CN217598899U - Telomerase reagent partial shipment equipment - Google Patents

Telomerase reagent partial shipment equipment Download PDF

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Publication number
CN217598899U
CN217598899U CN202220973156.8U CN202220973156U CN217598899U CN 217598899 U CN217598899 U CN 217598899U CN 202220973156 U CN202220973156 U CN 202220973156U CN 217598899 U CN217598899 U CN 217598899U
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partial shipment
reagent
telomerase
backflow
dispensing apparatus
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CN202220973156.8U
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Chinese (zh)
Inventor
王松利
曾喜娣
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Hangzhou Xindiao Biotechnology Co ltd
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Hangzhou Xindiao Biotechnology Co ltd
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Abstract

The utility model discloses a telomerase reagent partial shipment equipment, including partial shipment structure, partial shipment box, feed inlet, controller and a power supply, the partial shipment structure includes the slow flow district that a stable liquid measure pressure of adding, establishes the partial shipment examination mouth that is used for retrieving the backflow circulation district and a plurality of matrix arrangement of unnecessary partial shipment liquid reagent all around in slow flow district bottom, the partial shipment examination mouth sets up the middle part that surrounds in backflow circulation district, the partial shipment structure sets up on the upper portion of partial shipment box, and the feed inlet is established in the slow flow district top of partial shipment structure, and the controller is connected with backflow circulation district, partial shipment examination mouth respectively, and the controller is connected with power supply, has good sealing performance, can conveniently take in packing into the small container respectively with reagent control volume, has perfect washing structure simultaneously, and all can wash with this before finishing or using and reduce the pollution risk of reagent, and is rational in infrastructure, and automatic partial shipment ability significantly reduces the cost of labor.

