Fiber-reinforced composite daylighting tile ingredient proportioning device
By designing a fiber-reinforced composite daylight tile ingredient ratio device for daylight tile production, the problem of raw materials being adhered to and unable to be cleaned on the inner wall of the assembly is solved, and the effective measurement and cleaning of raw materials are achieved, and the production efficiency and quality are improved.
Patent Information
- Application Number
- CN202422148421.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-09-03
AI Technical Summary
In the prior art, during the mixing process of raw materials required for producing lighting tiles, solid and liquid raw materials are easily attached to the inner wall of the assembly, resulting in the inability to effectively clean up and affecting the normal operation of the device.
A fiber reinforced composite daylight tile material ratio device is designed, including a screw discharger, a solid barrel and a liquid barrel, which is used for the measurement and cleaning of solid and liquid raw materials respectively. The device drives the spiral blades and scrapers through the motor and electric push rod to achieve effective feeding and cleaning of raw materials.
The separate metering of solid and liquid raw materials and the effective cleaning of inner wall residues are achieved, the problems of raw material blockage and unbalanced proportions are avoided, and the working efficiency and production quality of the device are improved.
Smart Images

Figure CN222920883U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of daylighting tile production, and particularly relates to a device for proportioning ingredients of fiber-reinforced composite daylighting tiles. Background Art
[0002] The resin required for producing daylighting tiles is usually made by mixing various raw materials such as dihydric alcohol, glass fiber, antioxidant, stabilizer, styrene, modifier, etc. To ensure the quality of the resin, the raw materials need to be mixed in a fixed proportion. Due to the large variety of raw materials, manual weighing consumes a lot of manpower and time, resulting in a reduction in the working efficiency of the equipment;
[0003] After retrieval, an automatic batching scale for producing flexible resin plates with the prior art publication number CN220534629U weighs the raw materials in several main cylinders through an electronic scale, and then the raw materials enter other devices for processing through a discharge pipe; however, some raw materials will adhere to the inner wall of the main cylinder and cannot enter other devices through the discharge pipe, and the raw materials for configuring the resin of daylighting tiles are not only in a liquid state, but also some are in a solid state. The two forms of raw materials are prone to mixing and caking in the main cylinder, resulting in the blockage of the device by the raw materials and affecting the normal operation of the device;
[0004] After retrieval, a raw material layered proportioning structure for preparing modified epoxy resin with the prior art publication number CN221108240U discharges materials to different positions in a reaction tank through a discharge port on a feeding pipe, so that the raw materials are in full contact with the basic epoxy resin, and is combined with a stirring shaft in the reaction tank for stirring, so that raw materials such as basic epoxy resin, functional modifier, filler, etc. can be fully mixed; the problem with this device is also that it cannot clean the raw materials adhering to the inner wall of the batching barrel;
[0005] Therefore, a device for proportioning ingredients of fiber-reinforced composite daylighting tiles is needed, which can clean the residual raw materials in the barrels while separately measuring the solid raw materials and liquid raw materials. Summary of the Invention
[0006] The purpose of the utility model is to overcome the deficiencies in the prior art and provide a device for proportioning ingredients of fiber-reinforced composite daylighting tiles. The utility model measures the solid raw materials and liquid raw materials through a solid material barrel and a liquid material barrel respectively, and at the same time, a cleaning mechanism I in the solid material barrel and a cleaning mechanism II in the liquid material barrel can clean the residual raw materials in the solid material barrel and the liquid material barrel.
