CN105838601A - Automatic material spreading device on enzymolysis tank - Google Patents
Automatic material spreading device on enzymolysis tank Download PDFInfo
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- CN105838601A CN105838601A CN201610432400.9A CN201610432400A CN105838601A CN 105838601 A CN105838601 A CN 105838601A CN 201610432400 A CN201610432400 A CN 201610432400A CN 105838601 A CN105838601 A CN 105838601A
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- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12M—APPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
- C12M21/00—Bioreactors or fermenters specially adapted for specific uses
- C12M21/18—Apparatus specially designed for the use of free, immobilized or carrier-bound enzymes
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- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12M—APPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
- C12M27/00—Means for mixing, agitating or circulating fluids in the vessel
- C12M27/02—Stirrer or mobile mixing elements
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- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12M—APPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
- C12M33/00—Means for introduction, transport, positioning, extraction, harvesting, peeling or sampling of biological material in or from the apparatus
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- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12M—APPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
- C12M41/00—Means for regulation, monitoring, measurement or control, e.g. flow regulation
- C12M41/48—Automatic or computerized control
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- Apparatus Associated With Microorganisms And Enzymes (AREA)
Abstract
The invention relates to an automatic material spreading device on an enzymolysis tank. A top plate of the enzymolysis tank is provided with a feeding opening, a sensor, a vertical pipe and a first motor, wherein the vertical pipe is provided with a triggering switch; the first motor is provided with a stirring device. A slideway with a wheel is arranged on the inner wall of the enzymolysis tank; a wheel frame of the wheel extends out of the slideway to be connected with a transverse stopper with an iron block; the transverse stopper is connected with a support rod with a rolling wheel; the rolling wheel is in contact with the top of the outer side of the slideway. The support rod is connected with a box with a material spreading tank; a discharging pipe of the material spreading tank is provided with a sealing cover with a transverse shaft; a steel wire rope arranged at the right end of the transverse shaft with a spring is connected with an ascending and descending handle of a telescopic switch through each pulley. The bottom of a vertical shaft with a push button and the spring in the vertical pipe extends into the enzymolysis tank to be in contact with the top of the ascending and descending handle extending out of the box. A second motor arranged above the first motor is connected with the outer wall of the enzymolysis tank through a support frame; a rotating rod arranged on the second motor is provided with a small wheel trolley; a magnet arranged on the small wheel trolley vertically corresponds to the iron block arranged in the enzymolysis tank. A marking device arranged on the rotating rod is associated with the sensor. Each motor, the triggering switch and the like are connected with a controller arranged at the outer wall of the enzymolysis tank through a conducting wire.
Description
Technical field
The present invention relates to a kind of material-strewing device, the automatic material-strewing device being specifically related on a kind of enzymatic vessel automatically.
Background technology
When throwing spreading powder toward enzymatic vessel is interior now, artificial throwing is much needed to spread;When agitating device stirs, people open enzymatic vessel lid, and hand-held spoon etc. throws spreading powder many times in enzymatic vessel, in order to make material powder spread more uniformly, throw spreading powder in hand the most also to stretch into enzymatic vessel;Thus there is potential safety hazard, and efficiency is low;Because being that manual throwing is spread, so it is difficult to ensure that material powder throwing sprinkles even, causing material powder mutually not merge with the water in enzymatic vessel and biology enzyme etc. well, thus affect institute's converted products quality.
Summary of the invention
The purpose of the present invention: be for solving the problems referred to above and to provide the automatic material-strewing device on a kind of enzymatic vessel.
