CN205708644U - A kind of automatically cleaning conveying device being applicable to viscosity fermented feed - Google Patents
A kind of automatically cleaning conveying device being applicable to viscosity fermented feed Download PDFInfo
- Publication number
- CN205708644U CN205708644U CN201620158162.2U CN201620158162U CN205708644U CN 205708644 U CN205708644 U CN 205708644U CN 201620158162 U CN201620158162 U CN 201620158162U CN 205708644 U CN205708644 U CN 205708644U
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- screw conveyor
- shaftless screw
- tube body
- automatically cleaning
- body case
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Abstract
The utility model relates to a kind of automatically cleaning conveying device being applicable to viscosity fermented feed, including feed hopper, shaftless screw conveyor, discharging opening, also include jet blower, flexible pipe and aqueduct valve, install in described shaftless screw conveyor transport tube body case and pass sequentially through in the shape of a spiral around the flexible pipe UNICOM of shaftless screw conveyor transport tube body case with the jet blower communicating inside shaftless screw conveyor and all adjacent jet blowers, described shaftless screw conveyor conveying cylinder is axially downwardly obliquely installed from feed hopper one end to discharging opening one end, described aqueduct valve is arranged on the water inlet end of flexible pipe.The utility model simple in construction, can realize automatically cleaning the defective material in conveying viscosity fermented feed rear screw conveyer, ensures that operating environment is good, product is not contaminated.
Description
Technical field
The utility model relates to a kind of viscosity feed conveyer, particularly to a kind of automatically cleaning conveying device being applicable to viscosity fermented feed.
Background technology
Owing in the production process at fermented feed, drying cost is higher, and the thermal sensitivity beneficiating ingredient in fermented feed can be damaged by dry run unavoidably, so the manufacturer of some fermented feeds have adjusted fermented feed processing mode now, eliminating the dry link in process, directly the form with undried wet fermented feed is dispatched from the factory.In production practices, when wet fermented feed is manually packed by employing, typically use the conveying worm feed being horizontally mounted, then use the shaftless screw conveyor will be more applicable for the bigger fermentation materials of viscosity, because not having axle only to carry blade in conveying worm transport tube body, in transport tube body, material has bigger receiving space, decreases the mechanical presses of material in course of conveying, it is to avoid conveying worm blocks up machine.But due to this type of viscosity fermented feed, moisture is high, viscosity is big, free-running property is poor, extremely being easily adhered in course of conveying remains in conveying worm, conveying worm use terminates rear internal residual material and is difficult to remove, defective material can be caused to foul at the internal moldy metamorphism of conveying worm if removing defective material not in time, cause production operation environment to there is bad smell, and upper once use this conveying worm when cause the contamination of products of next batch.
Content of the invention
For solving the problems referred to above, the purpose of this utility model is to provide a kind of automatically cleaning conveying device being applicable to viscosity fermented feed, this apparatus structure is simple, easy to operate, can realize that in shaftless screw conveyor, defective material removes the operating process of cleaning automatically after carrying out the production of viscosity fermented feed and terminating.
For solving the problems referred to above, the technical solution of the utility model is: a kind of automatically cleaning conveying device being applicable to viscosity fermented feed, including feed hopper, shaftless screw conveyor, discharging opening, also include jet blower, flexible pipe and aqueduct valve, install in described shaftless screw conveyor transport tube body case and pass sequentially through in the shape of a spiral around the flexible pipe UNICOM of shaftless screw conveyor transport tube body case with the jet blower communicating inside shaftless screw conveyor and all adjacent jet blowers, described shaftless screw conveyor conveying cylinder is axially downwardly obliquely installed from feed hopper one end to discharging opening one end, described aqueduct valve is arranged on the water inlet end of flexible pipe.
Preferably, described shaftless screw conveyor conveying cylinder axis with the angle of the slanted angle α of horizontal plane is: 5 °≤α≤25 °.
Preferably, the angle of angle β in the vertical cross-section of shaftless screw conveyor transport tube body case for described adjacent two the jet blower axis being arranged in shaftless screw conveyor transport tube body case is: 45 °≤β≤120 °, and projector distance L a length of that adjacent two jet blowers are on shaftless screw conveyor conveying cylinder axis: 1cm≤L≤10cm.
Preferably, the discharging direction of described discharging opening is for vertically downward.
