Brewing equipment cleaning system
By using segmented spray pipes, double-sided cleaning, and circulating water treatment in the automated brewing equipment cleaning system, the problems of high labor intensity, large water consumption, and incomplete cleaning in traditional brewing equipment cleaning have been solved, achieving efficient and environmentally friendly cleaning results.
Patent Information
- Application Number
- CN202422998601.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-05
AI Technical Summary
Traditional brewing equipment cleaning methods are labor-intensive, pose high safety risks, consume large amounts of water, are not thorough in cleaning, and are prone to microbial growth. Furthermore, the collection of residues during the cleaning process is inconvenient, affecting product quality and increasing the burden of environmental treatment.
An automated brewing equipment cleaning system is adopted, including segmented spray pipes of the auger equipment, high-pressure double-sided cleaning of the continuous steaming steel belt, double-sided sewage cleaning of the cooling machine steel belt, and reciprocating spray pipe cleaning of the fermentation disc. Combined with a cleaning water circulation and treatment module, the cleaning water can be recycled and the residue can be collected.
It reduces the consumption of cleaning water, improves the cleaning effect, reduces wastewater generation, reduces labor intensity and safety risks, and ensures thorough cleaning of equipment and product quality.
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Figure CN223602935U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of brewing equipment, in particular to a brewing equipment cleaning system. BACKGROUND
[0002] Traditional brewing equipment includes four parts of continuous boiling, cooling, mixing and culturing. Each part of the equipment needs to be cleaned.
[0003] The traditional cleaning method mainly uses tap water to flush, and is mainly manually cleaned, which has high labor intensity, high safety risk and consumes a lot of manpower. In addition, the cleaning water is not recycled, resulting in large water consumption and large sewage discharge, which does not meet the requirements of green and sustainable development. During the cleaning process, the cleaning is not thorough enough, and microorganisms are easy to breed, which affects the product quality. In addition, in the traditional cleaning method, single flushing is not conducive to the collection of residues in the cleaning process, increasing the burden of environmental protection treatment. CONTENT OF THE UTILITY MODEL
[0004] Therefore, it is necessary to provide a brewing equipment cleaning system, which can realize automatic cleaning, improve the cleaning effect of the equipment and reduce the consumption of cleaning water.
[0005] According to an aspect of the present application, a brewing equipment cleaning system comprises: a plurality of spray pipes arranged along the axial direction of a screw conveyor, a plurality of water inlets corresponding to the plurality of spray pipes, and a water outlet arranged at one end of the screw conveyor, wherein the spray ranges of the plurality of spray pipes are sequentially connected along the axial direction of the screw conveyor, and the water outlet is used to collect the cleaning water sprayed by the plurality of spray pipes; a continuous steam belt cleaning module for cleaning a continuous steam belt, comprising a rotating nozzle, a rotating driving device, a reciprocating nozzle, a first reciprocating driving device, a cleaning machine, and a first water outlet, wherein the rotating nozzle is arranged above one end of the continuous steam belt, the rotating nozzle is used to clean the outer surface of the continuous steam belt, the rotating driving device is in transmission connection with the rotating nozzle to drive the rotating nozzle to rotate, the reciprocating nozzle is arranged on the inner side of one end of the continuous steam belt, the reciprocating nozzle is used to clean the inner surface of the continuous steam belt, the first reciprocating driving device is in transmission connection with the reciprocating nozzle to drive the reciprocating nozzle to reciprocate along the conveying direction of the continuous steam belt, the cleaning machine is in communication with the rotating nozzle and the reciprocating nozzle to provide cleaning water, and the first water outlet is arranged below the rotating nozzle and the reciprocating nozzle to collect the cleaning water; a cooling machine steel belt cleaning module comprising an upper roller brush device used to clean the inner surface of the cooling machine steel belt and a lower roller brush device arranged below the upper roller brush device and used to clean the outer surface of the cooling machine steel belt; a fermentation disc cleaning module comprising a reciprocating spray pipe, a second reciprocating driving device, and a second water outlet, wherein the reciprocating spray pipe is arranged below a sieve disc of a fermentation disc and along the radial direction of the sieve disc, the reciprocating spray pipe is used to clean the lower surface of the sieve disc, the second reciprocating driving device is in transmission connection with the reciprocating spray pipe to drive the reciprocating spray pipe to reciprocate along the radial direction of the sieve disc, and the second water outlet is arranged on the fermentation disc to collect the cleaning water sprayed by the reciprocating spray pipe; and a cleaning water circulation and treatment module used to collect and treat the cleaning water flowing out of the water outlet, the first water outlet, and the second water outlet, and provide the treated cleaning water to the plurality of water inlets and the reciprocating spray pipe.
