Automatic aligning and pressing device for glass panel of electric fireplace
By designing a guiding pressing structure and a matching output structure, the problem of decentralized processing in the automatic alignment and pressing device for fireplace glass panels was solved, achieving integrated processing of feeding, transmission, and pressing, thus improving production efficiency and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- BOGE TECH CO LTD
- Filing Date
- 2026-02-02
- Publication Date
- 2026-04-14
AI Technical Summary
The existing automatic alignment and pressing device for fireplace glass panels cannot work efficiently and cannot integrate feeding, transmission and pressing into a single process, resulting in fragmented processing between steps.
It adopts a guided pressing structure and a matching output structure, including a material guiding and conveying component, a conveying and carrying component, and a pressing component. Through the cooperation of a stepper motor, a hydraulic rod, and a hydraulic base, it realizes the integrated processing of glass panel transmission and pressing.
It achieves highly efficient glass panel assembly, integrating material feeding, conduction, and pressing processes, thereby improving production efficiency and processing stability.
Smart Images

Figure CN121850407A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of electric fireplace processing technology, specifically an automatic alignment and pressing device for electric fireplace glass panels. Background Technology
[0002] Fireplace glass is a special type of microcrystalline glass specifically designed for fireplace observation windows. It is a high-temperature industrial product, primarily installed in wood-burning fireplaces, real-flame fireplaces, and electric fireplaces. It prevents flames from escaping and smoke from dissipating, while balancing sealing and thermal conductivity to improve heating efficiency and safety. Made of highly heat-resistant material with a density of approximately 2.6 g / cm³, this glass can withstand continuous temperatures of 860°C and instantaneous temperatures of 1000°C. It has a low coefficient of thermal expansion and strong resistance to temperature fluctuations. Its light brown, transparent appearance combines excellent light transmittance and thermal conductivity, facilitating observation of the combustion process and directing heat into the room.
[0003] According to Chinese Patent Publication No. CN119056842A, the technology relates to glass panel production technology, specifically an automated production line for smart home appliance touch glass panels, including glass melting equipment, environmental protection equipment, glass cutting equipment, glass recycling equipment, and glass tempering equipment. The glass recycling equipment includes: a frame with a diamond file mounted on it; an adsorption assembly mounted on the frame with a trigger plate; a power assembly connected to the diamond file, with pulleys installed on it, which cooperate with the trigger plate to generate negative pressure in the adsorption assembly; and an elastic support assembly positioned between the diamond file and the power assembly, cooperating with a side plate on the frame to allow the diamond file to have two working positions: a separation position and a scribing position. After the adsorption assembly generates negative pressure, the diamond file switches to the scribing position to scribble the glass before crushing, ensuring the glass is crushed in stages during pulverization and preventing glass shards from splashing.
[0004] Currently, existing automatic alignment and pressing devices for fireplace glass panels cannot operate efficiently. They cannot effectively integrate feeding, transmission, and pressing into a single process, resulting in fragmented processing between steps and an inability to perform integrated processing. Summary of the Invention
[0005] To address the problems in the prior art, the present invention provides an automatic alignment and pressing device for the glass panel of an electric fireplace.
[0006] The technical solution adopted by the present invention to solve its technical problem is: an automatic alignment and pressing device for glass panels of electric fireplaces, comprising a guiding pressing structure and a cooperating output structure, wherein the cooperating output structure is fixedly provided on the side end of the guiding pressing structure;
[0007] The guiding pressing structure is used to guide the pressing process; the material conveying component is used to conduct the glass panel; the conveying and carrying component is used to guide the adapter; and the pressing component is used to press the adapter and the glass panel together.
[0008] In conjunction with the output structure, it is used for the transmission of finished products. Through the extension and retraction of the second hydraulic rod, it drives the docking guide block and the guide conveyor to move, so that the adapter seat and the glass panel are separated from the guide pressing structure.
