CN109999968B - Enzyme preparation facilities for biological new material - Google Patents

Enzyme preparation facilities for biological new material Download PDF

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Publication number
CN109999968B
CN109999968B CN201910415428.5A CN201910415428A CN109999968B CN 109999968 B CN109999968 B CN 109999968B CN 201910415428 A CN201910415428 A CN 201910415428A CN 109999968 B CN109999968 B CN 109999968B
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China
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groove
block
shaft
rack
end wall
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CN201910415428.5A
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Chinese (zh)
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CN109999968A (en
Inventor
朱仁强
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ZHEJIANG YUCHANGSHEN AROMATICS Co.,Ltd.
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Zhejiang Yuchangshen Aromatics Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C18/00Disintegrating by knives or other cutting or tearing members which chop material into fragments
    • B02C18/06Disintegrating by knives or other cutting or tearing members which chop material into fragments with rotating knives
    • B02C18/08Disintegrating by knives or other cutting or tearing members which chop material into fragments with rotating knives within vertical containers
    • B02C18/10Disintegrating by knives or other cutting or tearing members which chop material into fragments with rotating knives within vertical containers with drive arranged above container
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C18/00Disintegrating by knives or other cutting or tearing members which chop material into fragments
    • B02C18/06Disintegrating by knives or other cutting or tearing members which chop material into fragments with rotating knives
    • B02C18/16Details
    • B02C18/22Feed or discharge means
    • B02C18/2216Discharge means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C18/00Disintegrating by knives or other cutting or tearing members which chop material into fragments
    • B02C18/06Disintegrating by knives or other cutting or tearing members which chop material into fragments with rotating knives
    • B02C18/16Details
    • B02C18/22Feed or discharge means
    • B02C18/2225Feed means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C23/00Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group
    • B02C23/18Adding fluid, other than for crushing or disintegrating by fluid energy
    • B02C23/20Adding fluid, other than for crushing or disintegrating by fluid energy after crushing or disintegrating
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Apparatus Associated With Microorganisms And Enzymes (AREA)

Abstract

The invention discloses an enzyme preparation device for a new biological material, which comprises an enzyme preparation machine body, wherein a feeding groove is arranged in the enzyme preparation machine body, the lower end of the feeding groove is communicated with a feeding pipe, the device can complete the functions of crushing, cleaning, enzyme preparation and the like on the new biological material, the device can fully automatically complete the function of automatically converting the new biological material into the biological enzyme, the utilization of waste is greatly improved, the defect that a feeding pipeline is easy to jam is overcome, waste is changed into valuable, the device improves the working efficiency of the device through mechanical transmission and matching, the possibility of error is reduced, meanwhile, a single motor is used for realizing multiple functions, the cost of the device is reduced, and the energy consumption is saved.

Description

Enzyme preparation facilities for biological new material
Technical Field
The invention relates to the technical field of enzyme preparation, in particular to an enzyme preparation device for a new biological material.
Background
The enzyme is a protein with a biological catalysis effect, the enzyme plays a very wide role in organisms, at present, the extraction and the use of the enzyme are more and more, the extraction from a new biological material is a future development direction, in the extraction process of the enzyme, the new biological material needs to be firstly crushed and the like, and the operation process is complicated.
Disclosure of Invention
The present invention is directed to an enzyme preparation apparatus for a new biological material, which solves the above problems of the prior art.
