A glass fiber reinforced unsaturated polyester plastic product flat press
By designing an automatic tilting unloading flat vulcanizing machine for glass fiber reinforced unsaturated polyester plastic products, the problem of danger in manual unloading has been solved, and automated control and safe and efficient vulcanization production have been achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ANHUI JIESHITU NEW MATERIALS CO LTD
- Filing Date
- 2023-07-24
- Publication Date
- 2026-05-01
AI Technical Summary
Existing flat vulcanizing machines require manual unloading during the vulcanization process, which poses a high-temperature hazard and lacks automated control.
A flat vulcanizing machine for glass fiber reinforced unsaturated polyester plastic products was designed. It adopts a vulcanizing production structure and a control connection structure to realize automatic tilting unloading. Combined with components such as air compressor, hydraulic column, and motor drive, it realizes automated control and material guiding and discharge.
It has enabled automated unloading in the vulcanization process, reducing the risks of manual operation and improving production efficiency and safety.
Smart Images

Figure CN116728658B_ABST
Abstract
Description
A glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine Technical Field
[0001] This invention relates to the technical field of plastic product flat vulcanizing machine equipment, specifically a glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine. Background Technology
[0002] A vulcanizing machine is a machine used to vulcanize various rubber products. It features functions such as timed mold locking, automatic pressure compensation, automatic temperature control, automatic timing, and alarm when the time is up. Vulcanizing machines are available in three types: electric heating, steam heating, and heat transfer oil heating. They are also known as flat vulcanizing machines, foam board vulcanizing machines, and rubber vulcanizing machines.
[0003] As the closest existing technology, Chinese Patent Publication No. CN215589736U discloses a small flat vulcanizing machine specifically for plastic granules, belonging to the field of vulcanizing machine technology. This small flat vulcanizing machine for plastic granules includes a support platform and a top plate on the upper part of the support platform, and further includes: an upper heating plate and a lower heating plate disposed between the top plate and the support platform, wherein the upper heating plate is fixedly connected to the top plate; two mating granule-specific molds, respectively fixedly installed on the opposite side walls of the upper and lower heating plates; a hydraulic jack fixedly installed on the upper end of the support platform, wherein the telescopic end of the hydraulic jack is fixedly connected to the lower heating plate for lifting the lower heating plate; a guiding mechanism connected between the top plate and the support platform for guiding the lower heating plate; and a control cabinet connected to the support platform via a snap-fit mechanism for easy transportation. The flat vulcanizing machine of this invention is convenient to transport, affordable, and has a lower failure rate.
[0004] Currently, most flat vulcanizing machines and the aforementioned structures rely on telescopic adjustment to heat the plastic and facilitate vulcanization. However, manual unloading is often required during actual use. The working surface temperature is high at this time, and manual unloading is prone to danger. Automated control is needed, and therefore, an improved device is required to address these issues. Summary of the Invention
[0005] To address the problems in the prior art, the present invention provides a glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine.
[0006] The technical solution adopted by the present invention to solve its technical problem is: a glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine, including a vulcanizing production structure and a control connection structure, wherein the side end of the vulcanizing production structure is electrically connected to the control connection structure, and the vulcanizing production structure and the control connection structure are fixedly arranged.
[0007] The vulcanization production structure performs vulcanization production work, and at the same time, the vulcanization production structure can perform automatic tilting unloading operations.
[0008] The control and connection structure can control the operation of the vulcanization production structure and can also guide and discharge the material.
[0009] The vulcanization production structure includes an air compressor, an adapter plate, a spring sleeve, a motion adjustment component, a jack, and an adapter frame. The air compressor is fixedly installed on the top of the adapter frame, and its lower end is connected to the adapter plate. A spring sleeve is fixedly connected to the inner side of the adapter frame, and the upper limit of the spring sleeve is slidably connected to the motion adjustment component. A jack is fixedly installed on the lower end of the motion adjustment component. The jack can control the overall extension and retraction of the motion adjustment component, causing it to connect with the adapter plate for vulcanization production of the material.