Description

Telomerase reagent partial shipment equipment
Technical Field
The utility model belongs to the technical field of the partial shipment equipment and specifically relates to a telomerase reagent partial shipment equipment is related to.
Background
The total obtained reagent amount of the telomerase reagent is large during production, but the required dosage during specific application is small, and when the small dosage is extracted from the total reagent pool for application, the purity and the effect of the telomerase reagent are inevitably influenced, and the telomerase reagent pool is possibly polluted, so that the large-dosage reagent needs to be subpackaged and stored and is convenient to take under the actual condition.
The contrast file CN214357477U discloses a can realize reagent partial shipment ware of quick partial shipment, including partial shipment ware body and partial shipment bottle, this internal partial shipment body that is equipped with a plurality of ranks distribution of partial shipment ware is embedded, partial shipment bottle activity sets up at the partial shipment internally, the top of each partial shipment body of being listed as is equipped with row's apron, every row's apron is articulated with partial shipment ware body, be equipped with a plurality of centre gripping hole on the row's apron, one side of every centre gripping hole is equipped with bottle lid fixing device, the utility model discloses though the row's apron has all been set up at the top of every row partial shipment body, it can't guarantee that every partial shipment body can both be sealed to be listed as the apron, also can't reach the effect of handling unnecessary reagent, so provide a telomerase reagent partial shipment equipment, can circulate and retrieve the unnecessary reagent of partial shipment, and sealed structure box pressure sensor has all installed additional to every partial shipment examination mouth, can strengthen control to the reagent dosage of every partial shipment examination mouth.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to solve above-mentioned technical problem, provide a telomerase reagent partial shipment equipment, the utility model discloses have good sealing performance, can pack into the reagent controlled variable respectively in the small container conveniently take, have perfect washing structure simultaneously, can all wash the pollution risk that reduces reagent with this before finishing using or using at every turn, rational in infrastructure, automatic partial shipment ability cost of labor that can significantly reduce.
The utility model provides a technical scheme that above-mentioned technical problem adopted is: the utility model provides a telomerase reagent partial shipment equipment, includes partial shipment structure, partial shipment box, feed inlet, controller and a power supply, partial shipment structure includes the gentle flow district that steadily adds liquid measure pressure, establishes and is used for retrieving the backward flow circulation district and the partial shipment examination mouth of a plurality of matrix arrangement of unnecessary partial shipment liquid reagent all around in gentle flow district bottom, partial shipment examination mouth sets up the middle part that surrounds in the backward flow circulation district, partial shipment structure sets up the upper portion at partial shipment box, and the feed inlet is established above the gentle flow district of partial shipment structure, and the controller is connected with backward flow circulation district, partial shipment examination mouth respectively, and the controller is connected with power supply.
Preferably, the backflow circulation zone comprises at least one backflow pipe and a backflow pump arranged on the backflow pipe, the backflow pipe is connected to the position, close to the connection position of the bottom of the slow flow zone and the split charging test port, of the backflow zone, and the backflow pump is arranged on the backflow pipe.
Preferably, an injection port is formed in the top of the split charging test port, a discharge port is formed in the bottom of the split charging test port, sealing rings are arranged on the injection port and the discharge port, a feeding valve is arranged on the injection port, and a discharge valve is arranged on the discharge port.
Preferably, the dispensing test port is provided with a pressure sensor for controlling the closing of a feeding valve of the injection port when the dispensing test port reaches a set pressure value, the pressure sensor is connected with the control machine, and the pressure sensor is connected with the feeding valve.
Preferably, the top of the split charging structure is a filtering area, the return pipe is communicated with the filtering area, and the filtering area is also connected with the slow flow area.
Preferably, the split charging structure further comprises a cleaning port and a water outlet valve for discharging cleaned sewage, and the water outlet valve is arranged at the bottom of the return pipe.
Preferably, the dispensing test ports are provided with injection valves for controlling the dispensing test ports to inject the liquid in the dispensing test ports into the container, and the injection valves are connected with the controller.
Preferably, the bottom of the split charging box is provided with a container rack for placing the reagent containers.
Preferably, the side of the dispensing box is provided with a side opening for inserting and removing the container holder.
Preferably, the dispensing box further comprises a moving wheel and a moving track, the moving track is connected with the moving wheel, the moving wheel is limited to move within the range of the moving track, and the moving wheel is further connected with the container rack.