In order to achieve the purpose, the invention provides the following technical scheme: an enzyme preparation device for new biological materials comprises an enzyme preparation machine body, wherein a feed tank is arranged in the enzyme preparation machine body, the lower end of the feed tank is communicated with a feed pipe, the right end wall of the feed pipe is provided with a working chamber, a pushing device is arranged in the working chamber and comprises a pushing motor, a working chamber is arranged in the working chamber, a crushing space with a downward opening is arranged in the working chamber, the left end of the crushing space is provided with a communicating port, the upper end of the crushing space is provided with a gear groove with a leftward opening, the upper end wall of the gear groove is provided with a crushing motor, the pushing device controls the left and right movement of the working chamber, the lower end of the working chamber is provided with a processing groove, a new biological material pipeline is arranged between the processing groove and the working chamber, the right end wall of the new biological material pipeline is provided with a transverse plate groove, and the lower end wall of the transverse plate groove is provided, the lower end of the movable rack groove is communicated with a cutting block sliding groove, the right end of the transverse plate groove is provided with a catalytic liquid groove, the right end of the cutting block sliding groove is communicated with a catalytic pipeline, the upper end and the lower end of the catalytic pipeline are communicated with the catalytic liquid groove and the processing groove, the lower end of the processing groove is provided with a material taking port, a brewing device is arranged in the transverse plate groove, the working box drives the brewing device to rotate, the left end of the charging pipe is provided with a rack space, a filter screen sliding groove is communicated between the rack space and the charging pipe, the lower end wall of the rack space is provided with a right rack sliding groove, a filtering device is arranged in the rack space, the working box controls the filtering device to rotate and move up and down, the left end of the charging pipe is provided with a cleaning cavity, a cleaning device is arranged in the cleaning cavity, and the working box moves left and right to, the left end wall of wasing the chamber is equipped with upright shaft groove, the upper end in upright shaft groove is equipped with the water tank, be equipped with on the water tank with external communicating groove, the lower extreme of water tank is equipped with the water pipe groove, the right-hand member wall of wasing the chamber is equipped with the water pipe, the lower extreme in water pipe groove extends right, pass the water pipe with wash the chamber and communicate with each other.
Preferably, the pushing device comprises a pushing motor, the pushing motor is fixedly connected with the rear end wall of the working cavity, the front end of the pushing motor is in power connection with a pushing motor shaft, a pushing rod is arranged on the pushing motor shaft, and the pushing rod is used for controlling the working box to move left and right.
Preferably, the working box comprises a box body, the box body is connected with the working cavity in a sliding fit manner, a pushing chute with a right opening is arranged at the right end of the box body, a pushing slider is connected in the pushing chute in a sliding fit manner, a pushing slider shaft is arranged on the pushing slider, the other end of the pushing rod is hinged with the pushing slider through the pushing slider shaft, a mincing motor is arranged on the upper end wall of the gear groove, the lower end of the mincing motor is in power connection with a mincing motor shaft, a mincing motor gear is arranged at the upper end of the mincing motor shaft, a driving gear shaft is further in rotationally matched connection with the upper end wall and the lower end wall of the gear groove, a driving gear meshed with the mincing motor gear is arranged on the driving gear shaft, the mincing motor shaft extends downwards, penetrates through the lower end wall of the gear groove to enter the crushing space and is in rotationally matched connection with the upper end wall of the, the utility model discloses a novel biological material removal device, including stirring garrulous motor shaft, intercommunication mouth, reset piece, filter block draw-in groove, be equipped with on the stirring garrulous motor shaft and be used for broken blade, the front and back end wall normal running fit of intercommunication mouth is connected with the platelet axle, the epaxial platelet axle torque spring that is equipped with of platelet, the platelet axle passes through platelet axle torque spring is connected with the platelet, the platelet can with the intercommunication mouth seals up, the left end of box is equipped with reset groove, sliding fit is connected with the reset block in the reset groove, the left end of reset block is equipped with the conical surface, the reset block with be connected with reset spring between the reset groove, the right-hand member wall of filling tube is equipped with the filter block draw-in groove, the reset block with filter block draw.
Preferably, the brewing device comprises a transverse plate shaft, the transverse plate shaft is connected with the front end wall and the rear end wall of the transverse plate groove in a rotating fit manner, a transverse plate torsion spring is arranged on the transverse plate shaft, the transverse plate shaft is hinged with a transverse plate through the transverse plate torsion spring, the transverse plate can block the new biological material pipeline, a transverse plate shaft gear is arranged at the rear end of the transverse plate shaft, a moving rack is meshed with the transverse plate shaft gear, the moving rack is connected with the moving rack groove in a sliding fit manner, the moving rack is abutted with a cutting block connected with the cutting block sliding groove in a sliding fit manner, a limiting groove is arranged at the upper end of the cutting block, a limiting block is connected in a sliding fit manner in the limiting groove and fixedly connected with the cutting block, a limiting spring is connected between the right end of the limiting block and the right end wall of the limiting groove, and a charging pipeline is arranged at the, the material taking port is internally provided with a plug, and the brewing device is used for fermenting new biological materials.
