CN111875428A - Biological organic fertilizer production fermentation vat - Google Patents

Biological organic fertilizer production fermentation vat Download PDF

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Publication number
CN111875428A
CN111875428A CN202010826035.6A CN202010826035A CN111875428A CN 111875428 A CN111875428 A CN 111875428A CN 202010826035 A CN202010826035 A CN 202010826035A CN 111875428 A CN111875428 A CN 111875428A
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fermentation
frame
plate
pressurizing
organic fertilizer
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汤先忠
黄三妹
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    • CCHEMISTRY; METALLURGY
    • C05FERTILISERS; MANUFACTURE THEREOF
    • C05FORGANIC FERTILISERS NOT COVERED BY SUBCLASSES C05B, C05C, e.g. FERTILISERS FROM WASTE OR REFUSE
    • C05F17/00Preparation of fertilisers characterised by biological or biochemical treatment steps, e.g. composting or fermentation
    • C05F17/90Apparatus therefor
    • C05F17/964Constructional parts, e.g. floors, covers or doors
    • CCHEMISTRY; METALLURGY
    • C05FERTILISERS; MANUFACTURE THEREOF
    • C05FORGANIC FERTILISERS NOT COVERED BY SUBCLASSES C05B, C05C, e.g. FERTILISERS FROM WASTE OR REFUSE
    • C05F17/00Preparation of fertilisers characterised by biological or biochemical treatment steps, e.g. composting or fermentation
    • C05F17/90Apparatus therefor
    • 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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  • Chemical & Material Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Biochemistry (AREA)
  • Biotechnology (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Microbiology (AREA)
  • Molecular Biology (AREA)
  • Organic Chemistry (AREA)
  • Fertilizers (AREA)

Abstract

The invention relates to a biological organic fertilizer production fermentation tank which comprises a bottom plate, a collection frame, a fermentation device and a pressurizing device, wherein the collection frame is installed at the upper end of the bottom plate, the fermentation device is arranged above the collection frame, and the fermentation device is installed on the bottom plate through a support rod. The invention can solve the problems that when organic fertilizers are fermented in some fermentation tanks, the organic fertilizers can not be pressurized when the amount of the organic fertilizers in the fermentation tanks is small, so that the fermentation efficiency of the organic fertilizers is reduced, the fermentation time of the organic fertilizers is prolonged, and when the amount of the organic fertilizers in the fermentation tanks is large, the organic fertilizers can not be gradually fermented, the organic fertilizers in the fermentation can not be stirred, the unfermented fertilizers and the fermented fertilizers are not favorably mixed, so that the fermentation rate of the organic fertilizers is reduced, and meanwhile, the fertilizers at the bottom of the fermentation tanks can not be discharged when the materials are discharged after the fermentation is finished, so that the fertilizer waste phenomenon is easy to occur, and the like.

Description

Biological organic fertilizer production fermentation vat
Technical Field
The invention relates to the technical field of fertilizer production, in particular to a fermentation tank for producing a biological organic fertilizer.
Background
Because the modern level of the existing agriculture is higher and higher, organic food is more and more valued by people, organic fertilizer can gradually replace other fertilizers to become a necessary fertilizer for the growth of crops, and the organic fertilizer is prepared by taking by-product resources rich in organic matters such as excrement of animals or animal and plant residues as main raw materials and fermenting and decomposing the main raw materials; the organic fertilizer has the characteristics of improving soil, fertilizing soil fertility, improving soil nutrient activity, purifying soil ecological environment, guaranteeing high quality, high yield and high benefit of vegetables and the like, and is an irreplaceable fertilizer for greenhouse vegetable cultivation.
At present, when the existing fermentation tank is used for fermenting organic fertilizers, the following defects generally exist: 1. the existing fermentation tank can not pressurize the organic fertilizer when the amount of the organic fertilizer in the fermentation tank is small, so that the fermentation efficiency of the organic fertilizer is reduced, the fermentation time of the organic fertilizer is prolonged, and the organic fertilizer can not be gradually fermented when the amount of the organic fertilizer in the fermentation tank is large, so that the organic fertilizer in the fermentation can not be stirred, and the mixing of the unfermented fertilizer and the fermented fertilizer is not facilitated, so that the fermentation rate of the organic fertilizer is reduced; 2. the existing fermentation tank can not discharge the fertilizer at the bottom of the fermentation tank when the fermentation is finished and the fertilizer is discharged, so that the utilization rate of the organic fertilizer is reduced, and the phenomenon of fertilizer waste is easy to occur.