[0010] Specifically, the motion adjustment component includes a hydraulic column, a telescopic push rod, an adapter bracket, a control cylinder, a rotating rod, an adjustment adapter frame, and a reaction chamber. The hydraulic column is fixedly installed at the rear end of the adjustment adapter frame, and a seat is telescopically connected to the front end of the hydraulic column. A reaction chamber is rotatably connected to the seat, and a telescopic push rod is telescopically connected to the center of the reaction chamber. A control cylinder is fixedly installed at the front end of the seat, and the lower end of the seat is rotatably connected to the rotating rod, which is limited to rotating at the center of the adjustment adapter frame. An adapter bracket is fixedly connected to the side of the adjustment adapter frame.
[0011] Specifically, the base is equipped with a motor, which drives a rotating disk via a motor drive rod. A hinged connecting rod is hinged to the front end of the rotating disk, and a push rod is hinged to the side end of the hinged connecting rod via a hinge ring frame. An inflatable seat is telescopically connected to the side end of the push rod. The inflatable seat is adjusted by a telescopic push rod controlled by air pressure, and driven by the motor drive rod, it rotates the rotating disk. A hinged connecting rod is hinged to the rotating disk, allowing it to move with the rotating disk. Simultaneously, the side end of the hinged connecting rod is hinged to the push rod via the hinge ring frame, and the push rod slides with the inflatable seat. Pressurization control is achieved when the push rod extends or retracts. In a pressing mode, pneumatic transmission causes the telescopic push rod to extend or retract, separating the material from the reaction chamber. This allows for reset and adjustment, facilitating subsequent production.
[0012] Specifically, a rotating displacement rod is fixedly connected to the lower end of the reaction chamber, a toothed ring is fixedly connected to the front end of the rotating displacement rod, and a positioning frame sleeve is rotatably connected to the central front end of the rotating displacement rod. The positioning frame sleeve is fixedly connected to the base body. A toothed plate is meshed with the lower end of the toothed ring, and the side end of the toothed plate is fixedly installed with a control cylinder. The control cylinder controls the displacement adjustment of the toothed plate by extending and retracting. Through the structural design of the vulcanization production structure, the vulcanization production work is facilitated. The jack can control the extension and retraction adjustment of the entire moving adjustment component, thereby enabling the reaction inside the moving adjustment component to proceed smoothly. The chamber is connected to the adapter plate, and the air compressor can control the pressurization. At the same time, the heating seat at the bottom of the air compressor heats the inside of the reaction chamber. The spring sleeve rod allows the motion adjustment components to be smoothly adjusted. The hydraulic column can control the movement of the reaction chamber and the seat at the lower end of the reaction chamber, changing the longitudinal position of the reaction chamber. The control cylinder can drive the toothed plate to extend and retract, causing the rotating displacement rod and toothed ring to rotate, changing the position of the reaction chamber and the lower seat, thus rotating the reaction chamber and facilitating automated material discharge.
[0013] Specifically, the control connection structure includes a PLC control cabinet, an atomizing spray pipe, a docking connection seat, a conical guide frame, an installation assembly frame, a connecting branch pipe, a pressurizing pump, a transmission belt, and a water storage seat. The conical guide frame has a transmission belt at its side end, and a water storage seat is located at the lower end of the transmission belt. The conical guide frame and the transmission belt are connected. A pressurizing pump is fixedly installed at the front end of the conical guide frame. The upper end of the pressurizing pump is connected to a connecting branch pipe. The upper end of the connecting branch pipe is connected to a docking connection seat, and the rear end of the docking connection seat is connected to an atomizing spray pipe.
[0014] Specifically, the docking connection seat is limited by an installation assembly frame, the lower end of which is fixedly connected to the conical guide seat frame, and a PLC control cabinet is fixedly installed at the rear end of the conical guide seat frame. The PLC control cabinet is electrically connected to the air compressor.