The utility model has the advantages that:
1. the utility model has good sealing performance, can respectively load the reagent control amount into small containers for convenient use, has perfect cleaning structure, can be cleaned after each use or before use to reduce the pollution risk of the reagent, has reasonable structure, and can greatly reduce the labor cost due to the automatic subpackaging capability;
2. the feeding port is covered with a sealing cover which is manually opened and closed, so that reagent splashing is prevented when the equipment operates for subpackaging and circulating, external dust and foreign matters can be prevented from falling in, the slow flow region can slow down the speed of the reagent flowing into the subpackaging test port, the pressure and impact on the subpackaging test port are reduced, and the service life of the equipment is longer;
3. the utility model adopts the injection valve during the split charging, the injection valve is used for providing pressure for the reagent and injecting the reagent inside into the container, thereby ensuring that the reagent inside the split charging test port can be completely emptied, and reducing the cleaning difficulty;
4. the bottom end of the moving track in the split charging box is provided with a groove block which can be embedded into the container frame, so that the problem of position deviation of the container frame after the container frame is arranged is prevented.
Drawings
Fig. 1 is a schematic view of the internal cross-sectional structure of the present invention;
fig. 2 is an external structural view of the present invention;
fig. 3 is a schematic view of the split charging test port structure of the present invention.
In the figure: 1. the split charging structure comprises a split charging structure, 11, a filtering area, 12, a slow flow area, 13, a reflux circulation area, 131, a reflux pipe, 132, a reflux pump, 14, a split charging test port, 141, an injection port, 1411, a feeding valve, 142, a discharge port, 1421, a discharge valve, 143, an injection valve, 15, a pressure sensor, 16, a cleaning port, 17, a discharge valve, 2, a split charging box, 21, a container frame, 22, a side opening, 23, a moving wheel, 24, a moving track, 3, a feeding port, 4, a control machine, 5 and a power supply.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and embodiments.
As shown in fig. 1-3, the utility model relates to a telomerase reagent partial shipment equipment, including partial shipment structure 1, partial shipment box 2, feed inlet 3, controller 4 and a power supply 5, partial shipment structure 1 includes the gentle flow district 12 of a stable liquid volume pressure of adding, establishes the partial shipment examination mouth 14 that is used for retrieving unnecessary partial shipment liquid reagent and a plurality of matrix arrangement all around in gentle flow district 12 bottom, partial shipment examination mouth 14 sets up the middle part that surrounds at backflow circulation district 13, partial shipment structure 1 sets up on the upper portion of partial shipment box 2, and feed inlet 3 is established in the gentle flow district 12 top of partial shipment structure 1, and controller 4 is connected with backflow circulation district 13, partial shipment examination mouth 14 respectively, and controller 4 is connected with power supply 5, and partial shipment whole 1 sets up the top at partial shipment box 2, and partial shipment structure 1 mainly is responsible for the holding and partial shipment of telomerase reagent, and partial shipment box 2 mainly serves in the placing of partial shipment container, and power supply 5 power controller 4 is enough to compromise the operation of controlling a plurality of control structures simultaneously, and the telomerase reagent can pour into the branch material from feed inlet 3, has sealed lid on feed inlet 3, has the operation examination mouth and partial shipment equipment to prevent that the operation of reagent and operation examination mouth from the slow flow of high energy consumption reagent and prevent that the slow flow rate from falling into the long-impact of high-time and reduce the foreign matter that the external impact of the reagent, and prevent that the external impact of high-impact reagent from the high-impact of the high-rate from reducing the high-impact reagent 14, and reduce the impact of the high-rate of the high-impact-flow rate of the reagent, and prevent.
The reflux circulation zone 13 comprises at least one reflux pipe 131 and a reflux pump 132 arranged on the reflux pipe 131, the reflux pipe 131 is connected to the bottom of the slow flow zone 12 near the connection part with the dispensing test port 14, the reflux pump 132 is arranged on the reflux pipe 131, the reflux pipe 131 can recover the reagent which is not completely filled into the dispensing test port 14, and the residual reagent is pumped back into the dispensing structure 1 under the action of the reflux pump 132.
An injection port 141 is arranged at the top of the sub-packaging test port 14, a discharge port 142 is arranged on the sub-packaging test port 14, sealing rings are arranged on the injection port 141 and the discharge port 142, a feeding valve 1411 is arranged on the injection port 141, a discharge valve 1421 is arranged on the discharge port 142, the injection port 141 is an inlet for filling the reagent into the sub-packaging test port in the slow flow region 12, the feeding valve 1411 on the injection port 141 can be controlled to be closed to ensure that the error of the volume of the reagent in each sub-packaging test port 14 is small, the discharge port 142 and the discharge valve 1421 control the reagent in the sub-packaging test port 14 to be injected into a sub-packaging container, and the sealing rings on the injection port 141 and the discharge port 142 effectively ensure the reliability of the feeding and prevent the reagent from scattering.
