CN215724942U - Cleaning and drying device for material transfer and mixing barrel - Google Patents

Cleaning and drying device for material transfer and mixing barrel Download PDF

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Publication number
CN215724942U
CN215724942U CN202121638845.5U CN202121638845U CN215724942U CN 215724942 U CN215724942 U CN 215724942U CN 202121638845 U CN202121638845 U CN 202121638845U CN 215724942 U CN215724942 U CN 215724942U
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China
Prior art keywords
sealing cover
cleaning
drying
mixing barrel
material turnover
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CN202121638845.5U
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Chinese (zh)
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李明新
吕言
雷杰
王磊
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Sipeng Biotechnology Suzhou Co ltd
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Sipeng Biotechnology Suzhou Co ltd
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Abstract

The utility model discloses a cleaning and drying device for a material turnover and mixing barrel, which comprises: the device comprises a spraying device, an air compressing device, an upper sealing cover, a lower sealing cover and a sealing cover control device; the working parts of the spraying device and the compressed air device are arranged on the upper sealing cover and extend into the material turnover and mixing barrel. The sealing cover control device for controlling the upper sealing cover and the lower sealing cover to switch between the sealing position and the position with the gap is creatively arranged, when the drying air is used for drying materials and mixing the materials, the gap is formed between the upper sealing cover and the lower sealing cover and between the materials and the mixing barrel, and the drying gas flows through the upper and lower chuck type sealing opening planes along the gap to dry the upper and lower chuck type sealing opening planes, so that the device can dry the inner wall of the barrel and the upper and lower chuck type sealing opening planes, the labor cost and the operation time are saved, and the efficiency is improved.

