Granulator for producing chemical reagent auxiliaries

By combining the granulation component, screening component, and shaking component, the high cost and high energy consumption of granulators used in the production of chemical reagents and auxiliaries are solved, achieving efficient screening and low-cost production.

CN223655442UActive Publication Date: 2025-12-12HEBEI TIANSHI CHEMICAL CO LTD
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Patent Information

Application Number
CN202423116304.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-12-12
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing granulation machines used in the production of chemical reagents and auxiliaries have high production and operating costs and consume a lot of energy.

Method used

The combined design of granulation components, screening components, shaking components, and transmission connection components enables the granulation, screening, and shaking treatment of chemical reagents and auxiliaries, thereby reducing energy consumption.

Benefits of technology

It improves screening efficiency, prevents clogging of screening components, and reduces the production and operating costs of the granulator.

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Abstract

The utility model provides a granulator for producing a chemical reagent additive, which comprises a granulation component used for granulating the chemical reagent additive. The multiple synchronization assemblies are used for synchronously driving the multiple granulation assemblies; the screening assembly is used for screening the chemical reagent additive particles; the shaking assembly is connected with the screening assembly, and the shaking assembly is used for shaking the screening assembly; and the transmission connecting assembly is used for transferring the driving force of the synchronizing assembly to the shaking assembly. The screening assembly can be shaken through the shaking assembly, so that the screening efficiency of the screening assembly is improved, the screening assembly is prevented from being blocked, driving force of the synchronous assembly can be transmitted to the shaking assembly through the transmission connecting assembly, shaking of the screening assembly does not need an additional power source, energy consumption is reduced, and the screening efficiency is improved. And meanwhile, the production and use cost of the granulator is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of chemical reagent auxiliary production, especially to a granulator for chemical reagent auxiliary production. BACKGROUND

[0002] Chemical reagents are relative standard substances for chemical research and component analysis, and are important conditions for scientific and technological progress. They are widely used in the synthesis, separation, qualitative and quantitative analysis of substances, and can be said to be the eyes of chemical workers. In daily work in factories, schools, hospitals and research institutes, chemical reagents cannot be separated. Chemical auxiliaries are chemical additives used in certain industries. They are diverse, generally including metal processing auxiliaries, plastic auxiliaries, papermaking auxiliaries, building auxiliaries, water treatment auxiliaries, coating auxiliaries, leather auxiliaries, electronic industry auxiliaries, textile printing and dyeing auxiliaries, and wood auxiliaries.

[0003] A granulator is a forming machine that can make materials into a specific shape. In the production of some chemical reagent auxiliaries, a granulator is needed to make granules. In the authorized Chinese utility model patent "Publication No. CN211726573U, Name: Granulator for chemical production with screening function", a high-speed rotating servo motor is used to drive the screening cylinder. When the granular raw materials fall on the top of the screening cylinder, the smaller particles will be thrown out of the top of the screening cylinder, and the larger particles will not be thrown out of the top of the screening cylinder. By falling down, the raw materials are quickly screened, and the granulation and screening work can be completed simultaneously. However, the above-mentioned application needs to add an additional driving source for screening work, and uses high-speed rotation to achieve screening, which consumes more energy, making the production and use cost of the granulator higher and more energy-consuming. UTILITY MODEL CONTENT

[0004] The technical problem to be solved by the utility model is to overcome the defect of high production and use cost of the existing granulator, and to provide a granulator for chemical reagent auxiliary production.

[0005] The utility model solves the above technical problems by the following technical scheme:

[0006] The utility model provides a granulator for chemical reagent auxiliary production, which comprises a support frame shell,

[0007] A plurality of granulation cylinders are installed on the top of the support frame shell, and the plurality of granulation cylinders are connected with the bottom of the feeding channel respectively.

[0008] A granulation assembly is arranged in each granulation cylinder, and the granulation assembly is used for granulating the chemical reagent auxiliary.

[0009] A synchronization assembly, a plurality of the granulation assemblies are connected with the synchronization assembly respectively, and the synchronization assembly is used for synchronously driving the plurality of granulation assemblies;

[0010] A screening assembly arranged at the inner cavity of the support frame shell, and used for screening the granules of the chemical reagent and additive;

[0011] A shaking assembly connected with the screening assembly, and used for shaking the screening assembly;

[0012] A transmission connecting assembly, the shaking assembly is connected with the synchronization assembly through the transmission connecting assembly, and the transmission connecting assembly is used for transmitting the driving force of the synchronization assembly to the shaking assembly.