[0006] In some embodiments, each of the plurality of water inlets is provided with a valve.
[0007] In some embodiments, the plurality of spray pipes are divided into a left spray pipe group and a right spray pipe group along the axial direction of the screw conveyor, and each spray pipe group comprises a plurality of spray pipes; wherein the inlets of the water inlets corresponding to the spray pipes in the left spray pipe group are located on the left side of the screw conveyor, and the inlets of the water inlets corresponding to the spray pipes in the right spray pipe group are located on the right side of the screw conveyor.
[0008] In some embodiments, each of the spray pipes is provided with an oscillating driving device, and the oscillating driving device is used to drive the spray pipe to rotate in a rotation plane, and the rotation plane is parallel to or intersects at an acute angle with the axial direction of the screw conveyor.
[0009] In some embodiments, the cooling steel belt cleaning module further comprises a blast nozzle and a fan, and the blast nozzle is arranged on the inner side of the cooling steel belt.
[0010] In some embodiments, the fermentation disc cleaning module further comprises an air jet pipe arranged below the sieve plate of the fermentation disc and arranged along the radial direction of the sieve plate, and a second reciprocating driving device is in transmission connection with the air jet pipe to drive the air jet pipe to reciprocate along the radial direction of the sieve plate.
[0011] In some embodiments, the cleaning water circulation treatment module comprises a sewage treatment unit, a water receiving tank, and a first water supply pipeline, wherein the sewage inlet of the sewage treatment unit is in communication with the water outlet, the first water outlet, and the second water outlet; the water receiving tank is in communication with the clean water outlet of the sewage treatment unit; the inlet of the first water supply pipeline is in communication with the water receiving tank, and the outlet of the first water supply pipeline is in communication with the plurality of water inlets and the reciprocating spray pipes.
[0012] In some embodiments, the cleaning water circulation treatment module further comprises a second water supply pipeline, and the first water supply pipeline and the second water supply pipeline are respectively provided with a first control valve and a second control valve, and the second water supply pipeline is bypassed and communicated downstream of the first control valve.
[0013] In some embodiments, the cleaning water circulation treatment module further comprises a residue pool, and the residue pool is in communication with the residue discharge port of the sewage treatment unit.
[0014] In some embodiments, the first reciprocating driving device and the second reciprocating driving device are both air cylinders.
[0015] The brewing equipment cleaning system of the present application adopts segmented cleaning for the screw conveyor, and the cleaning pressure of each segment is easy to ensure, thereby ensuring good cleaning effect; the continuous steaming steel belt is cleaned by high-pressure water on both sides, solving the defect that the water pressure is not enough to flush out the coke in the gap of the steel belt in the prior art; the cooling steel belt is cleaned by sewage on both sides, solving the problems of large water consumption and sewage discharge and easy breeding of microorganisms after water cleaning; the fermentation disc is cleaned by reciprocating, effectively removing stubborn stains. In addition, the cleaning water of the screw conveyor cleaning module, the continuous steaming steel belt cleaning module, and the fermentation disc cleaning module is recycled by the cleaning water circulation treatment module, and the cleaning water is provided to the continuous steaming steel belt cleaning module and the fermentation disc cleaning module; through recycling, the generation of waste water in the cleaning process is reduced, and the consumption of cleaning water is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a whole layout schematic diagram of the brewing equipment cleaning system of an embodiment of the present application.
[0017] Figure 2Structure diagram of the auger cleaning module of an embodiment of the present application.
[0018] Figure 3 For Figure 2 Schematic diagram of the cross section along the radial direction of the auger.
[0019] Figure 4 Schematic diagram of the installation position of the rotating spray head in the continuous steaming steel belt cleaning module of an embodiment of the present application.
[0020] Figure 5 Schematic diagram of the cross section at X of the continuous steaming device of an embodiment of the present application.
