CN109247889B - Full-automatic spiral slag discharging cleaning machine - Google Patents

Full-automatic spiral slag discharging cleaning machine Download PDF

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Publication number
CN109247889B
CN109247889B CN201811211175.1A CN201811211175A CN109247889B CN 109247889 B CN109247889 B CN 109247889B CN 201811211175 A CN201811211175 A CN 201811211175A CN 109247889 B CN109247889 B CN 109247889B
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CN
China
Prior art keywords
cleaning area
cleaning
box body
pipe
slag discharging
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CN201811211175.1A
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Chinese (zh)
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CN109247889A (en
Inventor
刘行军
郝大海
朱逢芳
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Zhejiang Xiangying Central Kitchen Equipment Co ltd
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Zhejiang Xiangying Central Kitchen Equipment Co ltd
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Priority to CN201811211175.1A priority Critical patent/CN109247889B/en
Publication of CN109247889A publication Critical patent/CN109247889A/en
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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/4214Water supply, recirculation or discharge arrangements; Devices therefor
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/4278Nozzles
    • A47L15/428Rotary nozzles

Abstract

The invention provides a full-automatic spiral slag discharging cleaning machine, which comprises: the cleaning device comprises a rack, a cleaning area and a conveying system, wherein the cleaning area is arranged along the length direction of the rack, and the conveying system is arranged in the cleaning area; the slag discharging system is positioned at one side of the frame and is communicated with the cleaning area; and the control system is arranged on the frame and is electrically connected with the conveying system, the air blowing system and the slag discharging system. According to the full-automatic spiral slag discharging cleaning machine, the surface of the washed tableware is impacted by the surge type water flow in the cleaning area, so that food residues are peeled off from the surface of the tableware, and then the food residues are cleaned out of the cleaning area through the slag discharging system and are correspondingly collected, so that the cleaning requirement of water quality in the cleaning area is ensured, the working pressure of operators is reduced, the working efficiency is improved, the cleaning effect of the tableware is improved, and the health and sanitation of feeding of the operators are ensured.