The technical solution adopted in the present invention is: the top board of described enzymatic vessel is provided with the first motor, and the axle of this first motor is connected with the agitating device in enzymatic vessel inner chamber after being passed down through enzymatic vessel top board;Being provided with the controller of charged line and switch on the outer wall of enzymatic vessel, this controller is connected with described first motor through wire;
It is characterized in that: the top of described enzymatic vessel inwall is provided with a circle slideway, the sealing of this slideway upward, is provided with wheel in this slideway, and the wheel carrier of this wheel is connected with crosspiece after protruding upward slideway sealing, this crosspiece top is provided with iron block, leaves gap between the bottom surface of this iron block and enzymatic vessel top board;Described crosspiece is connected with horizontal support bar, and this support bar is provided with a roller, and this roller contacts with the outside top of slideway, and the outside top of described slideway is wavy;Described support bar is that bent angle shape is i.e. made up of cross bar and vertical pole, and described cross bar is connected with described crosspiece, and described vertical pole is connected with the enclosed box in enzymatic vessel inner chamber;Being provided with funnelform spreading tank with a lid in described box, the lid of this spreading tank flushes with box top board, and the bottom of this spreading tank is discharge nozzle, and this discharge nozzle is provided with the screen pack of more than two-layer;Described box base plate is provided with discharging opening, and this discharging opening is the most corresponding with described discharge nozzle and is more than discharge nozzle;The closing cap that can move left and right it is provided with between discharge nozzle and discharging opening, this closing cap contacts with bottom discharge nozzle, leaves gap between this closing cap and box base plate, and this closing cap is provided with transverse axis, this transverse axis is flexibly connected with transverse tube, and this transverse axis tail end i.e. right-hand member stretches out transverse tube;Described transverse tube is connected with box base plate through support;It is cased with spiral helicine first spring on transverse axis between closing cap and transverse tube, between this first spring and box base plate, leaves gap;The right upper portion of described box is provided with the groove of U-shaped;It is provided with telescoping switch in described box, the top of the lifting handle in this telescoping switch is in described groove after protruding upward box, described lifting handle is provided with connector, this connector is in box, one of this connector and steel wire rope is connected, and the other end of this steel wire rope is successively connected with the right-hand member of described transverse axis after the first pulley, the second pulley, the 3rd pulley;Described first pulley is higher than connector and the second pulley and the 3rd pulley, described second pulley is in the top of described transverse tube and the left side of the 3rd pulley and higher than the 3rd pulley, described 3rd pulley be in described transverse axis right-hand member right side and and transverse axis right-hand member between leave spacing;Described first pulley, the second pulley, the 3rd pulley are connected with box inwall through wheel carrier;
Described enzymatic vessel top board is provided with vertical tube, and this vertical tube top is provided with sealing cap with holes, is provided with vertical pivot in this vertical tube, is passed down through the top contact with the described lifting handle in enzymatic vessel after enzymatic vessel top board bottom this vertical pivot;This vertical pivot top protrudes upward the sealing cap on vertical tube top, this vertical pivot top is provided with button, this vertical pivot is provided with gear cap, this gear cap is more than the hole on described sealing cap, this gear cap is higher than enzymatic vessel top board, being cased with spiral helicine second spring on vertical pivot between described gear cap and enzymatic vessel top board, described gear cap and the second spring are in vertical tube inner chamber;Described vertical tube top is provided with triggering switch, and this triggering switch is the most corresponding with described button;
Described first motor be arranged over the second motor, this second motor is provided with bracing frame, and this bracing frame is connected with the outer wall of enzymatic vessel;The axle of described second motor is provided with swingle, this swingle and described first motor, all leaves gap between bracing frame and button, and this swingle is connected with BMX, and the wheel of this BMX contacts with the end face of enzymatic vessel top board;Described BMX is provided with magnet, leaves gap between this magnet and enzymatic vessel top board, and this magnet is the most corresponding with described iron block;Described swingle is provided with identity device, and this identity device is associated with the inductor being arranged on enzymatic vessel top board.
Described second motor, triggering switch, inductor are connected with described controller through wire;Described box is in the top of described agitating device;Described enzymatic vessel top board is provided with feeding port with a lid, and this feeding port is more than the lid of described spreading tank.
Beneficial effects of the present invention: because material powder one circle can be spread in enzymatic vessel by the present invention automatically equably, makes together with these material powder can preferably merge with the water in enzymatic vessel and enzyme preparation, it is thus possible to better ensure that the quality of institute's converted products.The present invention is easy to use, and efficiency is high;Health, safe and reliable.
Accompanying drawing explanation
Fig. 1 is present configuration principle schematic.
Fig. 2 is schematic top plan view of the present invention.
Detailed description of the invention
In conjunction with accompanying drawing, the present invention is further described.
As shown in Figure 1-2,1. first motors, 2. the second motor, 3. bracing frame, 4. swingle, 5. inductor, 6. spreading tank, 7. box, 8. triggering switch, 9. vertical pivot, 10. magnet, 11. iron blocks, 12. crosspieces, 13. slideways, 14. lifting handle, 15. telescoping switch, 16. transverse axis, 17. transverse tubes, 18. closing caps, 19. enzymatic vessels, 20. vertical poles in figure.