Disclosure of Invention
Technical problem to be solved
The invention can solve the problems that when organic fertilizers are fermented in some fermentation tanks, the organic fertilizers can not be pressurized when the amount of the organic fertilizers in the fermentation tanks is small, so that the fermentation efficiency of the organic fertilizers is reduced, the fermentation time of the organic fertilizers is prolonged, and when the amount of the organic fertilizers in the fermentation tanks is large, the organic fertilizers can not be gradually fermented, the organic fertilizers in the fermentation can not be stirred, so that the unfermented fertilizers and the fermented fertilizers are not favorably mixed, so that the fermentation speed of the organic fertilizers is reduced, and meanwhile, when the fertilizers at the bottom of the fermentation tanks are discharged after the fermentation is finished, so that the utilization rate of the organic fertilizers is reduced, the phenomenon of fertilizer waste is easy to occur, and the like.
(II) technical scheme
In order to achieve the purpose, the invention adopts the following technical scheme that the fermentation tank for producing the biological organic fertilizer comprises a bottom plate, a collecting frame, a fermentation device and a pressurizing device, wherein the collecting frame is installed at the upper end of the bottom plate, the fermentation device is arranged above the collecting frame, the fermentation device is installed on the bottom plate through a supporting rod, and the pressurizing device is installed at the upper end of the fermentation device.
The fermentation device comprises a fermentation frame, a stirring roller, a driving mechanism, a transmission belt, a motion belt, a sealing cover, an auxiliary mechanism, a jacking push rod and a telescopic rod, wherein the fermentation frame is arranged on a bottom plate through a support rod, the inner wall of the fermentation frame is uniformly connected with the stirring roller through a bearing, a sealing ring is arranged between the front end of the stirring roller and the front side wall of the fermentation frame, the driving mechanism is arranged at the front end of the stirring roller, the driving mechanism is arranged on the front end surface of the fermentation frame, the transmission belt is symmetrically connected below the stirring roller in a sliding fit mode, the transmission belt is connected with the side wall of the fermentation frame through a bearing, the motion belt is symmetrically arranged between the transmission belts in a left-right mode, the motion belt is connected with the side wall of the fermentation frame through a bearing, the motion belt is slidably connected with the stirring roller, a discharge chute is uniformly arranged on the lower, the left and right sides of the side wall of the discharge chute are symmetrically provided with auxiliary mechanisms which are connected with the fermentation frame through pin shafts, the auxiliary mechanisms are connected with the sealing cover through steel wire ropes, the left side of the lower end of the sealing cover is provided with a jacking push rod, the lower end of the jacking push rod is arranged on a bottom plate, a telescopic rod is arranged between the right side of the lower end of the sealing cover and the bottom plate, when the fermentation device works in detail, firstly, organic fertilizers are poured into the fermentation frame in a manual mode, then, a driving mechanism is started manually, the driving mechanism drives a stirring roller to stir the organic fertilizers, unfermented fertilizers are mixed with the fermented fertilizers conveniently, so that the fermentation speed of the organic fertilizers is improved, finally, after the fermentation of the organic fertilizers is finished, the jacking push rod is started manually, the jacking push rod drives the sealing, thereby improving the utilization rate of the organic fertilizer and avoiding the waste of the fertilizer.
The pressurizing device comprises a pressurizing plate, a connecting spring, a sealing plate, a turning roller, a sliding mechanism, a rotating roller, a rotating motor and a pressurizing mechanism, wherein the pressurizing plate is connected to the inner wall of the fermentation frame in a sliding fit manner, the connecting spring is symmetrically arranged at the lower end of the pressurizing plate in the left-right direction, the lower end of the connecting spring is arranged on the fermentation frame, blanking holes are uniformly formed in the pressurizing plate, the sealing plate is symmetrically arranged on the side wall of the blanking holes in the left-right direction, the sealing plate is connected with the pressurizing plate through a pin shaft, the turning roller is arranged above the sealing plate, the turning roller is arranged on the pressurizing plate through a roller frame, the sliding mechanism is symmetrically arranged on the side wall of the fermentation frame in the left-right direction, the rotating roller is arranged at the upper end of the sliding mechanism through a rotating frame, the rotating motor is connected to, the loading system is installed to the presser plate upper end, and the loading system rear end is installed on the fermentation frame, and concrete during operation, when the organic fertilizer in the fermentation frame is less, the manual start rotating electrical machines, the rotating electrical machines passes through the rotatory roller and drives the closing plate closed, later, the manual start loading system, and the loading system drives the presser plate and pressurizes to fermentation frame inside to the fermentation efficiency of organic fertilizer has been improved.
