CN216453237U - Fruit self-cleaning line is used in jam production - Google Patents

Fruit self-cleaning line is used in jam production Download PDF

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Publication number
CN216453237U
CN216453237U CN202122827972.6U CN202122827972U CN216453237U CN 216453237 U CN216453237 U CN 216453237U CN 202122827972 U CN202122827972 U CN 202122827972U CN 216453237 U CN216453237 U CN 216453237U
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water
cleaning
spraying
fruit
tank
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钟铎
窦德刚
潘志飞
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Wuhan Jizhihe Food Co ltd
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Wuhan Jizhihe Food Co ltd
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Abstract

The utility model belongs to the technical field of fruit cleaning equipment and specifically relates to a fruit self-cleaning line is used in jam production, and it includes foam cleaning machine and lifting machine, foam cleaning machine's discharge end with it constructs and sprays clean mechanism to have set gradually clean mechanism of vibration, wind-force between the feed end of lifting machine in succession. This application can promote fruit cleaning performance.

Description

Fruit self-cleaning line is used in jam production
Technical Field
The application relates to the field of fruit cleaning equipment, in particular to a fruit automatic cleaning line for jam production.
Background
The fruits are required to be cleaned before being made into jam, the cleaning of the fruits is usually finished manually, and when a large quantity of fruits are required to be cleaned, the manual cleaning is time-consuming and labor-consuming; so at present, a fruit cleaning machine is often adopted for cleaning fruits in large batches.
The chinese utility model patent document with application number 201620299285.8 discloses a fruit cleaning machine, which comprises a case, a motor, a water spraying device, a water inlet module and a conveying device; the conveying device is installed on the case through a bearing seat, water spraying devices are respectively arranged above and below the conveying device, and a top cover is correspondingly arranged above the conveying device; the top cover is also positioned above the water spraying nozzle of the water spraying device; the water spraying port of the water spraying device faces the conveying device; the water inlet of the water spraying device is connected with the water inlet module; the conveying device is obliquely arranged, a discharge port is arranged at the higher end of the conveying device, and a feed port is arranged at the lower end of the conveying device; the conveying device comprises a conveying part which is a hollow structure capable of placing fruits; the motor is positioned outside the case and is connected with the transmission device through the transmission device. When wasing fruit, put the pay-off mouth with abluent fruit of needs, transmit fruit to quick-witted incasement through conveyer, rethread water jet equipment washs fruit, washs back conveyer and carries fruit to the discharge gate again.
In view of the above-mentioned related technologies, the inventor believes that the water spraying device is difficult to deeply clean dirt on the surface of the fruit, and has the defect of poor cleaning effect.
Disclosure of Invention
In order to promote the cleaning effect, this application provides a fruit self-cleaning line for jam production.
The application provides a fruit self-cleaning line for jam production adopts following technical scheme:
fruit self-cleaning line is used in jam production, including foam cleaning machine and lifting machine, the discharge end of foam cleaning machine with it constructs and sprays clean mechanism to have set gradually the clean mechanism of vibration, the clean mechanism of wind-force between the feed end of lifting machine in proper order in succession.
By adopting the technical scheme, when the automatic cleaning line is used, the strawberries are poured into the foam cleaning machine by taking strawberry cleaning as an example, the foam cleaning machine primarily cleans dirt on the surfaces of the strawberries, and the strawberries flow to the vibration cleaning mechanism along with the cleaning water rolling in the foam cleaning machine; the vibrating cleaning mechanism can vibrate to remove impurities attached to the strawberries on one hand and can also loosen the seeds on the surfaces of the strawberries through vibration on the other hand; after the strawberries are cleaned by vibration, the wind power cleaning mechanism blows off the fruit bases on the surfaces of the strawberries and the loose seed materials on the surfaces of the strawberries by strong wind power; after the strawberries are cleaned by wind power, the spraying cleaning mechanism sprays and cleans the strawberries again, and then the strawberries are transported to a material box for collecting the strawberries by the elevator. Through the coherent cooperation of the vibration cleaning mechanism, the wind power cleaning mechanism and the spraying cleaning mechanism, dirt, seeds and fruit bases on the surfaces of strawberries can be cleaned together, and the cleaning effect of fruits is improved.