The top board of described enzymatic vessel 19 is provided with the first motor 1, and the axle of this first motor 1 is connected with the agitating device in enzymatic vessel 19 inner chamber after being passed down through enzymatic vessel 19 top board;Being provided with the controller of charged line and switch on the outer wall of enzymatic vessel 19, this controller is connected with described first motor 1 through wire;
The top of described enzymatic vessel 19 inwall is provided with a circle slideway 13, the sealing of this slideway 13 is upward, it is provided with wheel in this slideway 13, the wheel carrier of this wheel is connected with crosspiece 12 after protruding upward slideway 13 sealing, this crosspiece 12 top is provided with iron block 11, leaves gap between the bottom surface of this iron block 11 and enzymatic vessel 19 top board;Described crosspiece 12 is connected with horizontal support bar, and this support bar is provided with a roller, and this roller contacts with the outside top of slideway 13, and the outside top of described slideway 13 is wavy;Described support bar is that bent angle shape is i.e. made up of cross bar and vertical pole 20, and described cross bar is connected with described crosspiece 12, and described vertical pole 20 is connected with the enclosed box 7 in enzymatic vessel 19 inner chamber;Being provided with funnelform spreading tank 6 with a lid in described box 7, the lid of this spreading tank 6 flushes with box 7 top board, and the discharge nozzle of this spreading tank 6 is provided with the screen pack of more than two-layer;Described box 7 base plate is provided with discharging opening, and this discharging opening is the most corresponding with described discharge nozzle and is more than discharge nozzle;The closing cap 18 that can move left and right it is provided with between discharge nozzle and discharging opening, this closing cap 18 contacts with bottom discharge nozzle, gap is left between this closing cap 18 and box 7 base plate, this closing cap 18 is provided with transverse axis 16, this transverse axis 16 is flexibly connected with transverse tube 17, and this transverse axis 16 i.e. right-hand member of tail end stretches out transverse tube 17;Described transverse tube 17 is connected with box 7 base plate through support;It is cased with spiral helicine first spring on transverse axis 16 between closing cap 18 and transverse tube 17, between this first spring and box 7 base plate, leaves gap;The right upper portion of described box 7 is provided with the groove of U-shaped;It is provided with telescoping switch 15 in described box 7, the top of the lifting handle 14 in this telescoping switch 15 is in described groove after protruding upward box 7, described lifting handle 14 is provided with connector, this connector is in box 7, one of this connector and steel wire rope is connected, and the other end of this steel wire rope is successively connected with the right-hand member of described transverse axis 16 after the first pulley, the second pulley, the 3rd pulley;Described first pulley is higher than connector and the second pulley and the 3rd pulley, described second pulley is in the top of described transverse tube 17 and the left side of the 3rd pulley and higher than the 3rd pulley, described 3rd pulley be in described transverse axis 16 right-hand member right side and and transverse axis 16 right-hand member between leave spacing;Described first pulley, the second pulley, the 3rd pulley are connected with box 7 inwall through wheel carrier;
Described enzymatic vessel 19 top board is provided with vertical tube, and this vertical tube top is provided with sealing cap with holes, is provided with vertical pivot 9 in this vertical tube, is passed down through the top contact with the described lifting handle 14 in enzymatic vessel 19 after enzymatic vessel 19 top board bottom this vertical pivot 9;This vertical pivot 9 top protrudes upward the sealing cap on vertical tube top, this vertical pivot 9 top is provided with button, this vertical pivot 9 is provided with gear cap, this gear cap is more than the hole on described sealing cap, this gear cap is higher than enzymatic vessel 19 top board, being cased with spiral helicine second spring on vertical pivot 9 between described gear cap and enzymatic vessel 19 top board, described gear cap and the second spring are in vertical tube inner chamber;Described vertical tube top is provided with triggering switch 8, and this triggering switch 8 is the most corresponding with described button;
Described first motor 1 be arranged over the second motor 2, this second motor 2 is provided with bracing frame 3, and this bracing frame 3 is connected with the outer wall of enzymatic vessel 19;The axle of described second motor 2 is provided with swingle 4, this swingle 4 and described first motor 1, all leaves gap between bracing frame 3 and button, and this swingle 4 is connected with BMX, and the wheel of this BMX contacts with the end face of enzymatic vessel 19 top board;Described BMX is provided with magnet 10, leaves gap between this magnet 10 and enzymatic vessel 19 top board, and this magnet 10 is corresponding with described iron block about 11;Described swingle 4 is provided with identity device, and this identity device is associated with the inductor 5 being arranged on enzymatic vessel 19 top board.