[0013] In the technical solution, the granulation assembly is used for granulating the chemical reagent and additive material, the screening assembly is used for filtering and screening the granules processed by the granulation assembly, the shaking assembly is used for shaking the screening assembly, thereby improving the screening efficiency of the screening assembly and preventing the screening assembly from being blocked, the transmission connecting assembly is used for transmitting the driving force of the synchronization assembly to the shaking assembly, so that the shaking of the screening assembly does not need to be powered externally, thereby reducing energy consumption and production and use cost of the granulator.

[0014] Preferably, the granulation assembly comprises a conveying auger and a partition hole plate, and the conveying auger is arranged at the inner cavity of the granulation cylinder.

[0015] The partition hole plate is connected to the inner side of one end of the granulation cylinder.

[0016] The side of the partition hole plate away from the conveying auger is provided with a power source, and the power source is installed at the inner cavity of the protective shell.

[0017] The output end of the power source is connected with a rotating strip, and the side of the rotating strip close to the partition hole plate is connected with a granulation cutting knife.

[0018] In the technical solution, the granulation assembly is used for granulating the chemical reagent and additive material.

[0019] Preferably, the sides of the plurality of granulation cylinders away from the synchronization assembly are connected with one side of the protective shell, and the protective shell is connected to the top of the support frame shell.

[0020] In the technical solution, the protective shell is used for protecting the granulation cutting knife and other structures, preventing the granulation cutting knife from injuring the surrounding workers, and increasing the safety of the granulation assembly in use.

[0021] Preferably, the synchronization assembly comprises a mounting shell connected to one side of the granulation cylinder.

[0022] The driving source is installed in the inner cavity of the mounting shell, and the output end of the driving source is connected with a rotating shaft;

[0023] The rotating shaft is connected with a plurality of bevel gears one, the side surface of the bevel gear one is connected with a bevel gear two, and one side of the bevel gear two is connected with one end of a conveying auger one.

[0024] In the technical solution, the synchronous assembly is used to make the plurality of conveying augers rotate synchronously.

[0025] Preferably, the screening assembly comprises a filter screen plate arranged in the inner cavity of the support frame shell.

[0026] The upper side of the filter screen plate is connected with symmetrically distributed upper elastic ring belts, and the upper end of the upper elastic ring belts is connected with the top of the inner cavity of the support frame shell.

[0027] In the technical solution, the screening assembly is used to screen the chemical reagent additive particles.

[0028] Preferably, the two sides of the filter screen plate are connected with side elastic belts, and the end of the side elastic belt away from the upper elastic ring belt is connected with the side wall of the inner cavity of the support frame shell.

[0029] In the technical solution, the upper elastic ring belt and the side elastic belt are used to guide all the chemical reagent additive particles to the filter screen plate, and the filter screen plate can shake.

[0030] Preferably, the shaking assembly comprises anti-dropping connecting columns, one side of the screening assembly is connected with a plurality of anti-dropping connecting columns, and the surface of the anti-dropping connecting column is rotatably penetrated and connected with the side of the support frame shell.

[0031] The end of the anti-dropping connecting column away from the screening assembly is slidably penetrated and connected with the shaking plate.

[0032] The surface of the anti-dropping connecting column is sleeved with an elastic reset member, and the two ends of the elastic reset member are respectively connected with the outer side of the support frame shell and one side of the shaking plate.

[0033] One side of the shaking plate is in contact with an eccentric wheel connected to the surface of a rotating shaft.

[0034] In the technical solution, the shaking assembly is used to shake the screening assembly.

[0035] Preferably, one end of the rotating shaft is connected with a transmission connecting assembly, the other end of the rotating shaft is rotatably connected with one side of a mounting side plate, and one side of the mounting side plate is connected with the outer side of the support frame shell.

[0036] In the technical solution, the mounting side plate is used to support the rotating shaft.

[0037] Preferably, the transmission connection assembly includes a connecting shaft, both ends of which are connected to main bevel gears. A lower bevel gear is meshed with the side of the lower main bevel gear, and one side of the lower bevel gear is connected to one end of the rotating shaft.

