CN114588808A - Stirring equipment for preparing fertilizer from kitchen garbage - Google Patents

Stirring equipment for preparing fertilizer from kitchen garbage Download PDF

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Publication number
CN114588808A
CN114588808A CN202210432940.2A CN202210432940A CN114588808A CN 114588808 A CN114588808 A CN 114588808A CN 202210432940 A CN202210432940 A CN 202210432940A CN 114588808 A CN114588808 A CN 114588808A
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CN
China
Prior art keywords
locking
fixedly connected
stirring
groove
rod
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CN202210432940.2A
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Chinese (zh)
Inventor
赵德华
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Anhui Chuangfuzi Technology Co ltd
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Anhui Chuangfuzi Technology Co ltd
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Priority to CN202210432940.2A priority Critical patent/CN114588808A/en
Publication of CN114588808A publication Critical patent/CN114588808A/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/40Bio-organic fraction processing; Production of fertilisers from the organic fraction of waste or refuse

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  • Mixers Of The Rotary Stirring Type (AREA)

Abstract

The invention discloses stirring equipment for preparing fertilizer from kitchen garbage, which comprises a stirring barrel, wherein the stirring barrel comprises a material concentration conical cover, and the bottom surface of the material concentration conical cover is fixedly connected with supporting legs; can clear up the surplus rubbish in kitchen of stirring rake top adhesion through the structure of decontaminating, stirring rake and the structure of decontaminating all can clear up the surplus rubbish in kitchen of adhesion on the agitator inner wall simultaneously, the cleaning process is full automatic, do not need the artificial shovel to clear up, can not arouse people's discomfort, the clearing time is short, high cleaning efficiency, can carry on spacingly to the structure of decontaminating through low-order stopper, can monitor the position at structure of decontaminating place through low-order monitoring structure, so that the agitator can control it and reset when the structure of decontaminating is cleared up, can carry out the joint through high-order locking structure and fix the structure of decontaminating, make the structure of decontaminating can not hinder the stirring work of stirring rake, the practicality of this surplus rubbish preparation agitated vessel for fertilizer has been improved.

