CN217616336U - Cleaning and blowing drying integrated device for pharmaceutical equipment sensor - Google Patents
Cleaning and blowing drying integrated device for pharmaceutical equipment sensor Download PDFInfo
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- CN217616336U CN217616336U CN202220505398.4U CN202220505398U CN217616336U CN 217616336 U CN217616336 U CN 217616336U CN 202220505398 U CN202220505398 U CN 202220505398U CN 217616336 U CN217616336 U CN 217616336U
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Abstract
The utility model relates to a wash and dry integrated device of blowing for pharmaceutical equipment sensor belongs to biological medicine and equips technical field. Comprises a motor shell, a cleaning fluid container, a nozzle, a micro water pump and a micro fan; the cleaning liquid container is connected with the motor shell; a micro water pump and a micro fan are arranged in the motor shell; a nozzle is arranged on the motor shell; one end of the micro water pump is connected with the cleaning fluid container through a pipeline, and the other end of the micro water pump is connected with the nozzle; the micro fan is connected with the nozzle through a pipeline. The utility model provides a rapid cleaning and blow-drying device which can realize rapid blow-drying and minimum cleaning time, is convenient to carry and is simple to operate; the detection efficiency is improved; the target of rapid and accurate measurement is detected.
Description
Technical Field
The utility model relates to a wash and dry integrated device of blowing for pharmaceutical equipment sensor belongs to biological medicine and equips technical field.
Background
In the pharmaceutical process, the state parameters in the production process are controlled very strictly. In the production process, state parameters such as conductance, pH value and the like need to be measured off-line from time to time, and the sensor needs to be calibrated. When the sensor is used for the detection, the sensor needs to be placed in liquid to be detected, and after the sensor is taken out after the measurement is finished, the sensor needs to be cleaned for the next detection. The measurement time and continuity during the production process have a very large influence on the quality of the pharmaceutical product. How to realize rapid and accurate measurement is a continuously pursued goal in pharmaceutical technology. Calibration and other work of conductivity sensors, pH sensors and the like are also frequently required in the production process. In these operations, when different solutions are measured, a washing bottle filled with deionized water is used to fully wash the solution residue on the probe surface, and then wiping paper is used to dry the deionized water residue on the probe surface. At this point, the probe is wiped dry with a wipe, which can damage the probe surface. If the wiping paper is not used for wiping, the sensor probe is automatically dried, the time is consumed, and the continuous measurement and the measurement precision are influenced. Therefore, the technical problem of how to quickly clean and dry the sensor probe in the detection process needs to be solved in the technical field.
Disclosure of Invention
The utility model aims at solving the technical problem of how to wash fast, dry the sensor probe in the testing process.
In order to solve the above problems, the technical solution adopted by the present invention is to provide an integrated device for cleaning, blowing and drying a sensor of a pharmaceutical device, comprising a motor housing, a cleaning solution container, a nozzle, a micro water pump and a micro fan; the cleaning liquid container is connected with the motor shell; a micro water pump and a micro fan are arranged in the motor shell; a nozzle is arranged on the motor shell; one end of the micro water pump is connected with the cleaning fluid container through a pipeline, and the other end of the micro water pump is connected with the nozzle; the micro fan is connected with the nozzle through a pipeline.
Preferably, an air inlet is formed in the motor casing.
Preferably, one end that the nozzle was located in the motor casing is connected with three way connection, and three way connection is connected with miniature pump and miniature fan respectively.
Preferably, a gas flow path valve is arranged between the nozzle and the micro fan.
Preferably, a water flow valve is arranged between the nozzle and the micro water pump.
Preferably, a partition structure is arranged between the motor shell and the cleaning liquid container; the motor shell is connected with the cleaning liquid container through threads.
Preferably, a circuit switch for controlling the micro water pump and the micro fan is arranged on the motor casing.
Compared with the prior art, the utility model discloses following beneficial effect has:
through the utility model provides a wash fast in the testing process, the technical problem of dry sensor probe. The utility model has small structure and convenient use, and improves the detection efficiency; can help to achieve a fast and accurate measurement of the detection process.
Drawings
FIG. 1 is a schematic view of the appearance structure of the present invention;
FIG. 2 is a schematic view of the fluid pipeline structure of the present invention;
reference numerals: 1. a nozzle; 2. a motor housing; 3. an air inlet; 4. a cleaning solution container; 5. a circuit switch; 6. a thread; 7. a three-way joint; 8. a water flow path valve; 9. a micro water pump; 10. a gas flow path valve; 11. a micro fan.