[0009] Specifically, the guiding pressing structure includes a material conveying component, a conveying and carrying component, and a pressing component. The material conveying component is fixedly installed on one side of the conveying and carrying component, and the pressing component is fixedly installed on the other side of the conveying and carrying component.
[0010] Specifically, the material guiding and conveying component includes a support platform, a front plate fixedly connected to the support platform, a stepper motor mounted on the front plate, the stepper motor controlling the rotation of the lead screw, the lead screw being threadedly connected to the sliding block, and the sliding block being slidably connected to the guide rod, a connecting frame fixedly connected to the sliding block, and a guide plate fixedly connected to the connecting frame, the sliding block, the connecting frame, and the guide plate being slidably adjusted on the front plate.
[0011] Specifically, an infrared sensor is installed on one side of the front plate, and a swing frame is hinged to the lower end of the front plate. An electro-hydraulic rod is hinged to the swing frame and is hinged to the front plate. A guide bracket is also fixedly connected to the front plate and is connected to the swing frame through a guide plate.
[0012] Specifically, the conveying and transporting component includes a carrier frame, on which a motor is installed. The motor controls a rotating rod to rotate. The rotating rod drives a meshing toothed belt to rotate via a toothed disc. A docking shaft block is fixedly connected to the toothed belt. An adapter seat is elastically engaged on the docking shaft block via a spring bracket.
[0013] Specifically, the pressing component includes a fixed frame, a mounting platform is fixedly connected to the fixed frame, a hydraulic seat is mounted on the mounting platform, and a pressing mechanism is fixedly provided at the lower end of the hydraulic seat. The hydraulic seat controls the extension and retraction adjustment of the pressing mechanism, so that the pressing mechanism slides on the fixed frame.
[0014] Specifically, the pressing mechanism includes a docking guide block, an electro-hydraulic base, a fixed support plate, a first contact roller, a docking guide shaft, a movable guide frame, and a second contact roller. The lower ends of the docking guide block are fixedly mounted with fixed support plates on both sides. The lower ends of the fixed support plates are rotatably equipped with the first contact roller. An electro-hydraulic base is also mounted on the docking guide block. The electro-hydraulic base controls the extension and retraction adjustment of the movable guide frame through the docking guide shaft. The lower ends of the movable guide frame are rotatably connected to the second contact roller.
[0015] Specifically, the mating output structure includes a docking guide block, a first hydraulic rod, a guide conveying platform, a track frame, and a second hydraulic rod. The guide conveying platform is slidably connected to the track frame. The docking guide block is fixedly installed on the upper end of the guide conveying platform. The first hydraulic rod is installed on one side of the guide conveying platform, and the second hydraulic rod is installed on the other side of the guide conveying platform.
[0016] Specifically, the second hydraulic rod controls the sliding of the docking guide block and the guide conveyor on the track frame by extending and retracting, and the first hydraulic rod is a driven adjustment, which is coordinated with the extension and retraction adjustment of the second hydraulic rod. The docking guide block and the adapter seat are adapted to the glass panel.
[0017] Specifically, a hydraulic base is fixedly connected to the upper end of the docking guide block. The hydraulic base changes the position of the fixed support plate, the first contact roller, and the second contact roller through the docking guide block. At the same time, the electro-hydraulic base performs secondary adjustment of the position of the movable guide frame and the second contact roller through the docking guide shaft. The fixed frame and the support platform are fixed to the rear end of the support frame.
[0018] The beneficial effects of this invention are:
[0019] First, this invention uses a material guiding and conveying component to conduct glass panels. A stepper motor controls a lead screw to rotate, changing the position of a sliding block on the front plate. The glass panel is guided in through a guide bracket and then contacts a guide plate. At this point, the guide plate moves, allowing the glass panel to be released from its limit and reach the swing frame. An electro-hydraulic rod controls the swing frame to rotate around the front plate, thus allowing the glass panel to reach the adapter seat for conduction. Simultaneously, a conveying and transporting component is set up to continuously conduct the material to the adapter seat. A hydraulic seat in the pressing component controls the pressing mechanism to descend, and an electro-hydraulic seat controls the movable guide frame and the second contact roller to descend and adjust secondary, thereby performing the pressing operation. Through the combination of the material guiding and conveying component, the conveying and transporting component, and the pressing component, integrated processing is achieved, resulting in efficient coordination and effectively integrating feeding, conduction, and pressing into a single process.