Preferably, the filtering device comprises a left rack, the left rack is connected with the lower end wall of the cleaning cavity and the upper end wall of the rack space in a sliding fit manner, a left rack spring is connected between the left rack and the rack space, the front end wall and the rear end wall of the rack space are connected with a filtering gear shaft in a rotating fit manner, a filtering gear meshed with the right end surface of the left rack is arranged on the filtering gear shaft, a right rack is connected in a sliding fit manner in a right rack chute, a right rack spring is connected between the right rack and the right rack chute, the right rack is meshed with the right end of the filtering gear, a filter screen block is arranged at the right end of the right rack, the front end and the rear end of the filter screen chute are connected with the right end wall of the feed pipe in a sliding fit manner, waterproof cushions are arranged on the upper end wall and the lower end wall of the filter screen chute, and a, the filter block chute is connected with a filter block clamping block in a sliding fit manner, a filter block clamping block spring is connected between the filter block clamping block and the filter block chute, the filter block clamping block is connected with the filter block clamping groove in a sliding fit manner, and the filter device is used for filtering new biological materials.
Preferably, the cleaning device comprises a slag discharging plate, the slag discharging plate is connected with the upper front end wall and the lower rear end wall of the cleaning cavity in a sliding fit manner, a pressure plate spring is connected between the slag discharging plate and the cleaning cavity, an upper groove matched with the driving gear is arranged on the slag discharging plate, a lower groove matched with the water pipe is also arranged on the slag discharging plate, the upper end wall and the lower end wall of the vertical shaft groove are connected with a vertical shaft in a rotating fit manner, a vertical shaft bevel gear is arranged at the upper end of the vertical shaft, a driving gear meshed with the driving gear is arranged at the lower end of the vertical shaft, a water pump is arranged at the lower end of the water tank, a water pump shaft driving the water pump to work is arranged at the right end of the water pump, the water pump shaft enters the vertical shaft groove, a bevel gear meshed with the vertical shaft bevel gear is arranged at the, the cleaning device is characterized in that a through hole device is connected in the through hole device in a sliding fit mode, a through hole opposite to the water pipe groove is formed in the through hole device, a lower hydraulic block is connected in the through hole device in a sliding fit mode, a lug rod is arranged at the right end of the lower hydraulic block, a lug is arranged at the right end of the lug rod, lug springs are symmetrically connected to the lug and the left end wall of the cleaning cavity from top to bottom, hydraulic oil is arranged between the lower end face of the through hole device and the left end face of the lower hydraulic block, and the cleaning device is used for cleaning the working box.
In conclusion, the beneficial effects of the invention are as follows: this device can accomplish and carry out the breakage to biological new material, it is washd, functions such as system enzyme, this device can accomplish the function that converts biological new material's automation into biological enzyme by full-automatic, greatly improved the utilization of wastes material, simultaneously this device overcomes the easy gambling of charging conduit's shortcoming, changing waste into valuables, this device passes through mechanical transmission cooperation, the work efficiency of device has been improved, the possibility of making mistakes has been reduced, it is multi-functional to use single motor to realize simultaneously, the cost of device has been reduced and the energy consumption has been practiced thrift, this equipment has adopted the spring, the gear, the bevel gear, hydraulic pressure, including a motor, devices such as torsion spring, stability also device function's variety simultaneously, adopt the spring to cushion and reset equipment moving part, the life of equipment operating stability and equipment has effectively been improved.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic front view of an entire cross-section of an enzyme preparation apparatus for a new biological material according to the present invention;
FIG. 2 is an enlarged view of a portion of the invention at A in FIG. 1;
FIG. 3 is an enlarged view of a portion of the present invention at B of FIG. 1;
fig. 4 is a partial enlarged view of the invention at C in fig. 1.
Detailed Description
All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations of features and/or steps that are mutually exclusive.
Any feature disclosed in this specification (including any accompanying claims, abstract and drawings), may be replaced by alternative features serving equivalent or similar purposes, unless expressly stated otherwise. That is, unless expressly stated otherwise, each feature is only an example of a generic series of equivalent or similar features.
