Batch opening ampere bottle and drug tracing management system
Through integrated traceability code scanning, laser cutting and liquid extraction modules, the problems of low opening efficiency and incomplete traceability management of ampoule bottles are solved, and batch opening and drug traceability of ampoule bottles are realized, which improves safety and accuracy.
Patent Information
- Application Number
- CN202510416928.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2025-07-22
AI Technical Summary
In the prior art, the opening efficiency of ampoule bottles is inefficient and difficult to batch process, there are problems such as glass debris contamination and errors in drug traceability information entry, and the automation device has poor compatibility, lack of traceability management and incomplete waste treatment.
The traceability code scanning management module, compact multi-slot fixing module, laser cutting module, waste collection module, drug liquid pre-extraction module and data statistics and upload module are adopted to realize batch opening of ampoules and drug traceability management, including QR code scanning, laser cutting, waste collection and drug liquid extraction, combined with data comparison and upload.
The batch opening of ampoules is achieved, which improves work efficiency, reduces the safety risks of manual operation, ensures the accuracy and completeness of drug traceability information, and avoids glass debris contamination.
Smart Images

Figure CN120355433A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of medical automation technology, and particularly relates to a system for batch opening of ampoules and drug traceability management. Background Art
[0002] As a common form of drug packaging, the opening operation of ampoules is extremely frequent in medical scenarios. The traditional opening of ampoules mainly relies on manual operation. Medical staff need to cut the bottleneck one by one and extract the liquid medicine, which has the following defects: (1) Low efficiency, difficult to meet the batch processing requirements; (2) Manual cutting is easy to generate glass debris and contaminate the liquid medicine; (3) Improper operation may lead to the risk of scratching; (4) The drug traceability information needs to be manually entered, which is prone to data errors and omissions. Although there are individual automated opening devices in the prior art, they generally have problems such as poor compatibility, lack of traceability management, and imperfect waste treatment. For example: The fixing device is difficult to adapt to different specifications of ampoules, the cutting force control is inaccurate, resulting in a high bottle breakage rate, and there is no data linkage mechanism with the drug traceability system. Summary of the Invention
[0003] The purpose of the present invention is to provide a system for batch opening of ampoules and drug traceability management to solve the above problems.
[0004] To achieve the above purpose, the present invention adopts the following technical solutions:
[0005] A system for batch opening of ampoules and drug traceability management includes a traceability code scanning and management module, a compact multi-slot fixing module, a laser cutting module, a waste collection module, a liquid medicine pre-extraction module, and a data statistics and upload module. The traceability code scanning and management module is used to scan and enter the unique traceability code on the ampoule packaging box and record drug information. The compact multi-slot fixing module is used to place and fix different specifications of ampoules. The laser cutting module is used to perform laser cutting on the bottleneck. The waste collection module is used to collect the cut bottle heads and glass debris generated during the cutting process. The liquid medicine pre-extraction module is used to extract the liquid medicine in the ampoule into an injection container. The data statistics and upload module is used to count the number of ampoules with cutting completed, compare it with the recorded drug information, and if they match, generate traceability information and record and upload it to the traceability system.
[0006] Preferably, the traceability code scanning and management module includes a two-dimensional code scanner, an LED fill light, a traceability code data processing unit, and a scanning anomaly alarm. The two-dimensional code scanner is used to scan the traceability code on the ampoule packaging box. The LED fill light is arranged beside the two-dimensional code scanner to supplement the light brightness of the scanning environment. The traceability code data processing unit is connected to the two-dimensional code scanner to analyze the traceability code information, record the drug batch information, and upload it to the traceability system. The scanning anomaly alarm is used to give an audible and visual alarm prompt when the scanning fails.
[0007] Preferably, the compact multi-slot fixing module includes a placement groove body and an adjustable spring clamp. The top surface of the placement groove body is provided with a plurality of placement grooves for placing ampoules. The placement grooves are suitable for ampoules of different specifications from 1 mL to 10 mL. The adjustable spring clamp is arranged in the placement groove for clamping and fixing the ampoules.