Description

Stirring equipment for preparing fertilizer from kitchen garbage
Technical Field
The invention relates to the field of kitchen waste equipment, in particular to stirring equipment for preparing a fertilizer from kitchen waste.
Background
The kitchen waste is waste generated in activities such as daily life, food processing, food service, unit catering and the like of residents, and comprises abandoned vegetable leaves, leftovers, fruit peels, egg shells, tea residues, bones and the like, the main sources of the kitchen waste are household kitchens, restaurants, dining halls, markets and other industries related to food processing, the kitchen waste contains extremely high water and organic matters, is easy to rot and generate stink, can be converted into new resources through proper treatment and processing, the kitchen waste can be used as fertilizer and feed after being strictly treated due to the characteristic of high organic matter content, and can also be used as fuel or power generation to generate methane, the grease part can be used for preparing biofuel, and stirring equipment is required to uniformly mix the kitchen waste with the medicines in the treatment process of the kitchen waste.
Present rubbish for kitchen preparation agitated vessel for fertilizer is mainly by the agitator, agitator motor, constitute such as stirring rake, during the use with rubbish and medicine that remain in the kitchen drop into the agitator, then open agitator motor, agitator motor takes the stirring rake to rotate after that, later the stirring rake is with rubbish and medicine misce bene in kitchen, then discharge rubbish remaining in the kitchen, then shut down and use the shovel to the agitator, the rubbish remaining in the kitchen of adhesion clears up on the stirring rake, the clearance process can arouse the strong discomfort of people, and the clearance time is long, the cleaning efficiency is low, consequently, need to design a rubbish for kitchen preparation agitated vessel for fertilizer urgently.
Disclosure of Invention
1. Technical problem to be solved
Aiming at the problems that the existing stirring equipment for preparing the fertilizer from the kitchen garbage in the prior art mainly comprises a stirring barrel, a stirring motor, a stirring paddle and the like, the kitchen garbage and medicines are put into the stirring barrel when the stirring equipment is used, then the stirring motor is started and drives the stirring paddle to rotate, then the stirring paddle uniformly mixes the kitchen garbage and the medicines and discharges the kitchen garbage, then the stirring equipment is stopped and a shovel is used for cleaning the kitchen garbage adhered to the stirring barrel and the stirring paddle, the cleaning process can cause strong discomfort for people, the cleaning time is long, and the cleaning efficiency is low, the invention aims to provide the stirring equipment for preparing the fertilizer from the kitchen garbage, and the stirring equipment can well solve the problems provided in the background technology.
2. Technical scheme
In order to solve the above problems, the present invention adopts the following technical solutions.
The utility model provides a surplus refuse in kitchen preparation agitated vessel for fertilizer, includes the agitator, the agitator includes that the material concentrates the awl cover, fixedly connected with supporting leg on the bottom surface of awl cover is concentrated to the material, the bottom mounting intercommunication that the awl cover was concentrated to the material has the discharge tube, be equipped with the discharge valve on the pipeline of discharge tube, the fixed intercommunication has the mixing drum on the top of awl cover is concentrated to the material, fixed intercommunication has the loading hopper that is located its top on the right flank of mixing drum, fixed mounting has agitator motor and intelligent power distribution cabinet on the top surface of mixing drum, the inside of mixing drum is equipped with the stirring rake, the bottom fixed connection of output shaft on the top of stirring rake and the agitator motor.
Preferably, the stirring rake includes the puddler, the bottom fixed connection of output shaft on the top of puddler and the agitator motor, fixedly connected with spiral vortex board on the surface of puddler, spiral vortex board is located the inside of mixing drum, polygonal hole has been seted up on the bottom surface of puddler, polygonal hole inner chamber's top surface is connected with the polygon post through compression spring transmission, the polygon post slides and pegs graft in the inside in polygonal hole, the bottom of polygon post extends to the outside in polygonal hole and extends to the inside and the fixedly connected with stirring strip that the awl cover was concentrated to the material.
Preferably, still including scraping a mechanism, it includes spacing spout and eccentric circular groove to scrape a mechanism, spacing spout is seted up on the surface of stirring strip, the inside slip of spacing spout is pegged graft and is had the groove rubber strip of scraping, the other end of scraping the groove rubber strip extends to the outside and the fixedly connected with groove rubber sleeve of scraping of spacing spout, the outside of scraping groove rubber sleeve slip lock at the stirring strip, scrape the inner wall sliding connection of groove rubber sleeve and the concentrated awl cover of material, the external fixation who scrapes the groove rubber sleeve has cup jointed the groove restraint cover of scraping, the inner wall sliding connection who scrapes the groove restraint cover and the concentrated awl cover of material, the fixedly connected with scrapes the groove post on the bottom surface of scraping the groove restraint cover of scraping, the eccentric circular groove is seted up on the inner wall of the concentrated awl cover of material, scrape the groove post slip and peg graft in the inside of eccentric circular groove, the tip of scraping the groove rubber strip is equipped with and scrapes the groove face, it is located the one side of scraping the groove rubber sleeve of scraping to scrape the groove.
Preferably, still include the low level stopper, the low level stopper includes the insulating block, insulating block fixed connection just is located its left end on the top surface of mixing drum, the installation cavity has been seted up to the inside of insulating block, the rotary rod has been cup jointed in the activity between the left and right sides face of installation cavity inner chamber, the energy storage clockwork spring that is located its right-hand member has been cup jointed in the outside activity of rotary rod, the one end fixed connection of energy storage clockwork spring is on the surface of rotary rod, the other end fixed connection of energy storage clockwork spring is on the inner wall of installation cavity, the external fixation of rotary rod has cup jointed the take-up pulley that is located the left side of energy storage clockwork spring, the outside winding of take-up pulley has the pull wire, the other end of pull wire extends to the inside of mixing drum.
