Medium-temperature curing and rapid mixing discharging mechanism for carbon fiber bicycle

By designing a medium-temperature curing and rapid mixing and discharge mechanism for carbon fiber bicycles, the problems of incorrect proportions and inaccurate weighing during raw materials are solved, and efficient mixing of raw materials and resource-saving effects are achieved.

CN222918620UActive Publication Date: 2025-05-30ZHEJIANG YONGFU VEHICLE IND CO LTD
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Patent Information

Application Number
CN202422374161.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-05-30
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

It is difficult for existing carbon fiber material processing devices to accurately calculate the weight of raw materials entering the batching barrel when mixing raw materials, resulting in incorrect mixing ratio and inaccurate weighing of raw materials after mixing, which affects subsequent operation efficiency.

Method used

A medium-temperature curing rapid mixing discharge mechanism for carbon fiber bicycles is designed, including batching components, mixing components and cleaning components. The raw materials and mixtures are weighed through batching platform scales and mixing platform scales to ensure the correct proportions, and the flow and mixing of raw materials are optimized through the transfer and discharge system.

Benefits of technology

Accurate calculation of raw material weight is achieved, ensuring the correct mixing ratio is ensured, mixing efficiency is improved, and time and materials are saved through weighing and cleaning functions, reducing the risk of waste and mixing failure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mixing and discharging, and discloses a carbon fiber bicycle intermediate temperature curing rapid mixing and discharging mechanism which comprises a discharging bottom plate, and the upper surface of the discharging bottom plate is sequentially connected with a burdening assembly, a burdening base, a mixing base and a cleaning assembly in an inserted mode from front to back. A batching platform scale, a batching box, a batching cover and a box seat are inserted into the upper surface of the batching seat. The batching device is reasonable in structure, raw materials are pumped into the batching barrel through the batching pump, the raw materials in the batching box are weighed through the raw material platform scale, the weight of the raw materials entering the batching barrel is accurately calculated, the proportion is ensured to be correct, and mixing failure caused by incorrect proportion is avoided; the batching fan exhausts air to blow residual raw materials in the batching three-way pipe into the batching barrel or the batching box to avoid waste, the batching stirrer mixes the raw materials in the batching barrel, the batching platform scale weighs the raw materials, the first displayer observes the raw materials and calculates the number of materials needed subsequently, workers can prepare the materials in advance conveniently, time is greatly saved, and the working efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of mixed discharging, in particular to a medium-temperature curing and rapid mixed discharging mechanism for a carbon fiber bicycle. Background Technique

[0002] Carbon fiber refers to high-strength and high-modulus fibers with a carbon content of more than 90%. It has the highest heat resistance among all chemical fibers. It is made from acrylic fibers and viscose fibers as raw materials, and is formed by high-temperature oxidation and carbonization. It is an excellent material for manufacturing high-tech equipment such as aerospace. In production equipment, other raw materials will be added to the carbon fiber material for mixed manufacturing.

[0003] In a raw material mixing device for carbon fiber material processing disclosed in the Chinese utility model patent application publication specification CN217746743U, although a heating mechanism is provided, the heating wire is externally connected to a power supply, and the heating wire will heat the raw materials inside the mixing cavity through a heating plate, making the raw materials inside the mixing cavity mix more evenly, realizing the function of the device being convenient to adjust the temperature, thereby improving the applicability of the raw material mixing device for carbon fiber material processing during use. By providing a protection mechanism, the heat insulation plate is fixed on the outer wall of the machine body through a fixing block, and at the same time, a protection plate is fixed on the outer wall of the heat insulation plate, avoiding staff from being scalded by contacting the machine body, thereby improving the safety of the raw material mixing device for carbon fiber material processing during use. By providing a stirring mechanism, the feeding pipe drives the transmission rod to rotate, so that the transmission rod drives the stirring rod to rotate, and then the stirring rod drives the connecting rod to rotate around the transmission rod inside the mixing cavity. Under the stirring action of the stirring rod and the connecting rod, the mixing speed of the raw materials is accelerated, thereby improving the working efficiency of the raw material mixing device for carbon fiber material processing during use. However, the device improves the applicability and safety during raw material mixing, and improves the working efficiency. But when mixing raw materials, how to accurately calculate whether the weight of the raw materials entering the batching bucket is correct to avoid mixing failure due to incorrect mixing ratio, and weighing the mixed raw materials to calculate how much material is needed for subsequent mixing greatly saves time, and weighing the added materials to avoid adding too much and causing mixing failure, and weighing the discharged material to control the weight to avoid excessive discharge and waste. Therefore, a utility model is proposed to solve the above problems. Content of the Utility Model

