A seasoning ingredient production system and control method

By introducing a stirring rod and a temperature difference cleaning component into the snail rice noodle seasoning production system, the problem of clogging in the crusher caused by raw material agglomeration was solved, achieving efficient production and automated cleaning, improving production efficiency and reducing costs.

CN116984090BActive Publication Date: 2026-02-17SHANYUN BIOTECHNOLOGY CO LTD
View PDF 6 Cites 0 Cited by

Patent Information

Application Number
CN202311082827.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-24
Publication Date
2026-02-17
Estimated Expiration
2043-08-24

AI Technical Summary

Technical Problem

During the production of snail rice noodle seasoning, the raw materials are prone to clump together when they are stir-fried in oil and then directly put into the grinder, causing blockage at the grinder inlet and production to stop.

Method used

A seasoning ingredient production system was designed, including a raw material crushing component and a powder collection component. The raw materials are stirred by a stirring rod before crushing to prevent coagulation, and a temperature difference cleaning component automatically cleans up the powder accumulation generated during the crushing process.

Benefits of technology

It effectively prevents raw materials from condensing before crushing, avoids blockage at the crusher inlet, improves production efficiency, and automatically cleans up powder accumulation through the temperature difference function cleaning component, thereby reducing production costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116984090B_ABST
    Figure CN116984090B_ABST
Patent Text Reader

Abstract

The application provides a seasoning ingredient production system, which comprises a raw material crushing assembly and a powder collecting assembly. The raw material crushing assembly comprises a crushing box, a crushing knife, a driving motor part, a synchronous intermeshing wheel, a driven intermeshing wheel, a charging cylinder, a fixed shaft, a stirring rod and a material guide pipe. The driving motor part is connected with the crushing knife. The synchronous intermeshing wheel is arranged outside the crushing box and connected with the driving motor part. The driven intermeshing wheel is arranged on the top of the crushing box and engaged with the synchronous intermeshing wheel. The charging cylinder is fixedly connected with the driven intermeshing wheel. The fixed shaft extends into the charging cylinder and is fixed relative to the charging cylinder. One end of the material guide pipe is in contact with the bottom of the charging cylinder, and the other end of the material guide pipe is communicated with the crushing box. The powder collecting assembly is connected with the discharge port of the crushing box. The application also provides a control method of the seasoning ingredient production system. The raw material can be stirred before being crushed, so that the raw material is effectively prevented from being condensed into a lump.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of seasoning production, in particular to a seasoning ingredient production system and a control method.

BACKGROUND

[0002] Snail powder is one of the characteristic snacks in Guangxi, and has a unique soup and a unique flavor of spicy, refreshing, fresh, sour and hot, which is deeply loved by some people. With the development of fast-paced life and instant culture, traditional dining food has gradually appeared as instant noodles, which is deeply loved by people. Instant snail powder needs dry rice powder and seasoning package in the production process. The Chinese patent application with publication number CN106261546A discloses a method for making bagged snail powder, and the production method of the seasoning package is as follows: tea oil is added into a pot, and after the oil is boiled, ginger, garlic and dried chili are fried for 0.5-1 minute, and then taken out and crushed in a crusher to obtain seasoning. After sterilization treatment, the seasoning is vacuum-sterilized and packaged to obtain the seasoning package.

[0003] However, the following problems exist in the actual production process:

[0004] After the raw materials such as ginger, garlic and dried chili are fried in oil and then directly put into the crusher for crushing, due to the large production capacity, the raw materials that have not entered the crusher are easily condensed into a lump and finally block the entrance of the crusher, at which time the production has to be stopped to dredge the entrance of the crusher, causing production stagnation.

SUMMARY

[0005] The present application aims to solve at least one of the above technical problems, and provides a seasoning ingredient production system and a control method, which can stir the raw materials before crushing, effectively preventing the raw materials from condensing into a lump.

[0006] To achieve the above-mentioned purpose, the technical solution adopted by the present application is:

[0007] The application discloses a seasoning ingredient production system which comprises a raw material crushing assembly and a powder collecting assembly. The raw material crushing assembly comprises a crushing box, a crushing knife, a driving motor part, a synchronous inter-wheel, a driven inter-wheel, a charging cylinder, a fixed shaft, a stirring rod and a material guide pipe. The crushing knife is arranged in the crushing box, and the driving motor part is connected with the crushing knife to drive the crushing knife to rotate axially. The synchronous inter-wheel is arranged outside the crushing box and connected with the driving motor part, and the driving motor part drives the synchronous inter-wheel to rotate. The driven inter-wheel is arranged on the top of the crushing box and engaged with the synchronous inter-wheel. The charging cylinder is fixedly connected with the driven inter-wheel. The fixed shaft extends into the charging cylinder and is fixed relative to the charging cylinder. The stirring rod is connected with the fixed shaft and extends along the radial direction of the charging cylinder. One end of the material guide pipe is in contact with the bottom of the charging cylinder, and the other end of the material guide pipe is communicated with the crushing box. The powder collecting assembly is connected with the discharge port of the crushing box and used for collecting the crushed seasoning.