Optionally, the clean mechanism of vibration includes the clean subassembly of multiunit vibration that a set of or set up in succession, the clean subassembly of vibration includes shale shaker, water catch bowl and the first piece that sprays, the feed end of shale shaker is located the discharge end below of foam cleaning machine is close to the clean mechanism of wind-force the fruit material discharge end of shale shaker is located the feed end top of the clean mechanism of wind-force, the water catch bowl is located the impurity discharge end below of shale shaker, the first subassembly that sprays is located the shale shaker top, just the first spraying assembly spray the region with the screen cloth of shale shaker is just right.
Through adopting above-mentioned technical scheme, when the strawberry is by the foam flushing machine towards the feed inlet of shale shaker, the shale shaker passes through the vibration, can make the seed material on strawberry surface shake and fall or shake the pine, first spray assembly sprays the screen cloth of shale shaker simultaneously, realize the limit and vibrate the limit and wash, the strawberry surface is all along with the washing rivers see through the screen cloth flow direction water catch bowl by the dirt that first spray washed down and the seed material that is shaken by the shale shaker, through mutually supporting of shale shaker and first spray assembly, make the strawberry by abluent cleaner, the clean degree on fruit surface has been improved.
Optionally, the clean mechanism of wind-force includes first net chain conveyer belt, baffle, fan and holds in the palm the groove, the feed end of first net chain conveyer belt is located the discharge end below of shale shaker, the discharge end of first net chain conveyer belt is located spray clean mechanism's feed end top, the both sides of first net chain conveyer belt are provided with the baffle, the fan set up in on the baffle, just the air outlet orientation of fan first net chain conveyer belt, hold in the palm the groove set up in first net chain conveyer belt below.
Through adopting above-mentioned technical scheme, the strawberry passes through the shale shaker and carries the feed end of first net chain conveyer belt after, and the strawberry is along with first net chain conveyer belt motion, and the fan can blow off the loose seed material in strawberry surface and the fruit base of strawberry, and the seed material and the fruit base that are blown off fall into in the support groove through the mesh on first net chain conveyer surface, reduce the artifical work load of getting rid of the fruit base, have promoted degree of automation.
Optionally, the spraying and cleaning mechanism comprises a cleaning tank, a second net chain conveyor belt and a second spraying piece; the cleaning tank is arranged between the first net chain conveying belt and the hoister; the second net chain conveyer belt is arranged in the cleaning tank, the feeding end of the second net chain conveyer belt is positioned below the discharging end of the first net chain conveyer belt, and the discharging end of the second net chain conveyer belt is positioned above the feeding end of the hoister; the second spraying part is positioned above the second net chain conveying belt, and the spraying area of the second spraying part is opposite to the upper belt surface of the second net chain conveying belt.
Through adopting above-mentioned technical scheme, when the strawberry carried the feed end of second net chain conveyer belt through first net chain conveyer belt, the second spray assembly was clean to flowing water once more by the clean strawberry of wind-force, has further promoted the cleaning performance of fruit.
Optionally, the vibration cleaning mechanism further comprises a first water circulation filtering assembly, the spray cleaning mechanism further comprises a second water circulation filtering assembly, the first water circulation filtering assembly is used for recycling water in the water collecting tank, and the second water circulation filtering assembly is used for recycling water in the cleaning tank.
Through adopting above-mentioned technical scheme, first hydrologic cycle filtration subassembly and second hydrologic cycle filtration subassembly all can realize hydrologic cycle's utilization, and the water after will wasing fruit filters the recycle, has reduced the waste of water resource.
Optionally, the first water circulation filtering assembly includes a water collecting tank, a filtering screen plate, a first backflow water pipe and a first backflow water pump; the water collecting tank is arranged below the impurity discharging end of the vibrating screen, and the filter screen plate is arranged in the water collecting tank; one end of the first backflow water pipe is communicated with the side wall of the water collecting tank below the filter screen plate, and the other end of the first backflow water pipe is communicated with the water inlet end of the first backflow water pump; and the water outlet end of the first reflux water pump is communicated with a first water supply pipe of the first spraying piece.
