Auxiliary feeding system of vertical shaft planetary mixer

By designing a vertical planetary mixer auxiliary loading system, the automatic screening and weighing of materials is realized, solving the problems of low loading efficiency and dust pollution in existing vertical mixers, and providing an efficient and clean loading solution.

CN113617282BActive Publication Date: 2025-08-19CHENGDU JIN RUI CONSTR & ENG MASCH CO LTD
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Patent Information

Application Number
CN202110878866.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-08-02
Publication Date
2025-08-19
Estimated Expiration
2041-08-02

AI Technical Summary

Technical Problem

During the loading process, existing vertical mixers need to manually screen the material size, which is inefficient, generates a lot of dust and cannot weigh the material, resulting in inconvenient operation.

Method used

A vertical axis planetary mixer auxiliary loading system is designed, including conveyor belt components, classified storage chambers, telescopic components, dustproof cloth, spray nozzles and inhalation nozzles, to realize automatic screening and weighing of materials, and to reduce dust scattering through dust-proof measures.

Benefits of technology

It realizes automatic screening and weighing of materials, improves loading efficiency, reduces dust pollution, and provides a more convenient loading solution.

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Abstract

The present invention provides an auxiliary feeding system for a vertical shaft planetary mixer, comprising a lower chassis and a lower electric control box; a rear plate is provided on the top of one side of the lower chassis, and a first conveyor belt component, a second conveyor belt component and a third conveyor belt component are fixed on the rear plate, a feeding port is provided above the first conveyor belt component, and a groove guide part is respectively provided at the bottom of the right end of the first conveyor belt component, the second conveyor belt component and the third conveyor belt component, and a classification storage cavity is provided at the bottom of the right end of the groove guide part; by arranging the third conveyor belt component, the second conveyor belt component and the first conveyor belt component and arranging three sets of groove guide parts and classification storage cavities, materials can be classified according to their size and stored in the classification storage cavity, and the main telescopic component, the bent metal rod, the unloading shaft, the universal shaft, the side slider and the side slide rail can be used to perform separate feeding on materials of three different sizes, thereby realizing the work of screening according to the size of the materials.
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Description

Technical Field

[0001] The invention particularly relates to an auxiliary feeding system for a vertical-shaft planetary mixer. Background Art

[0002] There are many forms of vertical mixers. Commonly used vertical mixers are mainly composed of: motor wheel, motor, barrel, screw, discharge port, cleaning port, pulley, window, ladder, entrance, electrical box, circulation drop port, feeding port, etc. At present, vertical mixers usually need to be used in conjunction with a loading platform during use. This traditional loading method has the following shortcomings: 1. If the size of the material to be mixed needs to be screened, it needs to be done manually, which is inefficient and inconvenient; 2. A large amount of dust is generated during the loading process; 3. The existing loading device cannot weigh the weight of the material to be mixed. Therefore, if a specific weight of material needs to be mixed, other devices need to be used for weighing, which is very inconvenient. In summary, an auxiliary loading system for a vertical planetary mixer is proposed to solve the above problems. Summary of the Invention

[0003] The purpose of the present invention is to provide an auxiliary feeding system for a vertical-shaft planetary mixer in view of the deficiencies in the prior art, which can well solve the above-mentioned problems.