[0008] Further, the number of the stirring rods is several, and the several stirring rods are arranged at intervals along the length direction of the fixed shaft. The inner wall of the charging cylinder is provided with several annular curved grooves corresponding to the several stirring rods. One end of the stirring rod away from the fixed shaft extends into one of the annular curved grooves, and the other end of the stirring rod away from the annular curved groove is connected with the fixed shaft through a universal joint.

[0009] Further, the driving motor part comprises an external motor, a motor synchronous wheel, a crushing synchronous wheel, an external synchronous belt, a driven synchronous wheel and a synchronous belt. The external motor is arranged outside the crushing box. The motor synchronous wheel is arranged on the output shaft of the external motor. The crushing knife extends a driving shaft towards the outside of the crushing box. The crushing synchronous wheel is sleeved on the driving shaft. The external synchronous belt is sleeved on the motor synchronous wheel and the crushing synchronous wheel. The driven synchronous wheel is arranged on the side of the crushing synchronous wheel away from the ground, and the diameter of the driven synchronous wheel is greater than that of the crushing synchronous wheel. The central axis of the driven synchronous wheel is parallel to the driving shaft. The synchronous belt is sleeved on the driven synchronous wheel and the crushing synchronous wheel. The driven synchronous wheel is coaxially arranged with the synchronous inter-wheel.

[0010] Further, one side of the bottom of the charging cylinder is provided with a material guide port. An outer side of the bottom of the charging cylinder is annularly provided with a material blocking plate. The material blocking plate is fixed relative to the charging cylinder. A transition port is formed in the material blocking plate corresponding to the material guide port. The material guide pipe is communicated with the transition port and the crushing box.

[0011] Further, the powder collecting assembly comprises a fan, a material guiding pipe, an air exhaust cloth tube and a discharge funnel, the fan is connected with the discharge port of the crushing box, the material guiding pipe is connected with the fan, the material guiding pipe extends upward in a direction away from the crushing box, one end of the air exhaust cloth tube is connected with one end of the material guiding pipe away from the crushing box, the air exhaust cloth tube extends in a direction towards the ground, and the discharge funnel is connected with one end of the air exhaust cloth tube away from the material guiding pipe.

[0012] Further, the powder collecting assembly further comprises a temperature difference functional cleaning piece, the temperature difference functional cleaning piece comprises a heat sink, a temperature difference sensing sheet, a charging battery, a cleaning cylinder and a cleaning ring, the heat sink is arranged through the material guiding pipe, the temperature difference sensing sheet is attached to one end of the heat sink located outside the material guiding pipe, the charging battery is arranged on the top of the material guiding pipe and connected with the temperature difference sensing sheet, the cleaning cylinder is arranged on the top of the air exhaust cloth tube and connected with the charging battery, the cleaning ring is arranged in the air exhaust cloth tube and in contact with the inner wall of the air exhaust cloth tube, and the cleaning ring is connected with the cleaning cylinder so that the cleaning cylinder can drive the cleaning ring to reciprocate along the length direction of the air exhaust cloth tube.

[0013] Further, the temperature difference functional cleaning piece further comprises a mounting sleeve, the mounting sleeve comprises two fixing rings and a plug-in sleeve, the two fixing rings are fixedly sleeved on the opposite ends of the material guiding pipe, the plug-in sleeve is covered on the outside of the material guiding pipe, and the opposite ends of the plug-in sleeve are connected with the two fixing rings, the material guiding pipe is provided with a plug-in port, the plug-in sleeve is recessed with a plug-in groove towards the plug-in port, the bottom surface of the plug-in groove is gauze, and the heat sink is arranged in the plug-in groove.

[0014] Further, a control system is further included, the control system comprises a crushing control module, a power storage detection module, an air volume monitor, an air permeation amount detection module, a cleaning control module,

[0015] The crushing control module is connected with the driving motor part, and the crushing control module is used for controlling the driving motor part to crush raw materials.

[0016] The power storage detection module is connected with the charging battery, and the power storage detection module is used for monitoring the charging state of the charging battery.

[0017] The air volume monitor is arranged outside the air exhaust cloth tube, and the air volume monitor is used for monitoring the air volume discharged from the air exhaust cloth tube.

[0018] The air permeation amount detection module is connected with the air volume monitor, and the air permeation amount detection module is used for analyzing the air volume discharge result.

[0019] The cleaning control module is connected with the power storage detection module, the air volume detection module and the cleaning cylinder, and is used for judging whether to send a work instruction to the cleaning cylinder according to the air volume discharge result of the air volume detection module and the monitoring result of the power storage detection module.