[0020] Second, the present invention facilitates the guidance of the finished product by cooperating with the output structure. The second hydraulic rod controls the position of the guide conveyor on the track frame by extending and retracting. At this time, the first hydraulic rod extends and retracts voluntarily, changing the position of the docking guide block, so that the docking guide block comes into contact with the finished product, thereby guiding the finished product to detach from the guide pressing structure and realize subsequent production work. Attached Figure Description
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Figure 1 This is a three-dimensional structural diagram of the main body from a frontal perspective in this invention;
[0023] Figure 2 This is a side view three-dimensional structural diagram of the main body in this invention;
[0024] Figure 3 This is a perspective view of the guiding pressing structure in this invention;
[0025] Figure 4 This is a perspective view of the material guiding and conveying component in this invention;
[0026] Figure 5 This is a perspective view of the transport component in this invention;
[0027] Figure 6 This is a perspective view of the pressing component in this invention;
[0028] Figure 7 This is a three-dimensional exploded view of the pressing mechanism in this invention;
[0029] Figure 8 This is a three-dimensional view of the main body and output structure in this invention.
[0030] In the diagram: 1-Guiding pressing structure, 2-Matching output structure, 3-Material guiding and conveying component, 4-Conveying and carrying component, 5-Pressing component, 6-Support platform, 7-Guide rod, 8-Screw rod, 9-Sliding block, 10-Connecting frame, 11-Guide plate, 12-Infrared sensor, 13-Front plate, 14-Electro-hydraulic rod, 15-Swing frame, 16-Guide bracket, 17-Stepper motor, 18-Carrier frame, 19-Motor, 20-Toothed belt, 21-Spring 22-Between shaft block, 23-Adaptor seat, 24-Fixed frame, 25-Mounting platform, 26-Hydraulic seat, 27-Pressure mechanism, 28-Between guide block, 29-Electrically controlled hydraulic seat, 30-Fixed support plate, 31-First contact roller, 32-Between guide shaft, 33-Modible guide frame, 34-Second contact roller, 35-Between guide block, 36-First hydraulic rod, 37-Guide conveying platform, 38-Rail frame, 39-Second hydraulic rod, 40-Rotating rod. Detailed Implementation
[0031] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.
[0032] The invention will be further described below with reference to the accompanying drawings.
[0033] Example
[0034] like Figure 1-8 As shown, an automatic alignment and pressing device for an electric fireplace glass panel according to the present invention includes a guiding pressing structure 1 and a mating output structure 2, wherein the mating output structure 2 is fixedly provided on the side end of the guiding pressing structure 1.
[0035] The guiding pressing structure 1 is used to guide the pressing process; the material conveying component 3 is used to conduct the glass panel; the conveying and carrying component 4 is used to guide the adapter 23; and the pressing component 5 is used to press the adapter 23 and the glass panel together.
[0036] In conjunction with the output structure 2, the finished product is transferred. The extension and retraction of the second hydraulic rod 39 drives the docking guide block 35 and the guide conveyor 37 to move, so that the adapter seat 23 and the glass panel are separated from the guide pressing structure 1. The structural design of the output structure 2 facilitates the guidance of the processed product. The extension and retraction of the second hydraulic rod 39 controls the position of the guide conveyor 37 on the track frame 38. At this time, the first hydraulic rod 36 extends and retracts, changing the position of the docking guide block 35, so that the docking guide block 35 comes into contact with the processed product, thereby guiding the processed product to detach from the guide pressing structure 1 and realize subsequent production work.