[0004] In order to meet the above requirements, the technical solution adopted by the present invention is: to provide an auxiliary feeding system for a vertical axis planetary mixer, the auxiliary feeding system for a vertical axis planetary mixer includes a lower chassis and a lower electric control box; a rear plate is provided on the top of one side of the lower chassis, a first conveyor belt component, a second conveyor belt component and a third conveyor belt component are fixed on the rear plate, a feeding port is provided above the first conveyor belt component, a groove guide part is provided at the bottom right end of each of the first conveyor belt component, a classification storage cavity is provided at the bottom right end of each of the groove guide parts; a gathering feeding basin is provided below the classification storage cavity, and the gathering feeding basin The bottom of the right end of the upper material basin is connected to the output component of the first telescopic component located on the top of the lower electric control box through the first rotating shaft, and the bottom of the left end of the gathering upper material basin is connected to the second connecting rod through the second rotating shaft, and the bottom of the second connecting rod is connected to the top end face of the lower electric control box; a telescopic rod is respectively provided at the two top corners of the top front end face of the lower chassis, and a foldable dustproof cloth is connected between the two telescopic rods, and a side support rod is provided on the top of the lower electric control box, and a second side adjustment slide rail is provided on the side end face of the side support rod, and a second side adjustment slider sliding along the second side adjustment slide rail is provided on the second side adjustment slide rail, and a first The side adjustment slide rail is provided with a first side adjustment slider which slides along the first side adjustment slide rail, and the first side adjustment slider and the second side adjustment slider are respectively connected to a telescopic rod through a folded dustproof cloth; the side ends of the first conveyor belt component and the second conveyor belt component are respectively provided with a first material guide plate and a second material guide plate; the upper end surface of the lower chassis is provided with a rubber pad, and a water spray component and an air pump component are provided inside the lower chassis, the liquid outlet end of the water spray component is connected to the upper spray nozzle arranged on the top of the rear plate, and the air inlet end of the air pump component is connected to the side suction nozzle arranged on the rear plate and the lower suction nozzle arranged on the rubber pad. The air port is connected; it also includes three main telescopic components, the output end of the main telescopic component is connected to a baffle plate and a bent metal rod, the bottom of the classification storage cavity is provided with a discharge door, the discharge door is connected to the classification storage cavity through a discharge shaft, the outer end face of the discharge door is provided with a side slide rail, the side slide rail is provided with a side slider sliding along the side slide rail, the side slider is connected to the bent metal rod through a universal shaft, the side end face of the classification storage cavity is provided with a strip opening for extending into the baffle plate; the longitudinal cross-section of the gathering loading basin is triangular, and an opening is provided on the right side of the gathering loading basin; the three classification storage cavities are all connected to the rear plate. The advantages of the auxiliary feeding system of the vertical axis planetary mixer are as follows:

[0005] By arranging the third conveyor belt component, the second conveyor belt component and the first conveyor belt component and arranging three sets of groove guide parts and classification storage chambers, the materials can be classified according to their size and stored inside the classification storage chamber, and the main telescopic component, the bent metal rod, the unloading shaft, the universal shaft, the side slider and the side slide rail can be used to load materials of three different sizes separately, thereby realizing the work of screening according to the size of the materials; by arranging an electronic scale component at the bottom of the gathering feeding basin, the materials in the gathering feeding basin can be weighed, thereby realizing the function of carrying out materials of different qualities according to needs; by arranging the side air suction nozzle, the upper spray nozzle, the telescopic rod, the folded dustproof cloth and the lower air suction port, the telescopic rod can be stretched upward when loading and the folded dustproof cloth can be blocked on the outside of the device to prevent dust from flying out, and the upper spray nozzle can be used for spraying, and the side air suction nozzle and the lower air suction port can be used for sucking dust, so that the dust prevention function can be achieved from multiple aspects. BRIEF DESCRIPTION OF THE DRAWINGS

[0006] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The same reference numerals are used in these drawings to represent the same or similar parts. The exemplary embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0007] Figure 1 The structural diagram of the auxiliary feeding system of a vertical-shaft planetary mixer according to one embodiment of the present application is schematically shown.

[0008] Figure 2 The schematic diagram of the structure of the classification storage cavity of the auxiliary feeding system of the vertical shaft planetary mixer according to one embodiment of the present application is schematically shown.

[0009] Among them: 1. Feeding port; 2. Side suction nozzle; 3. Upper spray nozzle; 4. Rear plate; 5. Grooved guide; 6. Classification storage cavity; 7. Gathering feeding basin; 8. First rotating shaft; 9. First connecting rod; 10. First telescopic component; 11. Lower electrical control box; 12. Electronic scale component; 13. Second rotating shaft; 14. Second connecting rod; 15. Telescopic rod; 16. Folding dustproof cloth; 17. Lower chassis; 18. Rubber pad; 19. Water spray component; 20. Lower suction port; 21. Air pump component; 22. Air outlet 23. Third conveyor belt component; 24. Second conveyor belt component; 25. Second material guide plate; 26. First conveyor belt component; 27. First material guide plate; 28. Side shielding plate; 29. Main telescopic component; 30. Bending metal rod; 31. Unloading shaft; 32. Universal shaft; 33. Side slider; 34. Side slide rail; 35. Unloading door; 36. First side adjustment slider; 37. First side adjustment slide rail; 38. Side support rod; 39. Second side adjustment slide rail; 40. Second side adjustment slider; 41. Material blocking plate. DETAILED DESCRIPTION

[0010] In order to make the objectives, technical solutions and advantages of this application clearer, this application is further described in detail below with reference to the accompanying drawings and specific embodiments.