[0015] Specifically, the conical guide frame is set with an inclined structure. The control cylinder drives the toothed plate to extend and retract. The extension and retraction of the toothed plate drives the toothed ring to rotate. The rotation of the toothed ring causes the rotation displacement rod to rotate at the center of the positioning frame sleeve, thereby driving the reaction chamber and the seat to flip and adjust.
[0016] Specifically, the side end of the conveyor belt is nested and rotatably connected to an adjusting frame, and the side end of the adjusting frame is fixedly installed with a transmission channel belt. The adjusting frame is subsequently fixed and limited by a rear fastening nut.
[0017] The beneficial effects of this invention are:
[0018] First, this invention, through the structural design of the vulcanization production structure, facilitates the vulcanization production process. A jack controls the overall extension and retraction of the motion adjustment components, allowing the reaction chamber inside the components to align with the matching connecting plate. An air compressor provides pressurization control, while a heating seat at the bottom of the air compressor heats the interior of the reaction chamber. A spring-loaded rod ensures smooth displacement adjustment of the motion adjustment components. Simultaneously, a hydraulic column controls the movement of the reaction chamber and its lower seat, changing the longitudinal position of the reaction chamber. A control cylinder drives the toothed plate to extend and retract, causing the rotating displacement rod and toothed ring to rotate, changing the position of the reaction chamber and its lower seat, thus facilitating automated material discharge.
[0019] Second, this invention is driven by a motor drive rod, which can drive the rotating disk to rotate. The rotating disk is hinged with a hinged connecting rod, so that the hinged connecting rod moves with the rotating disk. At the same time, the side end of the hinged connecting rod is hinged to the push rod through a hinged ring frame. The push rod slides with the inflation seat to limit the movement. When the push rod extends or retracts, pressure control is achieved. In the pressing mode, the telescopic push rod extends or retracts through pneumatic transmission, so that the material is separated from the reaction chamber. After that, the reset and adjustment work can be performed to facilitate the next production. Attached Figure Description
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Figure 1 is a three-dimensional structural diagram of the main body from a frontal perspective in this invention;
[0022] Figure 2 is a side view three-dimensional structural diagram of the main body in this invention;
[0023] Figure 3 is a frontal perspective three-dimensional structural diagram of the vulcanization production structure in this invention;
[0024] Figure 4 is a three-dimensional structural diagram of the motion adjustment component from the front view in this invention;
[0025] Figure 5 is an enlarged view of point A in Figure 4 of this invention;
[0026] Figure 6 is an enlarged view of section B in Figure 4 of this invention;
[0027] Figure 7 is a frontal perspective three-dimensional structural diagram of the control connection structure in this invention;
[0028] Figure 8 is a frontal perspective three-dimensional structural diagram of the second embodiment of the main body of the present invention.
[0029] In the diagram: 1-Vulcanization production structure, 2-Control and connection structure, 3-Air compressor, 4-Adaptive connecting plate, 5-Spring sleeve rod, 6-Motion adjustment component, 7-Jack, 8-Adaptive frame, 9-Hydraulic column, 10-Telescopic push rod, 11-Adaptive partition, 12-Control cylinder, 13-Rotating rod, 14-Adjusting adapter frame, 15-Reaction chamber, 16-Rotating disc, 17-Motor drive rod, 18-Hinged connecting rod 19-Hinged ring frame, 20-Propulsion rod, 21-Inflatable seat, 22-Rotation displacement rod, 23-Positioning frame sleeve, 24-Gear ring, 25-Gear plate, 26-PLC control cabinet, 27-Atomizing spray pipe, 28-Diamond connecting seat, 29-Conical guide seat frame, 30-Installation assembly frame, 31-Connecting branch pipe, 32-Pressure pump, 33-Conduction belt, 34-Water storage seat, 35-Adjusting rotating frame, 36-Transmission channel belt. Detailed Implementation
[0030] 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.