Referring to fig. 1-4, an embodiment of the present invention is shown: the utility model provides an enzyme preparation facilities for biological new material, includes enzyme preparation organism 100, be equipped with the charge tank 35 in the enzyme preparation organism 100, the lower extreme intercommunication of charge tank 35 has filling tube 51, the right-hand member wall of filling tube 51 is equipped with working chamber 47, be equipped with thrust unit 101 in the working chamber 47, thrust unit 101 includes push motor 36, be equipped with work box 102 in the working chamber 47, be equipped with the decurrent broken space 39 of opening in the work box 102, the left end of broken space 39 is equipped with intercommunication mouth 50, the upper end of broken space 39 is equipped with the gear groove 30 that the opening is left, the upper end wall of gear groove 30 is equipped with crushing motor 32, thrust unit 101 control moves about work box 102, the lower extreme of working chamber 47 is equipped with processing tank 48, processing tank 48 with biological new material pipeline 49 between the working chamber 47, the right-hand member wall of biological new material pipeline 49 is equipped with horizontal plate groove 89, the lower end wall of the transverse plate groove 89 is provided with a movable rack groove 82, the lower end of the movable rack groove 82 is communicated with a dividing block sliding groove 88, the right end of the transverse plate groove 89 is provided with a catalytic liquid groove 46, the right end of the dividing block sliding groove 88 is communicated with a catalytic pipeline 87, the upper end and the lower end of the catalytic pipeline 87 are communicated with the catalytic liquid groove 46 and the processing groove 48, the lower end of the processing groove 48 is provided with a material taking port 92, the transverse plate groove 89 is internally provided with a brewing device 103, the working box 102 drives the brewing device 103 to rotate, the left end of the feed pipe 51 is provided with a rack space 61, a filter screen sliding groove 54 is communicated between the rack space 61 and the feed pipe 51, the lower end wall of the rack space 61 is provided with a right rack sliding groove 56, the filtering device 104 is arranged in the rack space 61, and the working box 102 controls the rotation and the up-down, the left end of filling tube 51 is equipped with washs chamber 90, be equipped with belt cleaning device 105 in wasing chamber 90, remove about work box 102 and control belt cleaning device 105's rotation and removal, the left end wall of wasing chamber 90 is equipped with upright axial trough 23, the upper end of upright axial trough 23 is equipped with water tank 74, be equipped with on the water tank 74 with external communicating groove, the lower extreme of water tank 74 is equipped with water pipe groove 71, the right-hand member wall of wasing chamber 90 is equipped with water pipe 24, the lower extreme of water pipe groove 71 extends right, passes water pipe 24 with wash chamber 90 and communicate with each other.
Advantageously, the pushing device 101 comprises a pushing motor 36, the pushing motor 36 is fixedly connected with the rear end wall of the working chamber 47, a pushing motor shaft 37 is dynamically connected to the front end of the pushing motor 36, a pushing rod 38 is arranged on the pushing motor shaft 37, and the pushing rod 38 is used for controlling the left and right movement of the working box 102.
Beneficially, the working box 102 includes a box body 34, the box body 34 is connected with the working chamber 47 in a sliding fit manner, a pushing chute 42 with a right opening is arranged at the right end of the box body 34, a pushing slider 44 is connected in the pushing chute 42 in a sliding fit manner, a pushing slider shaft 43 is arranged on the pushing slider 44, the other end of the pushing rod 38 is hinged to the pushing slider 44 through the pushing slider shaft 43, a mincing motor 32 is arranged on the upper end wall of the gear groove 30, a mincing motor shaft 33 is connected to the lower end of the mincing motor 32 in a power-driven manner, a mincing motor gear 31 is arranged on the upper end of the mincing motor shaft 33, a driving gear shaft 29 is further connected to the upper end wall and the lower end wall of the gear groove 30 in a rotating fit manner, a driving gear 28 meshed with the mincing motor gear 31 is arranged on the driving gear shaft 29, the mincing motor shaft 33 extends downwards and penetrates through the lower end wall of the gear groove 30 to, and is connected with the upper end wall of the crushing space 39 in a rotating fit manner, a blade 40 for crushing is arranged on the mincing motor shaft 33, the front and rear end walls of the communication port 50 are connected with a small plate shaft 75 in a rotating fit manner, a small plate shaft torsion spring 76 is arranged on the small plate shaft 75, the small plate shaft 75 is connected with a small plate 77 through the small plate shaft torsion spring 76, the small plate 77 can seal the communication port 50, a reset groove 93 is arranged at the left end of the box body 34, a reset block 95 is connected in the reset groove 93 in a sliding fit manner, the left end of the reset block 95 is provided with a conical surface, a reset spring 94 is connected between the reset block 95 and the reset groove 93, the right end wall of the feeding pipe 51 is provided with a filter block clamping groove 96, the reset block 95 is connected with the filter block clamping groove 96 in a sliding fit manner, the reset block 95 is used for stirring the new biological material and driving the new biological material to move left and right.