[0037] The guiding pressing structure 1 includes a material guiding and conveying component 3, a conveying and carrying component 4, and a pressing component 5. The material guiding and conveying component 3 is fixedly installed on one side of the conveying and carrying component 4, and the pressing component 5 is fixedly installed on the other side of the conveying and carrying component 4.
[0038] The material conveying component 3 includes a support platform 6, on which a front plate 13 is fixedly connected. A stepper motor 17 is mounted on the front plate 13, controlling the rotation of a lead screw 8. The lead screw 8 is threadedly connected to a sliding block 9, which is slidably connected to a guide rod 7. A connecting frame 10 is fixedly connected to the sliding block 9, and a guide plate 11 is fixedly connected to the connecting frame 10. The sliding block 9, connecting frame 10, and guide plate 11 slide and adjust on the front plate 13. Through the arrangement of the material conveying component 3, the glass panel is conveyed. The stepper motor 17 controls the rotation of the lead screw 8, changing the position of the sliding block 9 on the front plate 13. The glass panel is guided in through the guide bracket 16 and then contacts the guide plate 11, at which point the guide plate 11 moves. This allows the glass panel to be unrestricted and reach the swing frame 15. The electro-hydraulic rod 14 controls the swing frame 15 to rotate, causing the swing frame 15 to rotate around the front plate 13, thereby allowing the glass panel to reach the adapter seat 23 for transmission. At the same time, the setting of the conveyor component 4 enables continuous transmission to the adapter seat 23. The hydraulic seat 26 in the pressing component 5 controls the pressing mechanism 27 to descend, and the electro-hydraulic seat 29 controls the movable guide frame 33 and the second contact roller 34 to descend and adjust for the second time, thereby performing the pressing operation. Through the combination of the material conveying component 3, the conveyor component 4, and the pressing component 5, integrated processing is carried out, and efficient coordination is achieved, effectively integrating feeding, transmission, and pressing into one process.
[0039] An infrared sensor 12 is installed on one side of the front panel 13. A swing frame 15 is hinged to the lower end of the front panel 13, and an electro-hydraulic rod 14 is hinged to the swing frame 15. The electro-hydraulic rod 14 is hinged to the front panel 13. A guide bracket 16 is also fixedly connected to the front panel 13. The guide bracket 16 is connected to the swing frame 15 through a guide plate 11. The infrared sensor 12 senses the movement, and the glass panel is then placed into the guide bracket 16 by a robotic arm. At this time, the guide plate 11 is in contact with the bottom of the guide bracket 16, and the glass is then placed into contact with the bottom of the guide bracket 16. The bottom of the panel is supported, and then the stepper motor 17 works, driving the lead screw 8 to rotate, so that the sliding block 9 moves under the limit of the guide rod 7 and the lead screw 8. At this time, the sliding block 9 slides on the front plate 13, changing the position of the connecting frame 10 and the guide plate 11, thereby guiding the glass panel to the swing frame 15. At this time, the electro-hydraulic rod 14 works, and by extending, it causes the swing frame 15 to rotate around the hinge position with the front plate 13 on the left side. At this time, the glass panel is guided to the adapter seat 23 through the swing frame 15.
[0040] The conveying and transporting component 4 includes a support frame 18, on which a motor 19 is mounted. The motor 19 controls the rotation of a rotating rod 40. The rotating rod 40 drives a meshing toothed belt 20 to rotate via a toothed disc. A docking shaft block 22 is fixedly connected to the toothed belt 20. An adapter seat 23 is elastically engaged on the docking shaft block 22 via a spring bracket 21. When the adapter seat 23 is placed on the spring bracket 21, the motor 19 starts working, driving the rotating rod 40 to rotate. The rotation of the rotating rod 40 drives the meshing toothed belt 20 to rotate as well, thereby driving the adapter seat 23 to move through the docking shaft block 22 and the spring bracket 21, changing the position of the adapter seat 23.