[0007] In order to achieve the above purpose, the technical scheme adopted by the utility model is:
[0008] A fiber-reinforced composite daylighting tile batching ratio device, including a spiral feeder, a solid material cylinder, and a liquid material cylinder; the spiral feeder and the liquid material cylinder are respectively fixedly connected to both ends of the support platform; the solid material cylinder is located between the spiral feeder and the liquid material cylinder and is fixedly connected to the support platform; the bottoms of the solid material cylinder and the liquid material cylinder pass through the through holes on the support platform and are fixedly connected to a mixing barrel arranged below the support platform; solid raw materials enter the solid material cylinder through the spiral feeder for weighing, and at the same time, the liquid raw materials are metered through the liquid material cylinder. Subsequently, the solid material cylinder and the liquid material cylinder respectively send the solid raw materials and the liquid raw materials into the mixing barrel for stirring and mixing; the spiral feeder is provided with a feed port I, an electric push rod I, and a support seat; the feed port I is arranged on one side of the spiral feeder; there are a pair of support seats, and one end of the support seat is slidably connected to the spiral feeder, and the other end is fixedly connected to the support platform; there are two groups of electric push rod I, and the extending ends of the electric push rod I are symmetrically fixedly connected to both sides of the spiral feeder through a connecting seat, and the cylinder body of the electric push rod I is fixedly connected to the support seat through a connecting seat.
[0009] The solid material cylinder is provided with a scraper I, a motor II, a discharge port I, a weighing module, a cleaning mechanism I, and a rotating seat; there are a pair of scrapers I, symmetrically arranged inside the solid material cylinder, the top of the scraper I is fixedly connected to the support plate, and the cleaning mechanism I is slidably connected to the scraper I; the rotating seat is rotatably connected to the top of the solid material cylinder, the motor I is fixedly connected to the outside of the solid material cylinder through a motor seat, and the gear on the output end of the motor I meshes with a number of teeth on the outside of the rotating seat; the discharge port I is arranged at the bottom of the solid material cylinder, and the spiral blade arranged in the discharge port I passes through the through holes on the support plate and the cleaning mechanism I through a connecting rod and is fixedly connected to the output end of the motor II, and the motor II is fixedly connected to the support plate through a support seat; the weighing module adopts the model SB-A1, there are several weighing modules, and the upper part of the weighing module is fixedly connected to the connecting seat arranged outside the solid material cylinder, and the lower part is fixedly connected to the column arranged on the support platform;
[0010] The cleaning mechanism I is provided with a scraper II, an electric motor I, a roller I, a gear I, and a connecting rod; the scraper II is slidably connected to the scraper I through a chute; there are several rollers I, which are respectively arranged on both sides of the chute on the scraper II through a connecting seat, the central axis of the roller I passes through the through hole on the connecting seat and is fixedly connected to the gear I, and the gears I on the adjacent rollers I mesh with each other; the electric motor I is fixedly connected to the scraper II through a connecting seat, and the output end of the electric motor I is fixedly connected to a gear I; both ends of the connecting rod are respectively fixedly connected to two relatively positioned gears I.
[0011] The liquid cartridge is provided with a second feed port, a second discharge port, a rotating plate, a third motor, guide rods, guide rails, a rotating ring, a second cleaning mechanism, a fixed seat, a third electric motor, second rollers, a support frame, and a measuring window; the second feed port is arranged on one side of the liquid cartridge, and the second discharge port fixedly connected with an electric valve is fixedly connected to the bottom of the liquid cartridge; the rotating plate is rotatably connected to the top of the liquid cartridge, the gear at the output end of the third motor meshes with the teeth on the outer side of the rotating plate, and the third motor is fixedly connected to the top of the liquid cartridge through a motor seat; the rotating ring is located outside the second discharge port and is rotatably connected to the liquid cartridge, both ends of a plurality of guide rods are fixedly connected to the rotating plate and the rotating ring respectively, and the guide rails are located inside the guide rods and are fixedly connected to the rotating plate; the second cleaning mechanism and the fixed seat are slidably connected to the guide rods and the guide rails, and the fixed seat is fixedly connected above the second cleaning mechanism; there are a pair of second rollers, which are respectively arranged on both sides of the guide rail through connecting seats, the central shaft of the second roller passes through the through hole on the connecting seat and is fixedly connected to the gear, and the gears on the pair of second rollers mesh with each other; the third electric motor is fixedly connected to the fixed seat through a motor seat, and the output end of the third electric motor is fixedly connected to the gear on one of the second rollers; the support frame supports and fixes the liquid cartridge above the support platform, and a measuring window is fixed in the through groove on one side of the liquid cartridge.