[0004] (I) Technical Problems to be Solved

[0005] Aiming at the deficiencies of the prior art, the utility model provides a medium-temperature curing and rapid mixed discharging mechanism for a carbon fiber bicycle, which solves the problems of accurately calculating the weight of raw materials to avoid mixing failure due to incorrect ratio, weighing the mixed raw materials to calculate the materials required for subsequent mixing, avoiding mixing failure due to adding too much, and weighing the discharged material to avoid excessive discharge and overflow.

[0006] (2) Technical Solution

[0007] To achieve the above objectives, the utility model is realized through the following technical solutions: A medium-temperature curing and rapid mixing and discharging mechanism for a carbon fiber bicycle, including a discharging bottom plate, on the upper surface of which are sequentially inserted a batching component, a batching seat, a mixing seat, and a cleaning component from front to back. On the upper surface of the batching seat is inserted a batching platform scale, on the upper surface of the batching platform scale is inserted a batching bucket, in the middle of the surface of the batching bucket is inserted a first display, on the top of the surface of the batching bucket is inserted a conveying component, on the upper surface of the batching bucket is inserted a bucket cover, inside the bucket cover is inserted a batching motor, and at one end of the batching motor is inserted a batching stirrer. On the upper surface of the mixing seat is inserted a mixing platform scale, on the upper surface of the mixing platform scale is inserted a mixing bucket, on one side of the mixing bucket is inserted a second display, inside the mixing bucket is inserted a heating rod, on the upper surface of the mixing bucket is inserted a mixing cover, inside the mixing cover is inserted a mixing motor, and at one end of the mixing motor is inserted a mixing stirrer. On the other side of the mixing bucket is inserted a discharging pump, and one end of the discharging pump is sleeved with a discharging pipe.

[0008] Optionally, the batching component includes a batching box, a batching cover, a box seat, a raw material platform scale, a batching three-way pipe, a batching fan, a batching pump, a batching pipe, and a third display. On the upper surface of the batching box is inserted a batching cover, on the lower surface of the batching box is inserted a box seat, on the upper surface of the box seat is inserted a raw material platform scale, on one side of the batching box is inserted a batching three-way pipe, one end of the batching three-way pipe is sleeved with a batching fan, the other end of the batching three-way pipe is sleeved with a batching pump, one end of the batching pump is inserted with a batching pipe, and on one side of the batching box is inserted a third display.

[0009] Optionally, the cleaning component includes a cleaning box, a cleaning pump, a cleaning pipe, and a cleaning head. On one side of the cleaning box is inserted a cleaning pump, one end of the cleaning pump is sleeved with a cleaning pipe, and one end of the cleaning pipe is sleeved with a cleaning head.

[0010] Optionally, the conveying component includes a conveying three-way pipe, a conveying fan, a conveying pump, and a conveying pipe. One end of the conveying three-way pipe is sleeved with a conveying fan, the other end of the conveying three-way pipe is inserted with a conveying pump, and one end of the conveying pump is sleeved with a conveying pipe.

[0011] Optionally, on one side of the discharging bottom plate close to the batching seat is provided a batching table, and on the upper surface of the batching table of the discharging bottom plate is fixedly connected with three batching components.

[0012] Optionally, on the upper surface of the batching seat is provided a batching groove, and the batching groove of the batching seat is the same size as the batching platform scale.

[0013] Optionally, a mixing shaft is inserted into the upper surface of the mixing agitator, and the mixing shaft of the mixing agitator and the mixing motor are adapted to each other.

[0014] Optionally, a fixing seat is provided on one side of the cleaning box, and the fixing seat of the cleaning box fixes the cleaning head to prevent it from falling off.