Described second motor 2, triggering switch 8, inductor 5 are connected with described controller through wire;Described box 7 is in the top of described agitating device;Described enzymatic vessel 19 top board is provided with feeding port with a lid, and this feeding port is more than the lid of described spreading tank 6.
" outside of slideway " in " roller contacts with the outside top of slideway " refers to the side not being connected with enzymatic vessel 19 inwall, and " inner side of slideway " is the side being connected with enzymatic vessel 19 inwall.
First motor 1, triggering switch 8, inductor 5 are connected with controller through wire, the end face of enzymatic vessel 19 top board (being made by 304 or 316L corrosion resistant plates) is close to by these wires (the thin wire of width of available flat), on these wires, lay 304 stainless steel thin slices of arc shape, make BMX can cross this stainless steel thin slice smoothly.Because magnet 10 is the most inoperative to the copper cash in 304 or 316L corrosion resistant plates and wire, so these wires and stainless steel thin slice and enzymatic vessel 19 top board do not interfere with the suction to the iron block 11 below enzymatic vessel 19 top board of the magnet 10 on BMX;And magnet 10 does not interferes with these wires conveying electric current etc. yet.
Because the wheel in slideway 13 and crosspiece 12 and iron block 11 shift to install with box 7, iron block 11 is then the most corresponding with magnet 10 and BMX;And the spreading tank 6 on box 7 is the most corresponding with the feeding port on enzymatic vessel 19 top board, so, when people are toward blowing powder in spreading tank 6, will not be affected by BMX, swingle 4.
Discharging opening on box 7 base plate is made trumpet-shaped by visual feelings, and the top of this trumpet-shaped discharging opening is connected with discharge nozzle, and the leg of this trumpet-shaped discharging opening arranges a hole, not affect moving left and right of closing cap 18.Because the closure of trumpet-shaped discharging opening is more preferable, beneficially sanitation and hygiene.
When to throw in material powder in enzymatic vessel 19, first take down lid and the lid of spreading tank 6 of feeding port on enzymatic vessel 19 top board, institute's materials powder (1-2 jin) is put into spreading tank 6 entirely, and builds two above lid.Clicking " stirring " switch on controller, the first motor 1 drives agitating device to start stirring.Meanwhile, setting the spreading time (such as 30 minutes, this time is the working time of the second motor 2) on the controller, and click " spreading " switch on controller, now, the second motor 2 also will not work;Being pressed by vertical pivot 9, make the button on vertical pivot 9 top contact with triggering switch 8, trigger switch 8 and open and under the effect of controller, the second motor 2 is started working and bar 4 is rotated and rotates;Swingle 4 then drives the strong magnet 10 on BMX and BMX to detour, and magnet 10 then drives iron block 11, crosspiece 12 and wheel to detour;Crosspiece 12 then drives the spreading tank 6 etc. in support bar, roller and box 7 and box 7 to detour.
After vertical pivot 9 is all pressed (under the effect of the second spring, vertical pivot 9 can be upspring again), lifting handle 14 is pressed (lifting handle 14 top after being pressed is introduced in box 7, still locates in a groove) by vertical pivot 9 simultaneously, telescoping switch 15 is then automatically switched off, and lifting handle 14 is fastened.When lifting handle 14 declines, driving steel wire rope to decline, steel wire rope then drives transverse axis 16 and closing cap 18 to move right, and after closing cap 18 is opened, the material powder in spreading tank 6 i.e. spreads out from discharge nozzle.Because discharge nozzle is provided with the screen pack of more than two-layer, so, material powder will not the most out, but significantly slower be spread out.Because roller is to move on wavy slideway 13 top, adding upper support bar has certain elasticity, so box 7 and spreading tank 6 are understood rhythmically, pitch by a small margin, shaken, makes material powder will not block screen pack, and energy is smooth and easy and more uniformly spreads out.