Description

Cleaning and drying device for material transfer and mixing barrel
Technical Field
The utility model relates to the field of biological medicine preparation equipment, in particular to a cleaning and drying device for a material turnover and mixing barrel.
Background
In-process at the preparation of biological medicine product, various material turnover of frequent use, the mixing barrel, some material turnover, two upper and lower chuck formula sealing port and detachable end cover have to the mixing barrel, after production is accomplished, need to use professional equipment to the material turnover usually, the mixing barrel washs and is dry, in order to be ready for next use, traditional washing drying device is equipped with two sealed lids that match with chuck formula sealing port respectively, the sealed lid of covering closely earlier washes barrel inside repeatedly, use dry gas to carry out the material turnover at last, the mixing barrel is dry, but because the influence of sealed lid, the terminal surface of chuck formula sealing port is unable dry up to standard, need the manual work to clean and dry operation, time and labor are wasted, need a material turnover that degree of automation is high urgently, mixing barrel washs drying device.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problems, the utility model discloses a cleaning and drying device for a material turnover and mixing barrel, which can realize automatic cleaning and drying of equipment in the whole process, greatly improve the efficiency and save the time and labor cost.
Concretely, a washing drying device of material turnover, blending drum for both ends all are equipped with material turnover, the blending drum of chuck formula sealing port about washing and drying, include: the sealing device comprises a spraying device, an air compressing device, an upper sealing cover and a lower sealing cover which are respectively matched with an upper clamping disc type sealing port and a lower clamping disc type sealing port in a sealing way, and a sealing cover control device for controlling the upper sealing cover and the lower sealing cover to be switched between a sealing position and a position with a gap; the working parts of the spraying device and the compressed air device are arranged on the upper sealing cover and extend into the material turnover and mixing barrel.
The sealing cover control device for controlling the upper sealing cover and the lower sealing cover to switch between the sealing position and the position with the gap is creatively arranged, so that when the drying air is used for drying materials and mixing the materials, the upper sealing cover and the lower sealing cover and the materials can be circulated and the mixing barrel can have the gap, and the drying gas flows through the upper and lower chuck type sealing opening planes along the gap to blow the upper and lower chuck type sealing opening planes.
Furthermore, a plurality of annular grooves or wave and sawtooth structures are arranged on the annular surfaces of the upper sealing cover and the lower sealing cover corresponding to the planes of the upper chuck type sealing opening and the lower chuck type sealing opening.
Further, the compressed air device comprises an air source, a drying device and a heating device.
Further, the compressed air device also comprises a condensed water recovery device.
Further, spray set is including clean pond or jar, booster pump, purification tank or jar, recycle pump, and the booster pump gets into the work portion in waiting abluent material turnover, the blending drum after with the clean water pressure boost in clean pond or the jar, and to material turnover, blending drum flow into purification tank or jar after spraying and washing, and the clean water after the purification is transported back to clean pond or jar through the recycle pump and is recycled.
Furthermore, a filtering device is arranged in the condensed water recovery device, and the output end of the filtering device is connected with the recovery pump.
Furthermore, the compressed air device is also provided with a flow control device, and a humidity detection device is arranged in the condensed water recovery device.
Further, the working part is a porous spherical structure.
Further, the spherical structure comprises a rotatable ball head.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings used in the embodiments or the description of the prior art will be briefly described below.
FIG. 1 is a schematic view of the upper and lower sealing covers of the material transferring and mixing barrel cleaning and drying device of the present invention in a sealed state;
FIG. 2 is a schematic view of the upper and lower sealing covers of the material transferring and mixing barrel cleaning and drying device of the present invention in a state with gaps;
fig. 3 is a schematic view of the lower sealing cap.
Wherein the reference numbers referred to in the figures are as follows:
a material transferring and mixing barrel 1; an upper chuck type seal port 11; a lower cartridge seal port 12; the water source 20 is cleaned.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
In order to solve the aforementioned technical problems in the prior art, in some embodiments of the present application, as shown in fig. 1 and 2, a cleaning and drying apparatus for a material transferring and mixing barrel, for cleaning and drying a material transferring and mixing barrel 1 having chuck type sealing ports (labeled as 11 and 12 in the figures) at upper and lower ends thereof, comprises: a spray device, a compressed air device, an upper sealing cover 25 and a lower sealing cover 26 which are respectively matched with the upper chuck type seal 11 and the lower chuck type seal 12 in a sealing way, and a sealing cover control device which controls the upper sealing cover 25 and the lower sealing cover 26 to be switched between a sealing position (shown in figure 1) and a position with a gap (shown in figure 2); the working part 24 of the spraying device and the compressed air device is arranged on the upper sealing cover 25 and extends into the material turnover and mixing barrel 1.
The sealing cover control device 5 for controlling the upper sealing cover 25 and the lower sealing cover 26 to switch between the sealing position and the position with the gap is creatively arranged, so that when the dry air drying material turnover and mixing barrel is carried out, the gap is formed between the upper sealing cover 25 and the lower sealing cover 26 and the material turnover and mixing barrel 1, the dry air flows through the port planes of the upper and lower chuck type sealing ports 11 and 12 along the gap, and the drying operation is carried out on the port planes of the upper and lower chuck type sealing ports 11 and 12, therefore, the drying operation of the inner wall of the barrel and the port planes of the upper and lower chuck type sealing ports 11 and 12 can be completed by the device, the manual wiping is not needed, the labor cost and the operation time are saved, and the efficiency is improved.
In some embodiments, as shown in fig. 1 and 2, the sealing cover control device 5 further comprises a pair of barrel clasps 52 for clasping the barrel of the material transfer and mixing barrel 1, fixing it on the operation station and releasing it after the operation is completed. The clasping and unclamping are performed by a pair of first cylinders or air cylinders 51. The paired upper and lower seal cover holding means 54 for releasing and holding the upper and lower seal covers is itself controlled by a set of small air cylinders, and after holding the upper and lower seal covers, the upper and lower seal covers are controlled by upper and lower pairs of second oil cylinders or air cylinders 53 to be switched between the sealing position and the gap position, and fig. 1 and 2 show different states of the upper and lower seal covers 25 and 26 at the sealing position and the gap position, respectively.