Through adopting above-mentioned technical scheme, filter by the seed material and the dirt that the shale shaker shakes off through filtering the otter board, the washing water after the filtration is stayed the water catch bowl of filtering the otter board below, and first return water pump takes out the washing water after filtering to spray in the piece, realizes hydrologic cycle's utilization, helps reducing the waste of water resource.
Optionally, the second water circulation filtering assembly comprises a water receiving tank, a drainage groove, a filtering water tank, a second backflow water pipe and a second backflow water pump; the cleaning tank is arranged in the water receiving tank, and a water receiving cavity is formed between the cleaning tank and the water receiving tank; a filtering and cleaning hole is formed in the side wall of the cleaning tank above the second net chain conveying belt, the drainage groove is formed in the side wall of the water receiving tank, and the water outlet of the drainage groove faces the filtering water tank; one end of the second backflow water pipe is communicated with the filtering water tank, and the other end of the second backflow water pipe is communicated with the water inlet end of the second backflow water pump; and the water outlet end of the second return water pump is communicated with a first water supply pipe of the second spraying piece.
Through adopting above-mentioned technical scheme, filter clean hole and can filter the water receiving chamber with the seed material and the fruit base that are not blown down by the clean mechanism of wind-force, rivers in the water receiving chamber pass through drainage groove flow direction filter water tank, the filter screen on the filter water tank can filter seed material and fruit base, wash water after the filtration flows back to the foam cleaning machine through filtering the backward flow subassembly in, through filtering clean hole and filter water tank mutually supporting, carry out successive layer to wasing water and filter, help promoting the cleanliness factor of wasing water.
Optionally, a third spraying assembly is arranged above the lifting surface of the lifting machine, and a spraying area of the third spraying assembly is opposite to the lifting surface of the lifting machine.
Through adopting above-mentioned technical scheme, the cleaning performance of strawberry has further been promoted.
Optionally, a screening rod is arranged at the discharge port of the foam cleaning machine, and a plurality of screening piles are arranged on the screening rod at intervals.
By adopting the technical scheme, the screening pile can screen the frozen strawberries, the strawberries with ice blocks are blocked to be continuously cleaned and unfrozen, and the unfrozen strawberries reach the vibration cleaning mechanism through the screening pile, so that the influence of the frozen strawberries on the vibration screen is reduced.
Optionally, a discharging end of the spraying cleaning mechanism is provided with a fruit pressing roller, and the lower part of the fruit pressing roller is located below the cleaning water surface of the spraying cleaning mechanism.
Through adopting above-mentioned technical scheme, press the fruit hair roller and can make the fruit that floats on the surface of water submerge below the clean surface of water, make fruit carry out whole washing, promoted the clean degree of fruit.
In summary, the present application includes at least one of the following beneficial technical effects:
1. when the automatic cleaning line is used, taking strawberry cleaning as an example, the strawberry is poured into a foam cleaning machine, the foam cleaning machine primarily cleans dirt on the surface of the strawberry, and the strawberry flows to a vibration cleaning mechanism along with cleaning water rolling in the foam cleaning machine; the vibrating cleaning mechanism can vibrate to remove impurities attached to the strawberries on one hand and can also loosen the seeds on the surfaces of the strawberries through vibration on the other hand; after the strawberries are cleaned by vibration, the wind power cleaning mechanism blows off the fruit bases on the surfaces of the strawberries and the loose seed materials on the surfaces of the strawberries by strong wind power; after the strawberries are cleaned by wind power, the spraying cleaning mechanism sprays and cleans the strawberries again, and then the strawberries are transported to a material box for collecting the strawberries by the elevator. Through the coherent matching of the vibration cleaning mechanism, the wind power cleaning mechanism and the spraying cleaning mechanism, dirt, seeds and fruit bases on the surfaces of strawberries can be cleaned together, and the cleaning effect of fruits is improved;
2. when fruits are washed to a feeding hole of the vibrating screen by the foam washing machine, the vibrating screen vibrates to enable seeds and attached dirt on the surfaces of the fruits to be vibrated down or loosened, meanwhile, the first spraying assembly sprays the screen of the vibrating screen to realize washing while vibrating, the dirt washed by the first spraying assembly on the surfaces of the fruits and the seeds vibrated by the vibrating screen flow into the water collecting tank along with washing water flow penetrating through the screen, and the fruits are washed cleaner through the mutual matching of the vibrating screen and the first spraying assembly, so that the cleaning degree of the surfaces of the fruits is improved;
3. set up and press the fruit hair roller and can make the fruit submergence that floats on the surface of water to clean below the surface of water, make fruit carry out whole washing, promoted the clean degree of fruit.