As a preferred technical scheme of the invention, the driving mechanism comprises a transmission gear, a driving motor, a rotating gear and a belt pulley, the front end of the fermentation frame is bilaterally and symmetrically connected with the transmission gear through a bearing, the transmission gears are engaged with each other, the front end of the transmission gear on the right side is connected with the driving motor, the driving motor is arranged on the front end surface of the fermentation frame, the rotating gear is arranged on the outer side of the driving motor bilaterally and symmetrically, the rotating gear on the inner side is engaged with the transmission gear, the rotating gear is arranged on the stirring roller, the belt pulley is arranged at the front end of the rotating gear, the belt pulleys on the same side are connected through a belt, when the stirring roller works, the driving motor is started manually, and the driving motor drives the.
As a preferred technical scheme, the auxiliary mechanism comprises a rotating frame, an extension plate, an extension spring and a return spring, the rotating frame is connected with the lower wall of the fermentation frame through a pin shaft, the extension plate is connected inside the rotating frame in a sliding fit mode, the extension spring is connected between the extension plate and the rotating frame, the return spring is connected between the lower end of the rotating frame and the lower wall of the fermentation frame, the lower end of the rotating frame is connected with a sealing cover through a steel wire rope, during specific work, the sealing cover pulls the rotating frame to rotate through the steel wire rope, and the extension plate gradually extends out when the rotating frame rotates, so that the function of inclining the rotating frame is achieved, and blanking of organic fertilizers is facilitated.
As a preferred technical scheme of the invention, the sliding mechanism comprises a movable rod, a bearing plate and an auxiliary spring, the movable rod is arranged on the side wall of the fermentation frame, the bearing plate is arranged at the upper end of the movable rod and is connected with the side wall of the fermentation frame in a sliding fit manner, the auxiliary spring is connected to the outer surface of the movable rod, and the bearing plate realizes the sliding function through the movable rod during specific work.
As a preferred technical scheme of the invention, the pressurizing mechanism comprises an electric push rod, a connecting plate and a connecting rod, the electric push rod is arranged on the upper end surface of the rear side wall of the fermentation frame, the connecting plate is arranged at the top end of the electric push rod, the connecting rod is uniformly arranged on the lower end surface of the connecting plate, the lower end of the connecting rod is arranged on the pressurizing plate, when the pressurizing mechanism works, the electric push rod is manually started, and the electric push rod drives the connecting rod to push the pressurizing plate through the connecting plate, so that the pressurizing function is realized.
As a preferred technical scheme of the invention, the outer surface of the stirring roller is uniformly provided with stirring blades, the outer surface of the stirring roller is uniformly provided with pushing plates, and the pushing plates are positioned among the stirring blades.
As a preferred technical scheme of the invention, the side wall of the pressurizing plate is uniformly provided with a sealing sleeve, and a sealing gasket is arranged between the pressurizing plate and the sealing plate.
As a preferred technical scheme of the invention, the outer surface of the transmission belt is uniformly provided with the baffle plates, the baffle plates are in sliding fit with the stirring roller, the structure of the moving belt is consistent with that of the transmission belt, and when the stirring device works, the baffle plates are matched with the pushing plate on the stirring roller to realize the function of driving the transmission belt to rotate.