[0041] The pressing component 5 includes a fixed frame 24, a mounting platform 25 is fixedly connected to the fixed frame 24, a hydraulic seat 26 is mounted on the mounting platform 25, and a pressing mechanism 27 is fixedly provided at the lower end of the hydraulic seat 26. The hydraulic seat 26 controls the extension and retraction adjustment of the pressing mechanism 27, so that the pressing mechanism 27 slides on the fixed frame 24.
[0042] The pressing mechanism 27 includes a docking guide block 28, an electro-hydraulic base 29, a fixed support plate 30, a first contact roller 31, a docking guide shaft 32, a movable guide frame 33, and a second contact roller 34. Fixed support plates 30 are fixedly installed on both sides of the lower end of the docking guide block 28. The first contact roller 31 is rotatably mounted on the lower end of the fixed support plate 30. An electro-hydraulic base 29 is also installed on the docking guide block 28. The electro-hydraulic base 29 controls the extension and retraction of the movable guide frame 33 via the docking guide shaft 32. The second contact roller 34 is rotatably connected to the lower end of the movable guide frame 33. The pressing component 5 performs... During operation, the hydraulic base 26 controls the pressing mechanism 27 to descend, and the docking guide block 28, the electro-hydraulic base 29, the fixed support plate 30, the first contact roller 31, the docking guide shaft 32, the movable guide frame 33, and the second contact roller 34 descend as a whole. At this time, the first contact roller 31 contacts the glass panel and performs the pressing process. At the same time, the electro-hydraulic base 29 controls the extension and retraction adjustment of the docking guide shaft 32, changing the position of the movable guide frame 33 and the second contact roller 34, so that the second contact roller 34 contacts the glass panel and performs a secondary pressing process, thereby improving the pressing stability.
[0043] The output structure 2 includes a docking guide block 35, a first hydraulic rod 36, a guide conveying platform 37, a track frame 38, and a second hydraulic rod 39. The guide conveying platform 37 is slidably connected to the track frame 38. The docking guide block 35 is fixedly installed on the upper end of the guide conveying platform 37. The first hydraulic rod 36 is installed on one side of the guide conveying platform 37, and the second hydraulic rod 39 is installed on the other side of the guide conveying platform 37. In operation with the output structure 2, the second hydraulic rod 39 controls the guide conveying platform 37 to slide on the track frame 38. This allows the docking guide block 35 to reach the lower part of the adapter seat 23 and the glass panel. The docking guide block 35 is fitted with the adapter seat 23 and the glass panel. With the movement of the docking guide block 35 and the rotation of the spring bracket 21 and the docking shaft block 22 driven by the toothed belt 20, the adapter seat 23 is disengaged from the spring bracket 21 and reaches the docking guide block 35. The docking guide block 35 guides the reprocessing. At this time, the first hydraulic rod 36 cooperates with the extension and retraction adjustment of the docking guide block 35 to ensure the stability of the docking guide block 35.
[0044] The second hydraulic rod 39 controls the sliding of the docking guide block 35 and the guide conveyor 37 on the track frame 38 by extending and retracting. The first hydraulic rod 36 is a driven adjustment, which is coordinated with the extension and retraction adjustment of the second hydraulic rod 39. The docking guide block 35 and the adapter seat 23 are adapted to the glass panel.
[0045] A hydraulic base 26 is fixedly connected to the upper end of the docking guide block 28. The hydraulic base 26 changes the position of the fixed support plate 30, the first contact roller 31 and the second contact roller 34 through the docking guide block 28. At the same time, the electro-hydraulic base 29 performs secondary adjustment of the position of the movable guide frame 33 and the second contact roller 34 through the docking guide shaft 32. The fixed frame 24 and the support platform 6 are fixed to the rear end of the support frame 18.
[0046] The working principle is as follows: When in use, the adapter seat 23 is placed on the spring bracket 21 by the robotic arm. At this time, the motor 19 works and drives the rotating rod 40 to rotate. The rotation of the rotating rod 40 drives the meshing toothed belt 20 to rotate as well, thereby driving the adapter seat 23 to move through the docking shaft block 22 and the spring bracket 21, changing the position of the adapter seat 23.