Preferably, still include low level monitoring structure, low level monitoring structure includes the transmission screw thread, the groove of ending soon, lead electrical pillar and electrically conductive shell fragment, the transmission screw thread is established in the outside of rotary rod and is located its left end, the external screw thread of transmission screw thread has cup jointed the internal thread circle, the internal thread circle fixedly connected with end the armplate soon on the surface, the groove of ending soon is seted up on the inner wall of installation cavity, end the armplate of revolving and slide the grafting in the inside of ending the groove of revolving, the insulating ejector pin of fixedly connected with L type on the top surface of internal thread circle, lead electrical pillar, the equal fixed connection of electrically conductive shell fragment is on the left surface of installation cavity inner chamber, the top of electrically conductive shell fragment is located and leads between electrical pillar and the insulating ejector pin of L type, electrically conductive shell fragment and the looks adaptation of leading electrical pillar, electrically conductive shell fragment and the insulating ejector pin looks adaptation of L type.
Preferably, the high-position locking device also comprises a high-position locking structure, the high-position locking structure comprises a locking flat pipe, the locking flat pipe is fixedly connected to the top surface of the mixing cylinder and is positioned at the right end of the mixing cylinder, the left side surface of the inner cavity of the locking flat pipe is fixedly connected with an unlocking electromagnet, the interior of the locking flat pipe is inserted with a magnetic piston in a sliding manner, the magnetic piston is positioned at the right end of the locking flat pipe, the right side surface of the magnetic piston is fixedly connected with a locking plate, the locking plate is movably inserted on the right side surface of the locking flat pipe, the right side surface of the locking plate is provided with a locking groove, the left side surface of the inner cavity of the locking groove is provided with a guiding force surface, the surface of the magnetic piston is fixedly connected with a locking strip, the surface of the locking flat pipe is provided with a locking rail hole, the end part of the locking strip penetrates through the locking rail hole and extends to the exterior of the locking strip, the locking slide rod is movably sleeved on the locking strip, and both end parts of the locking slide rod are fixedly connected with a positioning baffle plate, the positioning baffle is fixedly connected to the surface of the locking flat tube, a locking spring positioned on the left side of the locking strip is movably sleeved outside the locking slide rod, the right end of the locking spring is fixedly connected with the locking strip, and the left end of the locking spring is fixedly connected with one positioning baffle.
Preferably, the cleaning device also comprises a cleaning structure, the cleaning structure comprises a cleaning disc, the cleaning disc is positioned inside the mixing cylinder, the end part of the traction wire is fixedly connected to the top surface of the cleaning disc, the top surface of the cleaning disc is fixedly connected with a rotation stopping rod, the top end of the rotation stopping rod extends to the outside of the mixing cylinder, the rotation stopping rod is movably inserted on the top surface of the mixing cylinder, the rotation stopping rod is movably clamped inside the locking groove, the surface of one rotation stopping rod is provided with a clamping ring groove, the clamping ring groove is matched with the guide force surface and is connected with the locking plate, a through hole positioned in the middle of the cleaning disc is formed in the cleaning disc, the stirring rod is movably inserted inside the through hole, the inner wall of the through hole is provided with a spiral groove, the upper end and the lower end of the spiral groove are both open, the spiral vortex plate is matched with the spiral groove, the side surface of the cleaning disc is provided with an embedded ring groove, and an annular air bag is fixedly embedded inside the embedded ring groove, the annular air bag is connected with the inner wall of the mixing cylinder in a sliding way.
3. Advantageous effects
Compared with the prior art, the invention has the advantages that:
the stirring paddle can be driven to rotate by the stirring barrel, kitchen waste can be stirred by the stirring paddle, so that the kitchen waste and medicines are mixed more uniformly, the kitchen waste adhered to the bottom of the stirring paddle can be cleaned by the scraping mechanism, the kitchen waste adhered to the top of the stirring paddle can be cleaned by the cleaning structure, meanwhile, the stirring paddle and the cleaning structure can both clean the kitchen waste adhered to the inner wall of the stirring barrel, the cleaning process is fully automatic, a shovel does not need to be manually used for cleaning, discomfort of people is avoided, the cleaning time is short, the cleaning efficiency is high, the cleaning structure can be limited by the low-position limiter, the position of the cleaning structure can be monitored by the low-position monitoring structure, so that the stirring barrel can control the resetting of the cleaning structure when the cleaning structure is finished, the cleaning structure can be clamped and fixed by the high-position locking structure, the structure of cleaning the dirt can not obstruct the stirring work of the stirring paddle, and the practicability of the stirring equipment for preparing the fertilizer from the kitchen garbage is improved.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the internal structure of FIG. 1 according to the present invention;
FIG. 3 is a schematic view of the internal structure of the stirring rod of FIG. 2 according to the present invention;
FIG. 4 is a schematic view of the internal structure of the trash removal structure of FIG. 2 according to the present invention;
FIG. 5 is a schematic view of the internal structure of the low position limiter of FIG. 2 according to the present invention;
FIG. 6 is a schematic diagram of the right-hand internal structure of FIG. 5 according to the present invention;