[0015] In summary, the technical effects and advantages of the utility model are:

[0016] 1. The utility model has a reasonable structure. By mixing raw materials in a batching box, a batching pump draws raw materials into a batching barrel, and a raw material platform scale weighs the weight of the raw materials in the batching box and observes on the third display, it can accurately calculate whether the weight of the raw materials entering the batching barrel is correct, ensuring that the mixing ratio is correct to avoid mixing failure caused by incorrect mixing ratio. The batching fan exhausts the remaining raw materials in the batching three-way pipe into the batching barrel or batching box to avoid waste. The batching mixer mixes the raw materials in the batching barrel, the batching platform scale weighs the raw materials, and the first display observes, so how much material is needed for subsequent mixing can be calculated, which is convenient for workers to prepare materials in advance, greatly saving time and improving work efficiency.

[0017] 2. In the utility model, the cleaning pump rotates to extract water from the cleaning tank, and the cleaning head sprays to clean the equipment. The material that needs to be mixed twice is added into the mixing barrel, the heating rod is heated and melted, the mixing platform scale weighs the added material, and the second display is used to observe to avoid excessive addition. The conveying pump extracts the raw materials in the batching barrel into the mixing barrel, and the conveying fan rotates to blow air, and blows the remaining raw materials in the conveying tee into the batching barrel or the mixing barrel to avoid waste. The weight of the batching platform scale and the weight observed on the first display can accurately know the weight of the raw materials in the mixing barrel, and avoid mixing failure due to excessive addition. The mixing agitator rotates, and the mixing agitator mixes the materials in the mixing barrel and the raw materials. The discharging pump extracts the mixed material and the discharging pipe flows into the charging device. By knowing the volume of the charging device and observing the weight of the mixing platform scale on the second display, it is avoided that excessive discharge causes overflow and waste, and that subsequent discharge is not enough for filling and needs to be re-mixed to affect the working speed. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the structure of the utility model;

[0019] Figure 2 This is an exploded schematic diagram of the hybrid seat structure of the utility model;

[0020] Figure 3 This is an exploded schematic diagram of the batching box structure of the utility model;

[0021] Figure 4 This is a schematic diagram of the structure of the batching box of the utility model;

[0022] Figure 5 Explosion schematic diagram of the cleaning tank structure of the present utility model;

[0023] Figure 6 Explosion schematic diagram of the batching barrel structure of the present utility model;

[0024] Figure 7 Explosion schematic diagram of the transfer three-way pipe structure of the present utility model;

[0025] Figure 8 Explosion schematic diagram of the mixing barrel structure of the present utility model.

[0026] In the figure: 1. Discharge bottom plate; 2. Batching assembly; 201. Batching tank; 202. Batching cover; 203. Tank base; 204. Raw material platform scale; 205. Batching three-way pipe; 206. Batching fan; 207. Batching pump; 208. Batching pipe; 209. Third display; 3. Batching seat; 4. Mixing seat; 5. Cleaning assembly; 501. Cleaning tank; 502. Cleaning pump; 503. Cleaning pipe; 504. Cleaning head; 6. Batching platform scale; 7. Batching barrel; 8. First display; 9. Transfer assembly; 901. Transfer three-way pipe; 902. Transfer fan; 903. Transfer pump; 904. Transfer pipe; 10. Barrel cover; 11. Batching motor; 12. Batching agitator; 13. Mixing platform scale; 14. Mixing barrel; 15. Second display; 16. Heating rod; 17. Mixing cover; 18. Mixing motor; 19. Mixing agitator; 20. Discharge pump; 21. Discharge pipe. Specific embodiments

