Rose red granular solid beverage production equipment and preparation method thereof

By combining axial and longitudinal crushing modules with a rotary screen and a transposition rotary screen, the shortcomings of existing devices in integrating crushing and screening functions are solved, achieving efficient crushing and screening and improving crushing intensity and efficiency.

CN115870060BActive Publication Date: 2026-02-27ANHUI YIJIANTANG CHINESE MEDICINE PIECES TECH CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202211495905.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-28
Publication Date
2026-02-27
Estimated Expiration
2042-11-28

AI Technical Summary

Technical Problem

Existing rose red particle crushing devices are insufficient in terms of crushing intensity and cyclic crushing and screening operations, making it difficult to efficiently integrate crushing and screening functions.

Method used

The design integrates axial crushing module, longitudinal crushing module, rotary screen cylinder and shifting rotary cylinder to achieve crushing and screening functions. The components are driven by servo motors to work together to achieve cyclic crushing and screening.

Benefits of technology

It improves crushing efficiency and effect, realizes bidirectional crushing of materials, enhances crushing intensity, and improves material preparation effect through the integration of circulation filtration and crushing functions.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115870060B_ABST
    Figure CN115870060B_ABST
Patent Text Reader

Abstract

The application discloses a rose red granular solid beverage production device and a preparation method thereof, which comprises a vibration platform, a machine body fixedly installed on the surface of the vibration platform, a rotary screen cylinder rotatably arranged on the inner wall of the machine body, an envelope arranged on the inner side of the rotary screen cylinder, a group of material carrying plates fixedly installed on the inner wall of the rotary screen cylinder and arranged in a circumferential array, one surface of the envelope fixedly connected with the machine body, the surfaces of the group of material carrying plates slidably attached to the envelope, a material returning port formed above the envelope, a material falling port formed below the envelope, a transposition rotary cylinder rotatably connected with the inner wall of the envelope, an air distribution rotary cylinder rotatably connected with the inner wall of the transposition rotary cylinder, and a transmission gear ring fixedly installed on the peripheral side of the air distribution rotary cylinder. The axial crushing module, the longitudinal crushing module, the rotary screen cylinder and the transposition rotary cylinder are arranged, so that the device can efficiently complete the raw material crushing operation during the production and preparation of the rose red granular solid beverage, and the crushing and screening functions are integrated during the crushing operation of the device.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of solid beverage production, in particular to a rose red granular solid beverage production equipment and a preparation method thereof. BACKGROUND

[0002] Rose is a shrub of the genus Rosa in the family Rosaceae in plant taxonomy, and is a general term for a series of large and beautiful cultivated varieties of the genus Rosa in daily life, which can also be called Chinese rose or rose. Rose has a very wide application in the field of beverage preparation, and with the development of existing technology, fixed granular beverage has gradually become a trend. In the preparation of fixed granular beverage, the rose raw material needs to be crushed first, and the existing crushing device has a crushing strength angle, and it is not convenient to realize the cycle crushing and cycle screening operation in the crushing process. Based on this, the present application provides a rose red granular solid beverage production equipment and a preparation method thereof to solve the problems raised in the background technology. SUMMARY

[0003] (I) Technical problems to be solved

[0004] In view of the deficiencies of the prior art, the purpose of the present application is to provide a rose red granular solid beverage production equipment and a preparation method thereof. The present application is provided by the setting of the axial crushing module, the longitudinal crushing module, the rotating screen cylinder and the transposition rotating cylinder, so that the present device can efficiently complete the raw material crushing operation in the production and preparation of rose red solid granular beverage, and the present device integrates crushing and screening functions in the crushing operation.