Using method of the present utility model is: before start runs, and confirms that aqueduct valve is closed mode.Feed hopper feeding, shaftless screw conveyor is opened, is manually carried out splicing bagging operations at discharging opening, after installing a certain amount of material, can stop the operation of shaftless screw conveyor, need to be then turned on shaftless screw conveyor during splicing bagging operations, this operation is until completing production task.When production task has completed and has not had material in feed hopper, now in the state of shaftless screw conveyor is still run, open aqueduct valve, high pressure clear water sprays into inside shaftless screw conveyor in each jet blower from shaftless screw conveyor, owing to helical feed blade is still in rotation, so high pressure clear water can clean to the large-area conveying in whole surface and the jet blower opposite cylinder inner surface of helical feed blade, the defective material under being cleaned by and rinse water are natural from discharging opening outflow along the inclined plane of shaftless screw conveyor conveying cylinder.Cleaning can be closed aqueduct valve and stop shaftless screw conveyor after completing, the residual water in shaftless screw conveyor can nature flow downward out, it is possible to naturally drains.
Compared with prior art, the beneficial effects of the utility model are: the conveying cylinder axis of (1) shaftless screw conveyor is horizontal by certain angle of inclination, feed hopper is arranged on the updip end of shaftless screw conveyor conveying cylinder, discharging opening is arranged on the end that has a down dip of shaftless screw conveyor conveying cylinder, effect due to gravity, such mode is more conducive to the viscosity fermentation materials that when equipment runs, free-running property is poor and moves to discharging opening inside shaftless screw conveyor, additionally shaftless screw conveyor use terminate after defective material within jet blower spraying-rinsing shaftless screw conveyor when, defective material and rinse water can flow out from discharging opening naturally, and the residual water within shaftless screw conveyor is easier to drain to equipment protected effect after stopping cleaning.
(2) jet blower helically cincture arrangement in shaftless screw conveyor transport tube body case, because during jet cleaning, propeller blade is still rotating, the water of now jet blower ejection is possible not only to the conveying cylinder inboard wall cleaning to clean to again jet blower opposite while the surface of propeller blade, cleans very comprehensive.
(3) after shaftless screw conveyor uses and terminates, in the state of being only used in start operation, opening aqueduct valve, high pressure clear water sprays into, from jet blower, the cleaning cleaning that can complete in shaftless screw conveyor within shaftless screw conveyor, convenience and high-efficiency, ensures that product is not contaminated.
Brief description
Fig. 1 angle of angle β that is a kind of adjacent two jet blower axis be applicable to the automatically cleaning conveying device of viscosity fermented feed in shaftless screw conveyor transport tube body case of the utility model in the vertical cross-section carrying cylinder is 90 ° of front elevational schematic when installing.
Fig. 2 is the A-A sectional view of Fig. 1.
Fig. 3 is that Fig. 1 carries the sectional view of cylinder axis vertical plane along shaftless screw conveyor.
In figure: 1. feed hopper;2. shaftless screw conveyor;3. feed opening;4. jet blower;5. flexible pipe;6. aqueduct valve.
Detailed description of the invention
With embodiment, the utility model is further illustrated below in conjunction with the accompanying drawings.
Embodiment 1: as shown in FIG. 1 to 3, a kind of automatically cleaning conveying device being applicable to viscosity fermented feed, including feed hopper 1, shaftless screw conveyor 2, discharging opening 3, also include jet blower 4, flexible pipe 5 and aqueduct valve 6, install in described shaftless screw conveyor 2 transport tube body case and pass sequentially through in the shape of a spiral around flexible pipe 5 UNICOM of shaftless screw conveyor 2 transport tube body case with the internal jet blower 4 communicating of shaftless screw conveyor 2 and all adjacent jet blowers 4, described shaftless screw conveyor 2 carries cylinder and is axially downwardly obliquely installed to discharging opening 3 one end from feed hopper 1 one end, described aqueduct valve 6 is arranged on the water inlet end of flexible pipe 5.
Preferably, described shaftless screw conveyor 2 carries cylinder axis and with the angle of the angle α of horizontal plane is: 15 °.
Preferably, the angle of angle β in the vertical cross-section of shaftless screw conveyor 2 transport tube body case for described adjacent two jet blower 4 axis being arranged in shaftless screw conveyor 2 transport tube body case is: 90 °, and adjacent two jet blowers 4 carry a length of of projector distance L on cylinder axis: 5cm in shaftless screw conveyor 2.
Preferably, the discharging direction of described discharging opening 3 is for vertically downward.