Detailed Description
In order to make the present invention more comprehensible, preferred embodiments accompanied with figures are described in detail as follows:
as shown in fig. 1-2, the utility model provides a cleaning and air-drying integrated device for a sensor of pharmaceutical equipment, which comprises a motor shell 2, a cleaning liquid container 4, a nozzle 1, a micro water pump 9 and a micro fan 11; the cleaning solution container 4 is connected with the motor shell 2; a micro water pump 9 and a micro fan 11 are arranged in the motor shell 2; a nozzle 1 is arranged on the motor shell 2; one end of the micro water pump 9 is connected with the cleaning liquid container 4 through a pipeline, and the other end of the micro water pump 9 is connected with the nozzle 1; the micro fan 11 is connected with the nozzle 1 through a pipeline. An air inlet 3 is arranged on the motor shell 2. One end that nozzle 1 located in motor casing 2 is connected with three way connection 7, and three way connection 7 is connected with miniature pump 9 and miniature fan 11 respectively. A gas flow valve 10 is provided between the nozzle 1 and the micro fan 11. A water flow valve 8 is arranged between the nozzle 1 and the micro water pump 9. A partition structure is arranged between the motor casing 2 and the cleaning liquid container 4; the motor shell 2 and the cleaning liquid container 4 are connected through threads 6. The motor casing 2 is provided with a circuit switch 5 for controlling the micro water pump 9 and the micro fan 11.
The utility model discloses a use:
when the cleaning liquid needs to be sprayed to clean the sensor probe, the power supply of the miniature water pump 9 is turned on through the circuit switch 5, the circuit of the miniature fan 11 is cut off, the water flow path valve 8 is opened, the gas flow path valve 10 is closed, and the cleaning liquid is sprayed out from the cleaning liquid container 4 through the water flow path valve 8, the three-way joint 7 and the nozzle 1; when the sensor probe is dried by ejecting gas, the electric circuit of the micro-fan 11 is opened by the electric circuit switch 5, the electric circuit of the micro-water pump 9 is cut off, the gas flow path valve 10 is opened, and the liquid flow path valve 8 is closed. The gas is ejected through the gas inlet 3, the gas flow path valve 10, the three-way joint 7, and the nozzle 1.
A three-way joint 7, a liquid flow path valve 8, and a gas flow path valve 10 for switching between a liquid flow path and a gas flow path. The miniature water pump 9 and the miniature fan 11 are small in size, and compact and portable sensor cleaning and drying can be achieved.
The utility model provides a wash fast and weather device can realize weathering fast, can realize minimum scavenging period, convenient to carry, easy operation.
The foregoing is merely a preferred embodiment of the present invention, and is not intended to limit the present invention in any way and in any way, and it should be understood that modifications and additions may be made by those skilled in the art without departing from the scope of the present invention. Those skilled in the art can make various changes, modifications and evolutions equivalent to those made by the above disclosed technical content without departing from the spirit and scope of the present invention, and all such changes and modifications are equivalent embodiments of the present invention; meanwhile, any changes, modifications and evolutions of equivalent changes to the above embodiments according to the actual technology of the present invention are also within the scope of the technical solution of the present invention.
Claims (7)
1. A cleaning and blowing drying integrated device for a sensor of pharmaceutical equipment is characterized by comprising a motor shell, a cleaning liquid container, a nozzle, a micro water pump and a micro fan; the cleaning liquid container is connected with the motor shell; a micro water pump and a micro fan are arranged in the motor shell; a nozzle is arranged on the motor shell; one end of the micro water pump is connected with the cleaning fluid container through a pipeline, and the other end of the micro water pump is connected with the nozzle; the micro fan is connected with the nozzle through a pipeline.
2. The integrated cleaning, blowing and drying device for the sensor of the pharmaceutical equipment as set forth in claim 1, wherein the motor housing is provided with an air inlet.
3. The integrated cleaning, blowing and drying device for the sensor of the pharmaceutical equipment according to claim 1, wherein the nozzle is connected to a tee joint at one end of the nozzle disposed in the motor casing, and the tee joint is connected to the micro water pump and the micro fan respectively.
4. The integrated cleaning, blowing and drying device for the sensor of the pharmaceutical equipment as claimed in claim 1, wherein a gas flow path valve is arranged between the nozzle and the micro-fan.
5. The integrated cleaning, blowing and drying device for the sensor of the pharmaceutical equipment according to claim 1, wherein a water flow valve is disposed between the nozzle and the micro-pump.
6. The integrated cleaning, blowing and drying device for the sensor of the pharmaceutical equipment as claimed in claim 1, wherein a partition structure is provided between the motor casing and the cleaning solution container; the motor shell is connected with the cleaning liquid container through threads.
7. The integrated cleaning, blowing and drying device for the sensor of the pharmaceutical equipment according to claim 1, wherein a circuit switch for controlling the micro water pump and the micro fan is arranged on the motor casing.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202220505398.4U CN217616336U (en) | 2022-03-08 | 2022-03-08 | Cleaning and blowing drying integrated device for pharmaceutical equipment sensor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202220505398.4U CN217616336U (en) | 2022-03-08 | 2022-03-08 | Cleaning and blowing drying integrated device for pharmaceutical equipment sensor |
Publications (1)
Publication Number | Publication Date |
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CN217616336U true CN217616336U (en) | 2022-10-21 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202220505398.4U Active CN217616336U (en) | 2022-03-08 | 2022-03-08 | Cleaning and blowing drying integrated device for pharmaceutical equipment sensor |
Country Status (1)
Country | Link |
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CN (1) | CN217616336U (en) |
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2022
- 2022-03-08 CN CN202220505398.4U patent/CN217616336U/en active Active
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