(III) advantageous effects
1. According to the biological organic fertilizer production fermentation tank provided by the invention, the organic fertilizer can be subjected to pressurization treatment when the amount of the organic fertilizer in the fermentation tank is small, so that the fermentation efficiency of the organic fertilizer is improved, and the fermentation time of the organic fertilizer is reduced;
2. according to the biological organic fertilizer production fermentation tank provided by the invention, when the amount of organic fertilizer in the fermentation tank is large, the organic fertilizer can be gradually fermented, the organic fertilizer in fermentation can be stirred, and the unfermented fertilizer and the fermented fertilizer can be conveniently mixed, so that the fermentation rate of the organic fertilizer is increased;
3. according to the biological organic fertilizer production fermentation tank provided by the invention, when the fermentation is finished and the material is discharged, the fertilizer at the bottom of the fermentation tank can be discharged, so that the utilization rate of the organic fertilizer is improved, and the phenomenon of fertilizer waste is avoided.
Drawings
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a front view of the present invention;
FIG. 2 is a left side view of the present invention;
FIG. 3 is a cross-sectional view A-A of FIG. 2 of the present invention;
FIG. 4 is an enlarged view of the invention taken in the direction of N in FIG. 3;
fig. 5 is an enlarged view of the invention in the direction X in fig. 3.
Detailed Description
The embodiments of the invention will be described in detail below with reference to the drawings, but the invention can be implemented in many different ways as defined and covered by the claims.
As shown in fig. 1 to 5, a biological organic fertilizer production fermentation vat, includes bottom plate 1, collects frame 2, fermenting installation 3 and pressure device 4, bottom plate 1 upper end install and collect frame 2, collect frame 2 top and be provided with fermenting installation 3, fermenting installation 3 passes through the bracing piece and installs on bottom plate 1, fermenting installation 3 upper end installs pressure device 4.
The fermentation device 3 comprises a fermentation frame 31, a stirring roller 32, a driving mechanism 33, a transmission belt 34, a motion belt 35, a sealing cover 36, an auxiliary mechanism 37, a jacking push rod 38 and a telescopic rod 39, wherein the fermentation frame 31 is installed on the bottom plate 1 through a supporting rod, the inner wall of the fermentation frame 31 is uniformly connected with the stirring roller 32 through a bearing, a sealing ring is arranged between the front end of the stirring roller 32 and the front side wall of the fermentation frame 31, the driving mechanism 33 is installed at the front end of the stirring roller 32, the driving belt 34 is symmetrically connected below the stirring roller 32 in a sliding fit mode, the transmission belt 34 is connected with the side wall of the fermentation frame 31 through a bearing, the motion belt 35 is symmetrically arranged between the transmission belts 34 in a left-right mode, the motion belt 35 is connected with the side wall of the fermentation frame 31 through a bearing, the motion belt 35 is connected with the stirring roller 32 in a sliding manner, a, the side wall of the discharge chute is connected with a sealing cover 36 in a sliding fit mode, a sealing ring is arranged between the sealing cover 36 and the lower wall of the fermentation frame 31, auxiliary mechanisms 37 are symmetrically arranged on the left and right of the side wall of the discharge chute, the auxiliary mechanisms 37 are connected with the fermentation frame 31 through pin shafts, the auxiliary mechanisms 37 are connected with the sealing cover 36 through steel wire ropes, a jacking push rod 38 is arranged on the left side of the lower end of the sealing cover 36, the lower end of the jacking push rod 38 is arranged on the bottom plate 1, and an expansion link 39 is arranged between the right side of the lower end of the sealing cover 36 and the bottom plate 1. Manually start jacking push rod 38, jacking push rod 38 drives sealed lid 36 and opens, and in organic fertilizer had fallen into collection frame 2 from fermentation frame 31, stirring roller 32 got rid of the organic fertilizer through drive belt 34 and motion area 35 to improve the utilization ratio of organic fertilizer, avoided the waste of fertilizer.
Stirring roller 32 surface evenly be provided with the stirring leaf, stirring roller 32 surface evenly is provided with the slurcam, the slurcam is located between the stirring leaf, during specific work, the stirring leaf realizes the function of stirring.
The driving mechanism 33 comprises a transmission gear 331, a driving motor 332, a rotating gear 333 and a belt pulley 334, the front end of the fermentation frame 31 is bilaterally symmetrically connected with the transmission gear 331 through a bearing, the transmission gear 331 is engaged with each other through gears, the front end of the transmission gear 331 positioned on the right side is connected with the driving motor 332, the driving motor 332 is installed on the front end face of the fermentation frame 31, the rotating gear 333 is symmetrically arranged on the outer side of the driving motor 332, the rotating gear 333 positioned on the inner side is engaged with the transmission gear 331, the rotating gear 333 is installed on the stirring roller 32, the belt pulley 334 is installed at the front end of the rotating gear 333, the belt pulleys 334 positioned on the same side are connected through a belt, during specific work, the driving motor 332 is started manually, and the driving motor 332 drives the rotating gear 333.