[0020] A control method of a seasoning ingredient production system, comprising the following steps:

[0021] Step S1: providing the control system and the seasoning ingredient production system described above;

[0022] Step S2: the crushing control module controls the driving motor part to crush raw materials;

[0023] Step S3: the power storage detection module monitors the charging state of the charging battery and obtains a conclusion of "workable" or "not enough power";

[0024] Step S4: the air volume monitor monitors the air volume discharged from the air exhaust distribution cylinder and sends the monitoring result to the air volume detection module;

[0025] Step S5: the air volume detection module analyzes the air volume discharge result, when the air volume discharge result is less than a preset value, and the cleaning control module judges that the conclusion of the power storage detection module is "workable", a work instruction is sent to the cleaning cylinder, and the cleaning cylinder drives the cleaning ring to reciprocate along the length direction of the air exhaust distribution cylinder; when the cleaning control module judges that the conclusion of the power storage detection module is "not enough power", the cleaning cylinder is driven to work when the conclusion of the power storage detection module is "workable".

[0026] Due to the above technical scheme, the present application has the following beneficial effects:

[0027] When the seasoning ingredient production system is used, the driving motor part drives the crushing knife shaft to rotate, and the crushing knife can crush the raw materials; in the process of driving the crushing knife shaft to rotate, the driving motor part drives the synchronous inter-petal wheel to rotate, the synchronous inter-petal wheel drives the charging cylinder to rotate around the fixed shaft, the charging cylinder is used for containing raw materials, and the inter-petal wheel drives the charging cylinder to rotate, and the stirring rod stirs the raw materials in the charging cylinder; finally, the raw materials are guided into the crushing box through the guide pipe for crushing. It can be seen that the present application can stir the raw materials before crushing, which effectively prevents the raw materials from coagulating into a group. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a structural schematic diagram of the seasoning ingredient production system in the present application.

[0029] Figure 2 It isFigure 1 Partial structure diagram of raw material pulverizing assembly.

[0030] Figure 3 Cross-sectional view of charging cylinder.

[0031] Figure 4 Connection diagram of mounting sleeve and material guiding pipe.

[0032] Figure 5 Layout diagram of control system.

[0033] In the drawings, 101-pulverizing box, 102-temporary charging port, 131-external motor, 132-motor synchronous wheel, 133-pulverizing synchronous wheel, 134-external synchronous belt, 135-belt driving synchronous wheel, 104-synchronous inter-wheel, 105-synchronous belt, 106-belt driving inter-wheel, 161-connection cylinder, 107-charging cylinder, 171-annular curved groove, 172-material guiding port, 173-transition port, 174-material blocking plate, 108-fixed shaft, 181-fixed plate, 182-feeding cover, 109-stirring rod, 110-material guiding pipe, 111-base, 200-supporting frame, 201-fan, 202-material guiding pipe, 203-exhaust cloth tube, 231-cover, 204-discharging funnel, 205-temperature difference sensing sheet, 206-charging battery, 207-cleaning cylinder, 208-cleaning ring, 209-radiator, 291-fixed ring, 292-insertion sleeve, 293-insertion groove, 301-pulverizing control module, 302-electricity storage detection module, 303-air volume monitor, 304-air permeability detection module, 305-cleaning control module.

DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0035] It should be noted that when a component is referred to as being “fixed” to another component, it can be directly on the other component or there can be a middle component. When a component is referred to as being “arranged” on another component, it can be directly arranged on the other component or there can be a middle component. The terms “vertical”, “horizontal”, “left”, “right” and similar expressions used herein are for illustrative purposes only.

[0036] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the specification of this invention is for the purpose of describing particular embodiments only and is not intended to limit the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0037] like Figures 1 to 4 As shown, a preferred embodiment of the present invention provides a seasoning ingredient production system, including a raw material crushing component and a powder collection component. The raw material crushing component includes a crushing chamber 101, a crushing blade, a drive motor, a synchronous roller 104, a driving roller 106, a loading cylinder 107, a fixed shaft 108, a stirring rod 109, and a guide pipe 110. The crushing blade is installed inside the crushing chamber 101, and the drive motor is connected to the crushing blade to drive the crushing blade to rotate axially. The synchronous roller 104 is installed outside the crushing chamber 101 and connected to the drive motor, which drives the synchronous roller 104 to rotate. The driving roller 106 is installed on the top of the crushing chamber 101 and engages with the synchronous roller 104. The loading cylinder 107 is fixedly connected to the driving roller 106.