Description

Full-automatic spiral slag discharging cleaning machine
Technical Field
The invention belongs to the technical field of cleaning equipment, and relates to a cleaning machine, in particular to a full-automatic spiral slag discharging cleaning machine.
Background
With the progress of the world industry and the development of civilization of the human society, the requirements of people on the quality, efficiency, environmental protection and the like of civil and industrial cleaning equipment are increasingly high, the traditional cleaning technology is simple and limited to spray cleaning, and sometimes the cleaning technology is unreasonable, so that the requirements of the industry are difficult to meet. In addition, general large-scale enterprise or mill all have the dining room, and staff after eating, need the dining room personnel to wash the operation to the tableware, because the quantity of eating staff is comparatively huge to improve the work load of dining room personnel, reduced labor efficiency, especially in the washing link of tableware, be difficult to wash the tableware in place, and the food waste that produces after the washing also can not obtain timely processing, and then influence staff's health.
In summary, it is necessary to design a cleaning machine that can improve the cleaning effect, effectively separate the tableware from the food residues during the cleaning process, improve the working efficiency, and ensure the health of the staff.
Disclosure of Invention
The invention aims at solving the problems in the prior art, and provides the cleaning machine which can improve the cleaning effect, effectively separate tableware from food residues in the cleaning process, improve the working efficiency and ensure the health of staff.
The aim of the invention can be achieved by the following technical scheme: a fully automatic screw slag washer comprising: the device comprises a rack, a cleaning area and a conveying system, wherein the cleaning area is arranged along the length direction of the rack, and the conveying system is arranged in the cleaning area; the slag discharging system is positioned at one side of the rack and communicated with the cleaning area, so as to collect food residues generated after tableware cleaning; and the control system is arranged on the frame and is electrically connected with the conveying system, the air blowing system and the slag discharging system.
In the above-mentioned full-automatic spiral cleaning machine that discharges slag, the slag discharging system is including the first collection mechanism that is used for collecting the floating residue to and the second collection mechanism that is used for collecting the bottom residue, wherein, first collection mechanism and second collection mechanism set up side by side, and first collection mechanism is linked together with the upper space of wasing regional, and second collection mechanism is linked together with the lower floor space of wasing regional.
In the above-mentioned full-automatic spiral slag washer, the first collection mechanism includes a first box with an open top, and at least one collection basket with fine meshes is arranged at the open end of the first box.
In the above-mentioned full-automatic spiral slag tap cleaning machine, a notch is formed on the side wall of the cleaning area close to one side of the first collecting mechanism, and the notch is communicated with the first box body, wherein the horizontal plane where the opening end of the first box body is located is level with the horizontal plane where the bottom of the notch is located.
In the above-mentioned full-automatic spiral slag-discharging cleaning machine, the second collecting mechanism comprises a second box body connected with the frame, and a motor with a speed reducing function is arranged at the top of the second box body, wherein an output shaft is arranged on the motor, and the second box body is communicated with the lower layer of the cleaning area; one end of the material rod assembly is connected with the output shaft, the other end of the material rod assembly extends into the box body and is connected with the bottom of the box body, a plurality of material storage spaces are arranged along the length direction of the material rod assembly, and each material storage space gradually rises along with the rotation of the material rod assembly; the discharging pipe is arranged on the second box body and is communicated with the second box body, wherein the installation position of the discharging pipe is flush with the top position of the material rod assembly.
In the full-automatic spiral slag discharging cleaning machine, the bottom of the first box body and the bottom of the second box body are arranged to be in a communicated state.
In the above-mentioned full-automatic spiral slag washer, the blower system includes the air-blower that installs in the frame, and is connected with an tuber pipe in the air outlet department of air-blower, wherein, this tuber pipe links to each other with an air-out subassembly.
In the above-mentioned full-automatic spiral slag tap cleaning machine, the air-out subassembly includes the main bubble pipe that links to each other with the tuber pipe to be provided with a plurality of bubble pipe along the length direction of main bubble pipe, wherein, every bubble pipe that props up is linked together with main bubble pipe, and is provided with a plurality of bubble hole along the length direction equidistant of every bubble pipe.
In the above-mentioned full-automatic spiral slag washer, the tuber pipe is L type structure setting, and the one end of tuber pipe links to each other with the air outlet of air-blower, and the other end of tuber pipe links to each other with main bubble pipe, wherein, forms an contained angle between the extending direction of main bubble pipe and the extending direction of this end tuber pipe.
In the above-mentioned full-automatic spiral slag tap cleaning machine, the conveying system comprises a power structure arranged on the frame, and a conveying belt is connected with the output end of the power structure.
In the full-automatic spiral slag discharging cleaning machine, the conveying belt is obliquely arranged, and the position of the conveying belt close to one end of the power structure is higher than that of the conveying belt far away from one end of the power structure.
In the full-automatic spiral slag discharging cleaning machine, the position of the air outlet assembly is close to the bottom end of the conveying belt, wherein the plane where the plurality of bubble supporting tubes are arranged in a straight line in the air outlet assembly is parallel to the plane where the conveying belt is.
In the full-automatic spiral slag discharging cleaning machine, the cleaning machine further comprises a circulating spraying system, wherein the circulating spraying system comprises a spraying bracket arranged on the frame, and at least one spraying arm is arranged on the spraying bracket; and the centrifugal pump is arranged in the cleaning area, one end of the centrifugal pump is connected with the spray arm through a water pipe, and the other end of the centrifugal pump is communicated with the second box body through a water pipe.
In the fully-automatic spiral slag discharging cleaning machine, the spraying support and the spraying arm are close to one end of the power structure in the conveying system.
Compared with the prior art, the full-automatic spiral slag discharging cleaning machine provided by the invention has the advantages that the surface of the washed tableware is impacted by the surge type water flow in the cleaning area, so that the food residues are peeled off from the surface of the tableware, then the food residues are cleaned out of the cleaning area through the slag discharging system and are correspondingly collected, the cleaning requirement of water quality in the cleaning area is ensured, on one hand, the working pressure of operators is reduced, the working efficiency is improved, on the other hand, the cleaning effect of the tableware is improved, and the health and sanitation of feeding of the operators are ensured.
Drawings
FIG. 1 is a schematic structural view of a full-automatic spiral slag-discharging cleaner according to the present invention.