[0011] In the following description, references to "one embodiment," "an embodiment," "an example," "an example," etc. indicate that the embodiment or example described may include certain features, structures, characteristics, properties, elements, or limitations, but not every embodiment or example necessarily includes the certain features, structures, characteristics, properties, elements, or limitations. In addition, repeated use of the phrase "according to one embodiment of the present application" may refer to the same embodiment, but does not necessarily refer to the same embodiment.

[0012] For the sake of simplicity, certain technical features well known to those skilled in the art are omitted in the following description.

[0013] According to one embodiment of the present application, a vertical axis planetary mixer auxiliary feeding system is provided, such as Figure 1-2 As shown, it includes a lower chassis 17 and a lower electrical control box 11; a rear plate 4 is provided on the top of one side of the lower chassis 17, and a first conveyor belt component 26, a second conveyor belt component 24 and a third conveyor belt component 23 are fixed on the rear plate 4, and a feed port 1 is provided above the first conveyor belt component 26, and a groove guide part 5 is provided at the bottom of the right end of each of the first conveyor belt component 26, the second conveyor belt component 24 and the third conveyor belt component 23, and a classification storage cavity 6 is provided at the bottom of the right end of each of the groove guide parts 5.

[0014] According to one embodiment of the present application, a gathering feeding basin 7 is provided below the classification storage cavity 6 of the auxiliary feeding system of the vertical-shaft planetary mixer. The bottom of the right end of the gathering feeding basin 7 is connected to the output component of the first telescopic component 10 provided on the top of the lower electric control box 11 through the first rotating shaft 8, and the bottom of the left end of the gathering feeding basin 7 is connected to the second connecting rod 14 through the second rotating shaft 13, and the bottom of the second connecting rod 14 is connected to the top end face of the lower electric control box 11.

[0015] According to one embodiment of the present application, a telescopic rod 15 is respectively provided at the two top corners of the top front end surface of the lower chassis 17 of the vertical shaft planetary mixer auxiliary feeding system, and a folding dustproof cloth 16 is connected between the two telescopic rods 15. A side support rod 38 is provided on the top of the lower electric control box 11, and the side end surface of the side support rod 38 is provided with a second side adjustment slide rail 39, and the second side adjustment slide rail 39 is provided with a second side adjustment slider 40 that slides along the second side adjustment slide rail 39. A first side adjustment slide rail 37 is provided at the left edge of the rear plate 4, and the first side adjustment slide rail 37 is provided with a first side adjustment slider 36 that slides along the first side adjustment slide rail 37. The first side adjustment slider 36 and the second side adjustment slider 40 are respectively connected to a telescopic rod 15 through a folding dustproof cloth 16; the side ends of the first conveyor belt component 26 and the second conveyor belt component 24 are respectively provided with a first guide plate 27 and a second guide plate 25.

[0016] According to one embodiment of the present application, the upper end surface of the lower chassis 17 of the auxiliary feeding system of the vertical shaft planetary mixer is provided with a rubber pad 18, and a water spray component 19 and an air pump component 21 are provided inside the lower chassis 17. The liquid outlet end of the water spray component 19 is connected to the upper spray nozzle 3 arranged on the top of the rear plate 4, and the air inlet end of the air pump component 21 is connected to the side suction nozzle 2 arranged on the rear plate 4 and the lower suction port 20 arranged on the rubber pad 18.

[0017] According to one embodiment of the present application, the auxiliary feeding system of the vertical-shaft planetary mixer also includes three main telescopic components 29, and the output end of the main telescopic component 29 is connected to a baffle plate 41 and a bent metal rod 30. The bottom of the classification storage cavity 6 is provided with a discharge door 35, and the discharge door 35 is connected to the classification storage cavity 6 through a discharge shaft 31. A side slide rail 34 is provided on the outer end face of the discharge door 35, and a side slider 33 sliding along the side slide rail 34 is provided on the side slide rail 34. The side slider 33 is connected to the bent metal rod 30 through a universal shaft 32, and a strip opening for extending into the baffle plate 41 is provided on the side end face of the classification storage cavity 6.