FIG. 7 is a schematic structural view of the high lock structure of FIG. 2 according to the present invention;
FIG. 8 is a left side view of FIG. 7 in accordance with the present invention;
FIG. 9 is a schematic view of the internal structure of FIG. 8 according to the present invention;
FIG. 10 is a top view of the material concentrating cone of FIG. 2 according to the present invention;
FIG. 11 is a left side view of the internal construction of the polymeric strike-off boot of FIG. 10;
fig. 12 is a cross-sectional view taken at a-a of fig. 11 in accordance with the present invention.
The reference numbers in the figures illustrate:
1. a stirring barrel; 11. a material concentration conical cover; 12. supporting legs; 13. a discharge pipe; 14. a discharge valve; 15. a mixing drum; 16. a hopper; 17. a stirring motor; 18. an intelligent power distribution cabinet; 2. a stirring paddle; 21. a stirring rod; 22. a spiral scroll plate; 23. a polygonal hole; 24. a compression spring; 25. a polygonal column; 26. stirring strips; 3. a bar scraping mechanism; 31. a limiting chute; 32. scraping a groove rubber strip; 33. scraping a groove rubber sleeve; 34. a scrape slot restraining sleeve; 35. scraping a groove column; 36. an eccentric circular groove; 37. scraping a groove chamfer surface; 4. a low-position limiter; 41. an insulating block; 42. a mounting cavity; 43. rotating the rod; 44. an energy storage spring; 45. a take-up pulley; 46. a pull wire; 5. a low-level monitoring structure; 51. a drive screw; 52. an internal thread ring; 53. a rotation stopping arm plate; 54. a rotation stopping groove; 55. an L-shaped insulating ejector rod; 56. a conductive post; 57. a conductive spring plate; 6. a high-order locking structure; 60. positioning a baffle plate; 61. locking the flat pipe; 62. unlocking the electromagnet; 63. a magnetic piston; 64. a locking plate; 65. a locking groove; 66. a guiding force surface; 67. a locking strip; 68. locking the track hole; 69. locking the sliding rod; 610. locking the spring; 7. a dirt removal structure; 71. a sewage disposal disc; 72. a rotation stopping rod; 73. a through hole; 74. a spiral groove; 75. embedding the ring groove; 76. an annular air bag; 77. the ring groove is clamped.
Detailed Description
The drawings in the embodiments of the invention will be combined; the technical scheme in the embodiment of the invention is clearly and completely described; obviously; the described embodiments are only some of the embodiments of the invention; rather than all embodiments. Based on the embodiments of the invention; all other embodiments obtained by a person skilled in the art without making any inventive step; all fall within the scope of protection of the present invention.
Referring to fig. 1-12, a stirring device for preparing fertilizer from kitchen waste comprises a stirring barrel 1, wherein the stirring barrel 1 comprises a material concentration conical cover 11, a supporting leg 12 is fixedly connected to the bottom surface of the material concentration conical cover 11, a discharging pipe 13 is fixedly communicated with the bottom end of the material concentration conical cover 11, a discharging valve 14 is arranged on a pipeline of the discharging pipe 13, a mixing barrel 15 is fixedly communicated with the top end of the material concentration conical cover 11, a charging hopper 16 positioned at the top of the mixing barrel 15 is fixedly communicated with the right side surface of the mixing barrel 15, a stirring motor 17 and an intelligent power distribution cabinet 18 are fixedly installed on the top surface of the mixing barrel 15, a stirring paddle 2 is arranged inside the mixing barrel 15, the top end of the stirring paddle 2 is fixedly connected with the bottom end of an output shaft of the stirring motor 17, and the intelligent power distribution cabinet 18 is electrically connected with the stirring motor 17, a conductive column 56, a conductive elastic sheet 57 and an unlocking electromagnet 62.
Stirring rake 2 includes puddler 21, the bottom fixed connection of output shaft on the top of puddler 21 and agitator motor 17, fixedly connected with spiral vortex board 22 on the surface of puddler 21, spiral vortex board 22 is located the inside of mixing drum 15, polygonal hole 23 has been seted up on the bottom surface of puddler 21, the top surface of polygonal hole 23 inner chamber is connected with polygon post 25 through compression spring 24 transmission, polygon post 25 slides and pegs graft in the inside of polygonal hole 23, the bottom of polygon post 25 extends to the outside of polygonal hole 23 and extends to the inside and the fixedly connected with stirring strip 26 of material concentration awl cover 11.
The material concentration conical cover stirring device further comprises a scraping mechanism 3, the scraping mechanism 3 comprises a limiting sliding groove 31 and an eccentric circular groove 36, the limiting sliding groove 31 is formed in the surface of the stirring strip 26, a scraping groove rubber strip 32 is inserted into the limiting sliding groove 31 in a sliding mode, the other end of the scraping groove rubber strip 32 extends to the outside of the limiting sliding groove 31 and is fixedly connected with a scraping groove rubber sleeve 33, the scraping groove rubber sleeve 33 is buckled on the outside of the stirring strip 26 in a sliding mode, the scraping groove rubber sleeve 33 is connected with the inner wall of the material concentration conical cover 11 in a sliding mode, a scraping groove restraining sleeve 34 is fixedly sleeved on the outside of the scraping groove rubber sleeve 33, the scraping groove restraining sleeve 34 is connected with the inner wall of the material concentration conical cover 11 in a sliding mode, a scraping groove column 35 is fixedly connected to the bottom face of the scraping groove restraining sleeve 34, the eccentric circular groove 36 is formed in the inner wall of the material concentration conical cover 11 in a sliding mode, the scraping groove column 35 is inserted into the eccentric circular groove 36 in a sliding mode, a chamfering surface 37 is arranged at the end portion of the scraping groove rubber strip 32, the scraping groove chamfer surface 37 is positioned on one side of the scraping groove rubber strip 32 close to the scraping groove rubber sleeve 33.
Still include low level stopper 4, low level stopper 4 includes insulating block 41, insulating block 41 fixed connection just is located its left end on the top surface of mixing drum 15, installation cavity 42 has been seted up to the inside of insulating block 41, the activity has cup jointed rotary rod 43 between the left and right sides face of installation cavity 42 inner chamber, the outside activity of rotary rod 43 has cup jointed the energy storage clockwork spring 44 that is located its right-hand member, the one end fixed connection of energy storage clockwork spring 44 is on the surface of rotary rod 43, the other end fixed connection of energy storage clockwork spring 44 is on the inner wall of installation cavity 42, the external fixation of rotary rod 43 has cup jointed and is located the left take-up pulley 45 of energy storage clockwork spring 44, the outside winding of take-up pulley 45 has pull wire 46, the other end of pull wire 46 extends to the inside of mixing drum 15.