[0012] The second cleaning mechanism is provided with a third scraper, a guide box, a telescopic box, a second electric motor, a second electric push rod, and a fourth scraper; the third scraper is slidably connected to the guide rods and the guide rails, and a plurality of telescopic boxes are slidably connected in the guide boxes on the third scraper; there are a plurality of second electric push rods, and the extending ends of the second electric push rods are fixedly connected to the telescopic boxes through connecting plates, and the cylinders of the second electric push rods are fixedly connected to the guide boxes through connecting seats; the fourth scraper is arranged below the third scraper, and one end of the fourth scraper passes through the through hole on the telescopic box through a connecting shaft and is fixedly connected to a sprocket; there are a plurality of second electric motors, which are respectively fixedly connected to one end of the telescopic box through connecting seats, the output ends of the second electric motors pass through the through holes on the telescopic boxes and are fixedly connected to the sprockets, and the sprockets on the fourth scraper are connected to the sprockets on the second electric motors through chains.
[0013] The beneficial effects of the present utility model compared with the prior art are as follows:
[0014] 1) The spiral feeder extends to send the solid raw materials into the solid barrel, enabling the weighing module to weigh the solid raw materials entering the solid barrel, which facilitates the staff to control the proportion of the raw materials. After the solid raw materials in the solid barrel reach the predetermined weight, the spiral feeder is closed, and the electric push rod I is controlled to retract the spiral feeder. Subsequently, the motor II controls the spiral blade to send the solid raw materials into the mixing barrel. At the same time, the motor I and the rotating seat cooperate to control the rotation of the scraper I, dispersing the raw materials adhering to the inner wall of the solid barrel to prevent the solid raw materials from caking on the inner wall of the solid barrel under the action of gravity, resulting in an unbalanced ratio of the lighting tile raw materials and affecting the production quality of the lighting tile. Subsequently, the cleaning mechanism I slides up and down along the scraper I to press the solid raw materials to the bottom of the solid barrel, preventing the solid raw materials from remaining between a pair of scrapers I or adhering to the scraper I.
[0015] 2) The liquid storage tank sends the liquid raw materials into the liquid barrel through the pipeline via the feed port II, and measures the liquid raw materials through the measurement window on the side wall of the liquid barrel. After the liquid raw materials in the liquid barrel reach the predetermined amount, the liquid storage tank stops feeding, and at the same time, the electric valve is opened to enable the liquid raw materials to enter the mixing barrel through the discharge port II. Subsequently, the cleaning mechanism II clears the liquid raw materials remaining in the liquid barrel into the mixing barrel to prevent the liquid raw materials from remaining in the liquid barrel and affecting the accuracy of the next measurement of the liquid raw materials.