[0038] A fixed shaft 108 extends into and is fixed relative to the loading cylinder 107. Specifically, a fixed plate 181 is fixedly installed above the loading cylinder 107. The fixed plate 181 can be fixed to the top of the loading cylinder 107 or to a wall via a frame. One end of the fixed shaft 108 is fixedly connected to the fixed plate 181, and the other end extends into the loading cylinder 107. A feed inlet is provided through the fixed plate 181, communicating with the loading cylinder 107. A detachable feed cover 182 is provided at the feed inlet. By opening the feed cover 182, the raw material can be fed into the loading cylinder 107 from the feed inlet. A stirring rod 109 is connected to the fixed shaft 108 and extends radially along the loading cylinder 107. One end of the feed pipe 110 contacts the bottom of the loading cylinder 107, and the other end of the feed pipe 110 is connected to the crushing box 101; the powder collection component is connected to the discharge port of the crushing box 101, and the powder collection component is used to collect the crushed seasonings.

[0039] In use of the seasoning ingredient production system, the driving motor drives the pulverizing blade shaft to rotate, and the pulverizing blade can pulverize the raw material; in the process of driving the pulverizing blade shaft to rotate, the driving motor drives the synchronous inter-wheel 104 to rotate, the synchronous inter-wheel 104 drives the charging cylinder 107 to rotate around the fixed shaft 108 through the driving of the inter-wheel 106, the charging cylinder 107 is used for containing the raw material, and the stirring rod 109 stirs the raw material in the charging cylinder 107 in the process of driving the charging cylinder 107 to rotate by the driving of the inter-wheel 106; finally, the raw material is guided into the pulverizing box 101 through the guide pipe 110 to be pulverized. It can be seen that the raw material can be stirred before being pulverized, and the raw material is effectively prevented from being condensed into a group.

[0040] In the embodiment, the pulverizing box 101 is further provided with a temporary feeding opening 102, which is in communication with the inside of the pulverizing box 101, and when other raw materials need to be temporarily added, they can be directly added from the temporary feeding opening 102. Since the amount of the raw material added temporarily is small, the inlet will not be blocked. The setting of the temporary feeding opening 102 also facilitates the producer to adjust the ingredients of the ingredients.

[0041] In the embodiment, the driving motor part includes an external motor 131, a motor synchronous wheel 132, a pulverizing synchronous wheel 133, an external synchronous belt 134, a driving synchronous wheel 135 and a synchronous belt 105. The external motor 131 is installed outside the pulverizing box 101, specifically, the pulverizing box 101 is fixedly installed on a base 111, and the external motor 131 is installed on the base 111. The motor synchronous wheel 132 is installed on the output shaft of the external motor 131, the pulverizing blade extends a driving shaft to the outside of the pulverizing box 101, specifically, the pulverizing blade is not shown in the figure, the structure of the pulverizing blade is consistent with that of the pulverizing blade in the existing pulverizer, and will not be described here. The pulverizing synchronous wheel 133 is sleeved on the driving shaft, and the external synchronous belt 134 is sleeved on the motor synchronous wheel 132 and the pulverizing synchronous wheel 133.

[0042] The driving synchronous wheel 135 is installed on the side of the pulverizing synchronous wheel 133 away from the ground, and the diameter of the driving synchronous wheel 135 is greater than that of the pulverizing synchronous wheel 133, the center axis of the driving synchronous wheel 135 is parallel to the driving shaft, and the synchronous belt 105 is sleeved on the driving synchronous wheel 135 and the pulverizing synchronous wheel 133.

[0043] The driving synchronous wheel 135 and the synchronous inter-wheel 104 are coaxially arranged, specifically, the pulverizing box 101 extends an installation shaft to the side of the pulverizing synchronous wheel 133, the installation shaft is parallel to the driving shaft, the driving synchronous wheel 135 is installed on the end of the installation shaft through a bearing, the synchronous inter-wheel 104 is located between the driving synchronous wheel 135 and the pulverizing box 101, and the synchronous inter-wheel 104 is fixed to the side of the driving synchronous wheel 135 and the pulverizing box 101.

[0044] In the embodiment, the bottom side of the charging cylinder 107 is provided with a material guiding opening 172. The outer side of the bottom of the charging cylinder 107 is provided with a material blocking plate 174, which is fixed relative to the charging cylinder 107. Specifically, the side of the driving flower inter-wheel 106 away from the crushing box 101 is provided with a connecting cylinder 161, the charging cylinder 107 is fixedly installed on the side of the connecting cylinder 161 away from the driving flower inter-wheel 106, and the outer diameter of the charging cylinder 107 is greater than the outer diameter of the connecting cylinder 161. The material guiding opening 172 is arranged between the outer ring surface of the connecting cylinder 161 and the outer ring surface of the charging cylinder 107. The material blocking plate 174 is sleeved on the outside of the connecting cylinder 161 and is fixed to the top surface of the crushing box 101 through a connecting rod. When the driving flower inter-wheel 106 rotates, the driving flower inter-wheel 106 drives the charging cylinder 107 to rotate around the fixed shaft 108, and at this time, the material blocking plate 174 is fixed relative to the charging cylinder 107.