[0038] The upper bevel gear is meshed with the side of the main bevel gear located above. The upper bevel gear is located between the second bevel gear at the center and the conveying auger. The two sides of the upper bevel gear are respectively connected to the second bevel gear at the center and the conveying auger.

[0039] In this technical solution, the driving force of the synchronization component can be transmitted to the swaying component using the transmission connection component.

[0040] Preferably, the bottom of the support frame is connected to a plurality of casters.

[0041] In this technical solution, the granulator can be easily moved using wheels.

[0042] Based on common knowledge in the field, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred embodiments of this utility model.

[0043] The positive and progressive effects of this utility model are as follows:

[0044] This invention utilizes a granulation component to granulate chemical reagents and auxiliaries, a screening component to filter and screen the granules processed by the granulation component, and a shaking component to agitate the screening component, thereby improving the screening efficiency and preventing clogging. Furthermore, a transmission connection component transmits the driving force of the synchronization component to the shaking component, eliminating the need for an external power source for the shaking of the screening component, reducing energy consumption, and lowering the production and operating costs of the granulator. Attached Figure Description

[0045] Figure 1 This is a schematic diagram of the structure of a granulator for producing chemical reagents and auxiliaries according to an embodiment of this utility model.

[0046] Figure 2 for Figure 1 The diagram shows the overall internal structure of a granulator used in the production of chemical reagents and auxiliaries.

[0047] Figure 3 for Figure 1 The diagram shows a top view of the overall structure of a granulator for the production of chemical reagents and auxiliaries.

[0048] Figure 4 for Figure 1 The diagram shows a cross-sectional view of the synchronization component and transmission connection component of a granulator for the production of chemical reagents and auxiliaries.

[0049] Reference Signs List

[0050] 1, support frame shell;

[0051] 2, granulation cylinder;

[0052] 3, feeding channel;

[0053] 4, granulation assembly; 41, conveying auger; 42, partition hole plate; 43, power source; 44, rotating strip; 45, granulation cutting knife; 46, protective shell;

[0054] 5, synchronization assembly; 51, mounting shell; 52, driving source; 53, rotating shaft; 54, bevel gear one; 55, bevel gear two;

[0055] 6, screening assembly; 61, filter screen plate; 62, upper elastic ring belt; 63, side elastic belt;

[0056] 7, shaking assembly; 71, anti-disengagement connecting column; 72, shaking plate; 73, elastic reset member; 74, eccentric wheel; 75, rotating shaft; 76, mounting side plate;

[0057] 8, transmission connection assembly; 81, connecting shaft; 82, main bevel gear; 83, lower bevel gear; 84, upper bevel gear;

[0058] 9, moving wheel. DETAILED DESCRIPTION

[0059] The utility model will be further illustrated by the following examples, but the utility model is not limited in the scope of the examples.

[0060] Figures 1 to 4 The structure of the embodiment of the granulator for chemical reagent additive production is shown. The granulator for chemical reagent additive production includes a support frame shell 1,

[0061] A granulation cylinder 2 is installed on the top of the support frame shell 1, a plurality of granulation cylinders 2 are connected to the bottom of the feeding channel 3 respectively, and the chemical reagent additive material is added into the plurality of granulation cylinders 2 through the feeding channel 3;

[0062] A granulation assembly 4 is arranged at the inner cavity of each granulation cylinder 2, and the granulation assembly 4 is used for granulating the chemical reagent additive;

[0063] A synchronization assembly 5 is connected to the plurality of granulation assemblies 4 respectively, and the synchronization assembly 5 is used for synchronously driving the plurality of granulation assemblies 4;

[0064] A screening assembly 6 is arranged at the inner cavity of the support frame shell 1, and the screening assembly 6 is used for screening the chemical reagent additive particles.

[0065] A shaking assembly 7 is connected with the screening assembly 6, and the shaking assembly 7 is used for shaking the screening assembly 6.

[0066] A transmission connection assembly 8 is connected between the shaking assembly 7 and the synchronous assembly 5, and the transmission connection assembly 8 is used for transmitting the driving force of the synchronous assembly 5 to the shaking assembly 7.