[0016] 3) The electric motor III controls the roller II to cooperate with the guide rail, enabling the fixed seat to drive the scraper III to slide along the guide rod and the guide rail towards the bottom of the liquid barrel, thereby scraping the liquid raw materials adhering to the inner wall of the liquid barrel to the bottom of the liquid barrel. After the bottom of the scraper IV fits the bottom of the liquid barrel, the motor III and the rotating plate cooperate to control the guide rod to drive the scraper III to rotate. At the same time, the electric push rod II retracts to control the telescopic box to drive the scraper IV to move closer to the middle along the guide box, and the electric motor II controls the scraper IV to rotate towards the discharge port II, so that the scraper IV scrapes the liquid raw materials at the bottom of the liquid barrel and adhering to the scraper III into the discharge port II to prevent the liquid raw materials from remaining and affecting the production quality of the lighting tile. Description of the Drawings
[0017] Attached Figure 1 is a schematic structural diagram of a fiber-reinforced composite lighting tile batching ratio device of the present utility model;
[0018] Attached Figure 2 is attached Figure 1 is a schematic structural diagram of the spiral feeder in the attached;
[0019] Attached Figure 3 is attached Figure 1 is a schematic structural diagram of the solid barrel in the attached;
[0020] Attached Figure 4 is attached Figure 1 is a schematic structural diagram of the cleaning mechanism I in the attached;
[0021] Appendix Figure 5 is the appendix Figure 1 structural schematic diagram of the liquid cartridge in
[0022] Appendix Figure 6 is the appendix Figure 1 structural schematic diagram of the connection of the rotating plate, guide rod, guide rail, and rotating ring in
[0023] Appendix Figure 7 is the appendix Figure 1 structural schematic diagram of the cleaning mechanism II in
[0024] Appendix Figure 8 is the appendix Figure 1 structural schematic diagram of the connection of the electric motor III, roller II, and fixed seat in
[0025] In the figure: 1, screw discharge machine; 101, feed inlet I; 102, electric push rod I; 103, support seat; 2, solid cartridge; 201, scraper I; 2011, support plate; 202, motor II; 2021, spiral blade; 203, discharge outlet I; 204, weighing module; 2041, connecting seat; 2042, column; 205, cleaning mechanism I; 2051, scraper II; 2052, electric motor I; 2053, roller I; 2054, gear I; 2055, connecting rod; 206, rotating seat; 2061, motor I; 3, liquid cartridge; 301, feed inlet II; 302, discharge outlet II; 3021, electric valve; 303, rotating plate; 3031, motor III; 3032, guide rod; 3033, guide rail; 3034, rotating ring; 304, cleaning mechanism II; 3041, scraper III; 3042, guide box; 3043, telescopic box; 3044, electric motor II; 3045, electric push rod II; 3046, scraper IV; 305, fixed seat; 3051, electric motor III; 3052, roller II; 306, support frame; 307, measuring window; 4, support platform; 5, mixing barrel. Detailed implementation manners
[0026] For the convenience of those skilled in the art to understand, the technical solutions of the present utility model will be further specifically described below in conjunction with the appendix Figure 1-8 , and the technical solutions of the present utility model will be further specifically described.
[0027] A fiber-reinforced composite daylighting tile batching ratio device, comprising a spiral feeder 1, a solid material cylinder 2, and a liquid material cylinder 3; the spiral feeder 1 and the liquid material cylinder 3 are respectively fixedly connected to both ends of a support platform 4; the solid material cylinder 2 is located between the spiral feeder 1 and the liquid material cylinder 3 and is fixedly connected to the support platform 4; the bottoms of the solid material cylinder 2 and the liquid material cylinder 3 pass through through holes on the support platform 4 and are fixedly connected to a mixing barrel 5 provided below the support platform 4; solid raw materials enter the solid material cylinder 2 through the spiral feeder 1 for weighing, and at the same time, liquid raw materials are metered through the liquid material cylinder 3. Subsequently, the solid material cylinder 2 and the liquid material cylinder 3 respectively send the solid raw materials and the liquid raw materials into the mixing barrel 5 for stirring and mixing; the spiral feeder 1 is provided with a feed inlet Ⅰ101, an electric push rod Ⅰ102, and a support seat 103; the feed inlet Ⅰ101 is provided on one side of the spiral feeder 1; there are a pair of support seats 103, and one end of the support seat 103 is slidably connected to the spiral feeder 1, and the other end is fixedly connected to the support platform 4; there are two groups of electric push rods Ⅰ102, and the extending ends of the electric push rods Ⅰ102 are symmetrically and fixedly connected to both sides of the spiral feeder 1 through connecting seats, and the cylinders of the electric push rods Ⅰ102 are fixedly connected to the support seats 103 through connecting seats.