[0045] The material blocking plate 174 is provided with a transition opening 173, and the material guiding pipe 110 is connected to the transition opening 173 and the crushing box 101. When the charging cylinder 107 rotates around the fixed shaft 108 and the material guiding opening 172 moves to the transition opening 173, the raw materials fall from the material guiding opening 172 and are guided into the crushing box 101 through the material guiding pipe 110. Because the diameter of the driving synchronous wheel 135 is greater than the diameter of the crushing synchronous wheel 133, the rotating speed of the charging cylinder 107 is slower than the crushing speed of the crushing knife, so that the raw materials can be fully crushed in the crushing box 101 before new raw materials are guided into the crushing box 101, so that the raw materials can be more fully crushed.

[0046] In the embodiment, the number of the stirring rods 109 is several, and the several stirring rods 109 are arranged along the length direction of the fixed shaft 108. The inner wall of the charging cylinder 107 is provided with several annular curved grooves 171 corresponding to the several stirring rods 109. One end of the stirring rod 109 away from the fixed shaft 108 extends into one annular curved groove 171. Specifically, one end of the stirring rod 109 away from the fixed shaft 108 extends into a limiting flange along the top and bottom of the charging cylinder 107, so that one end of the stirring rod 109 away from the fixed shaft 108 is limited in the annular curved groove 171. One end of the stirring rod 109 away from the annular curved groove 171 is connected to the fixed shaft 108 through a universal joint. When the charging cylinder 107 rotates around the fixed shaft 108, the several stirring rods 109 swing up and down in the charging cylinder 107 under the guidance of the annular curved grooves 171, so that the raw materials can be stirred in different positions, and the raw materials can be further prevented from coagulating into a lump.

[0047] In the embodiment, the powder collecting assembly comprises a fan 201, a material guiding pipe 202, an air exhaust cloth tube 203 and a discharge hopper 204. The fan 201 is connected with the discharge port of the crushing box 101, the material guiding pipe 202 is connected with the fan 201, and the material guiding pipe 202 extends upward in a direction away from the crushing box 101. The air exhaust cloth tube 203 is made of gauze, one end of the air exhaust cloth tube 203 is connected with one end of the material guiding pipe 202 away from the crushing box 101, the air exhaust cloth tube 203 extends toward the ground, specifically, a support frame 200 higher than the crushing box 101 is arranged on one side of the crushing box 101, one end of the air exhaust cloth tube 203 is fixedly sleeved on the top of the support frame 200, a cover 231 is arranged at the top of the air exhaust cloth tube 203, one end of the material guiding pipe 202 is fixed with the cover 231 and the material guiding pipe 202 is communicated to the air exhaust cloth tube 203; the air exhaust cloth tube 203 extends toward the ground along the height direction of the support frame 200. The discharge hopper 204 is connected with one end of the air exhaust cloth tube 203 away from the material guiding pipe 202. The crushed raw material is sucked into the material guiding pipe 202 by the fan 201, the crushed raw material moves to the air exhaust cloth tube 203 under the guidance of the material guiding pipe 202, the air is exhausted at the air exhaust cloth tube 203 but the crushed raw material is intercepted in the air exhaust cloth tube 203, and the crushed raw material finally falls to the discharge hopper 204 under the action of gravity, so that the crushed raw material can be collected below the discharge hopper 204.

[0048] In the prior art, after the raw material is crushed in the crushing box 101, the crushed raw material is concentrated at the discharge port of the crushing box 101, and needs to be manually dug out and collected. The setting of the powder collecting assembly can make the crushed raw material vertically fall from the discharge hopper 204, which facilitates the collection of the powder. In addition, the temperature of the powder obtained after crushing is relatively high, and the powder is collected after being exhausted by the fan 201, the air exhaust cloth tube 203 and the discharge hopper 204, so that the temperature is reduced, and the powder is more convenient for packaging treatment.

[0049] In the embodiment, the powder collecting assembly further comprises a temperature difference functional cleaning piece, which comprises a heat sink 209, a temperature difference sensing sheet 205, a charging battery 206, a cleaning cylinder 207 and a cleaning ring 208. The heat sink 209 is arranged through the material guiding pipe 202, specifically, the temperature difference functional cleaning piece further comprises a mounting sleeve, the mounting sleeve comprises two fixing rings 291 and a plug-in sleeve 292, the two fixing rings 291 are fixedly sleeved on the opposite ends of the material guiding pipe 202, the plug-in sleeve 292 is covered on the outside of the material guiding pipe 202, and the opposite ends of the plug-in sleeve 292 are connected with the two fixing rings 291; the material guiding pipe 202 is provided with a plug-in opening; the plug-in sleeve 292 is recessed with a plug-in groove 293 toward the plug-in opening, the plug-in groove 293 penetrates through the material guiding pipe 202, and the bottom surface of the plug-in groove 293 is thin gauze; the heat sink 209 is arranged in the plug-in groove 293.