FIG. 2 is a schematic view of a full-automatic spiral slag washer according to another view angle.
FIG. 3 is a schematic view of a circulation spray system according to a preferred embodiment of the present invention.
FIG. 4 is a schematic view of a circulation spray system according to another embodiment of the present invention.
Fig. 5 is a schematic view showing the structure of a blower system according to a preferred embodiment of the present invention.
Fig. 6 is a schematic view of a blower system according to another embodiment of the present invention.
FIG. 7 is a schematic view of a slag tapping system according to a preferred embodiment of the present invention.
FIG. 8 is a schematic view showing another view of the slag discharging system according to the preferred embodiment of the present invention.
100, a rack; 110. a cleaning area; 200. a conveying system; 210. a power structure; 220. a conveyor belt; 300. a blower system; 310. a blower; 320. an air duct; 330. an air outlet assembly; 331. a main bubble tube; 332. a bubble supporting tube; 400. a slag tapping system; 410. a first collection mechanism; 411. a first case; 412. a collection basket; 420. a second collection mechanism; 421. a second case; 422. a motor; 423. a material rod assembly; 424. a storage space; 425. a discharge pipe; 500. a control system; 600. a circulating spray system; 610. spraying a bracket; 620. a spray arm; 630. a centrifugal pump; 640. a water pipe.
Detailed Description
The following are specific embodiments of the present invention and the technical solutions of the present invention will be further described with reference to the accompanying drawings, but the present invention is not limited to these embodiments.
As shown in fig. 1 to 8, the full-automatic spiral slag discharging cleaning machine provided by the invention comprises: a frame 100, a cleaning area 110 with a larger space is arranged along the length direction of the frame 100, and a conveying system 200 is arranged in the cleaning area 110, wherein a blower system 300 for making the water flow in the cleaning area 110 in a surge state is also arranged in the cleaning area 110; a slag discharging system 400 located at one side of the frame 100, and the slag discharging system 400 is communicated with the cleaning area 110 to collect food residues generated after the tableware is cleaned; the control system 500 is installed on the rack 100 and electrically connected with the transportation system 200, the blower system 300, and the slag discharging system 400.
According to the full-automatic spiral slag discharging cleaning machine provided by the invention, the surface of the washed tableware is impacted by the surge type water flow in the cleaning area 110, so that food residues are peeled off from the surface of the tableware, and then the food residues are cleaned out of the cleaning area 110 through the slag discharging system 400 and are correspondingly collected, so that the cleaning requirement of water quality in the cleaning area 110 is ensured, on one hand, the working pressure of operators is reduced, the working efficiency is improved, on the other hand, the cleaning effect of the tableware is improved, and the health and sanitation of eating of the operators are ensured.
Preferably, as shown in fig. 1 to 8, the slag discharging system 400 includes a first collecting mechanism 410 for collecting floating slag and a second collecting mechanism 420 for collecting bottom slag, wherein the first collecting mechanism 410 is disposed side by side with the second collecting mechanism 420, and the first collecting mechanism 410 communicates with an upper space of the washing region 110, and the second collecting mechanism 420 communicates with a lower space of the washing region 110. During the washing process of the tableware, two kinds of food residues are generally produced, wherein one kind of food residues is floating residues with lighter weight, such as vegetable leaves and the like; the heavy bottom residues, such as rice, broken bones, fish bones, etc., form an upper and lower food residue space in the cleaning area 110, so the embodiment sets two mechanisms for the food residues generated in the daily life, respectively, the first collecting mechanism 410 and the second collecting mechanism 420 are used for collecting floating residues and bottom residues, respectively, so as to improve the water quality in the cleaning area 110, further improve the health and sanitation of staff when using tableware, and in addition, solve the blocking problem of the cleaning area 110 and the self-cleaning problem of the cleaning area 110 after the subsequent tableware cleaning is completed.
Further preferably, as shown in fig. 1 to 8, the first collecting mechanism 410 includes a first housing 411 having an open top, and at least one collecting basket 412 having fine mesh is provided at an open end of the first housing 411. When the water flow in the cleaning area 110 flows through the first collecting mechanism 410, the floating residues on the upper layer of the water flow directly enter the collecting basket 412, and the filtered water flow returns to the cleaning area 110 again through the pipeline, so that the recycling of the water circulation is realized, and the utilization rate of the water resource is improved under the condition of ensuring the water quality of the water resource. Further preferably, a notch is formed on the side wall of the cleaning area 110 close to one side of the first collecting mechanism 410, and the notch is communicated with the first box 411, wherein the horizontal plane of the open end of the first box 411 is level with the horizontal plane of the bottom of the notch, so as to improve the effect of the first collecting mechanism 410 on collecting floating residues.
Further preferably, as shown in fig. 1 to 8, the second collecting mechanism 420 includes a second tank 421 connected to the frame 100, and a motor 422 having a speed reducing function is installed at the top of the second tank 421, wherein an output shaft is provided on the motor 422, and the second tank 421 is communicated with the lower layer of the washing area 110; one end of the material rod assembly 423 is connected with the output shaft, the other end of the material rod assembly 423 extends into the box body and is connected with the bottom of the box body, and the material rod assembly 423 is driven to rotate through the motor 422, wherein a plurality of material storage spaces 424 are arranged along the length direction of the material rod assembly 423, and each material storage space 424 rises gradually along with the rotation of the material rod assembly 423; the discharging pipe 425 is installed on the second box 421 and is communicated with the second box 421, wherein the installation position of the discharging pipe 425 is flush with the top position of the material rod assembly 423. After the bottom residues at the lower layer of the cleaning area 110 enter the second box 421, the material rod assembly 423 rotates under the action of the motor 422, so that the bottom residues enter the storage space 424 of the material rod assembly 423 and gradually rise along with the rotation of the material rod assembly 423, when the storage space 424 with the bottom residues reaches the position of the discharge pipe 425, the bottom residues in the storage space 424 enter the discharge pipe 425 and are discharged out of the second box 421 through the discharge pipe 425, a collecting basket with larger space is generally placed below the discharge pipe 425, the bottom residues with larger capacity can be collected at one time, and can be further processed and treated subsequently to serve as feeds or nourishments of animals or plants, so that the utilization rate of resources is improved, and the environmental protection can be improved.
