mold (6), the heat dissipation fin (5) is immersed in the coolant in the inner cavity of the heat dissipation box (3), and the lower end of the delivery pipe (15) is curved and immersed in the cooling water flowing inside the cooling water tank (1); The mounting assembly is symmetrically arranged on the left and right sides of the heat dissipation box (3), and the mounting assembly limits the bending mold (6) at the upper end of the heat dissipation cooling fin (4); A side panel (18) is installed, wherein a cooling fan (19) is installed on the upper end of the side panel (18), and a dust screen (20) is installed on the outer side of the upper end of the side panel (18), and the side panel (18) forms a flip structure on the front and rear sides of the cooling water tank (1).
2. The rapid heat dissipation mold for automobile glass processing according to claim 1, characterized in that: A water inlet pipe is provided at the upper left end of the cooling water tank (1), and a drain pipe is provided at the lower right end of the cooling water tank (1), and control valves are provided on both the water inlet pipe and the drain pipe.
3. The rapid heat dissipation mold for automobile glass processing according to claim 1, characterized in that: The left and right sides of the upper end of the cooling water tank (1) are fixedly connected to support plates (2), and the upper end of the support plate (2) is fixedly connected to a heat dissipation box (3), the lower end of the heat dissipation box (3) is fixedly connected to a delivery pipe (15), and a water pump (16) is installed at the right end of the delivery pipe (15).
4. The rapid heat dissipation mold for automobile glass processing according to claim 1, characterized in that: The mounting assembly comprises a movable plate (8) fitted on the outer side surface of the heat dissipation box (3), a fixed baffle (9) fixedly connected to the front and rear ends of the movable plate (8), a vertical plate (10) fixed to the lower end of the movable plate (8), a limit block (11) fixed to the middle of the outer side surface of the heat dissipation box (3), a fixing rod (12) fixed to the middle of the upper end of the movable plate (8), a hollow plate (13) fixed to the upper end of the outer side surface of the heat dissipation box (3), and a fixing cap (14) for locking and limiting.
5. The rapid heat dissipation mold for automobile glass processing according to claim 4, characterized in that: The movable plate (8) drives the vertical plate (10) and the limit block (11) to form an up-and-down sliding structure, and the movable plate (8) drives the fixed rod (12) to be arranged in a slot in the hollow plate (13). The outer surface of the fixed rod (12) is threadedly connected to a fixed cap (14), and the fixed cap (14) is snap-fitted and connected to the middle of the hollow plate (13).
6. The rapid heat dissipation mold for automobile glass processing according to claim 4, characterized in that: The fixed baffle (9) is fitted at the corner of the upper end of the heat dissipation box (3), and the fixed baffle (9) is fitted at the left and right sides of the bending mold (6) respectively. The fixed baffle (9) moves up and down at the corner of the heat dissipation box (3).
7. The rapid heat dissipation mold for automobile glass processing according to claim 1, characterized in that: The middle parts of the front and rear sides of the cooling water tank (1) are fixedly connected with auxiliary plates (17), and the outer sides of the auxiliary plates (17) are rotatably mounted with mounting side plates (18), and the upper ends of the mounting side plates (18) are fixed to the dust screen (20) by fastening bolts (7), and when the mounting side plates (18) are turned upward to be in a vertical state, they are fitted between the side columns (21) fixed to the front and rear sides of the upper end of the cooling water tank (1).
8. The rapid heat dissipation mold for automobile glass processing according to claim 1, characterized in that: A bidirectional electric telescopic rod (22) for driving is installed at the bottom of the cooling water tank (1), and an output end of the bidirectional electric telescopic rod (22) is fixedly connected to a movable push block (23), and linear guide rails (24) are inserted on both left and right sides of the upper end of the movable push block (23); A front-to-back sliding structure is formed between the movable push block (23) and the linear guide rail (24), and the linear guide rail (24) is fixed to the front and back sides of the bottom of the cooling water tank (1).
9. The rapid heat dissipation mold for automobile glass processing according to claim 8, characterized in that: The movable push block (23) is hingedly connected to a movable connecting block (25) on one side away from the vertical central axis of the cooling water tank (1), and the movable connecting block (25) is sleeved on the outer surface of the movable push rod (26), and a sliding structure is formed between the movable connecting block (25) and the movable push rod (26); Wherein, the movable push rod (26) is fixed to the lower end of the mounting side plate (18).
Citation Information
Patent Citations
Rapid heat dissipation mold for automobile glass processing
CN113562964A
Rapid heat dissipation mold for automobile glass processing
CN222159989U