[0008] Preferably, the laser cutting module includes a first electric adjustment arm, a laser cutting head, a cutting drive module, a pressure sensor, and a cutting control unit. The laser cutting head is driven by the first electric adjustment arm to the cutting position of the ampoule neck and is driven by the cutting drive module for laser cutting. The pressure sensor is used to monitor the cutting force in real time and send it to the cutting control unit. The cutting control unit adjusts the first electric adjustment arm and the cutting drive module according to the ampoule size and the cutting force for adaptive cutting.
[0009] Preferably, the waste collection module includes an airtight cover, a negative pressure generator, a dust suction pipe, and a waste box. The airtight cover is sleeved outside the laser cutting module. The airtight cover is provided with an air outlet and is connected to the waste box through the dust suction pipe. The negative pressure generator is arranged in the waste box to form an air pressure difference between the waste box and the airtight cover, so as to adsorb the glass debris in the sealed cover into the waste box.
[0010] Preferably, the liquid medicine pre-extraction module includes a second electric adjustment arm, a liquid suction needle, a liquid suction pipe, and a liquid extraction pump. The liquid suction needle is inserted into the cutting opening of the ampoule through the second electric adjustment arm. The liquid extraction pump is connected to the liquid suction needle through the liquid suction pipe to transfer the liquid medicine in the ampoule to the required injection container.
[0011] Preferably, the data statistics and upload module includes a statistics unit and an upload unit. The statistics unit is used to count the number of ampoules with cutting completed and compare it with the recorded drug information. If they match, a traceability information record is generated and uploaded to the traceability system through the upload unit.
[0012] After adopting the above technical solutions, compared with the background technology, the present invention has the following advantages:
[0013] 1. The present invention provides a batch ampoule opening and drug traceability management system, which adopts multi-slot fixation and laser cutting technologies to realize batch opening of multiple ampoules at one time, greatly improving the working efficiency of the intravenous drug preparation center. Through automatic cutting and waste collection, the operation of manual bottle opening is reduced, avoiding hand occupational injuries and improving safety.
[0014] 2. The present invention provides a system for batch opening of ampoules and drug traceability management. Through traceability code scanning management, it realizes the automatic collection and verification of drug information, the automatic matching of QR code entry and quantity statistics, realizes the traceability of single-dose drugs and the management of consistency between accounts and physical objects, avoids manual recording errors, and meets the traceability requirements of the minimum drug packaging. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic structural diagram of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0016] In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0017] Embodiment
[0018] Please refer to Figure 1 As shown, the present invention discloses a system for batch opening of ampoules and drug traceability management, including a traceability code scanning management module, a compact multi-slot fixing module 1, a laser cutting module 2, a waste collection module 3, a liquid medicine pre-extraction module 4, and a data statistics and upload module. The traceability code scanning management module is used to scan and enter the unique traceability code on the ampoule packaging box and record drug information. The compact multi-slot fixing module 1 is used to place and fix ampoules of different specifications. The laser cutting module 2 is used to perform laser cutting on the bottle neck. The waste collection module 3 is used to collect the cut bottle heads and glass debris generated during the cutting process. The liquid medicine pre-extraction module 4 is used to extract the liquid medicine in the ampoule into an injection container. The data statistics and upload module is used to count the number of ampoules after cutting and compare it with the recorded drug information. If they match, traceability information is generated and recorded and uploaded to the traceability system.
[0019] The traceability code scanning management module includes a QR code scanner, an LED fill light, a traceability code data processing unit, and a scanning anomaly alarm. The QR code scanner is used to scan the traceability code on the ampoule packaging box. The LED fill light is arranged beside the QR code scanner to supplement the light brightness of the scanning environment. The traceability code data processing unit is connected to the QR code scanner to analyze the traceability code information, record the drug batch information, and upload it to the traceability system. The scanning anomaly alarm is used to give an audible and visual alarm prompt when the scanning fails.