[0005] (II) Technical scheme

[0006] In order to achieve the above purpose, the present application provides the following technical scheme, the technical scheme adopted by a rose red granular solid beverage production equipment is: a vibration platform, the surface of the vibration platform is fixedly installed with a machine body, the inner wall of the machine body is rotatably provided with a rotating screen cylinder, the inner side of the rotating screen cylinder is provided with a sealing cylinder, the inner wall of the rotating screen cylinder is fixedly installed with a group of circumferentially arrayed material carrying plates, one surface of the sealing cylinder is fixedly connected with the machine body, the surfaces of a group of the material carrying plates are all slidably attached to the sealing cylinder, a return material port is formed above the sealing cylinder, a material dropping port is formed below the sealing cylinder, the inner wall of the sealing cylinder is rotatably connected with a transposition rotating cylinder, the inner wall of the transposition rotating cylinder is rotatably connected with a wind distribution rotating cylinder, the peripheral side of the wind distribution rotating cylinder is fixedly installed with a transmission gear ring, the back surface of the machine body is fixedly installed with a servo motor, the output shaft ends of the servo motor are respectively in transmission connection with the rotating screen cylinder, the transposition rotating cylinder and the wind distribution rotating cylinder, the peripheral side of the transposition rotating cylinder is installed with a group of circumferentially arrayed and sequentially connected crushing mechanisms, the inner walls of a group of the crushing mechanisms are all in transmission connection with the transmission gear ring, the side surface of the machine body is fixedly installed with a wind supply module in communication with the wind distribution rotating cylinder.

[0007] As a preferred scheme, the vibration platform comprises a damping frame, a feeding hopper, a discharging hopper and two symmetrical vibration motors, the top surface of the damping frame is fixedly connected with the machine body, one end of the feeding hopper and the discharging hopper is communicated with the machine body, the bottom surface of the two vibration motors is fixedly connected with the machine body, a set of universal casters is installed on the bottom surface of the damping frame, and a control panel is fixedly installed on the end surface of the damping frame.

[0008] As a preferred scheme, the crushing mechanism comprises a crushing cavity opened in the transposition rotary cylinder and a crushing hopper fixedly communicated with the crushing cavity, the inner wall of the crushing cavity is uniformly distributed with a plurality of groups of circumferentially arrayed pressure air holes, the inner surface of the crushing cavity is rotationally connected with a horizontally arranged first crushing shaft, the circumferential surface of the first crushing shaft is fixedly installed with a driven gear at a position corresponding to the transmission gear ring, the circumferential surface of the driven gear is engaged with the transmission gear ring, the circumferential surface of the first crushing shaft is fixedly installed with a group of axially crushing modules in linear array distribution, the top of the crushing hopper is fixedly provided with a material guiding slope at the bottom opening, a group of crushing flow channels in linear array distribution is opened in the crushing hopper, a positioning tube is fixedly installed on the inner wall of the crushing hopper, a horizontally arranged linkage shaft is rotationally connected with the inner wall of the positioning tube, the circumferential surface of the linkage shaft is transmissionally connected with the first crushing shaft through a chain, the inner wall of the positioning tube is rotationally connected with a second crushing shaft at a position corresponding to each crushing flow channel, the circumferential surface of the second crushing shaft is fixedly installed with a group of longitudinally crushing modules in linear array distribution, and the circumferential surface of the second crushing shaft is transmissionally connected with the linkage shaft.

[0009] As a preferred scheme, the top opening of the crushing cavity is in a concave arc surface structure, the axis of the concave arc surface of the crushing cavity is on the axis of the first crushing shaft, the axis of the second crushing shaft is perpendicular to the axis of the linkage shaft, the cross section of the crushing flow channel is circular, and the axis of the crushing flow channel is parallel to the axis of the second crushing shaft.

[0010] As a preferred scheme, the axially crushing module and the longitudinally crushing module each comprise a cutter ring, and a group of circumferentially arrayed cutting edges are fixedly installed on the circumferential surface of the cutter ring.

[0011] As a preferred scheme, the end of the second crushing shaft is fixedly installed with a driven bevel gear, a transmission bevel gear is fixedly installed on the circumferential surface of the linkage shaft at a position corresponding to each driven bevel gear, and the driven bevel gear is engaged with the transmission bevel gear at the corresponding position.