[0021] Figure 6 Structure diagram of the cooling machine steel belt cleaning module of an embodiment of the present application.
[0022] Figure 7 Structure diagram of the fermentation disc cleaning module of an embodiment of the present application.
[0023] Figure 8 Structure diagram of the cleaning water recycling treatment module of an embodiment of the present application.
[0024] 100, auger device; 110, auger; 200, continuous steaming device; 210, continuous steaming steel belt; 300, cooling machine; 310, cooling machine steel belt; 400, fermentation disc; 410, sieve disc; 10, auger cleaning module; 11, spray pipe; 12, water inlet pipe; 13, water outlet; 14, main water supply pipe; 15, left spray pipe group; 16, left spray pipe group; 20, continuous steaming steel belt cleaning module; 21, rotating spray head; 22, rotating drive device; 23, reciprocating spray head; 24, first reciprocating drive device; 25, cleaning machine; 26, first water outlet; 30, cooling machine steel belt cleaning module; 31, upper roller brush device; 32, lower roller brush device; 33, material receiving hopper; 34, air nozzle; 35, air blower; 40, fermentation disc cleaning module; 41, reciprocating spray pipe; 42, second reciprocating drive device; 43, second water outlet; 44, air jet pipe; 50, cleaning water recycling treatment module; 51, sewage treatment unit; 52, water receiving tank; 53, first water supply pipeline; 531, first control valve; 54, second water supply pipeline; 541, second control valve; 55, residue pool; 56, drainage pipeline. DETAILED DESCRIPTION
[0025] In order to make the above objectives, characteristics and advantages of the present application more apparent, concrete embodiments of the present application will be described in detail below with reference to the drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced in a number of different manners, which are not described herein, and it is contemplated that the present application covers all modifications of the application covered by the scope of the claims. The following detailed description is, therefore, not to be taken in a limiting sense.
[0026] In the description of the present application, it is to be understood that the orientation or positional relationship indicated by these terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial X", "radial", "circumferential" and the like, are based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.
[0027] In addition, if these terms "first", "second" appear, these terms are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implying the number of the technical features indicated. Therefore, the features defined as "first", "second" can include at least one of the features explicitly or implicitly. In the description of the present application, if the term "plurality" appears, the meaning of "plurality" is at least two, for example, two, three, etc., unless otherwise specifically limited.
[0028] Reference Figures 1 to 8 An embodiment of one aspect of the present application proposes a brewing equipment cleaning system for cleaning each component of the brewing equipment.
[0029] For the convenience of understanding, first, a brief description of the brewing equipment will be given. The brewing equipment may, for example, be a soy sauce brewing equipment. Reference Figure 1 The brewing equipment includes a screw conveyor equipment 100, a continuous cooking equipment 200, a cooling machine 300 and a fermentation disc 400.
[0030] Reference Figure 1 and Figure 2 The screw conveyor equipment 100 is a raw material mixing equipment, such as for mixing raw materials such as different beans, and using a screw conveyor 110 to transport to the continuous cooking equipment 200. Reference Figure 1 , Figure 4 The continuous cooking equipment 200 is used to cook the raw materials, and uses a continuous cooking steel belt 210 to transport to the cooling machine 300. Reference Figure 1 , Figure 6The cooling machine 300 cools the steamed raw material to a desired temperature and uses the cooling machine steel belt 310 to deliver the steamed raw material to the sieve plate 410 of the fermentation disc 400 (see Figure 7 ). The fermentation disc 400 is used to cultivate the expanded bacteria.
[0031] With reference to Figure 1 , the brewing equipment cleaning system provided in the present application comprises a screw conveyor cleaning module 10, a continuous steaming steel belt cleaning module 20, a cooling machine steel belt cleaning module 30, a fermentation disc cleaning module 40 and a cleaning water circulation treatment module 50.
[0032] With reference to Figures 1 to 3 , the screw conveyor cleaning module 10 comprises a plurality of spray pipes 11 arranged along the axial direction of the screw conveyor 110, a plurality of water inlet pipes 12 for supplying water to the respective spray pipes 11, and a water outlet 13 arranged at one end of the screw conveyor equipment 100, wherein the spray ranges of the plurality of spray pipes 11 are sequentially connected along the axial direction of the screw conveyor 110, and the water outlet 13 is used to recover the cleaning water sprayed by the respective spray pipes 11.