Still include low level monitoring structure 5, low level monitoring structure 5 includes transmission screw thread 51, only revolve recess 54, lead electrical pillar 56 and electrically conductive shell fragment 57, transmission screw thread 51 is established in the outside of rotary rod 43 and is located its left end, the external screw thread of transmission screw thread 51 has cup jointed interior screw thread circle 52, the surperficial fixedly connected with of interior screw thread circle 52 ends spiral arm board 53, only revolve recess 54 and offer on the inner wall of installation cavity 42, only revolve arm board 53 and slide the grafting in the inside of only revolving recess 54, fixedly connected with L type insulating ejector pin 55 on the top surface of interior screw thread circle 52, lead electrical pillar 56, the equal fixed connection of electrically conductive shell fragment 57 is on the left surface of installation cavity 42 inner chamber, the top of electrically conductive shell fragment 57 is located between electrically conductive 56 and the L type insulating ejector pin 55, electrically conductive shell fragment 57 and electrically conductive 56 looks adaptation, electrically conductive shell fragment 57 and L type insulating ejector pin 55 looks adaptation.
The high-position locking device further comprises a high-position locking structure 6, the high-position locking structure 6 comprises a locking flat pipe 61, the locking flat pipe 61 is fixedly connected to the top surface of the mixing cylinder 15 and is positioned at the right end of the mixing cylinder, an unlocking electromagnet 62 is fixedly connected to the left side surface of the inner cavity of the locking flat pipe 61, a magnetic piston 63 is inserted in the locking flat pipe 61 in a sliding mode, the magnetic piston 63 is positioned at the right end of the locking flat pipe 61, a locking plate 64 is fixedly connected to the right side surface of the magnetic piston 63, the locking plate 64 is movably inserted to the right side surface of the locking flat pipe 61, a locking groove 65 is formed in the right side surface of the locking plate 64, a guide force surface 66 is formed in the left side surface of the inner cavity of the locking groove 65, a locking strip 67 is fixedly connected to the surface of the magnetic piston 63, a locking hole 68 is formed in the surface of the locking flat pipe 61, the end portion of the locking strip 67 penetrates through the locking track hole 68 and extends to the outside of the locking strip, a locking slide rod 69 is movably sleeved on the locking strip 67, the two ends of the locking slide bar 69 are fixedly connected with a positioning baffle 60, the positioning baffle 60 is fixedly connected to the surface of the locking flat tube 61, a locking spring 610 positioned on the left side of the locking strip 67 is movably sleeved outside the locking slide bar 69, the right end of the locking spring 610 is fixedly connected with the locking strip 67, and the left end of the locking spring 610 is fixedly connected with one positioning baffle 60.
The cleaning device also comprises a cleaning structure 7, the cleaning structure 7 comprises a cleaning disc 71, the cleaning disc 71 is positioned inside the mixing cylinder 15, the end part of the traction wire 46 is fixedly connected to the top surface of the cleaning disc 71, a rotation stopping rod 72 is fixedly connected to the top surface of the cleaning disc 71, the top end of the rotation stopping rod 72 extends to the outside of the mixing cylinder 15, the rotation stopping rod 72 is movably inserted on the top surface of the mixing cylinder 15, the rotation stopping rod 72 is movably clamped inside the locking groove 65, a clamping ring groove 77 is formed in the surface of one rotation stopping rod 72, the clamping ring groove 77 is matched with the guide force surface 66 and clamped with the locking plate 64, a through hole 73 positioned in the middle part of the cleaning disc 71 is formed in the cleaning disc 71, the stirring rod 21 is movably inserted inside the through hole 73, a spiral groove 74 is formed in the inner wall of the through hole 73, the through hole 73 and the spiral groove 74 can be provided with cleaning rubber strips, the cleaning effect is improved, the upper end and the lower end of the spiral groove 74 are both open, the spiral vortex plate 22 is matched with the spiral groove 74, the side surface of the dirt cleaning disc 71 is provided with an embedded ring groove 75, an annular air bag 76 is fixedly embedded inside the embedded ring groove 75, and the annular air bag 76 is connected with the inner wall of the mixing barrel 15 in a sliding mode.
The working principle is as follows:
kitchen waste and medicines are added into a charging hopper 16 firstly, then the kitchen waste and the medicines enter a mixing cylinder 15 along the charging hopper 16 and fall into a material concentration conical cover 11 until the kitchen waste submerges two thirds of a spiral vortex plate 22, then a stirring motor 17 is started through an intelligent power distribution cabinet 18, then the stirring motor 17 drives a stirring rod 21 to rotate slowly, then the stirring rod 21 drives the spiral vortex plate 22 to rotate, then the spiral vortex plate 22 exerts upward lifting force on the kitchen waste at the central part of the mixing cylinder 15, then the kitchen waste at the central part of the mixing cylinder 15 moves vertically upwards, then the original kitchen waste in the material concentration conical cover 11 moves upwards along the central area thereof under the hydraulic action, then the kitchen waste which moves upwards along the central area of the mixing cylinder 15 flows to the edge part of the mixing cylinder 15 at the highest point, and then the kitchen waste flows downwards along the edge area inside the mixing cylinder 15 and enters the material concentration conical cover 11 The kitchen waste in the mixing cylinder 15 flows upwards in the center and flows downwards at the edge, which is helpful for increasing the uniformity of mixing, then the stirring rod 21 drives the stirring strip 26 to rotate through the polygonal hole 23 and the polygonal column 25, then the stirring strip 26 stirs the kitchen waste in the material concentration conical cover 11, so that the kitchen waste and