[0050] The temperature difference induction sheet 205 is attached to the heat dissipation sheet 209 at one end outside the material guiding pipe 202, the rechargeable battery 206 is arranged at the top of the material guiding pipe 202 and connected with the temperature difference induction sheet 205, specifically, the rechargeable battery 206 is connected with the positive and negative poles of the temperature difference induction sheet 205. The cleaning cylinder 207 is arranged at the top of the air exhaust cloth cylinder 203 and connected with the rechargeable battery 206. The cleaning ring 208 is arranged in the air exhaust cloth cylinder 203 and in contact with the inner wall of the air exhaust cloth cylinder 203, the cleaning ring 208 is connected with the cleaning cylinder 207, so that the cleaning cylinder 207 can drive the cleaning ring 208 to reciprocate along the length direction of the air exhaust cloth cylinder 203, specifically, the working rod of the cleaning cylinder 207 is connected with a strip-shaped rod, the cleaning ring 208 is connected with the strip-shaped rod, when the cleaning cylinder 207 works, the cleaning ring 208 can be driven to reciprocate along the length direction of the air exhaust cloth cylinder 203 through the strip-shaped rod.

[0051] When the powder passes through the material guiding pipe 202, because the temperature of the powder is high, a temperature difference is formed between the inside of the material guiding pipe 202 and the outside of the material guiding pipe 202, so that a temperature difference potential is formed on the opposite sides of the temperature difference induction sheet 205, that is, the temperature difference induction sheet 205 can charge the rechargeable battery 206.

[0052] Because the powder is continuously transported to the air exhaust cloth cylinder 203, after being used for a long time, the powder will accumulate on the inner wall of the air exhaust cloth cylinder 203, so that the air from the fan 201 cannot be discharged from the air exhaust cloth cylinder 203. The temperature difference function cleaning device has the following effects: in the process of guiding the powder from the crushing box 101 to the air exhaust cloth cylinder 203, the rechargeable battery 206 is charged by the arrangement of the heat dissipation sheet 209 and the temperature difference induction sheet 205, when it is found that the air exhaust cloth cylinder 203 cannot exhaust air, the rechargeable battery 206 supplies power to the cleaning cylinder 207, the cleaning cylinder 207 drives the cleaning ring 208 to scrape the inner wall of the air exhaust cloth cylinder 203, then the powder accumulated on the inner wall of the air exhaust cloth cylinder 203 falls from the air exhaust cloth cylinder 203 to the discharge hopper 204, so that the air exhaust cloth cylinder 203 restores normal air exhaust. It can be seen that the temperature difference function cleaning device charges the rechargeable battery 206 by using the temperature difference in the process of slow accumulation of the powder, and finally drives the cleaning ring 208 to clean the inner wall of the air exhaust cloth cylinder 203 by using the power of the rechargeable battery 206, which not only fully utilizes the time difference of two steps, but also fully utilizes new energy, which can greatly reduce the production cost.

[0053] In the embodiment, referring to Figure 5 , the seasoning ingredient production system further comprises a control system, the control system comprises a crushing control module 301, an electricity storage detection module 302, an air volume monitor 303, an air permeation amount detection module 304 and a cleaning control module 305.

[0054] The crushing control module 301 is connected with the driving motor part, specifically, the crushing control module 301 is connected with the external motor 131. The crushing control module 301 is used for controlling the driving motor part to crush raw materials.

[0055] The power storage detection module 302 is connected with the charging battery 206. The power storage detection module 302 is used for monitoring the charging state of the charging battery 206.

[0056] The air volume monitor 303 is installed outside the exhaust cloth drum 203. The air volume monitor 303 is used for monitoring the air volume discharged from the exhaust cloth drum 203.

[0057] The air permeation amount detection module 304 is connected with the air volume monitor 303. The air permeation amount detection module 304 is used for analyzing the air volume discharge result.

[0058] The cleaning control module 305 is connected with the power storage detection module 302, the air permeation amount detection module 304 and the cleaning cylinder 207. The cleaning control module 305 is used for judging whether to send a work instruction to the cleaning cylinder 207 according to the air volume discharge result of the air permeation amount detection module 304 and the monitoring result of the power storage detection module 302.

[0059] The embodiment further provides a control method of the seasoning ingredient production system, which comprises the following steps:

[0060] Step S1: providing the control system and the seasoning ingredient production system.

[0061] Step S2: the crushing control module 301 controls the driving motor part to crush raw materials.