Drawings
FIG. 1 is a schematic structural diagram of an automatic fruit cleaning line for jam production according to an embodiment of the present application.
Fig. 2 is a schematic structural diagram of a first view angle of a vibration cleaning mechanism in an automatic fruit cleaning line for jam production according to an embodiment of the present application.
Fig. 3 is a schematic structural diagram of a second view angle of the vibration cleaning mechanism in the automatic fruit cleaning line for jam production according to the embodiment of the application.
FIG. 4 is a schematic structural diagram of a pneumatic cleaning mechanism in an automatic fruit cleaning line for jam production according to an embodiment of the present application.
FIG. 5 is a schematic structural diagram of a spraying and cleaning mechanism in an automatic fruit cleaning line for jam production according to an embodiment of the present application.
Reference numerals: 1. a foam washer; 11. a screening rod; 12. screening piles; 13. a first material receiving chute; 2. a vibratory cleaning mechanism; 211. a first support frame; 212. vibrating screen; 213. a water collection tank; 214. a first spray member; 2141. a first water supply pipe; 2142. a shower head; 215. a second material receiving chute; 22. a first water circulating and filtering component; 221. a water collection tank; 222. a first return flow pipe; 223. a first reflux water pump; 3. a wind power cleaning mechanism; 31. a second support frame; 32. a first network chain conveyor belt; 33. a baffle plate; 34. a fan; 35. a bracket; 36. a third material receiving chute; 4. a spray cleaning mechanism; 41. a spray cleaning assembly; 411. a cleaning tank; 4111. filtering and cleaning the pores; 412. a second network chain conveyor belt; 413. a second spray member; 4131. a second water supply pipe; 4132. a spray head; 421. a third support frame; 422. a water receiving tank; 423. a drainage groove; 424. a filtering water tank; 425. a second return water pipe; 426. a second reflux water pump; 43. pressing a fruit roller; 5. a hoist; 51. and a third spraying part.
Detailed Description
The present application is described in further detail below with reference to figures 1-5.
The embodiment of the application discloses fruit self-cleaning line is used in jam production. Referring to fig. 1, the automatic fruit cleaning line for jam production comprises a foam cleaning machine 1, a vibration cleaning mechanism 2, a wind power cleaning mechanism 3, a spraying cleaning mechanism 4 and a lifting machine 5 which are sequentially and continuously arranged.
Referring to fig. 2, a screening rod 11 is arranged at a discharge port of the foam cleaning machine 1, the screening rod 11 is arranged along the width direction of the foam cleaning machine 1, the screening rod 11 is welded on two side walls of the foam cleaning machine 1, and a plurality of screening piles 12 are welded on the screening rod 11 at intervals. A first material receiving chute 13 is fixed at the discharge port of the foam cleaning machine 1 through bolts, and the first material receiving chute 13 is arranged in a downward inclined mode.
Referring to fig. 2 and 3, the vibratory cleaning mechanism 2 includes a vibratory cleaning assembly and a first water circulating filter assembly 22. The vibratory cleaning assembly includes a first support bracket 211, a vibratory screen 212, a water collection trough 213, and a first spray 214. The feeding end of the vibrating screen 212 is positioned below the first material receiving chute 13, a second material receiving chute 215 is arranged at the fruit material discharging port of the vibrating screen 212, the second material receiving chute 215 is fixed on the first support frame 211 through bolts, the second material receiving chute 215 is arranged in a downward inclined manner, and the vibrating screen 212 is welded on the first support frame 211; the water collection tank 213 is positioned below the impurity discharge end of the vibrating screen 212; the first spray part 214 includes a first water supply pipe 2141 and a plurality of spray heads 2142, the first water supply pipe 2141 is fixed on the first support frame 211 by bolts, the first spray heads 2142 are fixed on the first water supply pipe 2141 by bolts and are in threaded communication with the first water supply pipe 2141, and a spray area of the spray heads 2142 is opposite to the screen of the vibrating screen 212. In this embodiment, the vibrating cleaning assemblies are arranged in one group, in other embodiments, the vibrating cleaning assemblies can be arranged in multiple groups, and the fruit material discharging end of the vibrating screen 212 close to the wind power cleaning mechanism 3 is located above the feeding end of the wind power cleaning mechanism 3.