[0031] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the embodiments of this application described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0032] The present invention will be further described below with reference to the accompanying drawings. Example 1
[0033] As shown in Figures 1-7, a glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine of the present invention includes a vulcanizing production structure 1 and a control and communication structure 2. The control and communication structure 2 is electrically connected to the side end of the vulcanizing production structure 1. The vulcanizing production structure 1 and the control and communication structure 2 are fixedly arranged.
[0034] The vulcanization production structure 1 performs vulcanization production work, and at the same time, the vulcanization production structure 1 can perform automatic tilting unloading operations.
[0035] The control and connection structure 2 can control the operation of the vulcanization production structure 1 and can also handle the material discharge.
[0036] As shown in Figure 3, the vulcanization production structure 1 includes an air compressor 3, an adapter plate 4, a spring sleeve 5, a motion adjustment component 6, a jack 7, and an adapter frame 8. The air compressor 3 is fixedly installed on the top of the adapter frame 8, and the lower end of the air compressor 3 is connected to the adapter plate 4. The spring sleeve 5 is fixedly connected to the inner side of the adapter frame 8, and the upper limit of the spring sleeve 5 is slidably connected to the motion adjustment component 6. The jack 7 is fixedly installed on the lower end of the motion adjustment component 6. The jack 7 can control the overall extension and retraction of the motion adjustment component 6, driving the motion adjustment component 6 to connect with the adapter plate 4 for vulcanization production of the material.
[0037] As shown in Figure 4, the motion adjustment component 6 includes a hydraulic column 9, a telescopic push rod 10, an adapter bracket 11, a control cylinder 12, a rotating rod 13, an adjustment adapter frame 14, and a reaction chamber 15. The hydraulic column 9 is fixedly mounted at the rear end of the adjustment adapter frame 14. A seat is telescopically connected to the front end of the hydraulic column 9. The reaction chamber 15 is rotatably connected to the seat. The telescopic push rod 10 is telescopically connected to the center of the reaction chamber 15. The control cylinder 12 is fixedly mounted at the front end of the seat. The lower end of the seat is rotatably connected to the rotating rod 13, and the rotating rod 13 is limited to rotation at the center of the adjustment adapter frame 14. An adapter bracket 11 is fixedly connected to the side of the adjustment adapter frame 14. 1. Place the raw material on the reaction chamber 15. At this time, the reaction chamber 15 moves forward by the extension and retraction of the hydraulic column 9. After the material is placed, the reaction chamber 15 and the lower seat are pulled back by the hydraulic column 9, so that the reaction chamber 15 is aligned vertically with the appropriate mating plate 4. At this time, control the jack 7 to work. The jack 7 is extended and retracted, which drives the motion adjustment component 6 to move as a whole. At this time, the extension push rod 10 is limited by the spring sleeve rod 5. The reaction chamber 15 can seal and compress with the appropriate mating plate 4. Then control the air compressor 3 to work, so that the pressure in the appropriate mating plate 4 and the reaction chamber 15 is adjusted.
[0038] As shown in Figure 5, a motor is provided on the base. The motor drives a rotating disk 16 through a motor drive rod 17. A hinged connecting rod 18 is hinged to the front end of the rotating disk 16. A push rod 20 is hinged to the side end of the hinged connecting rod 18 through a hinged ring frame 19. An inflatable seat 21 is telescopically connected to the side end of the push rod 20. The inflatable seat 21 is telescopically adjusted by a telescopic push rod 10 controlled by air pressure.