[0012] As a preferred scheme, the air supply module comprises a ventilation pipe fixedly connected with the machine body and coaxially communicated with the air distribution rotary cylinder, a filter element and a high-pressure axial flow fan are fixedly installed on the inner wall of the ventilation pipe from front to back, a group of circumferentially arrayed air distribution strip holes matched with the pressure air holes are opened on the inner wall of the air distribution rotary cylinder.

[0013] As a preferred scheme, a plurality of groups of screen holes are arranged in a circumferential array on the peripheral side of the screen cylinder, the axis of the screen hole is perpendicular to the axis of the screen cylinder, the screen cylinder is open on the side opposite to the feeding hopper, and the diameter of the screen hole is 1.3-1.5 times the diameter of the air pressure hole.

[0014] As a preferred scheme, the strip material plate is arranged in an inclined manner, and the angle between the axis of the strip material plate and the horizontal line is 45°.

[0015] A preparation method of a rose red granular solid beverage production equipment, comprising the following steps:

[0016] SS001, feeding: before work, the production raw materials of the rose red granular solid beverage are put into the space between the screen cylinder and the sealing cylinder from the feeding hopper;

[0017] SS002, raw material preparation: when the raw material is prepared, the servo motor works, then the transposition rotating cylinder, the screen cylinder and the air distribution rotating cylinder are driven to rotate, and when the servo motor works, the rotating speed of the air distribution rotating cylinder is 10 times that of the screen cylinder, the rotating speed of the transposition rotating cylinder is 0.2 times that of the screen cylinder, after the air distribution rotating cylinder rotates, the first crushing shaft is driven to rotate at high speed through the transmission gear ring, then the second crushing shaft is driven to rotate at high speed after the first crushing shaft rotates at high speed, the axial crushing module is driven to perform axial crushing operation on the raw material after the first crushing shaft rotates at high speed, the longitudinal crushing module is driven to perform longitudinal crushing operation on the raw material after the second crushing shaft rotates at high speed, the screen cylinder rotates, on the one hand, the crushed raw material is screened, and on the other hand, the incompletely crushed material is driven by the strip material plate to enter the crushing hopper through the return material port, the transposition rotating cylinder rotates, then the position of a group of crushing hoppers is changed in circulation, through the circulation of the position of a group of crushing hoppers, the crushing hopper can receive the material entering through the return material port in circulation and discharge the crushed material from the material falling port in circulation, the material discharged from the material falling port is crushed by the screen cylinder, and the screened fine material is discharged from the material discharge hopper.

[0018] (Three) beneficial effects

[0019] Compared with the prior art, the rose red granular solid beverage production equipment and the preparation method thereof have the following beneficial effects

[0020] 1. This invention, through the arrangement of an axial crushing module, a longitudinal crushing module, a rotary screen cylinder, and a shifting rotary cylinder, enables the device to efficiently complete the raw material crushing operation in the production and preparation of rose red solid granule beverages. Moreover, this device integrates crushing and screening functions during the crushing operation. Through the realization of the above-mentioned integrated functions, the crushing efficiency and crushing effect of this device are effectively improved. Furthermore, based on the realization of the above functions, this device can also realize the cyclic filtration and cyclic crushing during material crushing and filtration. Through the realization of the above-mentioned cyclic filtration and cyclic crushing functions, the preparation effect of the material is effectively improved.