Referring to fig. 3, the first water circulation filtration module 22 includes a header tank 221, a filter screen plate, a first return water pipe 222, and a first return water pump 223. The water collecting tank 221 is arranged below the impurity discharging end of the vibrating screen 212, the filter screen plate is detachably clamped in the water collecting tank 221, and the filter screen plate is not shown in the drawing; one end of the first backflow water pipe 222 is in threaded communication with the side wall of the water collection tank 213 below the filter screen plate, and the other end of the first backflow water pipe is in threaded communication with the water inlet end of the first backflow water pump 223; the water outlet end of the first return water pump 223 is in threaded communication with the first water supply pipe 2141.
Referring to fig. 4, the wind cleaning mechanism 3 includes a second support frame 31, a first net chain conveyor 32, a baffle 33, a fan 34, and a bracket 35. The feeding end of the first net chain conveyor belt 32 is positioned below the second material receiving chute 215, the discharging end of the first net chain conveyor belt 32 is provided with a third material receiving chute 36, the third material receiving chute 36 is fixed on the second support frame 31 through a bolt, the third material receiving chute 36 is arranged obliquely downwards, and the frame body of the first net chain conveyor belt 32 is welded on the second support frame 31; baffles 33 are welded on two sides of the frame body of the first net chain conveyor belt 32, the fans 34 are fixed between the two baffles 33 through bolts, and air outlets of the fans 34 face the first net chain conveyor belt 32, in this embodiment, the number of the fans 34 is four, and in other embodiments, the number of the fans 34 is also three or five; a bracket 35 is placed below the first wire chain conveyor belt 32, and the bracket 35 is used to collect foreign substances blown off by the blower 34.
Referring to fig. 5, the spray cleaning mechanism 4 includes a spray cleaning assembly 41 and a second water circulation filtering assembly. The spray cleaning assembly 41 includes a cleaning bath 411, a second wire chain conveyor 412, and a second spray piece 413. The frame body of the second net chain conveyer belt 412 is welded on two side walls in the cleaning groove 411, the feeding end of the second net chain conveyer belt 412 is positioned below the third discharging chute, and the discharging end of the second net chain conveyer belt 412 is positioned above the feeding end of the lifter 5; the second spraying member 413 includes a second water supply pipe 4131 and a plurality of spraying heads 4132, and the spraying direction of the spraying heads 4132 is directed toward the belt surface of the second net chain conveyor 412.
Referring to fig. 5, the second water circulation filtering assembly includes a third support frame 421, a water receiving tank 422, a drainage groove 423, a filtering water tank 424, a second return water pipe 425, and a second return water pump 426. The water receiving tank 422 is welded on the third support frame 421, the cleaning tank 411 is fixed in the water receiving tank 422 through bolts, and a water receiving cavity is formed between the water receiving tank 422 and the cleaning tank; a plurality of filtering and cleaning holes 4111 are formed in the side wall of the cleaning tank 411 above the second mesh chain conveyor belt 412; a drainage port is formed in the side wall of the water receiving tank 422, the drainage groove 423 is welded at the drainage port, and a water outlet of the drainage groove 423 faces to a water inlet of the filtering water tank 424; one end of the second return water pipe 425 is in threaded communication with the filter water tank 424, and the other end is in threaded communication with the water inlet end of the second return water pump 426; the water outlet end of the second backflow water pump 426 is in threaded communication with the second water supply pipe 4131 of the second spray piece 413.
Referring to fig. 5, a discharging port of the second net chain conveying belt 412 is provided with a fruit pressing rough roller 43, the fruit pressing rough roller 43 is arranged along the width direction of the second net chain conveying belt 412, a roller shaft of the fruit pressing rough roller 43 is rotatably connected to frame bodies on two sides of the second net chain conveying belt 412 through a bearing, and the lower part of the fruit pressing rough roller 43 is located below the cleaning water surface of the spray cleaning mechanism 4, in the present embodiment, two fruit pressing rough rollers 43 are provided, and in other embodiments, one or three fruit pressing rough rollers 43 can be provided; and a third spraying piece 51 is arranged above the lifting surface of the lifter 5, the structure of the third spraying piece 51 is the same as that of the first spraying piece 214, and the spraying area of the third spraying piece 51 is opposite to the lifting surface of the lifter 5.