The outer surface of the transmission belt 34 is uniformly provided with a baffle, the baffle is in sliding fit with the stirring roller 32, the structure of the motion belt 35 is consistent with that of the transmission belt 34, and during specific work, the baffle is matched with a push plate on the stirring roller 32 to realize the function of driving the transmission belt 34 to rotate.
The auxiliary mechanism 37 include rotatory frame 371, extension plate 372, extension spring 373 and reset spring 374, rotatory frame 371 be connected with fermentation frame 31 lower wall through the round pin axle, rotatory frame 371 is inside to be connected with extension plate 372 through sliding fit's mode, be connected with extension spring 373 between extension plate 372 and the rotatory frame 371, be connected with reset spring 374 between rotatory frame 371 lower extreme and the fermentation frame 31 lower wall, rotatory frame 371 lower extreme passes through wire rope and is connected with sealed lid 36, in concrete during operation, sealed lid 36 passes through wire rope pulling rotation frame 371 rotatory, extension plate 372 stretches out gradually when rotatory frame 371 to realize the function of rotatory frame 371 slope, be convenient for the blanking of organic fertilizer.
The pressurizing device 4 comprises a pressurizing plate 41, a connecting spring 42, a sealing plate 43, a turning roller 44, a sliding mechanism 45, a rotating roller 46, a rotating motor 47 and a pressurizing mechanism 48, the inner wall of the fermentation frame 31 is connected with the pressurizing plate 41 in a sliding fit mode, the connecting spring 42 is symmetrically installed at the lower end of the pressurizing plate 41 in the left-right direction, the lower end of the connecting spring 42 is installed on the fermentation frame 31, blanking holes are uniformly formed in the pressurizing plate 41, the sealing plate 43 is symmetrically installed on the side wall of the blanking holes in the left-right direction, the sealing plate 43 is connected with the pressurizing plate 41 through a pin shaft, the turning roller 44 is arranged above the sealing plate 43, the turning roller 44 is installed on the pressurizing plate 41 through a roller frame, the sliding mechanism 45 is symmetrically installed on the left-right direction on the side wall of the fermentation frame 31, the rotating roller 46 is installed at the upper end of the sliding mechanism 45 through a, evenly be connected with the taut rope on the swivelling roller 46, the taut rope lower extreme is connected with the closing plate 43, loading system 48 is installed to pressure plate 41 upper end, loading system 48 rear end is installed on fermentation frame 31, concrete during operation, when the organic fertilizer in the fermentation frame 31 is less, manual start rotating electrical machines 47, rotating electrical machines 47 drives closing plate 43 through swivelling roller 46, afterwards, manual start loading system 48, loading system 48 drives pressure plate 41 and pressurizes fermentation frame 31 inside, thereby the fermentation efficiency of organic fertilizer has been improved.
The lateral wall of the pressurizing plate 41 is uniformly provided with a sealing sleeve, a sealing gasket is arranged between the pressurizing plate 41 and the sealing plate 43, and the sealing sleeve and the sealing gasket play a sealing role during specific work.
The sliding mechanism 45 comprises a movable rod 451, a bearing plate 452 and an auxiliary spring 453, the movable rod 451 is installed on the side wall of the fermentation frame 31, the bearing plate 452 is installed at the upper end of the movable rod 451, the bearing plate 452 is connected with the side wall of the fermentation frame 31 in a sliding fit mode, the auxiliary spring 453 is connected to the outer surface of the movable rod 451, and during specific work, the bearing plate 452 achieves a sliding function through the movable rod 451.
The pressurizing mechanism 48 comprises an electric push rod 481, a connecting plate 482 and a connecting rod 483, the electric push rod 481 is installed on the upper end face of the rear side wall of the fermentation frame 31, the connecting plate 482 is installed at the top end of the electric push rod 481, the connecting rod 483 is evenly installed on the lower end face of the connecting plate 482, the lower end of the connecting rod 483 is installed on the pressurizing plate 41, in specific work, the electric push rod 481 is manually started, and the electric push rod 481 drives the connecting rod 483 to push the pressurizing plate 41 through the connecting plate 482, so that a pressurizing function is realized.