Further preferably, as shown in fig. 1 to 8, since the first collecting mechanism 410 and the second collecting mechanism 420 are arranged side by side, the first tank 411 and the second tank 421 are also arranged side by side, at this time, the bottom of the first tank 411 may be communicated with the bottom of the second tank 421, the water filtered by the first collecting mechanism 410 enters the second collecting mechanism 420, and is filtered again, and finally returns to the cleaning area 110 through the pipeline again. In this embodiment, the bottom of the first tank 411 and the bottom of the second tank 421 are set to be in a communication state, so that the "secondary purification" treatment of the water body can be realized, the water quality in the cleaning area 110 can be further improved, and the bottom sediment in the cleaning area 110 can be further reduced. Since the water flow in the cleaning area 110 is in a surge state, a small portion of the bottom residues enters the first collecting mechanism 410 before entering the lower layer of the cleaning area 110, so that the portion of the bottom residues can flow back into the cleaning area 110 again, and at this time, if the first tank 411 is communicated with the second tank 421, the first tank 411 is not communicated with the cleaning area 110, so that the portion of the bottom residues can be discharged out of the slag discharging system 400 under the action of the second collecting mechanism 420, the slag discharging effect of the slag discharging system 400 on the food residues is improved, and the water quality in the cleaning area 110 is further improved.
Further preferably, as shown in fig. 1 to 8, the storage space 424 is spirally raised so that the bottom sediment in the storage space 424 can smoothly enter the tapping pipe 425 and be discharged out of the tapping system 400 through the tapping pipe 425. Further preferably, the discharging pipe 425 is arranged in an inclined downward structure, and further preferably, an included angle between the extending direction of the discharging pipe 425 and the rotation axis of the material rod assembly 423 is 48 degrees, so that smoothness of the sinking residues entering the discharging pipe 425 is further improved, and discharging effect is improved.
Preferably, as shown in fig. 1 to 8, the blower system 300 includes a blower 310 mounted on the frame 100, and a duct 320 is connected to an outlet of the blower 310, wherein the duct 320 is connected to an air outlet assembly 330. In this embodiment, external air is pumped in by the blower 310 and is delivered to the air outlet assembly 330 through the air duct 320, so that the water in the cleaning area 110 rolls up and down, and a surge state is formed. On the one hand, can separate floating residue and bottom sediment effectively for floating residue and bottom sediment can get into corresponding collection mechanism in, on the other hand, through surging rivers, can soften the food residue that adheres to on the tableware fast, realize tableware and food residue ground quick separation, improve the cleaning performance of tableware.
Further preferably, as shown in fig. 1 to 8, the air outlet assembly 330 includes a main bubble tube 331 connected to the air duct 320, and a plurality of branch bubble tubes 332 are disposed along a length direction of the main bubble tube 331, wherein each branch bubble tube 332 is communicated with the main bubble tube 331, and a plurality of air bubbles are disposed at equal intervals along the length direction of each branch bubble tube 332. In this embodiment, the main bubble tube 331 and the branch bubble tube 332 are used to achieve uniform division of air flow, so that the air flow entering the cleaning area 110 is prevented from being large, and water in the cleaning area 110 overflows, which causes waste of water resources and pollution to the environment near the cleaning machine. Further preferably, a plurality of bubble-supporting tubes 332 are arranged at equal intervals to achieve uniform distribution of the surge-type water flow in the washing zone 110.
Further preferably, as shown in fig. 1 to 8, the air duct 320 is provided in an L-shaped structure, and one end of the air duct 320 is connected to the air outlet of the blower 310, and the other end of the air duct 320 is connected to the main bubble tube 331, wherein an included angle is formed between the extending direction of the main bubble tube 331 and the extending direction of the air duct 320 at the end. Because each of the air-supporting tubes 332 is disposed along the length direction of the main air-supporting tube 331, i.e. is arranged in a straight line, the same included angle is formed between the plane where the air-supporting tubes 332 are located and the extending direction of the air duct 320.
Preferably, as shown in fig. 1 to 8, the conveying system 200 includes a power structure 210 mounted on the frame 100, and a conveying belt 220 is connected to an output end of the power structure 210 (the conveying belt 220 is arranged in a grid structure), and when the tableware is conveyed, the tableware is washed by a surge type water flow while advancing, so that the working efficiency is further improved. Further preferably, the conveying belt 220 is obliquely arranged, the position of the conveying belt 220 close to one end of the power structure 210 is higher than that of the conveying belt 220 far away from one end of the power structure 210, and the structure is arranged, so that residues on the surface of the tableware are softened and separated from low to high in the conveying process by the surge water flow, and the heavy bottom residues directly enter the second collecting mechanism 420 for deslagging treatment without following the movement of the tableware, so that the cleaning effect of the tableware is further improved. Further preferably, the surface of the conveying belt 220 is provided with tooth-hook-shaped net teeth, and the tableware is washed and stirred by the water flow of the surge type and matched with the tooth-hook-shaped net teeth, so that the separation between the tableware and food residues is further quickened, and the cleaning effect of the tableware is further improved.
Further preferably, as shown in fig. 1 to 8, the position of the air outlet assembly 330 is close to the bottom end of the conveyor belt 220, wherein the plane where the plurality of bubble supporting tubes 332 are arranged in a line in the air outlet assembly 330 is parallel to the plane where the conveyor belt 220 is located, so that when the tableware enters the cleaning area 110, the tableware can be subjected to strong impact of the surge type water flow, separation of the tableware and food residues can be realized more quickly, and along with the operation of the conveyor belt 220, the tableware is always in the impact range of the surge type water flow in a period of time, so that the cleaning effect of the tableware is further improved.
Preferably, as shown in fig. 1 to 8, the cleaning machine further comprises a circulation spray system 600, wherein the circulation spray system 600 comprises a spray stand 610 mounted on the frame 100, wherein at least one spray arm 620 is provided on the spray stand 610; and a centrifugal pump 630 installed in the cleaning area 110, wherein one end of the centrifugal pump 630 is connected with the spray arm 620 through a water pipe 640, the other end of the centrifugal pump 630 is communicated with the second tank 421 through the water pipe 640, and water in the cleaning area 110 enters the spray arm 620 through the water pipe 640 under the action of the centrifugal pump 630, and then water sprayed from the spray arm 620 returns to the cleaning area 110 again, thereby realizing the cleaning of water circulation. Further preferably, the spray stand 610 and the spray arm 620 are close to the end of the conveying system 200 where the power structure 210 is located, and the tableware is cleaned in the surge type water flow (the tableware is separated from the food residues in the rough cleaning stage) before entering the circulating spray system 600 stage (the fine cleaning stage, the strong flushing of the surface of the tableware by the spray arm 620) and the cleaning of the tableware in the two stages is further improved.
Further preferably, as shown in fig. 1 to 8, the number of the spray arms 620 is two, and the spray arms are arranged in a staggered manner, so that the cleaning effect of the tableware is further improved.
The specific embodiments described herein are offered by way of example only to illustrate the spirit of the invention. Those skilled in the art may make various modifications or additions to the described embodiments or substitutions thereof without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.