[0033] In the screw conveyor cleaning module 10, each spray pipe 11 is independently provided with a water inlet pipe 12, so that separate water supply can be achieved. The water outlet 13 can be arranged on the outer shell of the screw conveyor equipment 100 and at one end in the axial direction of the screw conveyor 110. When the screw conveyor equipment 100 is in use, the screw conveyor equipment 100 is arranged to be inclined, so that the end where the water outlet 13 is arranged is lower than the other end in the vertical direction. Thus, the cleaning water sprayed by each spray pipe 11 can be collected and discharged from the water outlet 13.
[0034] With reference to Figure 1 , Figure 4 and Figure 5 , the continuous steaming steel belt cleaning module 20 comprises a rotary spray head 21, a rotary driving device 22, a reciprocating spray head 23, a first reciprocating driving device 24, a cleaning machine 25 and a first water outlet 26. The cleaning machine 25 can provide cleaning water with relatively high pressure, for example, can provide cleaning water pressure greater than the water pressure of Chinese tap water.
[0035] The rotary spray head 21 is arranged above one end of the continuous steaming steel belt 210. The rotary spray head 21 is used to clean the outer surface of the continuous steaming steel belt 210, and the rotary driving device 22 is in transmission connection with the rotary spray head 21 to drive the rotary spray head 21 to rotate. The rotation direction of the rotary spray head 21 is shown by arrow B in Figure 4 , and the rotation plane thereof is substantially perpendicular to the drawing. The rotary driving device 22 and the rotary spray head 21 can both be arranged in the continuous steaming equipment 200, or only the rotary spray head 21 can be arranged in the continuous steaming equipment 200.
[0036] A reciprocating nozzle 23 is disposed on the inner side of one end of the continuous steaming steel belt 210, and is used to clean the inner surface of the continuous steaming steel belt 210. A first reciprocating drive device 24 is connected to the reciprocating nozzle 23 to drive the reciprocating nozzle 23 along the conveying direction of the continuous steaming steel belt 210. Figure 1 and Figure 4 In the process, the conveying direction of the steel belt 210 is horizontal, and it moves back and forth. The cleaning machine 25 is connected to the rotary nozzle 21 and the reciprocating nozzle 23 to provide cleaning water to the rotary nozzle 21 and the reciprocating nozzle 23. The first outlet 26 is located below the rotary nozzle 21 and the reciprocating nozzle 23 to recover the cleaning water.
[0037] The continuous steaming equipment 200 has a continuous steaming steel belt 210 arranged in a closed ring. The inner side of the continuous steaming steel belt 210 refers to the inside of the annular space enclosed by the continuous steaming steel belt 210. The outer side of the continuous steaming steel belt 210 refers to the outside of the annular space enclosed by the continuous steaming steel belt 210.
[0038] The cleaning machine 25 simultaneously provides high-pressure cleaning water to both the rotary nozzle 21 and the reciprocating nozzle 23. The rotary nozzle 21 and the reciprocating nozzle 23 perform double-sided cleaning of the continuous steaming steel belt 210 from both the inside and outside, solving the problem of insufficient water pressure in existing technologies that cannot wash out the coke from the gaps in the steel belt, causing the continuous steaming steel belt 210 to harden, lose its bending ability, and break. It also solves the problems of high labor intensity and high safety risks associated with existing manual cleaning methods.
[0039] The rotary nozzle 21 sprays the continuous steaming steel belt 210 at close range, forming a water jet to cut and wash the continuous steaming steel belt 210; the reciprocating nozzle 23 moves back and forth along the conveying direction of the continuous steaming steel belt 210, repeatedly washing the continuous steaming steel belt 210. Thus, the rotary nozzle 21 and the reciprocating nozzle 23 can effectively wash out the coke in the gaps of the steel belt, with low water consumption and good cleaning effect.
[0040] In the height direction of the continuous steaming equipment 200, the rotary nozzle 21 and the reciprocating nozzle 23 can be arranged facing each other or staggered. Since the continuous steaming steel belt 210 moves continuously, the rotary nozzle 21 and the reciprocating nozzle 23 can effectively clean all the inner and outer surfaces of the continuous steaming steel belt 210 in the conveying direction of the continuous steaming steel belt 210.