The implementation principle of fruit self-cleaning line for jam production in the embodiment of this application is: when the automatic cleaning line is used, taking the cleaning of the frozen strawberries as an example, the frozen strawberries are poured into the foam cleaning machine 1, the foam cleaning machine 1 unfreezes and primarily cleans the frozen strawberries, and the unfrozen strawberries flow to the feeding hole of the vibrating screen 212 through the screening pile 12 along with the cleaning water flow of the foam cleaning machine 1; the vibrating screen 212 transmits the strawberries through vibration, dirt and seed materials attached to the surfaces of the strawberries are vibrated down or loosened, the strawberries are sprayed by the first spraying part 214, the dirt and the loosened dirt and the seed materials on the surfaces of the strawberries are flushed into the water collecting tank 213, and the strawberries cleaned through vibration are conveyed to a feeding hole of the first net chain conveying belt 32 along with the vibrating screen 212; the first mesh chain conveyor belt 32 conveys the strawberries to the lower side of the fan 34, the fan 34 washes the seed materials which are not shaken off on the surfaces of the strawberries and the self fruit stalks off through strong wind, and the washed off impurity materials fall into the bracket 35 through mesh chain holes on the first mesh chain conveyor; when the wind-cleaned strawberries are transported to the feeding end of the second net chain conveyor belt 412, the strawberries are cleaned again by the second spraying piece 413, and the strawberries floating on the water surface are pressed below the cleaning water surface by the hair roller, so that the strawberries can be integrally cleaned; the strawberry is transmitted to the feed end of lifting machine 5 through second net chain conveyer belt 412, and lifting machine 5 upwards promotes the in-process with the strawberry, and the third sprays piece 51 and carries out final washing to the strawberry of promoting, and the strawberry is transported to in the storage cylinder at last.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (9)

1. Fruit self-cleaning line is used in jam production, including foam cleaning machine (1) and lifting machine (5), its characterized in that: the device is characterized in that a vibration cleaning mechanism (2), a wind power cleaning mechanism (3) and a spraying cleaning mechanism (4) are sequentially and continuously arranged between the discharge end of the foam cleaning machine (1) and the feed end of the elevator (5), the vibration cleaning mechanism (2) comprises a group or continuously arranged multi-group vibration cleaning components, each vibration cleaning component comprises a vibrating screen (212), a water collecting tank (213) and a first spraying piece (214), the feed end of the vibrating screen (212) is positioned below the discharge end of the foam cleaning machine (1), the fruit material discharge end of the vibrating screen (212) close to the wind power cleaning mechanism (3) is positioned above the feed end of the wind power cleaning mechanism (3), the water collecting tank (213) is positioned below the impurity discharge end of the vibrating screen (212), and the first spraying component is positioned above the vibrating screen (212), and the spraying area of the first spraying assembly is opposite to the screen mesh of the vibrating screen (212).
2. The fruit automatic cleaning line for jam production according to claim 1, characterized in that: the wind power cleaning mechanism (3) comprises a first net chain conveying belt (32), a baffle (33), a fan (34) and a bracket (35), wherein the feeding end of the first net chain conveying belt (32) is located below the fruit material discharging end of the vibrating screen (212), the discharging end of the first net chain conveying belt (32) is located above the feeding end of the spraying cleaning mechanism (4), the baffle (33) is arranged on two sides of the first net chain conveying belt (32), the fan (34) is arranged on the baffle (33), the air outlet of the fan (34) faces towards the first net chain conveying belt (32), and the bracket (35) is arranged below the first net chain conveying belt (32).