[0028] The solid barrel 2 is provided with a scraper I 201, a motor II 202, a discharge port I 203, a weighing module 204, a cleaning mechanism I 205, and a rotating seat 206; there are a pair of scrapers I 201, symmetrically arranged inside the solid barrel 2. The top of the scraper I 201 is fixedly connected to the support plate 2011, and the cleaning mechanism I 205 is slidably connected to the scraper I 201; the rotating seat 206 is rotatably connected to the top of the solid barrel 2. The motor I 2061 is fixedly connected to the outside of the solid barrel 2 through a motor base, and the gear on the output end of the motor I 2061 meshes with a number of teeth on the outside of the rotating seat 206; the discharge port I 203 is arranged at the bottom of the solid barrel 2. The spiral blade 2021 arranged in the discharge port I 203 is fixedly connected to the output end of the motor II 202 through a connecting rod passing through the through holes of the support plate 2011 and the cleaning mechanism I 205, and the motor II 202 is fixedly connected to the support plate 2011 through a support seat; the weighing module 204 adopts the model SB-A1. There are a number of weighing modules 204. The upper part of the weighing module 204 is fixedly connected to the connecting seat 2041 arranged on the outside of the solid barrel 2, and the lower part is fixedly connected to the column 2042 arranged on the support platform 4; the solid material bin is fixedly connected to the feed port I 101 through a pipeline. The electric push rod I 102 controls the screw feeder 1 to extend above the solid barrel 2, and then the screw feeder 1 is started to input the solid raw material into the solid barrel 2. The weighing module 204 weighs the solid raw material entering the solid barrel 2, which is convenient for the staff to control the raw material ratio; after the solid raw material in the solid barrel 2 reaches the predetermined weight, the screw feeder 1 is closed, and the electric push rod I 102 is controlled to retract the screw feeder 1; then the motor II 202 controls the spiral blade 2021 to send the solid raw material into the mixing barrel 5. At the same time, the motor I 2061 and the rotating seat 206 cooperate to control the rotation of the scraper I 201 to disperse the raw material attached to the inner wall of the solid barrel 2, preventing the solid raw material from caking on the inner wall of the solid barrel 2 under the action of gravity, resulting in an unbalanced ratio of the lighting tile raw materials and affecting the production quality of the lighting tile; then the cleaning mechanism I 205 slides up and down along the scraper I 201 to press the solid raw material to the bottom of the solid barrel 2, preventing the solid raw material from remaining between the pair of scrapers I 201 or adhering to the scraper I 201;
[0029] The cleaning mechanism I 205 is provided with a scraper II 2051, an electric motor I 2052, a roller I 2053, a gear I 2054, and a connecting rod 2055; the scraper II 2051 is slidably connected to the scraper I 201 through a chute; several rollers I 2053 are provided, and are respectively arranged on both sides of the chute on the scraper II 2051 through connecting seats. The central axis of the roller I 2053 passes through the through hole on the connecting seat and is fixedly connected to the gear I 2054, and the gears I 2054 on adjacent rollers I 2053 mesh with each other; the electric motor I 2052 is fixedly connected to the scraper II 2051 through a connecting seat, and the output end of the electric motor I 2052 is fixedly connected to a gear I 2054; both ends of the connecting rod 2055 are respectively fixedly connected to two relatively positioned gears I 2054; the electric motor I 2052 and the gear I 2054 cooperate to control the roller I 2053 to drive the scraper II 2051 to slide up and down along the scraper I 201.