In some embodiments, as shown in fig. 3, a plurality of annular grooves or waves or saw-tooth structures 263 are formed on the circular surfaces of the upper sealing cover 25 and the lower sealing cover 26 corresponding to the planes of the upper and lower chuck type sealing ports 11 and 12. Fig. 3 shows a schematic view of the lower seal cover 26, and the port plane of the upper seal cover 25 has the same plurality of annular grooves or the wave and sawtooth structures, which is not provided for any further illustration. The lower sealing cover 26 has a bottom surface 261 with a concave spherical structure, a drain port 262 is arranged at the lowest point of the bottom surface 261, the drain port 262 is externally connected with the drain pipe 28, and the drain pipe 28 is provided with a drain valve 27 for opening or closing the drain pipe 28. When the water is sprayed and washed, the drain valve 28 is opened to drain the washed waste water from the drain pipe 28, and if the water is needed to soak the barrel, the drain valve 27 can be closed to store the water. The gaps between the upper and lower sealing cover end faces and the upper and lower chuck type sealing opening end faces are provided with curved surfaces by the aid of the annular grooves or the wavy and sawtooth structures 263, and dry air flows along the curved surfaces, so that the impact of the air on the upper and lower chuck type sealing opening end faces is more favorably blown, and the drying efficiency of the upper and lower chuck type sealing opening end faces is favorably improved.
In some embodiments, the compressed air device includes an air source 3 (which may be an air compressor or other high pressure air source), a drying device, and a heating device. In fig. 1 and 2, the drying device and the heating device are integrated into a module, which is indicated by 32 in the figure, the drying device is used for filtering moisture in the high-pressure air, so that the air meets the set dryness requirement, and the drying device can adopt drying materials in the prior art, such as bamboo charcoal, lime, silica gel particles, and the like. Heating device is used for heating the air after the drying to obtain to material turnover, blending drum 1 drying efficiency more efficient. The drying device can adopt a pipeline for circulating high-temperature oil, a ceramic electric heating fin and other heating elements in the prior art to heat the drying air. The drying device is necessary to be arranged, and the heating device is selected to be arranged according to actual requirements. The efficiency or time for material turnover and drying of the mixing barrel 1 depends on the flow rate of the drying air and the temperature of the drying air, and a reasonable choice is made according to the balance of the production capacity requirement and the energy cost.
In some embodiments, the compressed air device further comprises a condensate recovery device 31. The condensate recovery device 31 is actually a buffer tank, a condensation pipeline for circulating cooling water can be arranged in the buffer tank, moisture in the air is condensed into liquid after the high-pressure high-temperature gas from the air compressor 3 is cooled, the liquid water is accumulated at the lower part of the condensate recovery device 31, the liquid water is discharged through a valve after the liquid water is accumulated to a set height, and the water can be recovered, for example, in the examples of fig. 1 and fig. 2, the water is placed into a wastewater tank 41 for recycling, so that the water resource is saved. The cooling water can be cleaned by clean water for cleaning, which firstly passes through the condensation pipeline and then flows into the clean water tank through the 20 pipelines for cleaning, so that the energy can be further saved and the consumption can be further reduced. The condensate water recovery device 31 firstly carries out preliminary clearing on the moisture in the compressed air, so that the load of the drying device can be greatly reduced, the use cost of the drying device is reduced, and the replacement period is prolonged.
In some embodiments, the spraying device includes a cleaning water tank or tank 21, a booster pump 22, a purification tank or tank 43, and a first recovery pump 42, the booster pump 22 boosts the cleaning water in the cleaning water tank or tank 21, enters the material circulation to be cleaned, the working part 24 in the mixing tub 1, flows into the waste water tank 41 after the material circulation and the mixing tub 1 are sprayed and washed, and is pumped into the purification tank or tank 43 through the recovery pump 42, and the purified cleaning water is transported back to the cleaning water tank or tank 21 through a second recovery pump 44 for recycling. The first recovery pump 42 and the second recovery pump 44 may be omitted, one recovery pump may be reserved, and the rest may be gravity-driven to flow the wastewater in each module and pipeline. Through filtration modules such as multi-stage filtration material, membrane in purification tank or jar 43 to and chemical reaction pond (as required), carry out the concentration with impurity and the incomplete dregs of material in the waste water and recycle even, great reduction the emission of waste water, reach the requirement of environmental protection.
If necessary, a filter device is provided in the condensate recovery device 31, the output of which is connected to a recovery pump, so that the condensate does not have to be discharged into the waste water basin 41, but can be fed directly as clean water into the clean water basin or tank 21.
In some embodiments, the compressed air device is further provided with a flow control device, and the condensed water recovery device is provided with a humidity detection device. The device is used for regulating and controlling the flow of high-pressure gas and monitoring the dryness of air. The humidity sensor can also be arranged in the heating device, the working part and other positions and used for monitoring the dryness of the air source and the dryness of the environment in the barrel so as to realize automatic control.
In some embodiments, the working portion 24 is a porous spherical structure, such that the high pressure water and high pressure air can perform 360 ° omni-directional spray rinsing and air drying operations on the inside environment of the barrel.
Further, the spherical structure comprises a rotatable ball head. This may improve the rinsing and drying effect.
According to the utility model, after the clean water is pressurized by the booster pump 22, the inner wall of the barrel is sprayed and washed by the water valve 23 and the working part, at the moment, the upper sealing cover and the lower sealing cover are in a sealing state, the air valve 33 is in a closing state, the drain valve 27 is in an opening position, after repeated washing, the booster pump 22 is stopped, the water valve 23 is closed, the air valve 33 is opened, the dried high-pressure gas blows and dries the inside of the barrel through the working part 24, and simultaneously, the working part 24 is also dried, so that the influence of residual moisture is prevented, and the advantage of the common working part is also provided. After the drying in the barrel is completed, the drain valve 27 is closed, the upper and lower sealing covers are opened to the gap position, and the high-pressure gas blows the two end surfaces of the barrel and the end surfaces of the upper and lower sealing covers through the gap to dry, thereby completing the operation.
It will be apparent to those skilled in the art that various changes and modifications can be made without departing from the inventive concept thereof, and these changes and modifications can be made without departing from the spirit and scope of the utility model.