[0041] refer to Figure 1 , Figure 6 The cooling machine steel strip cleaning module includes an upper roller brush device 31 for cleaning the inner surface of the cooling machine steel strip 310 and a lower roller brush device 32 located below the upper roller brush device 31 for cleaning the outer surface of the cooling machine steel strip 310.
[0042] The upper roller brush device 31 and the lower roller brush device 32 cooperate to clean the inner and outer surfaces of the cooling machine steel belt 310. The roller brushes in the upper roller brush device 31 and the lower roller brush device 32 are arranged to be able to rotate forward and backward, so that the rotation direction can be changed according to the cleaning effect, so as to remove stubborn stains.
[0043] Further, the roller brushes of the upper roller brush device 31 and the roller brushes of the lower roller brush device 32 are also configured to be able to rotate at variable speeds. By forward and reverse rotation, high and low speed cooperation, the effect of cleaning the surface of the cooling machine steel belt 310 and dredging the mesh is achieved. Preferably, the roller brushes are all nylon roller brushes, so that the efficiency and effect of mechanical friction cleaning are optimal.
[0044] Further, a slag receiving hopper 33 is further arranged below the lower roller brush device 32 to receive slag.
[0045] Reference Figure 1 、 Figure 7 The fermentation disc cleaning module 40 includes a reciprocating spray pipe 41, a second reciprocating driving device 42, and a second water outlet 43. The reciprocating spray pipe 41 is arranged below the sieve disc 410 of the fermentation disc 400 and along the radial direction of the sieve disc 410, and is used to clean the lower surface of the sieve disc 410. The second reciprocating driving device 42 is in transmission connection with the reciprocating spray pipe 41 to drive the reciprocating spray pipe 41 to reciprocate along the radial direction of the sieve disc 410, and the second water outlet 43 is arranged at the bottom of the fermentation disc 400 to recover the cleaning water sprayed by the reciprocating spray pipe 41.
[0046] During use of the fermentation disc 400, stubborn stains may remain on the lower surface of the sieve disc 410. Therefore, the reciprocating spray pipe 41 is driven by the second reciprocating driving device 42 to reciprocate to repeatedly flush the lower surface of the sieve disc 410. The second reciprocating driving device 42 can be mounted in the fermentation disc 400 through a support.
[0047] Reference Figure 1 、 Figure 8 The cleaning water circulation treatment module 50 is used to recover and treat the cleaning water flowing out of the drain 13, the first water outlet 26, and the first water outlet 26, and to provide the treated cleaning water to the plurality of water inlet pipes 12 and the reciprocating spray pipe 41.
[0048] In this application, the first reciprocating driving device 24 and the second reciprocating driving device 42 are both air cylinders, which solves the hidden danger of water leakage and electric leakage of the electric driving mechanism.
[0049] The brewing equipment cleaning system of the present application, the auger equipment 100 adopts segmented cleaning, the cleaning pressure of each segment is easy to ensure, thereby ensuring good cleaning effect; the continuous steam steel belt 210 adopts high-pressure water double-sided cleaning, solving the defect that the existing technology cannot flush out the coke in the seam of the steel belt due to insufficient water pressure; the cooling steel belt adopts double-sided sewage cleaning, solving the problems of large water consumption and sewage discharge, and easy breeding of microorganisms after water washing; the fermentation disc 400 adopts reciprocating cleaning, effectively removing stubborn stains. In addition, the cleaning water of the auger cleaning module 10, the continuous steam steel belt cleaning module 20 and the fermentation disc cleaning module 40 is recovered by using the cleaning water recycling treatment module 50, and the cleaning water is provided to the auger cleaning module 10 and the fermentation disc cleaning module 40; through recycling, the waste water generated in the cleaning process is reduced, and the consumption of cleaning water is reduced. In addition, multiple flushing can be realized, and then the slag is collected.