[0030] The liquid cartridge 3 is provided with a second feed inlet 301, a second discharge outlet 302, a rotating plate 303, a third motor 3031, guide rods 3032, guide rails 3033, a rotating ring 3034, a second cleaning mechanism 304, a fixed seat 305, a third electric motor 3051, second rollers 3052, a support frame 306, and a measuring window 307; the second feed inlet 301 is provided on one side of the liquid cartridge 3, and the second discharge outlet 302 fixedly connected with an electric valve 3021 is fixedly connected to the bottom of the liquid cartridge 3; the rotating plate 303 is rotatably connected to the top of the liquid cartridge 3, the gear at the output end of the third motor 3031 meshes with the teeth on the outer side of the rotating plate 303, and the third motor 3031 is fixedly connected to the top of the liquid cartridge 3 through a motor base; the rotating ring 3034 is located outside the second discharge outlet 302 and is rotatably connected to the liquid cartridge 3, both ends of a plurality of guide rods 3032 are fixedly connected to the rotating plate 303 and the rotating ring 3034 respectively, and the guide rail 3033 is located inside the guide rods 3032 and is fixedly connected to the rotating plate 303; the second cleaning mechanism 304 and the fixed seat 305 are slidably connected to the guide rods 3032 and the guide rails 3033, and the fixed seat 305 is fixedly connected above the second cleaning mechanism 304; there are a pair of second rollers 3052, which are respectively arranged on both sides of the guide rail 3033 through connecting seats, the central axis of the second rollers 3052 passes through the through holes on the connecting seats and is fixedly connected with the gear, and the gears on the pair of second rollers 3052 mesh with each other; the third electric motor 3051 is fixedly connected to the fixed seat 305 through a motor base, and the output end of the third electric motor 3051 is fixedly connected with the gear on one of the second rollers 3052; the support frame 306 supports and fixes the liquid cartridge 3 above the support platform 4, and a measuring window 307 is fixed in the through groove on one side of the liquid cartridge 3; the liquid storage bin sends the liquid raw material into the liquid cartridge 3 through the pipeline via the second feed inlet 301, measures the liquid raw material through the measuring window 307 on the side wall of the liquid cartridge 3, when the liquid raw material in the liquid cartridge 3 reaches the predetermined amount, the liquid storage bin stops feeding, and at the same time, the electric valve 3021 is opened to enable the liquid raw material to enter the mixing barrel 5 through the second discharge outlet 302; subsequently, the liquid raw material remaining in the liquid cartridge 3 is cleared into the mixing barrel 5 through the second cleaning mechanism 304 to prevent the liquid raw material from remaining in the liquid cartridge 3 and affecting the accuracy of the next measurement of the liquid raw material.
[0031] The cleaning mechanism II 304 is provided with a scraper III 3041, a guiding box 3042, a telescopic box 3043, an electric motor II 3044, an electric push rod II 3045, and a scraper IV 3046. The scraper III 3041 is slidably connected to the guiding rod 3032 and the guide rail 3033, and a telescopic box 3043 is slidably connected in a plurality of guiding boxes 3042 on the scraper III 3041. A plurality of electric push rods II 3045 are provided, and the extending ends of the electric push rods II 3045 are fixedly connected to the telescopic box 3043 through a connecting plate, and the cylinders of the electric push rods II 3045 are fixedly connected to the guiding box 3042 through a connecting seat. The scraper IV 3046 is arranged below the scraper III 3041, and one end of the scraper IV 3046 is fixedly connected to a sprocket through a through hole on the telescopic box 3043 by a connecting shaft. A plurality of electric motors II 3044 are provided and are respectively fixedly connected to one end of the telescopic box 3043 through a connecting seat. The output end of the electric motor II 3044 passes through a through hole on the telescopic box 3043 and is fixedly connected to the sprocket, and the sprocket on the scraper IV 3046 is connected to the sprocket on the electric motor II 3044 through a chain. The electric motor III 3051 controls the roller II 3052 to cooperate with the guide rail 3033, so that the fixing seat 305 drives the scraper III 3041 to slide along the guiding rod 3032 and the guide rail 3033 towards the bottom of the liquid barrel 3, thereby scraping the liquid raw material adhering to the inner wall of the liquid barrel 3 to the bottom of the liquid barrel 3. After the bottom of the scraper IV 3046 fits the bottom of the liquid barrel 3, the motor III 3031 and the rotating plate 303 cooperate to control the guiding rod 3032 to drive the scraper III 3041 to rotate. At the same time, the electric push rod II 3045 retracts to control the telescopic box 3043 to drive the scraper IV 3046 to move closer to the middle along the guiding box 3042, and the electric motor II 3044 controls the scraper IV 3046 to rotate towards the discharge port II 302, so that the scraper IV 3046 scrapes the liquid raw material at the bottom of the liquid barrel 3 and adhered to the scraper III 3041 into the discharge port II 302, preventing the liquid raw material from remaining and affecting the production quality of the lighting tile.