[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0028] Embodiment: Refer to Figures 1 - 8A medium-temperature curing and rapid mixing and discharging mechanism for a carbon fiber bicycle, comprising a discharging bottom plate 1. The upper surface of the discharging bottom plate 1 is sequentially inserted with a batching component 2, a batching seat 3, a mixing seat 4, and a cleaning component 5 from front to back. The upper surface of the batching seat 3 is inserted with a batching platform scale 6. The upper surface of the batching platform scale 6 is inserted with a batching bucket 7. The middle part of the surface of the batching bucket 7 is inserted with a first display 8. The top of the surface of the batching bucket 7 is inserted with a conveying component 9. The upper surface of the batching bucket 7 is inserted with a bucket cover 10. The inside of the bucket cover 10 is inserted with a batching motor 11. One end of the batching motor 11 is inserted with a batching stirrer 12. The upper surface of the mixing seat 4 is inserted with a mixing platform scale 13. The upper surface of the mixing platform scale 13 is inserted with a mixing bucket 14. One side of the mixing bucket 14 is inserted with a second display 15. The inside of the mixing bucket 14 is inserted with a heating rod 16. The upper surface of the mixing bucket 14 is inserted with a mixing cover 17. The inside of the mixing cover 17 is inserted with a mixing motor 18. One end of the mixing motor 18 is inserted with a mixing stirrer 19. The other side of the mixing bucket 14 is inserted with a discharging pump 20. One end of the discharging pump 20 is sleeved with a discharging pipe 21.

[0029] As a preferred implementation manner in this embodiment, as Figures 2 to 6As shown, a batching component 2, a batching seat 3, a mixing seat 4, and a cleaning component 5 are sequentially inserted on the upper surface of the discharge bottom plate 1 from front to back. A batching table is provided on one side of the discharge bottom plate 1 close to the batching seat 3. Three batching components 2 are fixedly connected to the upper surface of the batching table of the discharge bottom plate 1. The discharge bottom plate 1 is made of stainless steel. The batching component 2 includes a batching box 201, a batching cover 202, a box seat 203, a raw material platform scale 204, a batching three-way pipe 205, a batching fan 206, a batching pump 207, a batching pipe 208, and a third display 209. The batching cover 202 is inserted on the upper surface of the batching box 201. The box seat 203 is inserted on the lower surface of the batching box 201. The raw material platform scale 204 is inserted on the upper surface of the box seat 203. The batching three-way pipe 205 is inserted on one side of the batching box 201. One end of the batching three-way pipe 205 is sleeved with the batching fan 206. The other end of the batching three-way pipe 205 is sleeved with the batching pump 207. One end of the batching pump 207 is inserted with the batching pipe 208. The third display 209 is inserted on one side of the batching box 201. A batching table is provided on one side of the discharge bottom plate 1 close to the batching seat 3. Three batching components 2 are fixedly connected to the upper surface of the batching table of the discharge bottom plate 1. The third display 209 is the display of the raw material platform scale 204. A batching platform scale 6 is inserted on the upper surface of the batching seat 3. A batching groove is provided on the upper surface of the batching seat 3. The batching groove of the batching seat 3 is the same size as the batching platform scale 6. A batching bucket 7 is inserted on the upper surface of the batching platform scale 6. A first display 8 is inserted in the middle of the surface of the batching bucket 7. The first display 8 is the display of the batching platform scale 6. A conveying component 9 is inserted on the top of the surface of the batching bucket 7. The conveying component 9 includes a conveying three-way pipe 901, a conveying fan 902, a conveying pump 903, and a conveying pipe 904. One end of the conveying three-way pipe 901 is sleeved with the conveying fan 902. The other end of the conveying three-way pipe 901 is inserted with the conveying pump 903. One end of the conveying pump 903 is sleeved with the conveying pipe 904. A bucket cover 10 is inserted on the upper surface of the batching bucket 7. A batching motor 11 is inserted inside the bucket cover 10. One end of the batching motor 11 is inserted with a batching stirrer 12. During use, by putting the raw materials to be prepared into the batching box 201, when in use, the batching pump 207 rotates to extract the raw materials in the batching box 201 into the batching bucket 7. When the batching pump 207 extracts, the weight of the raw materials in the batching box 201 is weighed by the raw material platform scale 204, and the weight change is observed through the third display 209, so as to accurately calculate whether the weight of the raw materials entering the batching bucket 7 is correct, thus ensuring that the mixing ratio is correct and avoiding mixing failure due to incorrect mixing ratio, and weighing when introducing raw materials into the batching box 201, accurately pouring the raw materials required for the day, and avoiding waste caused by the inability to use some special raw materials after long-term storage in the batching box 201 the next day.By rotating the batching fan 206 to draw air, the remaining raw materials in the batching three-way pipe 205 are blown into the batching bucket 7 or the batching box 201 to avoid waste. The raw materials are added to the batching bucket 7 in the batching box 201. The batching motor 11 drives the batching stirrer 12 to rotate, so that the raw materials in the batching stirrer 12 are mixed. The mixed raw materials are weighed by the batching platform scale 6 for the raw materials in the batching bucket 7, and the weight is observed through the first display 8. Thus, by weighing the raw materials in the batching bucket 7, it is possible to calculate how much material is needed for subsequent mixing, which greatly saves time for workers to prepare in advance and improves work efficiency.