The dispensing test port 14 is provided with a pressure sensor 15 which controls the closing of a feed valve 1411 of the injection port 141 when a set pressure value is reached, the pressure sensor 15 is connected with a controller 4, the pressure sensor 15 is connected with the feed valve 1411, the pressure sensor 15 is controlled by the controller 4, and the injection port 141 is closed when the pressure of the reagent amount reaches the set value, so that the reagent amount in the dispensing test port 14 is within a fixed range of amount, and the subsequent treatment is convenient.
The top of the split charging structure 1 is a filtering area 11, the return pipe 131 is communicated with the filtering area 11, the filtering area 11 is further connected with the slow flow area 12, the filtering area 11 further improves the impurity filtering capability of the entering initial reagent, and the purity of the reagent is ensured to enter the slow flow area 12 for split charging.
The split charging structure 1 further comprises a cleaning port 16 and a water outlet valve 17 used for discharging cleaned sewage, the water outlet valve 17 is arranged at the bottom of the return pipe 131, the cleaning water can be introduced from the cleaning port 16 and used for cleaning a wall surface pipeline inside the split charging structure 1, the cleaning degree of the equipment is improved, the cleaning water can be directly introduced from the inside after the cleaning is finished, and the convenience is high.
All be equipped with the injection valve 143 that control partial shipment examination mouth 14 injects inside liquid into the container on the partial shipment examination mouth 14, injection valve 143 is connected with control machine 4, and injection valve 143 on the partial shipment examination mouth 14 is used for providing pressure with inside reagent injection to the container in, guarantees that the inside reagent of partial shipment examination mouth 14 can be emptied completely, reduces the washing degree of difficulty.
The bottom of the dispensing box 2 is provided with a container rack 21 for placing reagent containers, each container position on the container rack 21 corresponds to the dispensing test port 14, and the diameter of the container position is larger than that of the dispensing test port, so that the containers can be prevented from being scattered when receiving and injecting reagents.
The side of the dispensing box 2 is provided with a side opening 22 for putting in and taking out the container holder 21, and the side opening 22 of the dispensing box 2 is mainly used for putting in the container holder 21 before dispensing and taking out the container holder 21 and putting in a new container after dispensing.
The dispensing box 2 further comprises a moving wheel 23 and a moving rail 24, the moving rail 24 is connected with the moving wheel 23, the moving wheel 23 is limited to move within the range of the moving rail 24, the moving wheel 23 is further connected with the container frame 21, a moving structure formed by the moving wheel 23 and the moving rail 24 enables the container frame 21 to be taken and placed more conveniently, the use loss degree of the container frame 21 is reduced, the replacement speed is accelerated, meanwhile, the moving rail limits the fixing position of the container frame 21, the containers on the container frame 21 can be completely aligned to the discharge holes 142 of the dispensing test holes 14, the bottom end of the moving rail 24 is provided with a groove block which can be embedded into the container frame 21, and the problem of position deviation after the container frame 21 is placed is solved.
In this embodiment, when the side opening 22 of the dispensing box 2 is opened, the container rack 21 is taken out by using the moving wheel 23 and the moving rail 24, the containers are placed in the container positions on the container rack 21, the container rack 21 is moved back to the original position in the dispensing box 2, the side opening 22 is closed, the power supply 5 is connected and the switch on the power supply 5 is opened, the sealing cover on the feeding port 3 is opened, at this time, the controller 4 controls the discharge valve 1421 of the discharge port 142 on the dispensing test port 14 to be closed, the feed valve 1411 of the injection port 141 on the dispensing test port 14 is closed to be opened, the discharge valve 17 on the return pipe 131 is closed, the reagent to be dispensed is placed in the filtering zone 11 of the dispensing structure 1, the reagent flows into the slow flow zone 12 after being filtered by the filtering zone 11, the flow rate of the reagent is reduced in the zone, the reagent passes through the slow flow zone to reach above the dispensing test port 14, then the reagent enters the injection port 141 of each dispensing test port 14, the reagent not-dispensed into the reagent dispensing test port 14 or the overflow portion of the reagent to flow into the return pipe 131, when the pressure sensor 1411 on the dispensing test port 14 is opened, the discharge valve 143 is closed, all the reagent-flushing valves 14, when the pressure sensor 14 is closed, all the discharge valves 16 is closed, the flushing valves, and all the flushing valves 16 on the dispensing structure is flushed, and the sewage discharge valves 16, and the sewage discharge valves 14 is flushed, and the sewage discharge valves 16 is closed.
The embodiments are described in a progressive manner in the specification, each embodiment focuses on differences from other embodiments, and the same and similar parts among the embodiments are referred to each other.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (10)