When vertical pivot 9 is all pressed (vertical pivot 9 bottom extends downwardly in the groove on the right side of box 7), trigger switch 8 to open, second motor 2 is rotated bar 4, BMX and crosspiece 12, support bar and box 7 when running, and because vertical pivot 9 is in groove, does not interferes with the operation of box 7;In addition people are quickly to bleed off button, vertical pivot 9 can quickly be upspring.Being round and smooth bottom vertical pivot 9, when box 7 runs, bottom vertical pivot 9 and lifting handle 14 top also can smooth and easy separate.
When the second motor 2 was by presetting work 30 minutes, under the effect of controller, inductor 5 energising is started working;Now, when the identity device on swingle 4 is through inductor 5, inductor 5 i.e. transmits a signal to controller, second motor 2 is i.e. assigned instruction by controller, second motor 2 i.e. quits work, swingle 4, BMX, box 7 and spreading tank 6 etc. are the most out of service, and spreading tank 6 now is just the most corresponding with the feeding port on enzymatic vessel 19 top board, in order to material powder is put into spreading tank 6 by people next time.When quitting work because of the second motor 2, the axle of the second motor 2 has certain inertia when rotating, so, both inductor 5 and identity device suitably shift to install, when making the second motor 2 quit work, swingle 4, BMX and box 7, spreading tank 6 etc. can be parked in the position of setting.
After box 7, spreading tank 6 etc. are out of service, can again press vertical pivot 9, bottom vertical pivot 9 again with lifting handle 14 top contact, lifting handle 14 pressed by vertical pivot 9 again, and telescoping switch 15 i.e. automatically opens up, and lifts handle 14 and is upspring, and drives steel wire rope to rise;Meanwhile, under the effect of the first spring, transverse axis 16 and closing cap 18 are moved to the left, and the oral area of discharge nozzle is blocked by closing cap 18 again, and when making people that material powder is put into spreading tank 6, material powder will not fall from discharge nozzle.
Because the material powder in spreading tank 6 is that a circle circle spreads the most equably in enzymatic vessel 19, therefore, these material powder can the most more uniformly merge with the water in enzymatic vessel 19 and enzyme preparation together with (along with being constantly sprinkled into of material powder, when water with material powder stir relative thickness some time, under the effect of controller, As time goes on and automatically second motor 2 can be gradually lowered rotating speed, swingle 4, BMX, magnet 10 and iron block 11, roller, box 7 and spreading tank 6 etc. also can be gradually lowered the speed of service accordingly, make pitching of box 7 and spreading tank 6, jitter amplitude is the least, material powder in spreading tank 6 also can more slowly spread out), it is thus possible to better ensure that the quality of institute's converted products.
Various simple change, the remodeling made by those of ordinary skill in the art all would not depart from the scope of the present invention.
Claims (2)
1. the automatic material-strewing device on enzymatic vessel, is to be provided with the first motor on the top board of enzymatic vessel, and the axle of this first motor is connected with the agitating device in enzymatic vessel inner chamber after being passed down through enzymatic vessel top board;Being provided with the controller of charged line and switch on the outer wall of enzymatic vessel, this controller is connected with described first motor through wire;
It is characterized in that: the top of described enzymatic vessel inwall is provided with a circle slideway, the sealing of this slideway upward, is provided with wheel in this slideway, and the wheel carrier of this wheel is connected with crosspiece after protruding upward slideway sealing, this crosspiece top is provided with iron block, leaves gap between the bottom surface of this iron block and enzymatic vessel top board;Described crosspiece is connected with horizontal support bar, and this support bar is provided with a roller, and this roller contacts with the outside top of slideway, and the outside top of described slideway is wavy;Described support bar is that bent angle shape is i.e. made up of cross bar and vertical pole, and described cross bar is connected with described crosspiece, and described vertical pole is connected with the enclosed box in enzymatic vessel inner chamber;Being provided with funnelform spreading tank with a lid in described box, the lid of this spreading tank flushes with box top board, and the bottom of this spreading tank is discharge nozzle, and this discharge nozzle is provided with the screen pack of more than two-layer;Described box base plate is provided with discharging opening, and this discharging opening is the most corresponding with described discharge nozzle and is more than discharge nozzle;The closing cap that can move left and right it is provided with between discharge nozzle and discharging opening, this closing cap contacts with bottom discharge nozzle, leaves gap between this closing cap and box base