Claims (7)

1. A fully automatic screw slag washer, comprising: the device comprises a rack, a cleaning area and a conveying system, wherein the cleaning area is arranged along the length direction of the rack, and the conveying system is arranged in the cleaning area; the slag discharging system is positioned at one side of the rack and communicated with the cleaning area, so as to collect food residues generated after tableware cleaning; the control system is arranged on the frame and is electrically connected with the conveying system, the air blowing system and the slag discharging system;
the slag discharging system comprises a first collecting mechanism for collecting floating residues and a second collecting mechanism for collecting the bottom residues, wherein the first collecting mechanism and the second collecting mechanism are arranged side by side, the first collecting mechanism is communicated with the upper space of the cleaning area, and the second collecting mechanism is communicated with the lower space of the cleaning area;
the first collecting mechanism comprises a first box body with an open top, and at least one collecting basket with fine meshes is arranged at the open end of the first box body;
the second collecting mechanism comprises a second box body connected with the frame, and a motor with a speed reducing function is arranged at the top of the second box body, wherein an output shaft is arranged on the motor, and the second box body is communicated with the lower layer of the cleaning area; one end of the material rod assembly is connected with the output shaft, the other end of the material rod assembly extends into the box body and is connected with the bottom of the box body, a plurality of material storage spaces are arranged along the length direction of the material rod assembly, and each material storage space gradually rises along with the rotation of the material rod assembly; the discharging pipe is arranged on the second box body and is communicated with the second box body, wherein the installation position of the discharging pipe is flush with the top position of the material rod assembly.
2. The fully automatic screw tapping washer of claim 1, wherein the blower system comprises a blower mounted to the frame and an air duct connected to an air outlet of the blower, wherein the air duct is connected to an air outlet assembly.
3. The full-automatic spiral slag discharging cleaning machine according to claim 2, wherein the air outlet assembly comprises a main bubble pipe connected with the air pipe, a plurality of branch bubble pipes are arranged along the length direction of the main bubble pipe, each branch bubble pipe is communicated with the main bubble pipe, and a plurality of air bubbles are arranged at equal intervals along the length direction of each branch bubble pipe.
4. A fully automatic spiral slag washer according to claim 3, wherein the air duct is provided in an L-shaped configuration, one end of the air duct is connected to the air outlet of the blower, and the other end of the air duct is connected to the main bubble tube, wherein an angle is formed between the direction of extension of the main bubble tube and the direction of extension of the air duct at the end.
5. The fully automatic spiral slag washer according to claim 3, wherein the conveying system comprises a power structure arranged on the frame, and a conveying belt is connected to the output end of the power structure, wherein the conveying belt is obliquely arranged, and the position of the conveying belt near one end of the power structure is higher than that of the conveying belt far away from one end of the power structure.
6. The fully automatic spiral slag washer according to claim 3, wherein the air outlet assembly is located near the bottom end of the conveyor belt, and wherein the plane in which the plurality of branched bubble tubes are arranged in a straight line in the air outlet assembly is parallel to the plane in which the conveyor belt is located.
7. The fully automatic screw tapping washer of claim 1, further comprising a circulatory spray system, wherein the circulatory spray system comprises a spray rack mounted to the frame, wherein at least one spray arm is provided on the spray rack and is positioned proximate to an end of the conveyor system where the power structure is located; and the centrifugal pump is arranged in the cleaning area, one end of the centrifugal pump is connected with the spray arm through a water pipe, and the other end of the centrifugal pump is communicated with the second box body through a water pipe.
CN201811211175.1A 2018-10-17 2018-10-17 Full-automatic spiral slag discharging cleaning machine Active CN109247889B (en)