[0039] As shown in Figure 6, a rotating displacement rod 22 is fixedly connected to the lower end of the reaction chamber 15. A toothed ring 24 is fixedly connected to the front end of the rotating displacement rod 22. A positioning frame sleeve 23 is rotatably connected to the center front end of the rotating displacement rod 22. The positioning frame sleeve 23 is fixedly connected to the seat body. A toothed plate 25 is meshed with the lower end of the toothed ring 24. The side end of the toothed plate 25 is fixedly installed with the control cylinder 12. The control cylinder 12 controls the displacement adjustment of the toothed plate 25 by extending and retracting. The hydraulic column 9 works, driving the seat body and the reaction chamber 15 to move forward. At this time, the rotating displacement rod 24 is fixedly connected to the lower end of the reaction chamber 15. The moving rod 13 can contact the seat body to reduce friction, so that the seat body and the reaction chamber 15 can run smoothly. The adjustment adapter 14 is installed in a limited position. Then the control cylinder 12 is operated. The control cylinder 12 drives the toothed plate 25 to move. The toothed plate 25 moves to the left, which can drive the toothed ring 24 to rotate clockwise. At this time, the positioning frame sleeve 23 performs a limited rotation of the rotation displacement rod 22. The toothed ring 24 drives the rotation displacement rod 22 to rotate, thereby driving the reaction chamber 15 at the upper end of the seat body to rotate through the rotation displacement rod 22.
[0040] As shown in Figure 7, the control connection structure 2 includes a PLC control cabinet 26, an atomizing spray pipe 27, a docking connection seat 28, a conical guide frame 29, a mounting assembly frame 30, a connecting branch pipe 31, a pressurizing pump 32, a conveyor belt 33, and a water storage seat 34. The side end of the conical guide frame 29 is equipped with a conveyor belt 33, and the lower end of the conveyor belt 33 is equipped with a water storage seat 34. The conical guide frame 29 and the conveyor belt 33 are connected. The front end of the conical guide frame 29 is fixedly installed with a pressurizing pump 32, and the upper end of the pressurizing pump 32 is connected to the connecting branch pipe 31. The upper end of the connecting branch pipe 31 is connected to... A connecting seat 28 is provided, and an atomizing spray pipe 27 is connected to the rear end of the connecting seat 28. When the material reaches the position of the cone guide frame 29, the pressurizing pump 32 works to transmit the external water flow. The water is guided through the connecting branch pipe 31 and the connecting seat 28 to the position of the atomizing spray pipe 27. The material is sprayed through the atomizing spray pipe 27 to cool it down. The material is then transmitted to the outside through the conduction belt 33. The water passes through the gap at the side end of the conduction belt 33 and reaches the position of the water storage seat 34 for unified collection.
[0041] The docking connector 28 is limited by the mounting bracket 30. The lower end of the mounting bracket 30 is fixedly connected to the cone guide bracket 29. The rear end of the cone guide bracket 29 is fixedly installed with a PLC control cabinet 26, which is electrically connected to the air compressor 3.
[0042] The cone guide seat 29 is set with an inclined structure. The control cylinder 12 drives the toothed plate 25 to extend and retract. The extension and retraction of the toothed plate 25 drives the toothed ring 24 to rotate. The rotation of the toothed ring 24 causes the rotation displacement rod 22 to rotate at the center of the positioning frame sleeve 23, thereby driving the reaction chamber 15 and the seat to flip and adjust.