Claims (9)

1. The utility model provides a material turnover, mixing drum's washing drying device for both ends all are equipped with material turnover, the mixing drum of chuck formula sealing port about washing and drying, its characterized in that includes: the sealing device comprises a spraying device, an air compressing device, an upper sealing cover and a lower sealing cover which are respectively matched with an upper clamping disc type sealing port and a lower clamping disc type sealing port in a sealing way, and a sealing cover control device for controlling the upper sealing cover and the lower sealing cover to be switched between a sealing position and a position with a gap; the working parts of the spraying device and the compressed air device are arranged on the upper sealing cover and extend into the material turnover and mixing barrel.
2. The cleaning and drying device for the material turnover and mixing barrel as claimed in claim 1, wherein the annular surfaces of the upper sealing cover and the lower sealing cover corresponding to the upper and lower chuck type sealing port planes are provided with a plurality of annular grooves or wave and sawtooth structures.
3. The cleaning and drying device for the material turnover and mixing barrel as claimed in claim 2, wherein the compressed air device comprises an air source, a drying device and a heating device.
4. The material turnover, mixing bucket cleaning and drying apparatus of claim 3, wherein said compressed air apparatus further comprises a condensate recovery device.
5. The cleaning and drying device for the material turnover and mixing barrel as claimed in claim 4, wherein the spraying device comprises a cleaning water tank or tank, a booster pump, a purification tank or tank and a recovery pump, the booster pump boosts cleaning water in the cleaning water tank or tank and then enters a working part in the material turnover and mixing barrel to be cleaned, the cleaning water flows into the purification tank or tank after being sprayed and washed for the material turnover and mixing barrel, and the purified cleaning water is transported back to the cleaning water tank or tank by the recovery pump for recycling.
6. The cleaning and drying device for the material turnover and mixing barrel as claimed in claim 5, wherein a filtering device is arranged in the condensed water recovery device, and the output end of the filtering device is connected with a recovery pump.
7. The material turnover and mixing barrel cleaning and drying device as claimed in any one of claims 4-6, wherein the compressed air device is further provided with a flow control device, and the condensed water recovery device is provided with a humidity detection device.
8. The material transfer, mixing barrel cleaning and drying apparatus of claim 7, wherein said working portion is a porous spherical structure.
9. The material transfer, mixing barrel cleaning and drying apparatus of claim 8, wherein said spherical structure comprises a rotatable bulb.
CN202121638845.5U 2021-07-19 2021-07-19 Cleaning and drying device for material transfer and mixing barrel Active CN215724942U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121638845.5U CN215724942U (en) 2021-07-19 2021-07-19 Cleaning and drying device for material transfer and mixing barrel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121638845.5U CN215724942U (en) 2021-07-19 2021-07-19 Cleaning and drying device for material transfer and mixing barrel

Publications (1)

Publication Number Publication Date
CN215724942U true CN215724942U (en) 2022-02-01

Family

ID=79987584

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121638845.5U Active CN215724942U (en) 2021-07-19 2021-07-19 Cleaning and drying device for material transfer and mixing barrel

Country Status (1)

Country Link
CN (1) CN215724942U (en)

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