1. A telomerase reagent partial shipment equipment which characterized in that: including partial shipment structure (1), partial shipment box (2), feed inlet (3), control machine (4) and a power supply (5), partial shipment structure (1) includes one and stably adds gentle flow zone (12) of liquid measure pressure, establishes backflow circulation district (13) and the partial shipment examination mouth (14) of a plurality of matrix arrangement that are used for retrieving unnecessary partial shipment liquid reagent all around in gentle flow zone (12) bottom, partial shipment examination mouth (14) set up the middle part that surrounds in backflow circulation district (13), partial shipment structure (1) sets up the upper portion in partial shipment box (2), and feed inlet (3) are established in gentle flow zone (12) top of partial shipment structure (1), and control machine (4) are connected with backflow circulation district (13), partial shipment examination mouth (14) respectively, and control machine (4) are connected with power supply (5).
2. The telomerase reagent dispensing apparatus of claim 1, wherein: the backflow circulation zone (13) comprises at least one backflow pipe (131) and a backflow pump (132) arranged on the backflow pipe (131), the backflow pipe (131) is connected to the position, close to the connection position of the bottom of the slow flow zone (12) and the sub-assembly test opening (14), and the backflow pump (132) is installed on the backflow pipe (131).
3. The telomerase reagent dispensing apparatus of claim 1, wherein: the top of partial shipment examination mouth (14) is equipped with filling opening (141), and partial shipment examination mouth (14) bottom is equipped with discharge gate (142), all be equipped with the sealing washer on filling opening (141) and discharge gate (142), be equipped with feeding valve (1411) on filling opening (141), be equipped with bleeder valve (1421) on discharge gate (142).
4. The telomerase reagent dispensing apparatus of claim 1, wherein: the split charging test port (14) is provided with a pressure sensor (15) for controlling the closing of a feeding valve (1411) of the injection port (141) when the pressure value reaches a set pressure value, the pressure sensor (15) is connected with a control machine (4), and the pressure sensor (15) is connected with the feeding valve (1411).
5. The telomerase reagent dispensing apparatus of claim 1, wherein: the top of the split charging structure (1) is provided with a filtering area (11), the return pipe (131) is communicated with the filtering area (11), and the filtering area (11) is also connected with the slow flow area (12).
6. The telomerase reagent dispensing apparatus of claim 1, wherein: the split charging structure (1) also comprises a cleaning port (16) and a water outlet valve (17) for discharging cleaned sewage, wherein the water outlet valve (17) is arranged at the bottom of the return pipe (131).
7. The telomerase reagent dispensing apparatus of claim 1, wherein: all be equipped with injection valve (143) that control partial shipment examination mouth (14) pour into the container with inside liquid on partial shipment examination mouth (14), injection valve (143) are connected with control machine (4).
8. The telomerase reagent dispensing apparatus of claim 1, wherein: the bottom of the dispensing box (2) is provided with a container rack (21) for placing reagent containers.
9. The telomerase reagent dispensing apparatus of claim 1, wherein: the side surface of the packing box (2) is provided with a side opening (22) for placing and taking out the container frame (21).
10. The telomerase reagent dispensing apparatus of claim 1, wherein: the dispensing box (2) further comprises a moving wheel (23) and a moving track (24), the moving track (24) is connected with the moving wheel (23), the moving wheel (23) is limited to move within the range of the moving track (24), and the moving wheel (23) is further connected with the container frame (21).
CN202220973156.8U 2022-04-25 2022-04-25 Telomerase reagent partial shipment equipment Active CN217598899U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220973156.8U CN217598899U (en) 2022-04-25 2022-04-25 Telomerase reagent partial shipment equipment

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Application Number Priority Date Filing Date Title
CN202220973156.8U CN217598899U (en) 2022-04-25 2022-04-25 Telomerase reagent partial shipment equipment

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117658044A (en) * 2024-01-29 2024-03-08 成都中核高通同位素股份有限公司 Zirconium molybdate acyl gel quantitative high-speed split charging container, split charging leaching container and split charging method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117658044A (en) * 2024-01-29 2024-03-08 成都中核高通同位素股份有限公司 Zirconium molybdate acyl gel quantitative high-speed split charging container, split charging leaching container and split charging method
CN117658044B (en) * 2024-01-29 2024-04-02 成都中核高通同位素股份有限公司 Zirconium molybdate acyl gel quantitative high-speed split charging container, split charging leaching container and split charging method

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