[0043] In this embodiment, the user assembles the vulcanization production structure 1 and the control connection structure 2. The user can control the overall operation of the vulcanization production structure 1 via the PLC control cabinet 26. The user places the raw material on the reaction chamber 15. At this time, the reaction chamber 15 moves forward via the extension and retraction of the hydraulic column 9. After the material is placed, the hydraulic column 9 pulls back the reaction chamber 15 and the lower seat, thus aligning the reaction chamber 15 vertically with the appropriate mating plate 4. At this time, the control jack 7 operates, extending and retracting, driving the motion adjustment component 6 to move as a whole. The extension push rod 10 is limited by the spring sleeve rod 5, and the reaction... The chamber 15 can be sealed and compressed with the adapter plate 4. Then, the air compressor 3 is controlled to work, so that the pressure in the adapter plate 4 and the reaction chamber 15 is regulated. Then, the material is heated by the heating seat under the air compressor 3 to carry out vulcanization treatment. After the production is completed, the motion adjustment component 6 is moved down by the jack 7. At this time, the hydraulic column 9 works again, driving the seat and the reaction chamber 15 to move forward. At this time, the rotating rod 13 can contact the seat to reduce friction and make the seat and the reaction chamber 15 run smoothly. The adapter frame 14 is adjusted for limit installation. Then, the control cylinder 12 is controlled to work, and the control cylinder 12 drives the gear The plate 25 moves, and the toothed plate 25 moves to the left, which drives the toothed ring 24 to rotate clockwise. At this time, the positioning frame sleeve 23 performs a limiting rotation of the rotation displacement rod 22. The toothed ring 24 drives the rotation displacement rod 22 to rotate, thereby driving the reaction chamber 15 at the upper end of the seat to rotate. Then, the motor at the rear end of the motor drive rod 17 drives the rotating disk 16 to rotate. The side end of the rotating disk 16 is hinged with a hinged connecting rod 18, which changes the position of the hinged connecting rod 18 on the rotating disk 16. The hinged connecting rod 18 can squeeze the push rod 20 through the hinged ring frame 19, so that the push rod 20 is inflated. The upper limit of seat 21 is adjusted for telescopic extension, thereby conducting gas pressure. The gas is compressed and conducted to the lower end of the telescopic push rod 10, causing the telescopic push rod 10 to extend and retract, thus detaching the material. At this time, the material reaches the position of the cone guide seat 29, and the pressurization pump 32 works to transmit the external water flow. It is guided and discharged through the connecting branch pipe 31 and the connecting seat 28 to the position of the atomizing spray pipe 27. After being sprayed through the atomizing spray pipe 27, the material is cooled. The material is then conducted to the outside through the conduction belt 33. The water passes through the gap at the side end of the conduction belt 33 and reaches the position of the water storage seat 34 for unified collection, completing the work. Example 2
[0044] As shown in Figure 8, the side end of the conveyor belt 33 is nested and rotatably connected to the adjusting frame 35. The side end of the adjusting frame 35 is fixedly installed with the transmission channel belt 36. The adjusting frame 35 and the transmission channel belt 36 are subsequently fixed and limited by the rear fastening nut.
[0045] In this embodiment, the conveyor belt 36 is located at the side end of the conveyor belt 33, enabling the re-transfer of material. At the same time, the tilt angle of the conveyor belt 36 can be adjusted by adjusting the rotating frame 35, facilitating adaptive adjustments and automated production. The rotating frame 35 and the conveyor belt 36 can be tightened and fixed by the nut at the rear, thereby ensuring the positioning of the conveyor belt 36 and the rotating frame 35.
[0046] 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. A glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine, characterized in that: The system includes a vulcanization production structure (1) and a control connection structure (2). The side end of the vulcanization production structure (1) is electrically connected to the control connection structure (2). The vulcanization production structure (1) and the control connection structure (2) are fixedly arranged. The vulcanization production structure (1) performs vulcanization production work and can also perform automatic tilting unloading operations. The control connection structure (2) can control the operation of the vulcanization production structure (1) and can also perform material discharge treatment. The vulcanization production structure (1) includes an air compressor (3), an adapter plate (4), a spring sleeve rod (5), a motion adjustment component (6), a jack (7), and an adapter frame (8). The top of the adapter frame (8) is fixedly installed with the air compressor (3). The lower end of the air compressor (3) is connected to the adapter plate (4). The inner side of the adapter frame (8) is fixedly connected with the spring sleeve rod (5). The upper limit of the spring sleeve rod (5) is slidably connected to the motion adjustment component (6). A jack (7) is fixedly installed at the lower end of (6). The jack (7) can control the overall extension and retraction of the motion adjustment component (6), driving the motion adjustment component (6) to connect with the adapter plate (4) for vulcanization production of the material. The motion adjustment component (6) includes a hydraulic column (9), a telescopic push rod (10), an adapter bracket (11), a control cylinder (12), a rotating rod (13), an adjustment adapter bracket (14), and a reaction chamber (15). The rear end of the adjustment adapter bracket (14) is fixedly installed with A hydraulic column (9) is telescopically connected to a seat at its front end; a motor is provided on the seat, and the motor drives a rotating disk (16) via a motor drive rod (17). A hinged connecting rod (18) is hinged to the front end of the rotating disk (16), and a push rod (20) is hinged to the side end of the hinged connecting rod (18) via a hinged ring frame (19). An inflatable seat (21) is telescopically connected to the side end of the push rod (20), and the inflatable seat (21) is telescopically adjusted by a telescopic push rod (10) controlled by air pressure.