[0018] According to one embodiment of the present application, the top and bottom of the feed port 1 of the auxiliary feeding system of the vertical shaft planetary mixer are provided with openings, the bottom of the side end face of the feed port 1 is provided with an opening, and the side end face of the feed port 1 is connected to a side baffle 28.

[0019] According to one embodiment of the present application, the longitudinal cross-section of the gathering feeding basin 7 of the auxiliary feeding system of the vertical-shaft planetary mixer is triangular, and an opening is provided on the right side of the gathering feeding basin 7 .

[0020] According to one embodiment of the present application, the classification storage chambers 6 of the auxiliary feeding system of the vertical-shaft planetary mixer are all connected to the rear plate 4 .

[0021] According to one embodiment of the present application, the first conveyor belt component 26, the second conveyor belt component 24 and the third conveyor belt component 23 of the auxiliary feeding system of the vertical planetary mixer are composed of a driving rotating shaft, a driven rotating shaft and a conveyor belt component sleeved on the outside of the driving rotating shaft and the driven rotating shaft, each driving rotating shaft is connected to the output end of a rotating motor, and the rotating motors are fixed on the rear plate 4, and the conveyor belt components on the first conveyor belt component 26 and the second conveyor belt component 24 are respectively provided with circular holes with a diameter of fifteen centimeters and ten centimeters, one end of the first guide plate 27 extends from between the driving rotating shaft and the driven rotating shaft of the first conveyor belt component 26, and the other end of the first guide plate 27 is located above the conveyor belt component of the second conveyor belt component 24, one end of the second guide plate 25 extends from between the driving rotating shaft and the driven rotating shaft of the second conveyor belt component 24, and the other end of the second guide plate 25 is located above the third conveyor belt component 23.

[0022] According to one embodiment of the present application, the rear plate 4 of the auxiliary feeding system of the vertical shaft planetary mixer is a hollow plate structure, and a water pipe for connecting the water spray component 19 and the rear plate 4 is provided inside the rear plate 4, and an air pipe for connecting the air pump component 21 and the side suction nozzle 2 and the lower suction port 20 is provided inside the rear plate 4.

[0023] According to one embodiment of the present application, an air outlet 22 connected to the air outlet end of the air pump component 21 is provided on the outer end face of the lower chassis 17 of the vertical shaft planetary mixer auxiliary feeding system, and an air filter component is provided at the air outlet 22. A dust accumulation cavity is provided inside the lower chassis 17, and the air outlet 22 is provided on the dust accumulation cavity.

[0024] According to one embodiment of the present application, a water storage cavity connected to the water spraying component 19 is provided inside the lower case 17 of the auxiliary feeding system of the vertical shaft planetary mixer.

[0025] According to one embodiment of the present application, the three main telescopic components 29 of the auxiliary feeding system of the vertical-shaft planetary mixer are respectively fixedly connected to the rear plate 4 through a metal rod, each of the main telescopic components 29 is respectively located on the left side of a classification storage cavity 6, and the material baffle 41 on each main telescopic component 29 is respectively inserted into the interior of a classification storage cavity 6.