Advantageously, the brewing device 103 comprises a transverse plate shaft 80, the transverse plate shaft 80 is connected with the front and rear end walls of the transverse plate groove 89 in a rotating fit manner, a transverse plate torsion spring 79 is arranged on the transverse plate shaft 80, the transverse plate shaft 80 is hinged with a transverse plate 78 through the transverse plate torsion spring 79, the transverse plate 78 can block the new biological material pipeline 49, a transverse plate shaft gear is arranged at the rear end of the transverse plate shaft 80, a moving rack 81 is meshed with the transverse plate shaft gear, the moving rack 81 is connected with the moving rack groove 82 in a sliding fit manner, the moving rack 81 is abutted against a dividing block 86 connected with the dividing block sliding groove 88 in a sliding fit manner, a limiting groove 83 is arranged at the upper end of the dividing block 86, a limiting block 84 is connected in a sliding fit manner in the limiting groove 83, the limiting block 84 is fixedly connected with the dividing block 86, and a limiting spring 85 is connected between the right end of the limiting block 84 and the right end wall, the rear end of the catalyst liquid tank 46 is provided with a feeding pipeline 45, a plug 91 is arranged in the material taking port 92, and the brewing device 103 is used for fermenting new biological materials.
Beneficially, the filtering device 104 includes a left rack 62, the left rack 62 is connected with the lower end wall of the cleaning cavity 90 and the upper end wall of the rack space 61 in a sliding fit manner, a left rack spring 60 is connected between the left rack 62 and the rack space 61, the front and rear end walls of the rack space 61 are connected with a filtering gear shaft 58 in a rotating fit manner, a filtering gear 59 meshed with the right end face of the left rack 62 is arranged on the filtering gear shaft 58, a right rack 57 is connected in the right rack sliding groove 56 in a sliding fit manner, a right rack spring 55 is connected between the right rack 57 and the right rack sliding groove 56, the right rack 57 is meshed with the right end of the filtering gear 59, a filter screen block 52 is arranged at the right end of the right rack 57, the front and rear ends of the filter screen block 52 and the filter screen sliding groove 54 are connected with the right end wall of the feeding pipe 51 in a sliding fit manner, the upper and lower end walls of the filter screen, the right end of the filter screen block 52 is provided with a filter block sliding groove 97, the filter block sliding groove 97 is connected with a filter block clamping block 98 in a sliding fit manner, a filter block clamping block spring 99 is connected between the filter block clamping block 98 and the filter block sliding groove 97, the filter block clamping block 98 is connected with the filter block clamping groove 96 in a sliding fit manner, and the filter device 104 is used for filtering new biological materials.
Beneficially, the cleaning device 105 includes a slag discharging plate 27, the slag discharging plate 27 is connected with the upper, lower, front and rear end walls of the cleaning cavity 90 in a sliding fit manner, a pressure plate spring 63 is connected between the slag discharging plate 27 and the cleaning cavity 90, an upper groove 26 matched with the driving gear 28 is arranged on the slag discharging plate 27, a lower groove 25 matched with the water pipe 24 is further arranged on the slag discharging plate 27, a vertical shaft 21 is connected with the upper and lower end walls of the vertical shaft groove 23 in a rotating fit manner, a vertical shaft bevel gear 22 is arranged at the upper end of the vertical shaft 21, a driving gear 11 engaged with the driving gear 28 is arranged at the lower end of the vertical shaft 21, a water pump 72 is arranged at the lower end of the water tank 74, a water pump shaft 73 for driving the water pump 72 to work is arranged at the right end of the water pump 72, the water pump shaft 73 enters the vertical shaft groove 23, a water pump bevel gear 20 engaged with the, the water outlet of the water pump 72 is communicated with the water pipe groove 71, a through hole device 69 is connected in the through hole groove 70 in a sliding fit manner, a through hole 68 opposite to the water pipe groove 71 is formed in the through hole device 69, a lower hydraulic block 67 is further connected in the through hole groove 70 in a sliding fit manner, a bump rod 66 is arranged at the right end of the lower hydraulic block 67, a bump 64 is arranged at the right end of the bump rod 66, bump springs 65 are vertically and symmetrically connected with the left end wall of the cleaning cavity 90 through the bump 64, hydraulic oil is arranged between the lower end face of the through hole device 69 and the left end face of the lower hydraulic block 67, and the cleaning device 105 is used for cleaning the work box 102.