the medicine are mixed more uniformly, when the kitchen waste and the medicine are mixed uniformly, the stirring motor 17 is closed, the discharge valve 14 is opened, then the kitchen waste in the mixing cylinder 15 and the material concentration conical cover 11 is discharged through the discharge pipe 13, then the kitchen waste in the material concentration conical cover 11 and the mixing cylinder 15 is completely discharged, then the cleaning function of the intelligent power distribution cabinet 18 is started, the unlocking electromagnet 62 is started by the intelligent power distribution cabinet 18, then the unlocking electromagnet 62 magnetically attracts the magnetic piston 63, then the magnetic piston drives the locking plate 64 to move towards the interior of the locking flat pipe 61, then the locking plate 64 is separated from the snap ring groove 77, then the rotation stopping rod 72 is released, then the cleaning structure 7 is pressed on the top end of the spiral scroll 22 under the action of gravity, then the stirring motor 17 is reversely started through the intelligent power distribution cabinet 18, then the stirring motor 17 reversely rotates with the spiral scroll 22 carried by the stirring rod 21, then the top end of the spiral scroll 22 slides on the bottom surface of the cleaning disc 71, then the top end of the spiral scroll 22 is inserted into the spiral groove 74 and applies downward pressure on the cleaning disc 71 under the action of thread matching, then the cleaning disc 71 moves downwards, then the through hole 73 can clean the adhered matters on the surface of the stirring rod 21, then the spiral scroll 22 slides in the spiral groove 74, the spiral groove 74 can clean the adhered matters on the spiral scroll 22, then the cleaning disc moves downwards with the annular air bag 76 carried by the annular air bag 71, then the annular air bag 76 slides downwards on the inner wall of the mixing cylinder 15, then the annular air bag 76 scrapes the adhered objects on the inner wall of the mixing tube 15, the scraped adhered objects fall into the material concentration conical cover 11 under the pushing of the cleaning structure 7 and the self gravity, in the process that the cleaning structure 7 moves downwards, the cleaning disc 71 pulls the pull wire 46, then the pull wire 46 is released from the outside of the take-up pulley 45 and drives the take-up pulley 45 to rotate, then the take-up pulley 45 drives the rotating rod 43 to rotate, then the rotating rod 43 does work on the energy storage clockwork spring 44, the torsional potential energy of the energy storage clockwork spring 44 is increased, simultaneously the rotating rod 43 drives the transmission thread 51 to rotate, then the inner thread ring 52 drives the L-shaped insulating ejector rod 55 to move leftwards under the thread matching effect between the inner thread ring 52 and the transmission thread 51, then the polygonal column 25 drives the stirring strip 26 to press on the inner wall of the material concentration conical cover 11 under the elastic force of the polygonal column 25, and then the stirring rod 21 passes through the polygonal hole 23, The polygonal column 25 drives the stirring strip 26 to rotate, then the stirring strip 26 scrapes the adhered objects on the inner wall of the material concentration conical cover 11, a centripetal force is applied to the adhered objects to move the adhered objects to the discharging pipe 13, then the stirring strip 26 drives the scraping strip mechanism 3 to rotate, meanwhile, the scraping groove restraining sleeve 34 drives the scraping groove column 35 to slide in the eccentric circular groove 36, the adhered objects in the eccentric circular groove 36 can be scraped out, then the eccentric circular groove 36 applies a thrust force to the scraping groove restraining sleeve 34 through the scraping groove column 35 to enable the scraping groove restraining sleeve 34 to move along the track of the eccentric circular groove 36, then the scraping groove restraining sleeve 34 drives the scraping groove rubber sleeve 33 and the scraping groove rubber strip 32 to alternately perform centripetal motion and centrifugal motion, so that the scraping groove rubber sleeve 33 and the scraping groove rubber strip 32 slide back and forth on the surface of the stirring strip 26, and the adhered objects in the limiting sliding groove 31 can be scraped out, the cleaning is unnecessary to be manually cleaned, the cleaning efficiency is high, the cleaning time is short, then the L-shaped insulating ejector pin 55 applies pressure to the conductive elastic piece 57, then the conductive elastic piece 57 bends and contacts with the conductive post 56, at the moment, the cleaning structure 7 moves downwards to the bottom end of the spiral vortex plate 22, then the intelligent power distribution cabinet 18 starts the stirring motor 17 in the forward direction and closes the unlocking electromagnet 62, then the stirring motor 17 drives the spiral vortex plate 22 to rotate in the forward direction through the stirring rod 21, then the spiral vortex plate 22 moves upwards through the thread fit between the spiral vortex plate and the spiral groove 74, then the traction wire 46 relaxes, the energy storage spring 44 drives the rotating rod 43 to rotate reversely, the rotating rod 43 drives the conductive post 45 to rotate reversely, the traction wire 46 is wound towards the outside of the take-up wheel 45, meanwhile, the inner thread ring 52 drives the L-shaped insulating ejector pin 55 under the thread fit between the inner thread ring 52 and the transmission thread 51 to move rightwards, then the conductive elastic piece 57 recovers and is separated from the conductive post 56, then the cleaning structure 7 moves upwards to the highest point, then the top end of the spiral scroll 22 moves out of the inner part of the spiral groove 74 and slides on the bottom surface of the cleaning disc 71, in the process, the guiding surface 66 slides on the surface of the rotation stopping rod 72, then the locking plate 64 is aligned with the clamping ring groove 77, then the locking strip 67 moves rightwards under the action of the elastic force of the locking spring 610 through the magnetic piston 63 with the locking plate 64, then the locking plate 64 is clamped into the clamping ring groove 77, the rotation stopping rod 72 is fixed, further the cleaning structure 7 is fixed, and the resetting is completed.
The above; but are merely preferred embodiments of the invention; the scope of the invention is not limited thereto; any person skilled in the art is within the technical scope of the present disclosure; the technical scheme and the improved concept of the invention are equally replaced or changed; are intended to be covered by the scope of the present invention.