[0032] A fiber-reinforced composite lighting tile batching ratio device works as follows:
[0033] The spiral feeder 1 extends to send the solid raw material into the solid barrel 2, and the weighing module 204 weighs the solid raw material entering the solid barrel 2. After the solid raw material in the solid barrel 2 reaches the predetermined weight, the spiral feeder 1 is retracted. Subsequently, the motor II 202 controls the spiral blade 2021 to send the solid raw material into the mixing barrel 5. At the same time, the motor I 2061 and the rotating seat 206 cooperate to control the scraper I 201 to rotate, and the raw material adhering to the inner wall of the solid barrel 2 is dispersed. Subsequently, the cleaning mechanism I 205 slides up and down along the scraper I 201, and the solid raw material remaining between a pair of scrapers I 201 or adhering to the scraper I 201 is pressed to the bottom of the solid barrel 2.
[0034] Meanwhile, the liquid raw material enters the liquid barrel 3 through the feed port II 301. The liquid raw material is metered through the metering window 307 on the side wall of the liquid barrel 3. After the liquid raw material in the liquid barrel 3 reaches the predetermined amount, the liquid storage bin stops feeding. At the same time, the electric valve 3021 is opened, so that the liquid raw material enters the mixing barrel 5 through the discharge port II 302. Subsequently, the residual liquid raw material in the liquid barrel 3 is cleared into the mixing barrel 5 through the cleaning mechanism II 304.
[0035] In summary, including but not limited to the electric push rod I 102, the motor II 202, the weighing module 204, the electric motor I 2052, the motor I 2061, the electric valve 3021, the motor III 3031, the electric motor II 3044, the electric push rod II 3045, the electric motor III 3051 and other electronic or electrical components are components in the prior art, obtained through private customization or purchase. The electrical connections between the components are all conventional circuit connections or electrical connections in the prior art, and are not within the protection scope of the present utility model.
[0036] The above content is only an example and description of the structure of the present utility model. Those skilled in the art of the present technology make various modifications or supplements to the described specific embodiments or use similar methods to replace them. As long as they do not deviate from the structure of the utility model or exceed the scope defined by the claims of the present utility model, they should all belong to the protection scope of the present utility model.
Claims
1. A fiber-reinforced composite skylight tile batching and proportioning device, comprising a spiral discharging machine, a solid barrel, and a liquid barrel; the spiral discharging machine and the liquid barrel are respectively fixedly connected to the two ends of a support platform; the solid barrel is located between the spiral discharging machine and the liquid barrel and is fixedly connected to the support platform; the bottoms of the solid barrel and the liquid barrel pass through the through holes on the support platform and are fixedly connected to a mixing barrel provided below the support platform; Features The solid barrel is provided with a scraper I, a motor II, a discharge port I, a weighing module, a cleaning mechanism I, and a rotating seat; a pair of scrapers I are symmetrically arranged inside the solid barrel, the top of the scraper I is fixedly connected to the support plate, and the cleaning mechanism I is slidably connected to the scraper I; the rotating seat is rotatably connected to the top of the solid barrel, the motor I is fixedly connected to the outside of the solid barrel through the motor seat, and the gear on the output end of the motor I is meshed with a number of gear teeth on the outside of the rotating seat; the discharge port I is arranged at the bottom of the solid barrel; the motor II is fixedly connected to the support plate through the support seat; the weighing module is provided with a number of weighing modules, and the upper part of the weighing module is fixedly connected to the connecting seat arranged on the outside of the solid barrel, and the lower part is fixedly connected to the column arranged on the support platform; The liquid barrel is provided with a feed port II, a discharge port II, a rotating plate, a motor III, a guide rod, a guide rail, a rotating ring, a cleaning mechanism II, a fixed seat, an electric motor III, a roller II, a support frame, and a metering window; the feed port II is arranged on one side of the liquid barrel, and the discharge port II fixedly connected with an electric valve is fixedly connected to the bottom of the liquid barrel; the rotating plate is rotatably connected to the top of the liquid barrel, the gear at the output end of the motor III