[0067] In the technical solution, the chemical reagent additive material can be granulated by the granulating assembly 4, the granules processed by the granulating assembly 4 can be filtered and screened by the screening assembly 6, the screening assembly 6 can be shaken by the shaking assembly 7, the screening efficiency of the screening assembly 6 is improved, and the screening assembly 6 is prevented from being blocked, the driving force of the synchronous assembly 5 can be transmitted to the shaking assembly 7 by the transmission connection assembly 8, the shaking of the screening assembly 6 does not need to be powered externally, the energy consumption is reduced, and the production and use cost of the granulator is reduced.

[0068] The granulating assembly 4 comprises a conveying auger 41 and a partition hole plate 42, and the conveying auger 41 is arranged in the inner cavity of the granulating cylinder 2.

[0069] The partition hole plate 42 is connected to the inner side of one end of the granulating cylinder 2.

[0070] The side, away from the conveying auger 41, of the partition hole plate 42 is provided with a power source 43, and the power source 43 is arranged in the inner cavity of a protective shell 46.

[0071] The output end of the power source 43 is connected with a rotating strip 44, and the side, close to the partition hole plate 42, of the rotating strip 44 is connected with a granulating cutting knife 45.

[0072] In the technical solution, the chemical reagent additive material can be granulated by the granulating assembly 4.

[0073] The side, away from the synchronous assembly 5, of each of the plurality of granulating cylinders 2 is connected with one side of the protective shell 46, and the protective shell 46 is connected to the top of the support frame shell 1.

[0074] In the technical solution, the protective shell 46 can protect the granulating cutting knife 45 and the like, the surrounding workers are prevented from being injured by the granulating cutting knife 45, and the safety of the granulating assembly 4 in use is improved.

[0075] In use, the chemical reagent additive material is put into the feeding channel 3, and then introduced into the granulating cylinder 2 through the feeding channel 3, and then the conveying auger 41 is rotated to guide the material to the partition hole plate 42, the material is extruded from the partition hole plate 42, and then the power source 43 drives the rotating strip 44 to rotate to drive the granulating cutting knife 45 to rotate, and the material is cut by the granulating cutting knife 45 to perform the granulating treatment.

[0076] The synchronous assembly 5 comprises a mounting shell 51 connected to one side of the granulating cylinder 2.

[0077] The driving source 52 is mounted in the inner cavity of the mounting shell 51, and the output end of the driving source 52 is connected with a rotating shaft 53.

[0078] A plurality of bevel gears one 54 are connected to the surface of the rotating shaft 53, the bevel gears one 54 are meshingly connected with bevel gears two 55 on the side surface, and one side of the bevel gears two 55 is connected with one end of the conveying auger 41.

[0079] In the technical solution, the synchronous assembly 5 can be used to synchronously rotate the plurality of conveying augers 41.

[0080] In use, the driving source 52 drives the rotating shaft 53 to rotate, thereby driving the plurality of bevel gears one 54 to rotate, and further driving the bevel gears two 55 to rotate, thereby synchronously driving the plurality of conveying augers 41 to rotate.

[0081] The screening assembly 6 comprises a filter screen plate 61 arranged in the inner cavity of the support frame shell 1.

[0082] The upper elastic ring belts 62 are connected to the upper side of the filter screen plate 61, and the upper ends of the upper elastic ring belts 62 are connected with the top of the inner cavity of the support frame shell 1.

[0083] In the technical solution, the screening assembly 6 can be used to screen the chemical reagent additive particles.

[0084] The side elastic belts 63 are connected to the two sides of the filter screen plate 61, and the ends of the side elastic belts 63 away from the upper elastic ring belts 62 are connected with the side walls of the inner cavity of the support frame shell 1.

[0085] In the technical solution, the upper elastic ring belts 62 and the side elastic belts 63 are used to guide all the chemical reagent additive particles to the filter screen plate 61, and the filter screen plate 61 can be shaken.

[0086] The granulated chemical reagent additive particles fall to the filter screen plate 61, and the filter screen plate 61 is used to screen the particles.