The applicant will now describe in detail the method of using the enzyme preparation apparatus for a new biological material of the present application with reference to the accompanying drawings 1 to 4 and the specific composition of the enzyme preparation apparatus for a new biological material of the present application described above: first, in the initial state, the box 34 is located at the left and right ends, the new material for moving the living organisms is located at the upper end of the filter block 52, a certain amount of catalytic liquid is added through the catalytic liquid tank 46, water is added into the water tank 74, and the reset block 95 is clamped like the filter block clamping groove 96.
In use, the pushing motor 36 is turned on, so that the pushing motor shaft 37 drives the pushing rod 38 to rotate, so that the box body 34 moves to the right, so that the slag discharging plate 27 moves to the left through the box body 34, so that the left rack 62 pushes downwards, so that the filter gear 59 is driven to rotate, so that the right rack 57 moves upwards, so that the filter screen block 52 moves upwards, so that the upper end surface of the filter screen block 52 is aligned with the lower end walls of the working chamber 47 and the cleaning chamber 90, the filter block clamping block 98 is clamped in the filter block clamping groove 96, at the moment, the filter screen block 52 just aligns with the crushing space 39, so that the crushing motor 32 is turned on, so that the blades 40 are driven to rotate through the crushing motor shaft 33, so that new biological materials are crushed, then the box body 34 is driven to move to the left through the pushing motor 36, so that the lug 64 moves to the left, the through hole 69 moves upwards, the through hole 68 is communicated with the water pipe groove 71, and, thereby driving the water pump shaft 73 to rotate through the water pump bevel gear 20, the vertical shaft 21 and the vertical shaft bevel gear 22, thereby driving the water pump 72 to work, thereby pushing the small plate 77 to the right, thereby cleaning the crushing space 39, then driving the box body 34 to move to the right through the pushing motor 36, so that water flows into the feeding pipe 51, when the box body 34 is reset, the reset block 95 pushes the filter block fixture block 98 out of the filter block fixture groove 96, the filter screen block 52 is also reset, the box body 34 drives the crushed new biological material to the right, thereby driving the new biological material to drive the new biological material pipeline 49, thereby driving the transverse plate 78 to rotate downwards due to the gravity of the new biological material, the new biological material falls into the processing tank 48 through the new biological material pipeline 49, thereby pulling the moving rack 81 upwards, thereby moving the dividing block 86 to the left, so that the catalytic liquid in the catalytic liquid tank 46 falls into the processing tank 48 through the catalytic pipeline 87, when the dropping is completed, the transverse plate 78 is reset with the moving rack 81 and the dividing block 86, and when the biological enzyme is needed, only the plug 91 needs to be opened, and the biological enzyme prepared at the lowest layer is taken out.
The invention has the beneficial effects that: this device can accomplish and carry out the breakage to biological new material, wash, functions such as system enzyme, this device can accomplish the function that converts biological new material's automation into biological enzyme by full-automatic, greatly improved the utilization of wastes material, this device overcomes the shortcoming of the easy gambling of charging conduit simultaneously, changing waste into valuables, this device passes through mechanical transmission cooperation, the work efficiency of device has been improved, the possibility of makeing mistakes has been reduced, it is multi-functional to use single motor to realize simultaneously, the cost of device has been reduced and the energy consumption has been practiced thrift.
The above description is only an embodiment of the invention, but the scope of the invention is not limited thereto, and any changes or substitutions that are not thought of through the inventive work should be included in the scope of the invention. Therefore, the protection scope of the invention should be subject to the protection scope defined by the claims.