[0021] 2. This invention, through the setting of axial crushing module and longitudinal crushing module, can achieve bidirectional crushing of materials during crushing. By realizing the bidirectional crushing effect, the crushing intensity of the material is effectively improved. By setting the air pressure hole, the material to be crushed in the crushing chamber can be blown up by air force. By realizing the effect of the material to be crushed in the crushing chamber, the material can be concentrated at the action position of the axial crushing module, thereby further improving the crushing intensity and crushing efficiency of the raw material. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the structure of a rose red granular solid beverage production equipment according to the present invention;

[0023] Figure 2 For the present invention Figure 1 A schematic diagram of the cross-sectional structure;

[0024] Figure 3 For the present invention Figure 2 A magnified schematic diagram of the partial structure at point A in the middle;

[0025] Figure 4 For the present invention Figure 2 A magnified schematic diagram of the local structure at point B;

[0026] Figure 5 This is a schematic cross-sectional view of the crushing chamber of the present invention;

[0027] Figure 6 For the present invention Figure 5 A magnified schematic diagram of the structure at point C in the middle;

[0028] Figure 7 For the present invention Figure 5 A magnified schematic diagram of the local structure at point D;

[0029] Figure 8 This is an exploded structural diagram of the sealing cylinder and the material conveyor plate of the present invention;

[0030] Figure 9 For the present invention Figure 8 A magnified schematic diagram of the local structure at point E;

[0031] Figure 10 It is the structural schematic view of the commutating cylinder of the application;

[0032] Figure 11 It is the structural schematic view of the driven gear of the application;

[0033] Figure 12 It is the structural schematic view of the commutating cylinder.

[0034] In the figure: 1, machine body; 2, rotating screen cylinder; 3, sealing cylinder; 4, belt material plate; 5, return material port; 6, material falling port; 7, commutating cylinder; 8, air distribution cylinder; 9, transmission gear ring; 10, servo motor; 11, shock absorbing frame; 12, feeding hopper; 13, discharging hopper; 14, excitation motor; 15, crushing cavity; 16, crushing hopper; 17, compressed air supply hole; 18, first crushing shaft; 19, driven gear; 20, universal caster; 21, crushing flow channel; 22, positioning tube; 23, linkage shaft; 24, second crushing shaft; 25, longitudinal crushing module; 26, driven bevel gear; 27, transmission bevel gear; 28, ventilation pipe; 29, filter element; 30, high-pressure axial flow fan; 31, air distribution bar hole; 32, screen hole; 33, axial crushing module. DETAILED DESCRIPTION

[0035] The application will be further described and explained with specific embodiments and the accompanying drawings of the specification:

[0036] Please refer to Figures 1-12 The technical scheme adopted by the application: a rose red granular solid beverage production equipment includes a vibrating platform, and the surface of the vibrating platform is fixedly installed with a machine body 1;

[0037] The vibrating platform includes a shock absorbing frame 11, a feeding hopper 12, a discharging hopper 13, and two symmetrically arranged excitation motors 14, the top surface of the shock absorbing frame 11 is fixedly connected with the machine body 1, one end of the feeding hopper 12 and the discharging hopper 13 is communicated with the machine body 1, the bottom surface of the two excitation motors 14 is fixedly connected with the machine body 1, the bottom surface of the shock absorbing frame 11 is installed with a set of universal casters 20, and the end surface of the shock absorbing frame 11 is fixedly installed with a control panel;

[0038] During work, the two excitation motors 14 output vibration frequencies in a set state, and the vibration frequency output of the excitation motor 14 enables the preparation equipment to perform the screening operation of the crushed materials through the vibration screening principle;

[0039] The inner wall of the machine body 1 is rotatably provided with a rotating screen cylinder 2, one side of the rotating screen cylinder 2 is open relative to the feeding hopper 12, a plurality of groups of screen holes 32 are fixedly arranged on the circumferential surface of the rotating screen cylinder 2 in a circumferential array, and the axis of the screen hole 32 is perpendicular to the axis of the rotating screen cylinder 2;

[0040] The size of the screen hole 32 can be customized according to actual needs, and the screen hole 32 is a circular hole;

[0041] The inner side of the rotating screen cylinder 2 is provided with an envelope cylinder 3, and a group of material carrying plates 4 distributed in a circumferential array are fixedly installed on the inner wall of the rotating screen cylinder 2. The material carrying plates 4 are arranged obliquely, and the angle between the axis of the material carrying plates 4 and the horizontal line is 45°. Through the material carrying plates 4 and the angle setting of the material carrying plates 4, unqualified materials in the rotating screen cylinder 2 can be brought back to the material return port 5, and then the materials are subjected to cyclic crushing operation until the particle size of the raw materials is qualified.