[0050] Reference Figures 1 to 3 Each of the plurality of water inlet pipes 12 is provided with a valve. Specifically, each of the plurality of water inlet pipes 12 is provided with a valve, and then is connected in parallel to the main water supply pipe 14. The main water supply pipe 14 is in communication with the first water supply pipeline 53 (see Figure 8 ) of the cleaning water recycling treatment module 50, so as to receive the cleaning water provided by the cleaning water recycling treatment module 50. Through the independently arranged valve, the independent work of each segment of the spray pipe 11 can be controlled according to the need; thereby ensuring the cleaning effect and saving the cleaning water.
[0051] In some embodiments, referring to Figures 1 to 3 The plurality of spray pipes 11 are divided into a left spray pipe group 15 and a right spray pipe group 16 in the axial direction of the auger 110; each spray pipe group includes a plurality of spray pipes 11. Among them, the inlet of the water inlet pipe 12 corresponding to each spray pipe 11 in the left spray pipe group 15 is located at the left side of the auger 110, and the inlet of the water inlet pipe 12 corresponding to each spray pipe 11 in the right spray pipe group 16 is located at the right side of the auger 110.
[0052] Specifically, the left spray pipe group 15 and the right spray pipe group 16 each include three spray pipes 11. That is, a total of six spray pipes 11 are arranged along the axial direction of the auger 110. The spray range of each spray pipe 11 covers at least 1 / 6 length of the auger 110. The left spray pipe group 15 and the right spray pipe group 16 can take the center line in the axial direction of the auger 110 as a boundary.
[0053] In the present application, the left spray pipe group 15 and the right spray pipe group 16 respectively take water from the left side and the right side, so as to shorten the water inlet path of the spray pipe 11 on the basis of realizing the independent work of each spray pipe 11, and simplify the configuration of the internal pipeline of the auger equipment 100.
[0054] Specifically, in the present application, the main water supply pipe 14 is arranged outside the auger device 100, the main water supply pipe 14 is arranged along the axial direction of the auger 110, the main water supply pipe 14 supplies water to the left side spray pipe group 15 and the right side spray pipe group 16 respectively, and the length of each spray pipe 11 inside the auger device 100 does not need to be consistent along the axial length of the auger 110; so that the pipeline arrangement inside the auger device 100 is simple.
[0055] In some embodiments, as shown in Figure 2 and Figure 3 , each spray pipe 11 is provided with an oscillation driving device, which is used to drive the spray pipe 11 to rotate in a rotation plane, and the oscillation direction of the spray pipe 11 is shown by the A arrow in Figure 3 , and the rotation plane is parallel or intersected at an acute angle with the axial direction of the auger 110. The rotation angle range of the spray pipe 11 is specifically 90 degrees. The spray pipe 11 rotates to spray water, thereby repeatedly flushing the auger 110 to ensure the cleaning effect.
[0056] In some embodiments, as shown in Figure 6 , the cooling machine steel belt cleaning module further comprises a blast nozzle 34 and a fan 35, and the blast nozzle 34 is arranged on the inner side of the cooling machine steel belt 310.
[0057] The fan 35 inputs high-pressure airflow to the blast nozzle 34. The high-pressure airflow flushes the inner side surface of the cooling machine 300 steel, and blows the slag removed by the upper roller brush device 31 and the lower roller brush device 32 away from the cooling machine steel belt 310.
[0058] In some embodiments, referring to Figure 1 , Figure 7 , the fermentation disc cleaning module 40 further comprises a jet pipe 44, the jet pipe 44 is arranged below the sieve disc 410 of the fermentation disc 400 and is arranged along the radial direction of the sieve disc 410, and the second reciprocating driving device 42 is in transmission connection with the jet pipe 44 to drive the jet pipe 44 and the high-pressure cleaning agent pipe to reciprocate along the radial direction of the sieve disc 410.
[0059] The jet pipe 44 is used to spray high-pressure airflow or cleaning agent to the lower surface of the sieve disc 410. Moreover, the high-pressure airflow and the cleaning agent can also reciprocate along the radial direction of the sieve disc 410 to repeatedly flush the lower surface of the sieve disc 410, thereby ensuring the cleaning effect.
[0060] The jet pipe 44 and the reciprocating spray pipe 41 work cooperatively, and they flush the lower surface of the sieve disc 410 in different ways, thereby ensuring a better cleaning effect and removing stubborn stains on the lower surface of the sieve disc 410.