is meshed with the gear teeth on the outside of the rotating plate, and the motor III is fixedly connected to the top of the liquid barrel through the motor seat; the rotating ring is located on the outside of the discharge port II and is rotatably connected to the liquid barrel, and the two ends of a plurality of guide rods are respectively fixedly connected to the rotating plate and the rotating ring , and the guide rail is located on the inner side of the guide rod and is fixedly connected to the rotating plate; the cleaning mechanism II and the fixed seat are slidably connected to the guide rod and the guide rail, and the fixed seat is fixedly connected above the cleaning mechanism II; a pair of rollers II are provided, which are respectively arranged on both sides of the guide rail through the connecting seat, and the central axis of roller II passes through the through hole on the connecting seat and is fixedly connected to the gear, and the gears on the pair of rollers II are meshed with each other; the electric motor III is fixedly connected to the fixed seat through the motor seat, and the output end of the electric motor III is fixedly connected to a gear on a roller II; the support frame supports and fixes the liquid barrel above the supporting platform, and a metering window is fixed in the through groove on one side of the liquid barrel.
2. A fiber-reinforced composite skylight tile proportioning device according to claim 1, characterized in that The output end of the motor II is fixedly connected to the spiral blade arranged in the discharge port I through a connecting rod passing through the through holes on the support plate and the cleaning mechanism I.
3. A fiber reinforced composite skylight tile proportioning device according to claim 1, characterized in that The cleaning mechanism I is provided with a scraper II, an electric motor I, a roller I, a gear I, and a connecting rod; the scraper II is slidably connected to the scraper I through a slide groove; the roller I is provided with a plurality of rollers, which are respectively arranged on both sides of the slide groove on the scraper II through a connecting seat, and the central axis of the roller I passes through the through hole on the connecting seat and is fixedly connected to the gear I, and the gears I on adjacent rollers I are meshed with each other; the electric motor I is fixedly connected to the scraper II through the connecting seat, and the output end of the electric motor I is fixedly connected to a gear I; the two ends of the connecting rod are respectively fixedly connected to two gears I in opposite positions.
4. A fiber-reinforced composite skylight tile proportioning device according to claim 1, characterized in that The cleaning mechanism II is provided with a scraper III, a guide box, a telescopic box, an electric motor II, an electric push rod II, and a scraper IV; the scraper III is slidably connected to the guide rod and the guide rail, and the telescopic boxes are slidably connected in several guide boxes on the scraper III; the electric push rod II is provided with several, and the extended end of the electric push rod II is fixedly connected to the telescopic box through a connecting plate, and the cylinder body of the electric push rod II is fixedly connected to the guide box through a connecting seat; the scraper IV is arranged below the scraper III, and one end of the scraper IV is fixedly connected to the sprocket through the through hole on the telescopic box through a connecting shaft; the electric motor II is provided with several, which are respectively fixedly connected to one end of the telescopic box through the connecting seat, the output end of the electric motor II is fixedly connected to the sprocket through the through hole on the telescopic box, and the sprocket on the scraper IV is connected to the sprocket on the electric motor II through a chain.
5. A fiber-reinforced composite skylight tile proportioning device according to claim 1, characterized in that The screw discharging machine is provided with a feed port I, an electric push rod I, and a support seat; the feed port I is arranged on one side of the screw discharging machine; the support seat is provided in pair, and one end of the support seat is slidably connected to the screw discharging machine, and the other end is fixedly connected to the support platform; the electric push rod I is provided with two groups, and the extended ends of the electric push rod I are symmetrically fixedly connected to the two sides of the screw discharging machine through the connecting seat, and the cylinder body of the electric push rod I is fixedly connected to the support seat through the connecting seat.
Citation Information
Patent Citations
Automatic batching scale for flexible resin printing plate production
CN220534629U
Raw material layered proportioning structure for preparing modified epoxy resin
CN221108240U