[0030] Such as Figure 2 、 Figures 5 to 8As shown in the figure, in this embodiment, a batching component 2, a batching seat 3, a mixing seat 4, and a cleaning component 5 are sequentially inserted into the upper surface of the discharge bottom plate 1 from front to back. The cleaning component 5 includes a cleaning tank 501, a cleaning pump 502, a cleaning pipe 503, and a cleaning head 504. A cleaning pump 502 is inserted into one side of the cleaning tank 501. One end of the cleaning pump 502 is sleeved with a cleaning pipe 503. One end of the cleaning pipe 503 is sleeved with a cleaning head 504. A fixing seat is provided on one side of the cleaning tank 501. The fixing seat of the cleaning tank 501 fixes the cleaning head 504 to prevent it from falling off. The cleaning tank 501 and the fixing seat are made of stainless steel. A batching platform scale 6 is inserted into the upper surface of the batching seat 3. A batching bucket 7 is inserted into the upper surface of the batching platform scale 6. A first display 8 is inserted into the middle of the surface of the batching bucket 7. A conveying component 9 is inserted into the top of the surface of the batching bucket 7. The conveying component 9 includes a conveying three-way pipe 901, a conveying fan 902, a conveying pump 903, and a conveying pipe 904. One end of the conveying three-way pipe 901 is sleeved with a conveying fan 902. The other end of the conveying three-way pipe 901 is inserted with a conveying pump 903. One end of the conveying pump 903 is sleeved with a conveying pipe 904. The conveying three-way pipe 901 is made of stainless steel. A bucket cover 10 is inserted into the upper surface of the batching bucket 7. A batching motor 11 is inserted into the inside of the bucket cover 10. One end of the batching motor 11 is inserted with a batching stirrer 12. A mixing platform scale 13 is inserted into the upper surface of the mixing seat 4. A mixing bucket 14 is inserted into the upper surface of the mixing platform scale 13. A second display 15 is inserted into one side of the mixing bucket 14. The second display 15 is the display of the mixing platform scale 13. A heating rod 16 is inserted into the inside of the mixing bucket 14. A mixing cover 17 is inserted into the upper surface of the mixing bucket 14. A mixing motor 18 is inserted into the inside of the mixing cover 17. One end of the mixing motor 18 is inserted with a mixing stirrer 19. A mixing shaft is inserted into the upper surface of the mixing stirrer 19. The mixing shaft of the mixing stirrer 19 is adapted to the mixing motor 18. A mixing hole is provided on the upper surface of the mixing cover 17. The mixing hole fixes the mixing motor 18. An outlet pump 20 is inserted into the other side of the mixing bucket 14. One end of the outlet pump 20 is sleeved with an outlet pipe 21. During the use process, the cleaning pump 502 rotates to pump the water in the cleaning tank 501, and the cleaning head 504 sprays through the cleaning pipe 503 to clean the equipment. By adding the materials that need to be mixed for the second time into the mixing bucket 14, when the materials are heated and melted by the heating rod 16, the added materials are weighed by the mixing platform scale 13, and the weight is displayed by the second display 15 for observation to avoid adding too much. The conveying pump 903 rotates to pump the mixed raw materials in the batching bucket 7 into the mixing bucket 14, and the conveying fan 902 rotates to draw air, and the remaining raw materials in the conveying three-way pipe 901 are blown into the batching bucket 7 or the mixing bucket 14 to avoid waste.Observe the first display 8 through the change in the weight of the batching platform scale 6, so that the amount of raw materials entering the mixing barrel 14 can be accurately known, avoiding mixing failure caused by excessive addition. Drive the mixing agitator 19 to rotate through the mixing motor 18, so that the mixing agitator 19 mixes the materials in the mixing barrel 14 and the added raw materials, thus accelerating the working speed of the workers and saving the physical strength of the workers. Rotate the discharge pump 20 to extract the mixed materials in the mixing barrel 14 and flow them into the loading device through the discharge pipe 21. Through the volume of the loading device, observe through the second display 15 through the change in the weight on the mixing platform scale 13, thus avoiding waste caused by excessive discharge and overflow, and avoiding the subsequent discharge for filling being insufficient and requiring remixing, which affects the working speed.