During fermentation: s1: the organic fertilizer is poured into the fermentation frame 31 manually, then the driving mechanism 33 is started manually, and the driving mechanism 33 drives the stirring roller 32 to stir the organic fertilizer;
s2: manually starting a rotating motor 47, wherein the rotating motor 47 drives the sealing plate 43 to close through a rotating roller 46, and then manually starting a pressurizing mechanism 48, wherein the pressurizing mechanism 48 drives a pressurizing plate 41 to pressurize the interior of the fermentation frame 31;
s3: after the organic fertilizer fermentation is completed, the jacking push rod 38 is manually started, the jacking push rod 38 drives the sealing cover 36 to be opened, and the organic fertilizer falls into the collecting frame 2 from the fermentation frame 31;
s4: taking out the organic fertilizer from the collection frame 2 by a manual mode, and completing the fermentation.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (8)

1. The utility model provides a bio-organic fertilizer production fermentation vat, includes bottom plate (1), collects frame (2), fermenting installation (3) and pressure device (4), its characterized in that: the upper end of the bottom plate (1) is provided with a collecting frame (2), a fermentation device (3) is arranged above the collecting frame (2), the fermentation device (3) is arranged on the bottom plate (1) through a supporting rod, and the upper end of the fermentation device (3) is provided with a pressurizing device (4); wherein:
the fermentation device (3) comprises a fermentation frame (31), a stirring roller (32), a driving mechanism (33), a transmission belt (34), a motion belt (35), a sealing cover (36), an auxiliary mechanism (37), a jacking push rod (38) and a telescopic rod (39), wherein the fermentation frame (31) is installed on the bottom plate (1) through a supporting rod, the inner wall of the fermentation frame (31) is uniformly connected with the stirring roller (32) through a bearing, a sealing ring is arranged between the front end of the stirring roller (32) and the front side wall of the fermentation frame (31), the driving mechanism (33) is installed at the front end of the stirring roller (32), the driving mechanism (33) is installed on the front end surface of the fermentation frame (31), the lower part of the stirring roller (32) is connected with the transmission belt (34) in a sliding fit mode in a bilateral symmetry manner, the transmission belt (34) is connected with the side wall of the fermentation frame (31) through a bearing, the, the device comprises a fermentation frame (31), a motion belt (35), a stirring roller (32), discharge chutes, sealing covers (36), sealing rings, auxiliary mechanisms (37), pin shafts, auxiliary mechanisms (37), steel wire ropes, lifting push rods (38), telescopic rods (39), a lifting rod (38), a lifting rod (39), a lifting rod (37), a lifting rod and a lifting rod, wherein the motion belt (35) is connected with the side wall of the fermentation frame (31) through bearings, the motion belt (35) is in sliding connection with the stirring roller (32), the lower wall of the fermentation frame (31) is uniformly provided with the discharge chutes, the side wall of the discharge chutes is connected with the sealing covers (36) in a sliding fit mode, the;
the pressurizing device (4) comprises a pressurizing plate (41), connecting springs (42), a sealing plate (43), a turning roller (44), a sliding mechanism (45), a rotating roller (46), a rotating motor (47) and a pressurizing mechanism (48), wherein the pressurizing plate (41) is connected to the inner wall of the fermentation frame (31) in a sliding fit mode, the connecting springs (42) are arranged on the lower end of the pressurizing plate (41) in a bilateral symmetry mode, the lower end of each connecting spring (42) is installed on the fermentation frame (31), blanking holes are uniformly formed in the pressurizing plate (41), the sealing plate (43) is arranged on the side wall of each blanking hole in a bilateral symmetry mode, the sealing plate (43) is connected with the pressurizing plate (41) through a pin shaft, the turning roller (44) is arranged above the sealing plate (43), the turning roller (44) is installed on the pressurizing plate (41) through a roller frame, the sliding mechanism (45) is installed on the side wall of, the upper end of the sliding mechanism (45) is provided with a rotating roller (46) through a rotating frame, the left side of the rotating roller (46) is connected with a rotating motor (47), the rotating motor (47) is installed on the sliding mechanism (45) on the left side, the rotating roller (46) is evenly connected with a tensioning rope, the lower end of the tensioning rope is connected with a sealing plate (43), the upper end of a pressurizing plate (41) is provided with a pressurizing mechanism (48), and the rear end of the pressurizing mechanism (48) is installed on a fermentation frame (31).