[0087] The shaking assembly 7 comprises anti-dropping connecting columns 71, one side of the screening assembly 6 is connected with a plurality of anti-dropping connecting columns 71, the surface of the anti-dropping connecting column 71 is rotatably penetrated and connected with the side of the support frame shell 1;

[0088] The end of the anti-dropping connecting column 71 away from the screening assembly 6 is slidably penetrated and connected with the shaking plate 72;

[0089] The surface of the anti-dropping connecting column 71 is sleeved with an elastic reset member 73, and the two ends of the elastic reset member 73 are respectively connected with the outer side of the support frame shell 1 and one side of the shaking plate 72;

[0090] One side of the shaking plate 72 is in contact with an eccentric wheel 74, and the eccentric wheel 74 is connected to the surface of a rotating shaft 75.

[0091] In the technical solution, the shaking assembly 7 can shake the screening assembly 6.

[0092] One end of the rotating shaft 75 is connected with the transmission connecting assembly 8, the other end of the rotating shaft 75 is rotatably connected with one side of a mounting side plate 76, and one side of the mounting side plate 76 is connected with the outer side of the support frame shell 1.

[0093] In the technical solution, the mounting side plate 76 can support the rotating shaft 75.

[0094] In use, the driving force of the driving source 52 is transmitted to the rotating shaft 75 through the transmission connecting assembly 8, the rotating shaft 75 is driven to rotate, the eccentric wheel 74 is driven to rotate, the eccentric wheel 74 can drive the shaking plate 72 to move under the action of the elastic reset member 73, the anti-dropping connecting column 71 is periodically moved, the filter screen plate 61 is moved in the same direction, the filter screen plate 61 can be shaken, and particles can be filtered and screened.

[0095] The transmission connecting assembly 8 comprises a connecting shaft 81, the two ends of the connecting shaft 81 are connected with main bevel gears 82, the side surface of the lower main bevel gear 82 is meshedly connected with a lower bevel gear 83, and one side of the lower bevel gear 83 is connected with one end of the rotating shaft 75;

[0096] The side surface of the upper main bevel gear 82 is meshedly connected with an upper bevel gear 84, the upper bevel gear 84 is located between the central bevel gear two 55 and the conveying auger 41, and the two sides of the upper bevel gear 84 are respectively connected with the central bevel gear two 55 and the conveying auger 41.

[0097] In the technical solution, the transmission connecting assembly 8 can transmit the driving force of the synchronous assembly 5 to the shaking assembly 7.

[0098] In use, the bevel gear 54 can drive the upper bevel gear 84 to rotate, thereby driving the corresponding main bevel gear 82 to rotate, and further driving the connecting shaft 81 to rotate, at this time, the other main bevel gear 82 can be driven to rotate, thereby driving the lower bevel gear 83 to rotate, at this time, the rotating shaft 75 can be driven to rotate.

[0099] The support frame shell 1 is connected with a plurality of moving wheels 9 at the bottom.

[0100] In the technical scheme, the moving wheels 9 can facilitate the movement of the granulator.

[0101] Although the specific embodiments of the present application are described above, those skilled in the art should understand that this is only an example, the protection scope of the present application is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present application, but these changes and modifications all fall within the protection scope of the present application.

Claims

1. A granulator for the production of chemical reagent auxiliaries, comprising a support frame (1), characterized in that, The chemical reagent additive production granulator further comprises: a granulation cylinder (2), a plurality of granulation cylinders (2) are installed on the top of the support frame shell (1), and the plurality of granulation cylinders (2) are respectively connected with the bottom of the feeding channel (3); the chemical reagent additive material is added into the plurality of granulation cylinders (2) through the feeding channel (3); A granulation assembly (4) is arranged at the inner cavity of each granulation cylinder (2), and the granulation assembly (4) is used for granulating the chemical reagent additive; A synchronization assembly (5) is connected with the plurality of granulation assemblies (4), and the synchronization assembly (5) is used for synchronously driving the plurality of granulation assemblies (4); A screening assembly (6) is arranged at the inner cavity of the support frame shell (1), and the screening assembly (6) is used for screening the chemical reagent additive particles; A shaking assembly (7) is connected with the screening assembly (6), and the shaking assembly (7) is used for shaking the screening assembly (6); A transmission connection assembly (8) is connected between the shaking assembly (7) and the synchronization assembly (5), and the transmission connection assembly (8) is used for transmitting the driving force of the synchronization assembly (5) to the shaking assembly (7).