[0061] In some embodiments, referring to Figure 1 , Figure 8The cleaning water circulation and treatment module 50 comprises a sewage treatment unit 51, a water receiving tank 52, and a first water supply pipeline 53. The sewage inlet of the sewage treatment unit 51 is communicated with the drain 13, the first water outlet 26, and the second water outlet 43. The water receiving tank 52 is communicated with the clean water outlet of the sewage treatment unit 51. The inlet of the first water supply pipeline 53 is communicated with the water receiving tank 52, and the outlet of the first water supply pipeline 53 is communicated with the plurality of water inlets 12 and the reciprocating spray pipe 41.
[0062] The sewage treatment unit 51 is used to treat the recovered cleaning water and discharge it to the water receiving tank 52. The specific type of the sewage treatment unit 51 is not limited, and it can perform decontamination treatment on the recovered cleaning water.
[0063] The specific structure of the first water supply pipeline 53 is not limited, and it can supply the clean cleaning water in the water receiving tank 52 to the water inlets 12 and the reciprocating spray pipe 41. Optionally, the first water supply pipeline 53 specifically comprises a pipeline, a pump, and a motor. The motor provides power for the pump, and the pump extracts water from the water receiving tank 52 and pressurizes it to supply the plurality of water inlets 12 and the reciprocating spray pipe 41.
[0064] Further, referring to Figure 1 , Figure 8 The cleaning water circulation and treatment module 50 further comprises a second water supply pipeline 54, and the first water supply pipeline 53 and the second water supply pipeline 54 are respectively provided with a first control valve 531 and a second control valve 541, and the second water supply pipeline 54 is bypass communicated downstream of the first control valve 531 on the first water supply pipeline 53.
[0065] Through the above design, the scheme of the application can perform secondary cleaning by using the second water supply pipeline 54 to ensure that the cleaning effect is optimal, and the filtration capacity requirement of the sewage treatment unit 51 is reduced, thereby simplifying the decontamination structure design and reducing the cost.
[0066] Specifically, the second water supply pipeline 54 can be used to connect a water source with higher cleanliness than the cleaning water in the water receiving tank 52, such as tap water. When the first water supply pipeline 53 is used to supply cleaning water to the plurality of water inlets 12 and the reciprocating spray pipe 41, the second control valve 541 on the second water supply pipeline 54 is closed, and the first water supply pipeline 53 is used to realize the circulation cleaning. Then, the first control valve 531 on the first water supply pipeline 53 is closed, and the second control valve 541 on the second water supply pipeline 54 is opened, and the second water supply pipeline 54 is used to supply water with higher cleanliness to the plurality of water inlets 12 and the reciprocating spray pipe 41, thereby ensuring the cleaning effect.
[0067] Referring to Figure 1 , Figure 8The cleaning water recycling and treatment module 50 further comprises a residue pool 55, which is in communication with the residue discharge port of the sewage treatment unit 51. After the sewage treatment unit 51 treats the recovered cleaning water, the residue is discharged into the residue pool 55 for collection.
[0068] Reference Figure 1 , Figure 8 The cleaning water recycling and treatment module 50 further comprises a drain pipeline 56, which is in communication with the bottom of the water collecting groove 52. After the cleaning water is recycled by the first water supply pipeline 53 for a set time, the cleaning water in the water collecting groove 52 is drained by the drain pipeline 56 and is not used any more.