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Application Number Priority Date Filing Date Title
CN201811211175.1A CN109247889B (en) 2018-10-17 2018-10-17 Full-automatic spiral slag discharging cleaning machine

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Application Number Priority Date Filing Date Title
CN201811211175.1A CN109247889B (en) 2018-10-17 2018-10-17 Full-automatic spiral slag discharging cleaning machine

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CN109247889A CN109247889A (en) 2019-01-22
CN109247889B true CN109247889B (en) 2023-12-26

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH09224897A (en) * 1996-02-23 1997-09-02 Mamia:Kk Water saving washing device
CN203447253U (en) * 2013-09-04 2014-02-26 彭素娟 Tableware residue automatic output device
CN205251460U (en) * 2015-12-15 2016-05-25 广州霖森环保科技有限公司 A water slagging -off all -in -one for warewashing
CN107928594A (en) * 2017-12-29 2018-04-20 珠海格力电器股份有限公司 Wind inlet channel component and dish-washing machine

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH09224897A (en) * 1996-02-23 1997-09-02 Mamia:Kk Water saving washing device
CN203447253U (en) * 2013-09-04 2014-02-26 彭素娟 Tableware residue automatic output device
CN205251460U (en) * 2015-12-15 2016-05-25 广州霖森环保科技有限公司 A water slagging -off all -in -one for warewashing
CN107928594A (en) * 2017-12-29 2018-04-20 珠海格力电器股份有限公司 Wind inlet channel component and dish-washing machine

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