[0047] First, the glass panel reaches the position of the material conveying component 3. At this time, the infrared sensor 12 senses the glass panel and places it into the guide bracket 16 through the robotic arm. The guide plate 11 is attached to the bottom of the guide bracket 16 to support the bottom of the glass panel. Then, the stepper motor 17 works to drive the lead screw 8 to rotate, so that the sliding block 9 moves under the limit of the guide rod 7 and the lead screw 8. The sliding block 9 slides on the front plate 13, changing the position of the connecting frame 10 and the guide plate 11, thereby guiding the glass panel to the swing frame 15. At this time, the electro-hydraulic rod 14 works and extends, so that the swing frame 15 rotates around the hinge position with the front plate 13 on the left side. The glass panel is then guided to the adapter seat 23 through the swing frame 15.
[0048] Then, the pressing component 5 works. At this time, the hydraulic seat 26 controls the pressing mechanism 27 to descend. The docking guide block 28, the electro-hydraulic seat 29, the fixed support plate 30, the first contact roller 31, the docking guide shaft 32, the movable guide frame 33, and the second contact roller 34 descend as a whole. At this time, the first contact roller 31 contacts the glass panel and performs the pressing process. At the same time, the electro-hydraulic seat 29 controls the extension and retraction adjustment of the docking guide shaft 32, changing the position of the movable guide frame 33 and the second contact roller 34, so that the second contact roller 34 contacts the glass panel and performs the secondary pressing process, thereby improving the pressing stability performance.
[0049] After pressing is completed, the output structure 2 begins to work. The second hydraulic rod 39 controls the guide conveyor 37 to slide on the track frame 38, so that the docking guide block 35 reaches the adapter seat 23 and the lower part of the glass panel. The docking guide block 35 is fitted with the adapter seat 23 and the glass panel. With the movement of the docking guide block 35, and the rotation of the spring bracket 21 and docking shaft block 22 driven by the toothed belt 20, the adapter seat 23 is disengaged from the spring bracket 21 and reaches the docking guide block 35. The docking guide block 35 guides the further processing. At this time, the first hydraulic rod 36 cooperates with the extension and retraction adjustment of the docking guide block 35 to ensure the stability of the docking guide block 35 and complete the work.
[0050] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An automatic alignment and pressing device for an electric fireplace glass panel, characterized in that: It includes a guiding pressing structure (1) and a mating output structure (2), with the mating output structure (2) fixedly provided on the side end of the guiding pressing structure (1); The guiding pressing structure (1) is used to guide the pressing process, the material conveying component (3) is used to conduct the glass panel, the conveying and transporting component (4) is used to guide the adapter (23), and the pressing component (5) is used to press the adapter (23) and the glass panel. In conjunction with the output structure (2), it is used for the transmission of finished products. Through the extension and retraction of the second hydraulic rod (39), it drives the docking guide block (35) and the guide conveying table (37) to move, so that the adapter seat (23) and the glass panel are separated from the guide pressing structure (1).
2. The automatic alignment and pressing device for an electric fireplace glass panel according to claim 1, characterized in that: The guiding pressing structure (1) includes a material conveying component (3), a conveying and carrying component (4) and a pressing component (5). The material conveying component (3) is fixedly installed on one side of the conveying and carrying component (4), and the pressing component (5) is fixedly installed on the other side of the conveying and carrying component (4).
3. The automatic alignment and pressing device for an electric fireplace glass panel according to claim 2, characterized in that: The material conveying component (3) includes a support platform (6), a front plate (13) is fixedly connected to the support platform (6), a stepper motor (17) is installed on the front plate (13), the stepper motor (17) controls the lead screw (8) to rotate, the lead screw (8) is threadedly connected to the sliding block (9), and the sliding block (9) is slidably connected to the guide rod (7), a connecting frame (10) is fixedly connected to the sliding block (9), and a guide plate (11) is fixedly connected to the connecting frame (10). The sliding block (9), the connecting frame (10), and the guide plate (11) slide and adjust on the front plate (13).