[0062] Step S3: the power storage detection module 302 monitors the charging state of the charging battery 206, and obtains a conclusion of “workable” or “not enough power”. The “workable” represents that the power in the charging battery 206 is sufficient for the cleaning cylinder 207 to drive the cleaning ring 208 to work. The “not enough power” represents that the power in the charging battery 206 is insufficient for the cleaning cylinder 207 to drive the cleaning ring 208 to work.

[0063] Step S4: the air volume monitor 303 monitors the air volume discharged from the exhaust cloth drum 203, and sends the monitoring result to the air permeation amount detection module 304.

[0064] Step S5: The air volume detection module 304 analyzes the air volume discharge result. When the air volume discharge result is less than a preset value, and the power storage detection module 302 determines that the conclusion is "operable", the cleaning cylinder 207 is instructed to operate, and the cleaning cylinder 207 drives the cleaning ring 208 to reciprocate along the length direction of the air discharge cloth tube 203. When the power storage detection module 302 determines that the conclusion is "not enough power", the cleaning cylinder 207 is driven to operate when the power storage detection module 302 determines that the conclusion is "operable".

[0065] The above description is a detailed description of the preferred embodiments of the present application, but the embodiments are not intended to limit the scope of the patent application of the present application. Any equivalent changes or modifications made under the technical spirit of the present application should be included in the scope of the patent application of the present application.

Claims

1. A flavouring ingredient production system characterised in that: Including raw material crushing assembly and powder collecting assembly, the raw material crushing assembly includes a crushing box (101), a crushing knife, a drive motor part, a synchronous intermeshing wheel (104), a driven intermeshing wheel (106), a charging cylinder (107), a fixed shaft (108), a stirring rod (109), a material guide pipe (110) and a control system, the crushing knife is installed in the crushing box (101), the drive motor part is connected with the crushing knife, so as to drive the crushing knife to rotate axially, the synchronous intermeshing wheel (104) is installed outside the crushing box (101) and is connected with the drive motor part, the drive motor part drives the synchronous intermeshing wheel (104) to rotate, the driven intermeshing wheel (106) is installed at the top of the crushing box (101), and the driven intermeshing wheel (106) is engaged with the synchronous intermeshing wheel (104), the charging cylinder (107) is fixedly connected with the driven intermeshing wheel (106), the fixed shaft (108) extends into the charging cylinder (107) and is fixed relative to the charging cylinder (107), the stirring rod (109) is connected with the fixed shaft (108), and the stirring rod (109) extends along the radial direction of the charging cylinder (107), one end of the material guide pipe (110) is in contact with the bottom of the charging cylinder (107), and the other end of the material guide pipe (110) is communicated with the crushing box (101), the powder collecting assembly is connected with the discharge port of the crushing box (101), and the powder collecting assembly is used for collecting crushed seasoning; The powder collecting assembly includes a fan (201), a material guide pipe (202), an exhaust cloth cylinder (203), a discharge hopper (204) and a temperature difference functional cleaning piece, the fan (201) is connected with the discharge port of the crushing box (101), the material guide pipe (202) is connected with the fan (201), the material guide pipe (202) extends upward in a direction away from the crushing box (101), one end of the exhaust cloth cylinder (203) is connected with one end of the material guide pipe (202) away from the crushing box (101), the exhaust cloth cylinder (203) extends towards the ground, and the discharge hopper (204) is connected with one end of the exhaust cloth cylinder (203) away from the material guide pipe (202). The temperature difference functional cleaning piece comprises a heat dissipation fin (209), a temperature difference sensing sheet (205), a charging battery (206), a cleaning cylinder (207), a cleaning ring (208) and a mounting sleeve, the heat dissipation fin (209) is arranged through the material guide pipe (202); the temperature difference sensing sheet (205) is attached to one end of the heat dissipation fin (209) outside the material guide pipe (202), the charging battery (206) is arranged at the top of the material guide pipe (202) and connected with the temperature difference sensing sheet (205), the cleaning cylinder (207) is arranged at the top of the exhaust cloth cylinder (203) and connected with the charging battery (206), the cleaning ring (208) is arranged in the exhaust cloth cylinder (203) and in contact with the inner wall of the exhaust cloth cylinder (203), and the cleaning ring (208) is connected with the cleaning cylinder (207) so that the cleaning cylinder (207) can drive the cleaning ring (208) to reciprocally move along the length direction of the exhaust cloth cylinder (203); The mounting sleeve comprises two fixing rings (291) and a plug-in sleeve (292), the two fixing rings (291) are fixedly sleeved at opposite ends of the material guide pipe (202), the plug-in sleeve (292) is covered on the outside of the material guide pipe (202), and opposite ends of the plug-in sleeve (292) are connected with the two fixing rings (291); the material guide pipe (202) is provided with a plug-in opening; the plug-in sleeve (292) is recessed with a plug-in groove (293) towards the plug-in opening, the bottom surface of the plug-in groove (293) is gauze, and the heat dissipation fin (209) is arranged in the plug-in groove (293); The control system comprises a crushing control module (301), a power storage detection module (302), an air volume monitor (303), a ventilation volume detection module (304) and a cleaning control module (305), The crushing control module (301) is connected with the driving motor part, and is used for controlling the driving motor part to crush raw materials; The power storage detection module (302) is connected with the charging battery (206), and is used for monitoring the charging state of the charging battery (206); The air volume monitor (303) is arranged outside the exhaust cloth cylinder (203), and is used for monitoring the air volume discharged from the exhaust cloth cylinder (203); The ventilation volume detection module (304) is connected with the air volume monitor (303), and is used for analyzing the air volume discharge result; The cleaning control module (305) is connected with the power storage detection module (302), the ventilation volume detection module (304) and the cleaning cylinder (207), and is used for judging whether to send a work instruction to the cleaning cylinder (207) according to the air volume discharge result of the ventilation volume detection module (304) and the monitoring result of the power storage detection module (302).