During concrete application, before start runs, confirm that aqueduct valve 6 is closed mode.Feed hopper 1 feeding, shaftless screw conveyor 2 is opened, and manually carries out splicing bagging operations at discharging opening 3, after installing a certain amount of material, can stop the operation of shaftless screw conveyor 2, need to be then turned on during splicing bagging operations shaftless screw conveyor 2, this operation is until completing production task.When production task has completed and has not had material in feed hopper 1, now in the state of shaftless screw conveyor 2 is still run, open aqueduct valve 6, high pressure clear water sprays into shaftless screw conveyor 2 in each jet blower 4 from shaftless screw conveyor 2 internal, owing to helical feed blade is still in rotation, so high pressure clear water can clean to the large-area conveying in whole surface and the jet blower 4 opposite cylinder inner surface of helical feed blade, the inclined plane that defective material under being cleaned by and rinse water carry cylinder along shaftless screw conveyor 2 is natural from discharging opening outflow.Cleaning can be closed aqueduct valve 6 and stop shaftless screw conveyor 2 after completing, the residual water in shaftless screw conveyor 2 can nature flow downward out, it is possible to naturally drains.
Embodiment 2: unlike the embodiments above: preferably, described shaftless screw conveyor 2 carries cylinder axis and with the angle of the angle α of horizontal plane is: 5 °.
Preferably, the angle of angle β in the vertical cross-section of shaftless screw conveyor 2 transport tube body case for described adjacent two jet blower 4 axis being arranged in shaftless screw conveyor 2 transport tube body case is: 45 °, and adjacent two jet blowers 4 carry a length of of projector distance L on cylinder axis: 10cm in shaftless screw conveyor 2.
Embodiment 3: unlike the embodiments above: preferably, described shaftless screw conveyor 2 carries cylinder axis and with the angle of the angle α of horizontal plane is: 25 °.
Preferably, the angle of angle β in the vertical cross-section of shaftless screw conveyor 2 transport tube body case for described adjacent two jet blower 4 axis being arranged in shaftless screw conveyor 2 transport tube body case is: 120 °, and adjacent two jet blowers 4 carry a length of of projector distance L on cylinder axis: 1cm in shaftless screw conveyor 2.
Claims (4)
1. the automatically cleaning conveying device being applicable to viscosity fermented feed, including feed hopper, shaftless screw conveyor, discharging opening, it is characterized in that: also include jet blower, flexible pipe and aqueduct valve, install in described shaftless screw conveyor transport tube body case and pass sequentially through in the shape of a spiral around the flexible pipe UNICOM of shaftless screw conveyor transport tube body case with the jet blower communicating inside shaftless screw conveyor and all adjacent jet blowers, described shaftless screw conveyor conveying cylinder is axially downwardly obliquely installed from feed hopper one end to discharging opening one end, described aqueduct valve is arranged on the water inlet end of flexible pipe.
2. a kind of automatically cleaning conveying device being applicable to viscosity fermented feed according to claim 1, it is characterised in that: described shaftless screw conveyor conveying cylinder axis with the angle of the slanted angle α of horizontal plane is: 5 °≤α≤25 °.
3. a kind of automatically cleaning conveying device being applicable to viscosity fermented feed according to claim 1, it is characterized in that: the angle of angle β in the vertical cross-section of shaftless screw conveyor transport tube body case for described adjacent two the jet blower axis being arranged in shaftless screw conveyor transport tube body case is: 45 °≤β≤120 °, and projector distance L a length of that adjacent two jet blowers are on shaftless screw conveyor conveying cylinder axis: 1cm≤L≤10cm.
4. a kind of automatically cleaning conveying device being applicable to viscosity fermented feed according to claim 1, it is characterised in that: the discharging direction of described discharging opening is for vertically downward.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620158162.2U CN205708644U (en) | 2016-03-02 | 2016-03-02 | A kind of automatically cleaning conveying device being applicable to viscosity fermented feed |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620158162.2U CN205708644U (en) | 2016-03-02 | 2016-03-02 | A kind of automatically cleaning conveying device being applicable to viscosity fermented feed |
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CN205708644U true CN205708644U (en) | 2016-11-23 |
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CN201620158162.2U Expired - Fee Related CN205708644U (en) | 2016-03-02 | 2016-03-02 | A kind of automatically cleaning conveying device being applicable to viscosity fermented feed |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105600364A (en) * | 2016-03-02 | 2016-05-25 | 武汉力田生物科技有限公司 | Self-cleaning delivery device suitable for sticky fermented feed |
-
2016
- 2016-03-02 CN CN201620158162.2U patent/CN205708644U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105600364A (en) * | 2016-03-02 | 2016-05-25 | 武汉力田生物科技有限公司 | Self-cleaning delivery device suitable for sticky fermented feed |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20161123 Termination date: 20210302 |