Claims (6)

1. The utility model provides a surplus for rubbish from cooking preparation agitated vessel for fertilizer, includes agitator (1), its characterized in that: cone cover (11) is concentrated including the material in agitator (1), fixedly connected with supporting leg (12) on the bottom surface of cone cover (11) is concentrated to the material, the bottom mounting intercommunication of cone cover (11) is concentrated to the material has discharge tube (13), be equipped with discharge valve (14) on the pipeline of discharge tube (13), fixed intercommunication has mixing drum (15) on the top of cone cover (11) is concentrated to the material, fixed intercommunication has loading hopper (16) that is located its top on the right flank of mixing drum (15), fixed mounting has agitator motor (17) and intelligent power distribution cabinet (18) on the top surface of mixing drum (15), the inside of mixing drum (15) is equipped with stirring rake (2), the bottom fixed connection of output shaft on the top of stirring rake (2) and agitator motor (17).
2. The stirring device for preparing fertilizer from kitchen waste as claimed in claim 1, wherein: stirring rake (2) are including puddler (21), the bottom fixed connection of output shaft on the top of puddler (21) and agitator motor (17), fixedly connected with spiral vortex board (22) on the surface of puddler (21), spiral vortex board (22) are located the inside of mixing drum (15), polygonal hole (23) have been seted up on the bottom surface of puddler (21), the top surface of polygonal hole (23) inner chamber is connected with polygon post (25) through compression spring (24) transmission, polygon post (25) slip is pegged graft in the inside of polygonal hole (23), the bottom of polygon post (25) extends to the outside of polygonal hole (23) and extends to the inside and the fixedly connected with stirring bar (26) of material concentration awl cover (11).
3. The stirring device for preparing the fertilizer from the kitchen waste as claimed in claim 2, wherein: still include low position stopper (4), low position stopper (4) include insulating block (41), insulating block (41) fixed connection just is located its left end on the top surface of mixing section of thick bamboo (15), installation cavity (42) have been seted up to the inside of insulating block (41), rotary rod (43) have been cup jointed in the activity between the left and right sides face of installation cavity (42) inner chamber, energy storage clockwork spring (44) that are located its right-hand member have been cup jointed in the outside activity of rotary rod (43), the one end fixed connection of energy storage clockwork spring (44) is on the surface of rotary rod (43), the other end fixed connection of energy storage clockwork spring (44) is on the inner wall of installation cavity (42), the external fixation of rotary rod (43) has cup jointed and is located the left take-up pulley (45) of energy storage clockwork spring (44), the outside winding of take-up pulley (45) has pull wire (46), the other end of pull wire (46) extends to the inside of mixing section of thick bamboo (15).
4. The stirring equipment for preparing the fertilizer from the kitchen waste as claimed in claim 3, wherein: the device is characterized by further comprising a low-position monitoring structure (5), wherein the low-position monitoring structure (5) comprises a transmission thread (51), a rotation stopping groove (54), a conductive column (56) and a conductive elastic sheet (57), the transmission thread (51) is arranged outside the rotating rod (43) and positioned at the left end of the rotating rod, an inner thread ring (52) is sleeved on the outer thread of the transmission thread (51), a rotation stopping arm plate (53) is fixedly connected to the surface of the inner thread ring (52), the rotation stopping groove (54) is arranged on the inner wall of the mounting cavity (42), the rotation stopping arm plate (53) is slidably inserted into the rotation stopping groove (54), an L-shaped insulating ejector rod (55) is fixedly connected to the top surface of the inner thread ring (52), the conductive column (56) and the conductive elastic sheet (57) are both fixedly connected to the left side surface of the inner cavity of the mounting cavity (42), the top end of the conductive elastic sheet (57) is positioned between the conductive column (56) and the L-shaped insulating ejector rod (55), the conductive elastic sheet (57) is matched with the conductive column (56), and the conductive elastic sheet (57) is matched with the L-shaped insulating ejector rod (55).
5. The stirring device for preparing fertilizer from kitchen waste as claimed in claim 4, wherein: the high-order locking structure comprises a locking flat pipe (61), the locking flat pipe (61) is fixedly connected to the top surface of the mixing drum (15) and located at the right end of the mixing drum, an unlocking electromagnet (62) is fixedly connected to the left side surface of an inner cavity of the locking flat pipe (61), a magnetic piston (63) is inserted into the locking flat pipe (61) in a sliding mode, the magnetic piston (63) is located at the right end of the locking flat pipe (61), a locking plate (64) is fixedly connected to the right side surface of the magnetic piston (63), the locking plate (64) is movably inserted into the right side surface of the locking flat pipe (61), a locking groove (65) is formed in the right side surface of the locking plate (64), a guide force surface (66) is formed in the left side surface of the inner cavity of the locking groove (65), a locking strip (67) is fixedly connected to the surface of the magnetic piston (63), a locking track hole (68) is formed in the surface of the locking flat pipe (61), the end part of the locking strip (67) penetrates through the locking rail hole (68) and extends to the outside of the locking strip, a locking sliding rod (69) is movably sleeved on the locking strip (67), two end parts of the locking sliding rod (69) are fixedly connected with positioning baffles (60), the positioning baffles (60) are fixedly connected to the surface of the locking flat tube (61), a locking spring (610) located on the left side of the locking strip (67) is movably sleeved on the outside of the locking sliding rod (69), the right end of the locking spring (610) is fixedly connected with the locking strip (67), and the left end of the locking spring (610) is fixedly connected with one positioning baffle (60).
6. The stirring device for preparing fertilizer from kitchen waste as claimed in claim 5, wherein: the cleaning device is characterized by further comprising a cleaning structure (7), the cleaning structure (7) comprises a cleaning disc (71), the cleaning disc (71) is located inside the mixing cylinder (15), the end part of the traction wire (46) is fixedly connected to the top surface of the cleaning disc (71), a rotation stopping rod (72) is fixedly connected to the top surface of the cleaning disc (71), the top end of the rotation stopping rod (72) extends to the outside of the mixing cylinder (15), the rotation stopping rod (72) is movably inserted into the top surface of the mixing cylinder (15), the rotation stopping rod (72) is movably clamped inside the locking groove (65), a clamping ring groove (77) is formed in the surface of the rotation stopping rod (72), the clamping ring groove (77) is matched with the guide force surface (66) and clamped with the locking plate (64), a through hole (73) located in the middle part of the cleaning disc (71) is formed in the inside of the cleaning disc (71), and the stirring rod (21) is movably inserted into the through hole (73), the inner wall of the through hole (73) is provided with a spiral groove (74), the upper end and the lower end of the spiral groove (74) are both in an open shape, the spiral vortex plate (22) is matched with the spiral groove (74), the side surface of the dirt cleaning disc (71) is provided with an embedded ring groove (75), an annular air bag (76) is fixedly embedded inside the embedded ring groove (75), and the annular air bag (76) is connected with the inner wall of the mixing cylinder (15) in a sliding mode.
CN202210432940.2A 2022-04-24 2022-04-24 Stirring equipment for preparing fertilizer from kitchen garbage Pending CN114588808A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202210432940.2A CN114588808A (en) 2022-04-24 2022-04-24 Stirring equipment for preparing fertilizer from kitchen garbage