[0042] One surface of the envelope cylinder 3 is fixedly connected with the machine body 1, and the surfaces of the group of material carrying plates 4 are all in sliding fit with the envelope cylinder 3. A material return port 5 is formed above the envelope cylinder 3, and a material falling port 6 is formed below the envelope cylinder 3. A transposition rotating cylinder 7 is rotatably connected to the inner wall of the envelope cylinder 3. A wind distribution rotating cylinder 8 is rotatably connected to the inner wall of the transposition rotating cylinder 7, and the wind distribution rotating cylinder 8 is a hollow cylindrical structure with an open front end and a closed tail end.

[0043] A transmission gear ring 9 is fixedly installed on the peripheral side of the wind distribution rotating cylinder 8. A servo motor 10 is fixedly installed on the back surface of the machine body 1, and the output shaft ends of the servo motor 10 are respectively in transmission connection with the rotating screen cylinder 2, the transposition rotating cylinder 7 and the wind distribution rotating cylinder 8.

[0044] A group of crushing mechanisms distributed in a circumferential array and connected in sequence two by two are installed on the peripheral side of the transposition rotating cylinder 7. The inner walls of the group of crushing mechanisms are all in transmission connection with the transmission gear ring 9. A wind supply module in communication with the wind distribution rotating cylinder 8 is fixedly installed on the side surface of the machine body 1.

[0045] The wind supply module comprises a ventilation pipe 28 fixedly connected with the machine body 1 and coaxially communicated with the wind distribution rotating cylinder 8. A filter element 29 and a high-pressure axial flow fan 30 are fixedly installed in sequence from front to back on the inner wall of the ventilation pipe 28. A group of wind distribution strip holes 31 distributed in a circumferential array and matched with the pressure air supply holes 17 are formed in the inner wall of the wind distribution rotating cylinder 8.

[0046] The high-pressure axial flow fan 30 is arranged to perform wind sending operation into the wind distribution rotating cylinder 8. The filter element 29 is arranged to perform filtering and purifying operation on external air when the high-pressure axial flow fan 30 sends air.

[0047] The crushing mechanism respectively comprises a crushing cavity 15 formed in the transposition rotating cylinder 7, and a crushing hopper 16 fixedly communicated with the crushing cavity 15. The inner wall of the crushing cavity 15 is uniformly provided with a plurality of groups of pressure air supply holes 17 distributed in a circumferential array. The size of the screen hole 32 is 1.3 times the size of the pressure air supply hole 17.

[0048] The pressurized air hole 17 is arranged to blow the material to be crushed in the crushing cavity 15 by air, so that the material can be concentrated in the working position of the axial crushing module 33, thereby improving the crushing strength and efficiency of the raw material;

[0049] The inner surface of the crushing cavity 15 is rotationally connected with a horizontally arranged first crushing shaft 18, the circumferential surface of the first crushing shaft 18 is fixedly installed with a driven gear 19 corresponding to the position of the transmission gear ring 9, the circumferential surface of the driven gear 19 is engaged with the transmission gear ring 9, and the circumferential surface of the first crushing shaft 18 is fixedly installed with a group of axial crushing modules 33 arranged in a linear array.

[0050] When the air distribution rotating cylinder 8 rotates at high speed, the first crushing shaft 18 can rotate at high speed under the driving action of the transmission gear ring 9 due to the arrangement of the transmission gear ring 9, thereby performing the crushing operation of the raw material.