2. A flavouring ingredient production system as claimed in claim 1, characterised in that: The number of the stirring rods (109) is several, and the several stirring rods (109) are arranged at intervals along the length direction of the fixed shaft (108); the inner wall of the charging cylinder (107) is provided with several annular curved grooves (171) corresponding to the several stirring rods (109), one end of the stirring rod (109) away from the fixed shaft (108) extends into one annular curved groove (171), and the end of the stirring rod (109) away from the annular curved groove (171) is connected with the fixed shaft (108) through a universal joint.

3. A seasoning ingredient production system according to claim 1, characterized by: The driving motor part comprises an external motor (131), a motor synchronous wheel (132), a crushing synchronous wheel (133), an external synchronous belt (134), a belt driving synchronous wheel (135) and a synchronous belt (105), the external motor (131) is arranged outside the crushing box (101), the motor synchronous wheel (132) is arranged on the output shaft of the external motor (131), the crushing knife extends a driving shaft to the outside of the crushing box (101), the crushing synchronous wheel (133) is sleeved on the driving shaft, and the external synchronous belt (134) is sleeved on the motor synchronous wheel (132) and the crushing synchronous wheel (133); the belt driving synchronous wheel (135) is arranged on the side, away from the ground, of the crushing synchronous wheel (133), the diameter of the belt driving synchronous wheel (135) is greater than that of the crushing synchronous wheel (133), the central axis of the belt driving synchronous wheel (135) is parallel to the driving shaft, the synchronous belt (105) is sleeved on the belt driving synchronous wheel (135) and the crushing synchronous wheel (133), and the belt driving synchronous wheel (135) is coaxially arranged with the synchronous flower wheel (104).

4. A seasoning ingredient production system according to claim 1, characterized by: One side of the bottom of the charging cylinder (107) is provided with a material guide port (172), the outer side of the bottom of the charging cylinder (107) is annularly provided with a material blocking plate (174), the material blocking plate (174) is fixed relative to the charging cylinder (107), the material blocking plate (174) is provided with a transition port (173) corresponding to the material guide port (172), and the material guide pipe (110) communicates the transition port (173) and the crushing box (101).

5. A control method of a seasoning ingredient production system, characterized by, The method comprises the following steps: Step S1: providing the seasoning ingredient production system in claim 1; Step S2: the crushing control module (301) controls the driving motor part to crush raw materials; Step S3: the power storage detection module (302) monitors the charging state of the charging battery (206) to obtain a conclusion "operable" or "not enough power"; Step S4: the air volume monitor (303) monitors the air volume discharged from the air exhaust cloth drum (203) and sends the monitoring result to the air permeation amount detection module (304); Step S5: the air volume detection module (304) analyzes the air volume discharge result, when the air volume discharge result is less than a preset value, and the cleaning control module (305) judges that the conclusion of the power storage detection module (302) is "operable", the cleaning cylinder (207) is driven to drive the cleaning ring (208) to reciprocate along the length direction of the exhaust cloth tube (203); when the cleaning control module (305) judges that the conclusion of the power storage detection module (302) is "not enough power", then wait for the conclusion of the power storage detection module (302) to be "operable" before driving the cleaning cylinder (207) to work.

Citation Information

Patent Citations

  • Method for making bagged Liuzhou river snail rice noodles

    CN106261546A

  • Environment-friendly dust removing, transferring and feeding device

    CN110560216A

  • Baking, frying, drying and extruding device for sesame paste processing

    CN113951524A

  • Waste heat recovery jar of neodecanoic acid neodymium preparation usefulness

    CN207006964U

  • Environment-friendly oxidation catalysis device for sewage treatment

    CN215208661U