2. The granulator for producing a chemical reagent aid according to claim 1, characterized by: The granulation assembly (4) comprises a conveying auger (41) and a partition hole plate (42), and the conveying auger (41) is arranged at the inner cavity of the granulation cylinder (2); The partition hole plate (42) is connected to the inner side of one end of the granulation cylinder (2); A power source (43) is arranged on the side of the partition hole plate (42) away from the conveying auger (41), and the power source (43) is arranged in the inner cavity of a protection shell (46); The output end of the power source (43) is connected with a rotating strip (44), and the side of the rotating strip (44) close to the partition hole plate (42) is connected with a granulation cutting knife (45).

3. The granulator for producing a chemical reagent aid according to claim 2, characterized by: The side of the protection shell (46) away from the synchronization assembly (5) is connected with the plurality of granulation cylinders (2), and the protection shell (46) is connected to the top of the support frame shell (1).

4. The granulator for producing chemical reagent aids according to claim 1, characterized in that: The synchronization assembly (5) comprises a mounting shell (51), and the mounting shell (51) is connected to one side of the granulation cylinder (2); A driving source (52) is arranged in the inner cavity of the mounting shell (51), and the output end of the driving source (52) is connected with a rotating shaft (53); A plurality of bevel gears (54) are arranged on the surface of the rotating shaft (53), and the side of each bevel gear (54) is engaged with a bevel gear (55), and one side of the bevel gear (55) is connected with one end of the conveying auger (41).

5. The granulator for producing a chemical reagent aid according to claim 1, characterized by: The screening assembly (6) comprises a filter screen plate (61), and the filter screen plate (61) is arranged in the inner cavity of the support frame shell (1); The upper side of the filter screen plate (61) is connected with symmetrically distributed upper elastic ring belts (62), and the upper ends of the upper elastic ring belts (62) are connected with the top of the inner cavity of the support frame shell (1).

6. The granulator for producing chemical reagent aids according to claim 5, characterized in that: The sides of the filter screen plate (61) are connected with side elastic belts (63), and the ends of the side elastic belts (63) away from the upper elastic ring belts (62) are connected with the side walls of the inner cavity of the support frame shell (1).

7. The granulator for producing chemical reagent adjuvant according to claim 1, characterized in that: The shaking assembly (7) comprises anti-dropping connecting columns (71), one side of the screening assembly (6) is connected with a plurality of anti-dropping connecting columns (71), the surface of the anti-dropping connecting column (71) is rotatably penetrated and connected with the side of the support frame shell (1); One end of the anti-dropping connecting column (71) away from the screening assembly (6) is slidably penetrated and connected with the shaking plate (72); The surface of the anti-dropping connecting column (71) is sleeved with an elastic reset member (73), and the two ends of the elastic reset member (73) are respectively connected with the outer side of the support frame shell (1) and one side of the shaking plate (72); One side of the shaking plate (72) is in contact with an eccentric wheel (74), and the eccentric wheel (74) is connected to the surface of a rotating shaft (75).

8. The granulator for producing chemical reagent adjuvant according to claim 7, characterized in that: One end of the rotating shaft (75) is connected with a transmission connecting assembly (8), and the other end of the rotating shaft (75) is rotatably connected with one side of a mounting side plate (76), and one side of the mounting side plate (76) is connected with the outer side of the support frame shell (1).

9. The granulator for producing chemical reagent adjuvant according to claim 1, characterized in that: The transmission connecting assembly (8) comprises a connecting shaft (81), both ends of the connecting shaft (81) are connected with main bevel gears (82), the side surface of the lower main bevel gear (82) is engaged with a lower bevel gear (83), and one side of the lower bevel gear (83) is connected with one end of the rotating shaft (75); The side surface of the upper main bevel gear (82) is engaged with an upper bevel gear (84), the upper bevel gear (84) is located between the centrally located bevel gear two (55) and the conveying auger (41), and both sides of the upper bevel gear (84) are respectively connected with the centrally located bevel gear two (55) and the conveying auger (41).

10. The granulator for producing chemical reagent adjuvant according to claim 1, characterized in that: A plurality of moving wheels (9) are connected to the bottom of the support frame shell (1).

Citation Information

Patent Citations

  • Chemical production granulator capable of screening

    CN211726573U