[0051] The top opening of the crushing cavity 15 is an arc-shaped structure with a concave bottom, and the arc-shaped center of the crushing cavity 15 is on the axis of the first crushing shaft 18, and the top opening of the crushing hopper 16 is fixedly provided with a material guiding slope.

[0052] The inside of the crushing hopper 16 is provided with a group of crushing flow channels 21 arranged in a linear array, and the cross section of the crushing flow channel 21 is circular.

[0053] The inner wall of the crushing hopper 16 is fixedly installed with a positioning tube 22, the inner wall of the positioning tube 22 is rotationally connected with a horizontally arranged linkage shaft 23, the circumferential surface of the linkage shaft 23 is transmissionally connected with the first crushing shaft 18 through a chain, the inner wall of the positioning tube 22 is rotationally connected with a second crushing shaft 24 corresponding to the position of each crushing flow channel 21, the axis of the second crushing shaft 24 is perpendicular to the axis of the linkage shaft 23, and the axis of the crushing flow channel 21 is parallel to the axis of the second crushing shaft 24.

[0054] The circumferential surface of the second crushing shaft 24 is fixedly installed with a group of longitudinal crushing modules 25 arranged in a linear array, the circumferential surface of the second crushing shaft 24 is transmissionally connected with the linkage shaft 23, the end of the second crushing shaft 24 is fixedly installed with a driven bevel gear 26, the circumferential surface of the linkage shaft 23 is fixedly installed with a transmission bevel gear 27 corresponding to the position of each driven bevel gear 26, and the driven bevel gear 26 is engaged with the transmission bevel gear 27 at the corresponding position.

[0055] The driven bevel gear 26 and the transmission bevel gear 27 are arranged in the inside of the positioning tube 22.

[0056] The axial crushing module 33 and the longitudinal crushing module 25 each include a knife ring, and the circumferential surface of the knife ring is fixedly installed with a group of cutting knife edges arranged in a circumferential array.

[0057] A preparation method of a rose red granular solid beverage production device, comprising the following steps:

[0058] SS001, feeding: before work, the raw materials of rose red granular solid beverage are put into the space between the rotating screen cylinder 2 and the sealing cylinder 3 from the feeding hopper 12;

[0059] SS002, raw material preparation: when the raw material is prepared, the servo motor 10 works, and then drives the transposition rotating cylinder 7, the rotating screen cylinder 2 and the air distribution rotating cylinder 8 to rotate, respectively, and when the servo motor 10 works, the rotating speed of the air distribution rotating cylinder 8 is 10 times that of the rotating screen cylinder 2, and the rotating speed of the transposition rotating cylinder 7 is 0.2 times that of the rotating screen cylinder 2, after the air distribution rotating cylinder 8 rotates, the first crushing shaft 18 is driven to rotate at high speed through the transmission gear ring 9, and then the second crushing shaft 24 is driven to rotate at high speed, after the first crushing shaft 18 rotates at high speed, the axial crushing module 33 is driven to carry out axial crushing operation on the raw material, after the second crushing shaft 24 rotates at high speed, the longitudinal crushing module 25 is driven to carry out longitudinal crushing operation on the raw material, after the rotating screen cylinder 2 rotates, on the one hand, the crushed raw material is screened, and on the other hand, the incompletely crushed material is driven by the material belt 4 to enter the crushing hopper 16 from the return port 5 for crushing, after the transposition rotating cylinder 7 rotates, the position of a group of crushing hoppers 16 is changed in circulation, through the circulation of the position of a group of crushing hoppers 16, the crushing hopper 16 can receive the material entering from the return port 5 in circulation and discharge the crushed material from the discharge port 6 in circulation, the material discharged from the discharge port 6 is crushed by the rotating screen cylinder 2, and the screened fine material is discharged from the discharge hopper 13.

[0060] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and are not limited to the protection scope of the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced by equivalents without departing from the essence and scope of the technical solutions of the present application.