3. The automatic fruit cleaning line for jam production according to claim 2, characterized in that: the spraying cleaning mechanism (4) comprises a cleaning tank (411), a second net chain conveying belt (412) and a second spraying piece (413); the cleaning tank (411) is arranged between the first net chain conveying belt (32) and the lifter (5); the second net chain conveyor belt (412) is arranged in the cleaning tank (411), the feeding end of the second net chain conveyor belt (412) is positioned below the discharging end of the first net chain conveyor belt (32), and the discharging end of the second net chain conveyor belt (412) is positioned above the feeding end of the lifter (5); the second spraying piece (413) is positioned above the second net chain conveying belt (412), and the spraying area of the second spraying piece (413) is opposite to the upper belt surface of the second net chain conveying belt (412).
4. The fruit automatic cleaning line for jam production according to claim 3, characterized in that: clean mechanism (2) of vibration still includes first water circulating filter subassembly (22), clean mechanism (4) of spraying mechanism still includes second water circulating filter subassembly, first water circulating filter subassembly (22) be used for with water in water catch bowl (213) carries out cyclic utilization, second water circulating filter subassembly be used for with water cyclic utilization in washing tank (411).
5. The fruit automatic cleaning line for jam production according to claim 4, characterized in that: the first water circulation filtering assembly (22) comprises a water collecting tank (221), a filtering screen plate, a first return water pipe (222) and a first return water pump (223); the water collecting tank (221) is arranged below the impurity discharging end of the vibrating screen (212), and the filter screen plate is arranged in the water collecting tank (221); one end of the first backflow water pipe (222) is communicated with the side wall of the water collecting tank (213) below the filter screen plate, and the other end of the first backflow water pipe is communicated with the water inlet end of the first backflow water pump (223); the water outlet end of the first return water pump (223) is communicated with a first water supply pipe (2141) of the first spray piece (214).
6. The fruit automatic cleaning line for jam production according to claim 4, characterized in that: the second water circulation filtering assembly comprises a water receiving tank (422), a drainage groove (423), a filtering water tank (424), a second return water pipe (425) and a second return water pump (426); the cleaning tank (411) is arranged in the water receiving tank (422), and a water receiving cavity is formed between the cleaning tank (411) and the water receiving tank (422); a filtering and cleaning hole (4111) is formed in the side wall of the cleaning tank (411) above the second net chain conveyor belt (412), the drainage groove (423) is formed in the side wall of the water receiving tank (422), and the water outlet of the drainage groove (423) faces the filtering water tank (424); one end of the second backflow water pipe (425) is communicated with the filtering water tank (424), and the other end of the second backflow water pipe is communicated with the water inlet end of the second backflow water pump (426); the water outlet end of the second backflow water pump (426) is communicated with a first water supply pipe (2141) of the second spraying piece (413).
7. The fruit automatic cleaning line for jam production according to claim 1, characterized in that: and a third spraying assembly is arranged above the lifting surface of the lifting machine (5), and the spraying area of the third spraying assembly is opposite to the lifting surface of the lifting machine (5).
8. The fruit automatic cleaning line for jam production according to claim 1, characterized in that: a screening rod (11) is arranged at the discharge outlet of the foam cleaning machine (1), and a plurality of screening piles (12) are arranged on the screening rod (11) at intervals.
9. The fruit automatic cleaning line for jam production according to claim 1, characterized in that: the discharge end of the spraying cleaning mechanism (4) is provided with a fruit pressing rough roller (43), and the lower part of the fruit pressing rough roller (43) is positioned below the cleaning water surface of the spraying cleaning mechanism (4).
CN202122827972.6U 2021-11-17 2021-11-17 Fruit self-cleaning line is used in jam production Active CN216453237U (en)

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Application Number Priority Date Filing Date Title
CN202122827972.6U CN216453237U (en) 2021-11-17 2021-11-17 Fruit self-cleaning line is used in jam production

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Application Number Priority Date Filing Date Title
CN202122827972.6U CN216453237U (en) 2021-11-17 2021-11-17 Fruit self-cleaning line is used in jam production

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Publication Number Publication Date
CN216453237U true CN216453237U (en) 2022-05-10

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119405074A (en) * 2025-01-03 2025-02-11 江苏品品鲜生物科技股份有限公司 An automatic hydrangea cleaning device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119405074A (en) * 2025-01-03 2025-02-11 江苏品品鲜生物科技股份有限公司 An automatic hydrangea cleaning device

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