[0026] According to one embodiment of the present application, when the vertical axis planetary mixer auxiliary feeding system is in use, the material to be mixed can be placed into the feed port 1 from the top, and the material will fall from the feed port 1 to the top of the first conveyor belt component 26. There is a circular hole with a diameter of 15 cm on the conveyor belt component on the first conveyor belt component 26, so that the material larger than the circular hole can be conveyed through the first conveyor belt component 26 into the matching groove guide part 5 and then into the classification storage cavity 6. The material smaller than the circular hole will fall on the first guide plate 27 and then fall on the second conveyor belt component 24. The conveyor belt component of the second conveyor belt component 24 is provided with a circular hole with a diameter of 10 cm. The material larger than this size will be conveyed by the second conveyor belt component 24 to the matching groove guide part 5 and then enter the classification storage cavity. The material smaller than this circular hole will fall on the second guide plate 25 and then fall on the third conveyor belt component 23, and be conveyed by the third conveyor belt component 23 into the matching groove guide part 5 and the classification storage cavity 6. After the above steps, the materials that need to be stirred can be divided into three types, namely, larger than 15 cm, 10 to 15 cm and less than ten centimeters (similarly, materials with a diameter of one centimeter or two centimeters can be screened), and stored in a classification storage cavity 6 respectively. When materials of a specific size are needed, the corresponding main telescopic component 29 can be used to drive the bent metal rod 30 and the baffle plate 41 to move. The baffle plate 41 extends into the classification storage cavity 6 and blocks the top of the classification storage cavity 6 to prevent further feeding. The bent metal rod 30 drives the discharge door 35 to flip outward so that the discharge operation can be realized. At this time, the material falls into the gathering and loading basin 7 and enters the mixer through the discharge port on the right side of the gathering and loading basin 7 for stirring (at this time, the right end of the gathering and loading basin 7 can be driven downward by the first telescopic component 10 to facilitate unloading). During use, the telescopic rod 15 can be pulled upward, driving the folded dustproof cloth 16 to stretch upward. At the same time, the second side adjustment slider 40 and the first side adjustment slider 36 both move upward, driving the folded dustproof cloth 16 connected thereto to stretch upward. In this way, the folded dustproof cloth 16 can be used to block the entire periphery of the auxiliary feeding system of the vertical axis planetary mixer to prevent dust from flying out. At the same time, the upper spray nozzle 3 can be used for spraying, and the side air suction nozzle 2 and the lower air suction port 20 can be used for dust suction processing, so that the dust generated during feeding is sucked into the ash storage cavity in the lower chassis 17. The top end surface of the lower chassis 17 is provided with a cavity corresponding to and connected to the lower air suction port 20. These cavities are all connected to the air pump component 21. At the same time, the electronic scale component 12 provided at the bottom of the gathering and feeding basin 7 can weigh the weight of the material in the gathering and feeding basin 7. In this way, when the input weight requirement is reached, the material can be stopped from being introduced into the gathering and feeding basin 7, and the right end of the gathering and feeding basin 7 can be driven to move downward for unloading.

[0027] According to one embodiment of the present application, the auxiliary feeding system of the vertical shaft planetary mixer can classify the materials according to their size and store them inside the classification storage cavity 6 by setting a third conveyor belt component 23, a second conveyor belt component 24 and a first conveyor belt component 26 and setting three sets of groove guide parts 5 and classification storage chambers 6, and can use the main telescopic component 29, the bent metal rod 30, the unloading shaft 31, the universal shaft 32, the side slider 33 and the side slide rail 34 to perform separate feeding of three materials of different sizes, thereby realizing the work of screening according to the size of the materials; An electronic scale component 12 is arranged at the bottom of the gathering and loading basin 7 to weigh the materials in the gathering and loading basin 7, thereby realizing the function of loading materials of different qualities as needed; by arranging the side air suction nozzle 2, the upper spray nozzle 3, the telescopic rod 15, the folded dustproof cloth 16 and the lower air suction port 20, the telescopic rod 15 can be stretched upward when loading and the folded dustproof cloth 16 can be covered on the outside of the device to prevent dust from flying out, and the upper spray nozzle 3 can be used for spraying, and the side air suction nozzle 2 and the lower air suction port 20 can be used for suction of dust, so that the dust prevention function can be achieved from multiple aspects.

[0028] The above-described embodiments merely represent several implementations of the present invention. While the descriptions are relatively specific and detailed, they are not to be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art may make various modifications and improvements without departing from the spirit of the present invention, and such modifications and improvements fall within the scope of the present invention. Therefore, the scope of the present invention shall be determined by the claims.