Claims

1. A rose-red granular solid beverage production equipment, comprising a vibrating platform, characterized in that: The surface of the vibration platform is fixedly mounted with an organic body (1). A rotary screen cylinder (2) rotates on the inner wall of the organic body (1). A sealing cylinder (3) is provided on the inner side of the rotary screen cylinder (2). A set of material plates (4) arranged in a circular array are fixedly mounted on the inner wall of the rotary screen cylinder (2). One surface of the sealing cylinder (3) is fixedly connected to the organic body (1). The surfaces of the set of material plates (4) are all slidably attached to the sealing cylinder (3). A return port (5) is opened directly above the sealing cylinder (3). A discharge port (6) is opened directly below the sealing cylinder (3). A shifting rotary cylinder (7) is rotatably connected to the inner wall of the sealing cylinder (3). The inner wall of the rotary drum (7) is rotatably connected to the air distribution rotary drum (8). The circumferential side of the air distribution rotary drum (8) is fixedly installed with a transmission gear ring (9). The back of the machine body (1) is fixedly installed with a servo motor (10). The output shaft end of the servo motor (10) is connected to the rotary screen drum (2), the shift rotary drum (7) and the air distribution rotary drum (8) respectively. The circumferential side of the shift rotary drum (7) is equipped with a set of crushing mechanisms arranged in a circular array and connected in pairs. The inner wall of the set of crushing mechanisms is connected to the transmission gear ring (9). The side of the machine body (1) is fixedly installed with an air supply module that communicates with the air distribution rotary drum (8). The crushing mechanism includes a crushing chamber (15) opened inside the rotating drum (7) and a crushing bucket (16) fixedly connected to the crushing chamber (15). The inner wall of the crushing chamber (15) is evenly distributed with several sets of pressure air holes (17) arranged in a circular array. A first crushing shaft (18) is rotatably connected between the inner surfaces of the crushing chamber (15). A driven gear (19) is fixedly installed on the circumferential side of the first crushing shaft (18) at the position corresponding to the transmission gear ring (9). The circumferential side of the driven gear (19) meshes with the transmission gear ring (9). A set of axial crushing modules (33) arranged in a linear array is fixedly installed on the circumferential side of the first crushing shaft (18). The top opening of the crushing bucket (16) is at the bottom. A feeding inclined surface is fixedly provided. A set of crushing channels (21) arranged in a linear array are opened inside the crushing bucket (16). A positioning tube (22) is fixedly installed on the inner wall of the crushing bucket (16). A horizontally arranged linkage shaft (23) is rotatably connected to the inner wall of the positioning tube (22). The peripheral side of the linkage shaft (23) is connected to the first crushing shaft (18) through a chain. A second crushing shaft (24) is rotatably connected to the inner wall of the positioning tube (22) and to the position of each crushing channel (21). A set of longitudinal crushing modules (25) arranged in a linear array are fixedly installed on the peripheral side of the second crushing shaft (24). The peripheral side of the second crushing shaft (24) is connected to the linkage shaft (23) through a drive. The air supply module includes a ventilation pipe (28) that is fixedly connected to the body (1) and coaxially connected to the air distribution swirl cylinder (8). The inner wall of the ventilation pipe (28) is fixedly installed with a filter element (29) and a high-pressure axial flow fan (30) from front to back. The inner wall of the air distribution swirl cylinder (8) is provided with a set of air distribution strip holes (31) that are arranged in a circular array and cooperate with the pressure air holes (17).

2. The rose red granular solid beverage production equipment according to claim 1, characterized in that: The vibration platform includes a shock absorber (11), a feed hopper (12), a discharge hopper (13), and two symmetrically arranged excitation motors (14). The top surface of the shock absorber (11) is fixedly connected to the machine body (1). One end of the feed hopper (12) and the discharge hopper (13) are connected to the machine body (1). The bottom surfaces of the two excitation motors (14) are fixedly connected to the machine body (1). A set of universal casters (20) is installed on the bottom surface of the shock absorber (11). A control panel is fixedly installed on the end face of the shock absorber (11).