[0069] In the present application, unless specifically defined otherwise and limited, if the terms "mount", "connect", "connect", "fix" and the like are used, these terms should be interpreted in a broad sense. For example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication or interaction relationship between two elements, unless otherwise specifically limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
Claims
1. A brewing equipment cleaning system, characterized in that, include: The auger cleaning module includes multiple spray pipes arranged along the axial direction of the auger in the auger equipment, multiple water inlet pipes corresponding to supply water to each spray pipe, and a drain outlet located at one end of the auger equipment. The spray range of the multiple spray pipes is connected sequentially along the axial direction of the auger, and the drain outlet is used to recover the cleaning water sprayed from each spray pipe. A continuous steaming steel belt cleaning module, used for cleaning continuous steaming steel belts, includes a rotary nozzle, a rotary drive device, a reciprocating nozzle, a first reciprocating drive device, a cleaning machine, and a first water outlet. The rotary nozzle is positioned above one end of the continuous steaming steel belt and is used to clean the outer surface of the continuous steaming steel belt. The rotary drive device is driven by the rotary nozzle to drive it to rotate. The reciprocating nozzle is positioned inside one end of the continuous steaming steel belt and is used to clean the inner surface of the continuous steaming steel belt. The first reciprocating drive device is driven by the reciprocating nozzle to drive it to reciprocate along the conveying direction of the continuous steaming steel belt. The cleaning machine is connected to the rotary nozzle and the reciprocating nozzle to provide cleaning water. The first water outlet is located below the rotary nozzle and the reciprocating nozzle to recover the cleaning water. The cooling machine steel strip cleaning module includes an upper roller brush device for cleaning the inner surface of the cooling machine steel strip and a lower roller brush device located below the upper roller brush device for cleaning the outer surface of the cooling machine steel strip. A fermentation disc cleaning module includes a reciprocating spray pipe, a second reciprocating drive device, and a second water outlet. The reciprocating spray pipe is located below the sieve disc in the fermentation disc and is arranged radially along the sieve disc. The reciprocating spray pipe is used to clean the lower surface of the sieve disc. The second reciprocating drive device is connected to the reciprocating spray pipe to drive the reciprocating spray pipe to move reciprocally along the radial direction of the sieve disc. The second water outlet is located on the fermentation disc to collect the cleaning water sprayed by the reciprocating spray pipe. and The cleaning water circulation and treatment module is used to recycle and treat the cleaning water flowing out of the drain outlet, the first water outlet and the first water outlet, and to provide the treated cleaning water to the multiple water inlet pipes and the reciprocating spray pipe.
2. The brewing equipment cleaning system according to claim 1, characterized in that, Each of the aforementioned water inlet pipes is equipped with a valve.
3. The brewing equipment cleaning system according to claim 1, characterized in that, The multiple spray pipes are divided into a left spray pipe group and a right spray pipe group along the axial direction of the auger, and each spray pipe group includes multiple spray pipes; wherein the inlet of the water inlet pipe corresponding to each spray pipe in the left spray pipe group is located on the left side of the auger, and the inlet of the water inlet pipe corresponding to each spray pipe in the right spray pipe group is located on the right side of the auger.
4. The brewing equipment cleaning system according to claim 1, characterized in that, Each of the spray pipes is equipped with a swing drive device, which drives the spray pipe to rotate in a plane of rotation, the plane of rotation being parallel to or intersecting at an acute angle with the auger axis.
5. The brewing equipment cleaning system according to claim 1, characterized in that, The cooling machine steel strip cleaning module also includes a nozzle and a fan, with the nozzle located on the inner side of the cooling machine steel strip.
6. The brewing equipment cleaning system according to claim 1, characterized in that, The fermentation disc cleaning module also includes an air jet pipe, which is located below the sieve disc in the fermentation disc and arranged radially along the sieve disc. A second reciprocating drive device is connected to the air jet pipe to drive the air jet pipe to reciprocate radially along the sieve disc.
7. The brewing equipment cleaning system according to claim 1, characterized in that, The cleaning water circulation and treatment module includes a wastewater treatment unit, a water receiving tank, and a first water supply pipeline; wherein... The sewage inlet of the sewage treatment unit is connected to the drain outlet, the first outlet, and the second outlet; the water receiving tank is connected to the clean water outlet of the sewage treatment unit; the inlet of the first water supply pipeline is connected to the water receiving tank, and the outlet of the first water supply pipeline is connected to multiple water inlet pipes and the reciprocating spray pipe.
8. The brewing equipment cleaning system according to claim 7, characterized in that, The cleaning water circulation treatment module also includes a second water supply pipeline; the first water supply pipeline and the second water supply pipeline are respectively provided with a first control valve and a second control valve, and the second water supply pipeline bypass is connected to the downstream of the first control valve.
9. The brewing equipment cleaning system according to claim 7, characterized in that, The cleaning water circulation treatment module also includes a slag tank, which is connected to the slag discharge port of the sewage treatment unit.
10. The brewing equipment cleaning system according to claim 1, characterized in that, Both the first reciprocating drive device and the second reciprocating drive device are cylinders.