[0031] Working principle of this utility model:

[0032] During use, the raw materials to be prepared are placed in the batching tank 201. When in use, the batching pump 207 rotates to extract the raw materials in the batching tank 201 into the batching barrel 7. When the batching pump 207 extracts, the raw material platform scale 204 weighs the raw materials in the batching tank 201, and the weight change is observed through the third display 209. The batching fan 206 rotates to extract air, and the remaining raw materials in the batching three-way pipe 205 are blown into the batching barrel 7 or the batching tank 201 to avoid waste. By adding raw materials to the batching barrel 7 in the batching tank 201, the batching motor 11 drives the batching stirrer 12 to rotate, so that the raw materials in the batching stirrer 12 are mixed. The mixed raw materials are weighed by the batching platform scale 6 for the raw materials in the batching barrel 7, and the weight is observed through the first display 8. By adding the materials that need to be mixed for the second time into the mixing barrel 14, when the heating rod 16 heats the materials until they are melted, the added materials are weighed by the mixing platform scale 13, and the weight is displayed through the second display 15 for observation to avoid adding too much. The transfer pump 903 rotates to extract the mixed raw materials in the batching barrel 7 into the mixing barrel 14. The transfer fan 902 rotates to extract air, and the remaining raw materials in the transfer three-way pipe 901 are blown into the batching barrel 7 or the mixing barrel 14 to avoid waste. By observing the first display 8 through the change in the weight of the batching platform scale 6, the mixing motor 18 drives the mixing stirrer 19 to rotate, so that the mixing stirrer 19 mixes the materials and the added raw materials in the mixing barrel 14, thus accelerating the working speed of the workers and saving the physical strength of the workers. The discharging pump 20 rotates to extract the mixed materials in the mixing barrel 14 and flows through the discharging pipe 21 into the loading device. According to the volume of the loading device, the cleaning pump 502 rotates to extract the water in the cleaning tank 501, and the cleaning head 504 sprays through the cleaning pipe 503 to clean the equipment. It can accurately calculate whether the weight of the raw materials entering the batching barrel 7 is correct, so as to ensure the correct mixing ratio and avoid mixing failure due to incorrect mixing ratio. And when importing raw materials into the batching tank 201, it weighs accurately and pours in the raw materials needed for the day, avoiding waste caused by some special raw materials being unable to be used the next day after being stored in the batching tank 201 for a long time. Thus, by weighing the raw materials in the batching barrel 7, it can calculate how much materials are needed for subsequent mixing, which is convenient for workers to prepare in advance, greatly saving time and improving work efficiency. It can accurately know how much raw materials enter the mixing barrel 14, avoid mixing failure caused by adding too much, thus avoiding waste caused by excessive discharging and overflowing, and avoiding insufficient discharging for subsequent filling and the need to remix, which affects the working speed.

[0033] All the electrical components mentioned in this article are electrically connected to the external main controller and the 220V mains power supply, and the main controller can be a conventional known device such as a computer for control.