Claims (6)

1. An enzyme preparation facilities for biological new material, includes enzyme preparation organism, its characterized in that: the enzyme preparation machine body is internally provided with a feed tank, the lower end of the feed tank is communicated with a feed pipe, the right end wall of the feed pipe is provided with a working chamber, the working chamber is internally provided with a pushing device, the pushing device comprises a pushing motor, the working chamber is internally provided with a working box, the working box is internally provided with a crushing space with a downward opening, the left end of the crushing space is provided with a communication port, the upper end of the crushing space is provided with a gear groove with a leftward opening, the upper end wall of the gear groove is provided with a crushing motor, the pushing device controls the left and right movement of the working box, the lower end of the working chamber is provided with a processing groove, a biological new material pipeline is arranged between the processing groove and the working chamber, the right end wall of the biological new material pipeline is provided with a transverse plate groove, the lower end wall of the transverse plate groove is provided with a moving rack groove, and the lower end of, the right end of the transverse plate groove is provided with a catalytic liquid groove, the right end of the cutting block sliding groove is communicated with a catalytic pipeline, the upper end and the lower end of the catalytic pipeline are communicated with the catalytic liquid groove and the processing groove, the lower end of the processing groove is provided with a material taking port, a brewing device is arranged in the transverse plate groove, the working box drives the brewing device to rotate, the left end of the charging pipe is provided with a rack space, a filter screen sliding groove is communicated between the rack space and the charging pipe, the lower end wall of the rack space is provided with a right rack sliding groove, a filtering device is arranged in the rack space, the working box controls the filtering device to rotate and move up and down, the left end of the charging pipe is provided with a cleaning cavity, a cleaning device is arranged in the cleaning cavity, the working box moves left and right to control the rotation and movement of the cleaning device, the left end wall of the cleaning cavity is provided with a vertical shaft groove, the water tank is provided with a groove communicated with the outside, the lower end of the water tank is provided with a water pipe groove, the wall of the right end of the cleaning cavity is provided with a water pipe, and the lower end of the water pipe groove extends rightwards and penetrates through the water pipe to be communicated with the cleaning cavity.
2. The apparatus for preparing enzyme for a new material for living things according to claim 1, wherein: the pushing device comprises a pushing motor, the pushing motor is fixedly connected with the rear end wall of the working cavity, the front end of the pushing motor is in power connection with a pushing motor shaft, a pushing rod is arranged on the pushing motor shaft, and the pushing rod is used for controlling the working box to move left and right.
3. The apparatus for preparing enzyme for a new material for living things according to claim 2, wherein: the working box comprises a box body, the box body is connected with the working cavity in a sliding fit manner, the right end of the box body is provided with a pushing chute with a right opening, a pushing slide block is connected in the pushing chute in a sliding fit manner, a pushing slide block shaft is arranged on the pushing slide block, the other end of the pushing rod is hinged with the pushing slide block through the pushing slide block shaft, the upper end wall of the gear groove is provided with a crushing motor, the lower end of the crushing motor is in power connection with a crushing motor shaft, the upper end of the crushing motor shaft is provided with a crushing motor gear, the upper end wall and the lower end wall of the gear groove are also in rotating fit connection with a driving gear shaft, the driving gear shaft is provided with a driving gear meshed with the crushing motor gear, the crushing motor shaft extends downwards, penetrates through the lower end wall of the gear groove to enter the crushing space and is in rotating fit connection with, the utility model discloses a novel biological material removal device, including stirring garrulous motor shaft, intercommunication mouth, reset piece, filter block draw-in groove, be equipped with on the stirring garrulous motor shaft and be used for broken blade, the front and back end wall normal running fit of intercommunication mouth is connected with the platelet axle, the epaxial platelet axle torque spring that is equipped with of platelet, the platelet axle passes through platelet axle torque spring is connected with the platelet, the platelet can with the intercommunication mouth seals up, the left end of box is equipped with reset groove, sliding fit is connected with the reset block in the reset groove, the left end of reset block is equipped with the conical surface, the reset block with be connected with reset spring between the reset groove, the right-hand member wall of filling tube is equipped with the filter block draw-in groove, the reset block with filter block draw.