3. The rose red granular solid beverage production equipment according to claim 2, characterized in that: The top opening of the crushing chamber (15) has a concave arc surface structure at the bottom, and the concave arc surface axis of the crushing chamber (15) is on the axis of the first crushing shaft (18). The axis of the second crushing shaft (24) is perpendicular to the axis of the linkage shaft (23). The cross-section of the crushing channel (21) is circular, and the axis of the crushing channel (21) is parallel to the axis of the second crushing shaft (24).

4. The rose red granular solid beverage production equipment according to claim 3, characterized in that: Both the axial crushing module (33) and the longitudinal crushing module (25) include a blade ring, and a set of cutting blades arranged in a circular array are fixedly installed on the circumferential side of the blade ring.

5. The rose red granular solid beverage production equipment according to claim 3, characterized in that: The end of the second crushing shaft (24) is fixedly installed with a driven bevel gear (26), and a transmission bevel gear (27) is fixedly installed on the circumferential side of the linkage shaft (23) and at the position corresponding to each driven bevel gear (26). The driven bevel gear (26) meshes with the transmission bevel gear (27) at the corresponding position.

6. The rose red granular solid beverage production equipment according to claim 1, characterized in that: The circumferential side of the rotary screen cylinder (2) is fixedly provided with a number of sets of screen holes (32) arranged in a circular array. The axis of the screen holes (32) is perpendicular to the axis of the rotary screen cylinder (2). The rotary screen cylinder (2) is open on one side relative to the feed hopper (12). The diameter of the screen holes (32) is 1.3-1.5 times the diameter of the pressure air hole (17).

7. The rose red granular solid beverage production equipment according to claim 1, characterized in that: The strip plate (4) is inclined, and the angle between the axis of the strip plate (4) and the horizontal line is 45°.

8. The preparation method of a rose red granular solid beverage production equipment according to any one of claims 1-7, characterized in that: Includes the following steps: SS001, Feeding: Before starting work, feed the raw materials for the production of rose red granular solid beverage into the space between the rotary screen cylinder (2) and the sealing cylinder (3) through the feed hopper (12); SS002, Raw Material Preparation: During raw material preparation, the servo motor (10) operates. After the servo motor (10) operates, it drives the shifting rotary drum (7), the rotary screen drum (2), and the air distribution rotary drum (8) to rotate respectively. When the servo motor (10) operates, the rotation speed of the air distribution rotary drum (8) is 10 times that of the rotary screen drum (2), and the rotation speed of the shifting rotary drum (7) is 0.2 times that of the rotary screen drum (2). After the air distribution rotary drum (8) rotates, it drives the first crushing shaft (18) to rotate at high speed through the transmission gear ring (9). After the first crushing shaft (18) rotates at high speed, it drives the second crushing shaft (24) to rotate at high speed. After the first crushing shaft (18) rotates at high speed, it drives the axial crushing module (33) to perform axial crushing operation on the raw material. 24) After high-speed rotation, the longitudinal crushing module (25) is driven to perform longitudinal crushing operation on the raw material. After the rotary screen (2) rotates, it performs screening operation on the crushed raw material on the one hand, and drives the incompletely crushed material to enter the crushing bucket (16) through the return port (5) for crushing through the conveyor plate (4). After the rotating drum (7) rotates, it cyclically changes the position of a set of crushing buckets (16). Through the cyclical change of the position of a set of crushing buckets (16), the crushing bucket (16) can cyclically receive the material entering from the return port (5) and cyclically discharge the crushed material from the discharge port (6). The material discharged from the discharge port (6) is crushed by the rotary screen (2), and the screened fine material is discharged through the discharge hopper (13).

Citation Information

Patent Citations

  • Graphite crushing equipment for producing lithium batteries

    CN111632707A

  • Horizontal pigment pulverizer

    CN203816732U

  • Particle grinding and separating device for chemical material processing

    CN213762078U