plate, and this closing cap is provided with transverse axis, this transverse axis is flexibly connected with transverse tube, and this transverse axis tail end i.e. right-hand member stretches out transverse tube;Described transverse tube is connected with box base plate through support;It is cased with spiral helicine first spring on transverse axis between closing cap and transverse tube, between this first spring and box base plate, leaves gap;The right upper portion of described box is provided with the groove of U-shaped;It is provided with telescoping switch in described box, the top of the lifting handle in this telescoping switch is in described groove after protruding upward box, described lifting handle is provided with connector, this connector is in box, one of this connector and steel wire rope is connected, and the other end of this steel wire rope is successively connected with the right-hand member of described transverse axis after the first pulley, the second pulley, the 3rd pulley;Described first pulley is higher than connector and the second pulley and the 3rd pulley, described second pulley is in the top of described transverse tube and the left side of the 3rd pulley and higher than the 3rd pulley, described 3rd pulley be in described transverse axis right-hand member right side and and transverse axis right-hand member between leave spacing;Described first pulley, the second pulley, the 3rd pulley are connected with box inwall through wheel carrier;
Described enzymatic vessel top board is provided with vertical tube, and this vertical tube top is provided with sealing cap with holes, is provided with vertical pivot in this vertical tube, is passed down through the top contact with the described lifting handle in enzymatic vessel after enzymatic vessel top board bottom this vertical pivot;This vertical pivot top protrudes upward the sealing cap on vertical tube top, this vertical pivot top is provided with button, this vertical pivot is provided with gear cap, this gear cap is more than the hole on described sealing cap, this gear cap is higher than enzymatic vessel top board, being cased with spiral helicine second spring on vertical pivot between described gear cap and enzymatic vessel top board, described gear cap and the second spring are in vertical tube inner chamber;Described vertical tube top is provided with triggering switch, and this triggering switch is the most corresponding with described button;
Described first motor be arranged over the second motor, this second motor is provided with bracing frame, and this bracing frame is connected with the outer wall of enzymatic vessel;The axle of described second motor is provided with swingle, this swingle and described first motor, all leaves gap between bracing frame and button, and this swingle is connected with BMX, and the wheel of this BMX contacts with the end face of enzymatic vessel top board;Described BMX is provided with magnet, leaves gap between this magnet and enzymatic vessel top board, and this magnet is the most corresponding with described iron block;Described swingle is provided with identity device, and this identity device is associated with the inductor being arranged on enzymatic vessel top board.
Automatic material-strewing device on a kind of enzymatic vessel the most according to claim 1, is characterized in that: described second motor, triggering switch, inductor are connected with described controller through wire;Described box is in the top of described agitating device;Described enzymatic vessel top board is provided with feeding port with a lid, and this feeding port is more than the lid of described spreading tank.
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CN201610432400.9A CN105838601B (en) | 2016-06-17 | 2016-06-17 | Automatic material-strewing device on enzymatic vessel |
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CN201610432400.9A CN105838601B (en) | 2016-06-17 | 2016-06-17 | Automatic material-strewing device on enzymatic vessel |
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CN105838601B CN105838601B (en) | 2017-12-08 |
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CN108949552A (en) * | 2018-08-16 | 2018-12-07 | 陈科 | Automatic charging device on enzymatic vessel |
CN110205237A (en) * | 2019-06-21 | 2019-09-06 | 陈科 | A kind of self-feeding batch charging mechanism matched with enzymatic vessel |
CN114214190A (en) * | 2021-12-28 | 2022-03-22 | 北京四良科技有限公司 | Biogas slurry enzymolysis fermentation tank capable of quantitatively adding enzymolysis agent |
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CN110205237A (en) * | 2019-06-21 | 2019-09-06 | 陈科 | A kind of self-feeding batch charging mechanism matched with enzymatic vessel |
CN110205237B (en) * | 2019-06-21 | 2022-03-25 | 陈科 | With supporting autoloading of enzymolysis tank throw material mechanism |
CN114214190A (en) * | 2021-12-28 | 2022-03-22 | 北京四良科技有限公司 | Biogas slurry enzymolysis fermentation tank capable of quantitatively adding enzymolysis agent |
CN114214190B (en) * | 2021-12-28 | 2023-12-01 | 北京四良科技有限公司 | Biogas slurry enzymolysis fermentation tank capable of quantitatively adding enzymolysis agent |
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