4. The apparatus for preparing enzyme for a new material for living things according to claim 3, wherein: the brewing device comprises a transverse plate shaft, the transverse plate shaft is connected with the front end wall and the rear end wall of a transverse plate groove in a rotating fit manner, a transverse plate torsion spring is arranged on the transverse plate shaft, the transverse plate shaft is hinged with a transverse plate through the transverse plate torsion spring, the transverse plate can block the new biological material pipeline, a transverse plate shaft gear is arranged at the rear end of the transverse plate shaft, a moving rack is meshed with the transverse plate shaft gear, the moving rack is connected with the moving rack groove in a sliding fit manner, the moving rack is abutted with a cutting block connected with the cutting block sliding groove in a sliding fit manner, a limiting groove is arranged at the upper end of the cutting block, a limiting block is connected in the limiting groove in a sliding fit manner, the limiting block is fixedly connected with the cutting block, a limiting spring is connected between the right end of the limiting block and the right end wall of the limiting groove, and a charging, the material taking port is internally provided with a plug, and the brewing device is used for fermenting new biological materials.
5. The apparatus for preparing enzyme for a new material for living things according to claim 4, wherein: the filtering device comprises a left rack, the left rack is connected with the lower end wall of the cleaning cavity and the upper end wall of the rack space in a sliding fit manner, a left rack spring is connected between the left rack and the rack space, the front end wall and the rear end wall of the rack space are connected with a filtering gear shaft in a rotating fit manner, a filtering gear meshed with the right end surface of the left rack is arranged on the filtering gear shaft, a right rack is connected in a sliding fit manner in a right rack chute, a right rack spring is connected between the right rack and the right rack chute, the right rack is meshed with the right end of the filtering gear, a filter screen block is arranged at the right end of the right rack, the left end of the filter screen block is connected with the filter screen chute in a sliding fit manner, the right end of the filter screen block is connected with the right end wall of the feeding pipe in a sliding fit manner, and waterproof cushions, the right-hand member of filter screen piece is equipped with the filter block spout, filter block spout sliding fit is connected with the filter block fixture block, the filter block fixture block with be connected with filter block fixture block spring between the filter block spout, the filter block fixture block with filter block draw-in groove sliding fit is connected, filter equipment effect will be filtered new biological material.
6. The apparatus for preparing enzyme for a new material for living things according to claim 5, wherein: the cleaning device comprises a slag discharging plate, the slag discharging plate is connected with the upper front end wall and the lower rear end wall of the cleaning cavity in a sliding fit manner, a pressure plate spring is connected between the slag discharging plate and the cleaning cavity, an upper groove matched with the driving gear is arranged on the slag discharging plate, a lower groove matched with the water pipe is also arranged on the slag discharging plate, the upper end wall and the lower end wall of the vertical shaft groove are connected with a vertical shaft in a rotating fit manner, a vertical shaft bevel gear is arranged at the upper end of the vertical shaft, a transverse plate shaft gear meshed with the driving gear is arranged at the lower end of the vertical shaft, a water pump is arranged at the lower end of the water tank, a water pump shaft driving the water pump to work is arranged at the right end of the water pump, the water pump shaft enters the vertical shaft groove, a bevel gear meshed with the vertical shaft bevel gear is arranged at the right end of the water pump shaft, the cleaning device is characterized in that a through hole opposite to the water pipe groove is formed in the hole penetrating device, a lower hydraulic block is connected to the through hole groove in a sliding fit mode, a lug rod is arranged at the right end of the lower hydraulic block, a lug is arranged at the right end of the lug rod, lug springs are symmetrically connected to the left end wall of the cleaning cavity in an up-and-down mode, hydraulic oil is arranged between the lower end face of the hole penetrating device and the left end face of the lower hydraulic block, and the cleaning device is used for cleaning the working box.
CN201910415428.5A 2019-05-17 2019-05-17 Enzyme preparation facilities for biological new material Active CN109999968B (en)

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CN110181854B (en) * 2019-07-15 2020-03-24 青岛市肿瘤医院 Mixed liquid extrusion machine for producing medical intermediate synthetic catalyst

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CN207692953U (en) * 2017-12-13 2018-08-07 河北纽康恩食品有限公司 A kind of steamed stuffed bun stuffing machining production line
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002272421A (en) * 2001-03-21 2002-09-24 Kawai Kk Method for producing scallop shell finely powdery calcium for food
CN106179646A (en) * 2016-07-22 2016-12-07 徐州龙凤缘工贸有限公司 A kind of cracking machine for food garbage
CN206152790U (en) * 2016-08-18 2017-05-10 惠州市鑫隆环保科技有限公司 Damping formula solid -liquid chemical industry raw material mixing mixes retort
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