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202210432940.2A CN114588808A (en) 2022-04-24 2022-04-24 Stirring equipment for preparing fertilizer from kitchen garbage

Publications (1)

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CN114588808A true CN114588808A (en) 2022-06-07

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116392395A (en) * 2023-04-14 2023-07-07 中国人民解放军空军军医大学 Drug delivery device for pediatric digestive infection treatment
CN117410007A (en) * 2023-10-18 2024-01-16 湖北兆丰矿业有限公司 Bentonite powder for grounding resistance reduction

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JP2015160767A (en) * 2014-02-27 2015-09-07 中部エコテック株式会社 Waste treatment apparatus
CN111871290A (en) * 2020-08-10 2020-11-03 于伟 Self-circulation pesticide processing hybrid system
CN215654881U (en) * 2021-09-08 2022-01-28 淄博倍尔科新型材料有限公司 Compound blending stirring normal pressure equipment
CN215842987U (en) * 2021-09-14 2022-02-18 三象聚合物(湖北)有限公司 Curing agent production is with multistage reation kettle
CN216260288U (en) * 2021-12-07 2022-04-12 武汉韩邦机电设备有限公司 Non ferrous metal powder processingequipment

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015160767A (en) * 2014-02-27 2015-09-07 中部エコテック株式会社 Waste treatment apparatus
CN111871290A (en) * 2020-08-10 2020-11-03 于伟 Self-circulation pesticide processing hybrid system
CN215654881U (en) * 2021-09-08 2022-01-28 淄博倍尔科新型材料有限公司 Compound blending stirring normal pressure equipment
CN215842987U (en) * 2021-09-14 2022-02-18 三象聚合物(湖北)有限公司 Curing agent production is with multistage reation kettle
CN216260288U (en) * 2021-12-07 2022-04-12 武汉韩邦机电设备有限公司 Non ferrous metal powder processingequipment

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116392395A (en) * 2023-04-14 2023-07-07 中国人民解放军空军军医大学 Drug delivery device for pediatric digestive infection treatment
CN116392395B (en) * 2023-04-14 2024-05-17 中国人民解放军空军军医大学 Drug delivery device for pediatric digestive infection treatment
CN117410007A (en) * 2023-10-18 2024-01-16 湖北兆丰矿业有限公司 Bentonite powder for grounding resistance reduction
CN117410007B (en) * 2023-10-18 2024-04-05 湖北兆丰矿业有限公司 A water bath magnetic stirring device for earth falls to hinder with bentonite powder

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