4. The automatic alignment and pressing device for an electric fireplace glass panel according to claim 3, characterized in that: An infrared sensor (12) is installed on one side of the front plate (13). A swing frame (15) is hinged to the lower end of the front plate (13). An electro-hydraulic rod (14) is hinged to the swing frame (15). The electro-hydraulic rod (14) is hinged to the front plate (13). A guide bracket (16) is also fixedly connected to the front plate (13). The guide bracket (16) is connected to the swing frame (15) through a guide plate (11).
5. The automatic alignment and pressing device for an electric fireplace glass panel according to claim 4, characterized in that: The conveying and transporting component (4) includes a support frame (18), on which a motor (19) is installed. The motor (19) controls the rotating rod (40) to rotate. The rotating rod (40) drives the meshing toothed belt (20) to rotate through a toothed disc. A docking shaft block (22) is fixedly connected to the toothed belt (20). An adapter seat (23) is elastically engaged on the docking shaft block (22) through a spring bracket (21).
6. The automatic alignment and pressing device for an electric fireplace glass panel according to claim 5, characterized in that: The pressing component (5) includes a fixed frame (24), a mounting platform (25) is fixedly connected to the fixed frame (24), a hydraulic seat (26) is installed on the mounting platform (25), and a pressing mechanism (27) is fixedly provided at the lower end of the hydraulic seat (26). The hydraulic seat (26) controls the pressing mechanism (27) to extend and retract, so that the pressing mechanism (27) slides on the fixed frame (24).
7. The automatic alignment and pressing device for an electric fireplace glass panel according to claim 6, characterized in that: The pressing mechanism (27) includes a docking guide block (28), an electro-hydraulic base (29), a fixed support plate (30), a first contact roller (31), a docking guide shaft (32), a movable guide frame (33), and a second contact roller (34). The lower ends of the docking guide block (28) are fixedly mounted with the fixed support plate (30). The lower end of the fixed support plate (30) is rotatably equipped with the first contact roller (31). The docking guide block (28) is also equipped with the electro-hydraulic base (29). The electro-hydraulic base (29) controls the extension and retraction adjustment of the movable guide frame (33) through the docking guide shaft (32). The lower end of the movable guide frame (33) is rotatably connected to the second contact roller (34).
8. The automatic alignment and pressing device for an electric fireplace glass panel according to claim 7, characterized in that: The mating output structure (2) includes a docking guide block (35), a first hydraulic rod (36), a guide conveying platform (37), a track frame (38), and a second hydraulic rod (39). The guide conveying platform (37) is slidably connected to the track frame (38). The docking guide block (35) is fixedly installed on the upper end of the guide conveying platform (37). The first hydraulic rod (36) is installed on one side of the guide conveying platform (37), and the second hydraulic rod (39) is installed on the other side of the guide conveying platform (37).
9. The automatic alignment and pressing device for an electric fireplace glass panel according to claim 8, characterized in that: The second hydraulic rod (39) controls the docking guide block (35) and the guide conveyor (37) to slide on the track frame (38) by extension and retraction. The first hydraulic rod (36) is a driven adjustment, which is coordinated with the extension and retraction adjustment of the second hydraulic rod (39). The docking guide block (35) and the adapter seat (23) are adapted to the glass panel.
10. An automatic alignment and pressing device for an electric fireplace glass panel according to claim 9, characterized in that: The upper end of the docking guide block (28) is fixedly connected to a hydraulic base (26). The hydraulic base (26) changes the position of the fixed support plate (30), the first contact roller (31) and the second contact roller (34) through the docking guide block (28). At the same time, the electro-hydraulic base (29) performs secondary adjustment of the position of the movable guide frame (33) and the second contact roller (34) through the docking guide shaft (32). The fixed frame (24) and the support platform (6) are fixed at the rear end of the support frame (18).
Citation Information
Patent Citations
Automatic production line for intelligent household appliance touch glass panels
CN119056842A