[0034] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A medium temperature curing rapid mixing and discharging mechanism for a carbon fiber bicycle, comprising a discharging bottom plate (1), characterized in that: The upper surface of the discharging bottom plate (1) is plugged with a batching component (2), a batching seat (3), a mixing seat (4), and a cleaning component (5) in sequence from front to back; the upper surface of the batching seat (3) is plugged with a batching platform scale (6); the upper surface of the batching platform scale (6) is plugged with a batching barrel (7); the middle of the surface of the batching barrel (7) is plugged with a first display (8); the top of the surface of the batching barrel (7) is plugged with a conveying component (9); the upper surface of the batching barrel (7) is plugged with a barrel cover (10); the interior of the barrel cover (10) is plugged with a batching motor (11); one end of the batching motor (11) is plugged with a batching stirrer (12); A mixing platform scale (13) is plugged into the upper surface of the mixing seat (4), a mixing barrel (14) is plugged into the upper surface of the mixing platform scale (13), a second display (15) is plugged into one side of the mixing barrel (14), a heating rod (16) is plugged into the interior of the mixing barrel (14), a mixing cover (17) is plugged into the upper surface of the mixing barrel (14), a mixing motor (18) is plugged into the interior of the mixing cover (17), a mixing agitator (19) is plugged into one end of the mixing motor (18), a discharge pump (20) is plugged into the other side of the mixing barrel (14), and a discharge pipe (21) is sleeved onto one end of the discharge pump (20).

2. A medium temperature curing rapid mixing and discharging mechanism for carbon fiber bicycles according to claim 1, characterized in that: The batching assembly (2) comprises a batching box (201), a batching cover (202), a box seat (203), a raw material platform scale (204), a batching three-way pipe (205), a batching fan (206), a batching pump (207), a batching pipe (208), and a third display (209). The batching cover (202) is plugged into the upper surface of the batching box (201), the box seat (203) is plugged into the lower surface of the batching box (201), and the box seat (203) is plugged into the lower surface of the batching box (201). 03) is plugged into the upper surface of a raw material platform scale (204), a batching three-way pipe (205) is plugged into one side of the batching box (201), a batching fan (206) is sleeved on one end of the batching three-way pipe (205), a batching pump (207) is sleeved on the other end of the batching three-way pipe (205), a batching pipe (208) is plugged into one end of the batching pump (207), and a third display (209) is plugged into one side of the batching box (201).

3. The medium temperature curing rapid mixing and discharging mechanism for carbon fiber bicycle according to claim 1, characterized in that: The cleaning assembly (5) comprises a cleaning box (501), a cleaning pump (502), a cleaning pipe (503), and a cleaning head (504); the cleaning pump (502) is plugged into one side of the cleaning box (501); the cleaning pipe (503) is sleeved on one end of the cleaning pump (502); and the cleaning head (504) is sleeved on one end of the cleaning pipe (503).

4. The medium temperature curing rapid mixing and discharging mechanism for carbon fiber bicycles according to claim 1, characterized in that: The conveying assembly (9) comprises a conveying tee (901), a conveying fan (902), a conveying pump (903), and a conveying pipe (904); one end of the conveying tee (901) is sleeved with the conveying fan (902); the other end of the conveying tee (901) is plugged with the conveying pump (903); and one end of the conveying pump (903) is sleeved with the conveying pipe (904).

5. The medium temperature curing rapid mixing and discharging mechanism for carbon fiber bicycles according to claim 1, characterized in that: A batching platform is provided on one side of the discharging bottom plate (1) close to the batching seat (3), and three batching components (2) are fixedly connected to the upper surface of the batching platform of the discharging bottom plate (1).

6. The medium temperature curing rapid mixing and discharging mechanism for carbon fiber bicycles according to claim 1, characterized in that: A batching groove is provided on the upper surface of the batching seat (3), and the batching groove of the batching seat (3) is of the same size as the batching platform scale (6).

7. The medium temperature curing rapid mixing and discharging mechanism for carbon fiber bicycles according to claim 1, characterized in that: A mixing shaft is inserted into the upper surface of the mixing agitator (19), and the mixing shaft of the mixing agitator (19) and the mixing motor (18) are adapted to each other.

8. The medium temperature curing rapid mixing and discharging mechanism for carbon fiber bicycles according to claim 3, characterized in that: A fixing seat is provided on one side of the cleaning box (501), and the fixing seat of the cleaning box (501) fixes the cleaning head (504) to prevent it from falling off.

Citation Information

Patent Citations

  • Raw material mixing device for carbon fiber material processing

    CN217746743U