2. The biological organic fertilizer production fermentation vat according to claim 1, characterized in that: drive mechanism (33) including drive gear (331), driving motor (332), swing pinion (333) and belt pulley (334), fermentation frame (31) front end be connected with drive gear (331) through bearing bilateral symmetry, gear engagement between drive gear (331), drive gear (331) front end that is located the right side is connected with driving motor (332), driving motor (332) are installed on fermentation frame (31) front end face, driving motor (332) outside bilateral symmetry is provided with swing pinion (333), swing pinion (333) that is located the inboard meshes with drive gear (331), swing pinion (333) are installed on stirring roller (32), swing pinion (334) are installed to swing pinion (333) front end, be located and connect through the belt between the belt pulley (334) with one side.
3. The biological organic fertilizer production fermentation vat according to claim 1, characterized in that: auxiliary mechanism (37) including rotatory frame (371), extension plate (372), extension spring (373) and reset spring (374), rotatory frame (371) be connected with fermentation frame (31) lower wall through the round pin axle, rotatory frame (371) is inside to be connected with extension plate (372) through sliding fit's mode, be connected with extension spring (373) between extension plate (372) and rotatory frame (371), be connected with reset spring (374) between rotatory frame (371) lower extreme and fermentation frame (31) lower wall, rotatory frame (371) lower extreme passes through wire rope and is connected with sealed lid (36).
4. The biological organic fertilizer production fermentation vat according to claim 1, characterized in that: slide mechanism (45) include movable rod (451), hold and put board (452) and auxiliary spring (453), movable rod (451) install on fermentation frame (31) lateral wall, movable rod (451) upper end is installed and is held board (452), hold and put board (452) and be connected with fermentation frame (31) lateral wall through sliding fit's mode, movable rod (451) surface is connected with auxiliary spring (453).
5. The biological organic fertilizer production fermentation vat according to claim 1, characterized in that: the pressurizing mechanism (48) comprises an electric push rod (481), a connecting plate (482) and a connecting rod (483), wherein the electric push rod (481) is installed on the upper end face of the rear side wall of the fermentation frame (31), the connecting plate (482) is installed at the top end of the electric push rod (481), the connecting rod (483) is evenly installed on the lower end face of the connecting plate (482), and the lower end of the connecting rod (483) is installed on the pressurizing plate (41).
6. The biological organic fertilizer production fermentation vat according to claim 1, characterized in that: stirring roller (32) surface evenly be provided with the stirring leaf, stirring roller (32) surface evenly is provided with the slurcam, the slurcam is located between the stirring leaf.
7. The biological organic fertilizer production fermentation vat according to claim 1, characterized in that: the side wall of the pressurizing plate (41) is uniformly provided with a sealing sleeve, and a sealing gasket is arranged between the pressurizing plate (41) and the sealing plate (43).
8. The biological organic fertilizer production fermentation vat according to claim 1, characterized in that: the outer surface of the transmission belt (34) is uniformly provided with a baffle which is in sliding fit with the stirring roller (32), and the structure of the motion belt (35) is consistent with that of the transmission belt (34).
CN202010826035.6A 2020-08-17 2020-08-17 Biological organic fertilizer production fermentation vat Withdrawn CN111875428A (en)

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CN202010826035.6A CN111875428A (en) 2020-08-17 2020-08-17 Biological organic fertilizer production fermentation vat

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Application Number Priority Date Filing Date Title
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113149742A (en) * 2021-06-07 2021-07-23 张涛 Organic fertilizer and preparation system and method thereof
CN113511933A (en) * 2021-04-27 2021-10-19 韩佳育 Fertilizer production facility with stirring fermenting installation
CN115417705A (en) * 2022-09-28 2022-12-02 贝嘉美(天津)生物技术研发股份有限公司 Microbial organic fertilizer preparation device and application method thereof

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CN207451952U (en) * 2017-11-15 2018-06-05 陆良县大自在生物肥业有限公司 A kind of quick pile-fermentation device of biology silkworm excrement organic fertilizer production
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Application publication date: 20201103