Claims

1. An auxiliary feeding system for a vertical shaft planetary mixer, characterized by: The machine comprises a lower chassis and a lower electric control box; a rear plate is provided on the top of one side of the lower chassis, a first conveyor belt component, a second conveyor belt component and a third conveyor belt component are fixed on the rear plate, a material inlet is provided above the first conveyor belt component, a groove guide portion is provided at the bottom of the right end of each of the first conveyor belt component, a classification storage cavity is provided at the bottom of the right end of each of the groove guide portions; a gathering material basin is provided below the classification storage cavity, and the bottom of the right end of the gathering material basin is connected to the first telescopic shaft provided on the top of the lower electric control box through the first rotating shaft. The output component of the component is connected, the bottom of the left end of the gathering feeding basin is connected to the second connecting rod through the second rotating shaft, and the bottom of the second connecting rod is connected to the top end face of the lower electric control box; a telescopic rod is respectively provided at the two top corners of the top front end face of the lower chassis, and a foldable dustproof cloth is connected between the two telescopic rods, and a side support rod is provided on the top of the lower electric control box, and the side end face of the side support rod is provided with a second side adjustment slide rail, and the second side adjustment slide rail is provided with a second side adjustment slider that slides along the second side adjustment slide rail, and the left edge of the rear plate is provided with a first side adjustment The first side adjustment slide rail is provided with a first side adjustment slider which slides along the first side adjustment slide rail, and the first side adjustment slider and the second side adjustment slider are respectively connected to a telescopic rod through a folded dustproof cloth; the side ends of the first conveyor belt component and the second conveyor belt component are respectively provided with a first material guide plate and a second material guide plate; the upper end surface of the lower chassis is provided with a rubber pad, and a water spray component and an air pump component are provided inside the lower chassis, the liquid outlet end of the water spray component is connected to the upper spray nozzle provided on the top of the rear plate, and the air inlet end of the air pump component is connected to the upper spray nozzle provided The side air suction nozzle on the rear plate is connected to the lower air suction port arranged on the rubber pad; it also includes three main telescopic components, the output end of the main telescopic component is connected to a material baffle plate and a bent metal rod, the bottom of the classification storage cavity is provided with a discharge door, the discharge door is connected to the classification storage cavity through a discharge rotating shaft, the outer end surface of the discharge door is provided with a side slide rail, the side slide rail is provided with a side slider that slides along the side slide rail, the side slider is connected to the bent metal rod through a universal rotating shaft, and the side end surface of the classification storage cavity is provided with a strip opening for extending into the material baffle plate; The longitudinal cross-section of the gathering feeding basin is triangular, and an opening is provided on the right side of the gathering feeding basin; the three classification storage cavities are all connected to the rear plate.

2. The auxiliary feeding system for a vertical-shaft planetary mixer according to claim 1, characterized in that: The top and bottom of the feed port are both provided with openings, the bottom of the side end surface of the feed port is provided with an opening, and the side end surface of the feed port is connected to a side shielding plate.

3. The auxiliary feeding system for a vertical-shaft planetary mixer according to claim 1, characterized in that: The first conveyor belt component, the second conveyor belt component and the third conveyor belt component are each composed of a driving rotating shaft, a driven rotating shaft and a conveyor belt component sleeved on the outside of the driving rotating shaft and the driven rotating shaft, each driving rotating shaft is connected to the output end of a rotating motor, and the rotating motors are fixed to the rear plate, one end of the first guide plate extends from between the driving rotating shaft and the driven rotating shaft of the first conveyor belt component, the other end of the first guide plate is located above the second conveyor belt component, one end of the second guide plate extends from between the driving rotating shaft and the driven rotating shaft of the second conveyor belt component, and the other end of the second guide plate is located above the third conveyor belt component.

4. The auxiliary feeding system for a vertical-shaft planetary mixer according to claim 3, characterized in that: The conveyor belt components on the first conveyor belt component and the second conveyor belt component are respectively provided with circular holes with diameters of 15 cm and 10 cm.

5. The auxiliary feeding system for a vertical-shaft planetary mixer according to claim 4, characterized in that: The conveyor belt components on the first conveyor belt component and the second conveyor belt component are respectively provided with circular holes with a diameter of two centimeters and one centimeter.

6. The auxiliary feeding system for a vertical-shaft planetary mixer according to claim 1, characterized in that: The rear plate is a hollow plate structure, and a water pipe for connecting the water spray component and the rear plate is provided inside the rear plate. An air pipe for connecting the air pump component and the side air suction nozzle and the lower air suction port is provided inside the rear plate; an air outlet hole connected to the air outlet end of the air pump component is provided on the outer end surface of the lower chassis, and an air filter component is provided at the air outlet hole. A dust accumulation cavity is provided inside the lower chassis, and the air outlet hole is provided on the dust accumulation cavity.

7. The auxiliary feeding system for a vertical-shaft planetary mixer according to claim 1, characterized in that: A water storage cavity communicated with the water spray component is provided inside the lower case.

8. The auxiliary feeding system for a vertical-shaft planetary mixer according to claim 1, characterized in that: The three main telescopic components are fixedly connected to the back plate through a metal rod respectively, each of the main telescopic components is located on the left side of a classification storage cavity respectively, and the material baffle on each main telescopic component is inserted into the interior of a classification storage cavity respectively.

Citation Information

Patent Citations

  • Auxiliary feeding device of vertical shaft planetary mixer

    CN216137168U