2. The glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine according to claim 1, characterized in that: A reaction chamber (15) is rotatably connected to the seat. A telescopic push rod (10) is telescopically connected to the center of the reaction chamber (15). A control cylinder (12) is fixedly installed at the front end of the seat. The lower end of the seat is rotatably connected to a rotating rod (13), and the rotating rod (13) is limited to rotating at the center of the control adapter (14). An adapter partition (11) is fixedly connected to the side of the control adapter (14).
3. A glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine according to claim 2, characterized in that: A rotating displacement rod (22) is fixedly connected to the lower end of the reaction chamber (15). A toothed ring (24) is fixedly connected to the front end of the rotating displacement rod (22). A positioning frame sleeve (23) is rotatably connected to the center front end of the rotating displacement rod (22). The positioning frame sleeve (23) is fixedly connected to the seat body. A toothed plate (25) is meshed with the lower end of the toothed ring (24). The side end of the toothed plate (25) is fixedly installed with the control cylinder (12). The control cylinder (12) controls the displacement adjustment of the toothed plate (25) by extension and retraction.
4. A glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine according to claim 3, characterized in that: The control connection structure (2) includes a PLC control cabinet (26), an atomizing spray pipe (27), a docking connection seat (28), a conical guide frame (29), an installation assembly frame (30), a connecting branch pipe (31), a pressurizing pump (32), a conveyor belt (33), and a water storage seat (34). The side end of the conical guide frame (29) is provided with a conveyor belt (33), and the lower end of the conveyor belt (33) is provided with a water storage seat (34). The conical guide frame (29) and the conveyor belt (33) are connected. The front end of the conical guide frame (29) is fixedly installed with a pressurizing pump (32). The upper end of the pressurizing pump (32) is connected to a connecting branch pipe (31). The upper end of the connecting branch pipe (31) is connected to a docking connection seat (28). The rear end of the docking connection seat (28) is connected to an atomizing spray pipe (27).
5. A glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine according to claim 4, characterized in that: The docking connection seat (28) is limited by the mounting bracket (30). The lower end of the mounting bracket (30) is fixedly connected to the cone guide seat (29). The rear end of the cone guide seat (29) is fixedly installed with a PLC control cabinet (26). The PLC control cabinet (26) is electrically connected to the air compressor (3).
6. A glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine according to claim 5, characterized in that: The cone guide frame (29) is set in an inclined structure. The control cylinder (12) drives the toothed plate (25) to extend and retract. The extension and retraction of the toothed plate (25) drives the toothed ring (24) to rotate. The toothed ring (24) rotates, causing the rotation displacement rod (22) to rotate at the center of the positioning frame sleeve (23), thereby driving the reaction chamber (15) and the seat to flip and adjust.
7. A glass fiber reinforced unsaturated polyester plastic product flat vulcanizing machine according to claim 6, characterized in that: The side end of the conveyor belt (33) is nested and rotatably connected to the adjustment frame (35), and the side end of the adjustment frame (35) is fixedly installed with the transmission channel belt (36). The adjustment frame (35) and the transmission channel belt (36) are subsequently fixed and limited by the rear fastening nut.
Citation Information
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