[0020] The compact multi-slot fixing module 1 includes a placement groove body 11 and an adjustable spring clamp 12. The top surface of the placement groove body 11 is provided with a number of placement grooves 111 for placing ampoules. The placement grooves 111 are suitable for ampoules of different specifications from 1 mL to 10 mL. The adjustable spring clamp 12 is arranged in the placement groove 111 for clamping and fixing the ampoule. Different specifications of the bottle body are adaptively fixed through an elastic clamping force, and the clamping force range is 0.5 - 2 N to avoid breakage due to overpressure.
[0021] The laser cutting module 2 includes a first electric adjustment arm 21, a laser cutting head 22, a cutting drive module 23, a pressure sensor 24, and a cutting control unit 25. The laser cutting head 22 is driven by the first electric adjustment arm 31 to the cutting position of the ampoule neck and is driven by the cutting drive module 23 for laser cutting. The pressure sensor 24 is used to monitor the cutting force in real time and send it to the cutting control unit 25. The cutting control unit 25 adjusts the first electric adjustment arm 21 and the cutting drive module 23 for adaptive cutting according to the ampoule size and the cutting force.
[0022] The waste collection module 3 includes an airtight cover 31, a negative pressure generator 32, a dust suction pipe 33, and a waste box 34. The airtight cover 31 is sleeved outside the laser cutting module. The airtight cover 31 is provided with an air outlet and is connected to the waste box 34 through the dust suction pipe 33. The negative pressure generator 32 is arranged in the waste box 34 to form an air pressure difference between the waste box 34 and the airtight cover 31, so as to adsorb the glass debris in the airtight cover 31 into the waste box 34. The negative pressure generator 32 generates an air pressure difference of -5 kPa to -10 kPa, and sucks the debris into the waste box through the dust suction pipe 33. The waste box 34 is internally provided with a HEPA filter and an activated carbon layer to realize the separation and filtration of glass debris and air, and at the same time prevent the leakage of particles and odors.
[0023] The liquid medicine pre-extraction module 4 includes a second electric adjustment arm 41, a liquid suction needle 42, a liquid suction pipe 43, and a liquid extraction pump 44. The liquid suction needle 42 is inserted into the cutting opening of the ampoule through the second electric adjustment arm 41. The liquid extraction pump 44 is connected to the liquid suction needle through the liquid suction pipe 43 to transfer the liquid medicine in the ampoule to the required injection container.
[0024] The data statistics and upload module includes a statistics unit and an upload unit. The statistics unit is used to count the number of ampoules with cutting completed and compare it with the recorded drug information. If they match, a traceability information record is generated and uploaded to the traceability system through the upload unit.
[0025] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any changes or substitutions that can be easily thought of by those skilled in the art within the technical scope disclosed by the present invention should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.
Claims
1. A batch-opening ampoule and drug traceability management system, characterized in that: It includes a traceability code scanning and management module, a compact multi-slot fixing module, a laser cutting module, a waste collection module, a liquid medicine pre-extraction module, and a data statistics and uploading module. The traceability code scanning and management module is used to scan and input the unique traceability code on the ampoule packaging box and record the drug information. The compact multi-slot fixing module is used to place and fix ampoules of different specifications. The laser cutting module is used to perform laser cutting on the bottle neck. The waste collection module is used to collect the cut bottle heads and glass debris generated during the cutting process. The liquid medicine pre-extraction module is used to extract the liquid medicine in the ampoule into an injection container. The data statistics and uploading module is used to count the number of ampoules with cutting completed, compare it with the recorded drug information, and if they match, generate traceability information records and upload them to the traceability system.
2. The batch opening ampoule and drug traceability management system according to claim 1, characterized in that: The traceability code scanning and management module includes a QR code scanner, an LED fill light, a traceability code data processing unit, and a scanning anomaly alarm. The QR code scanner is used to scan the traceability code on the ampoule packaging box. The LED fill light is arranged beside the QR code scanner to supplement the light brightness of the scanning environment. The traceability code data processing unit is connected to the QR code scanner to analyze the traceability code information, record the drug batch information, and upload it to the traceability system. The scanning anomaly alarm is used to give an audible and visual alarm prompt when the scanning fails.
3. A batch-opening ampoule and drug traceability management system according to claim 1, characterized in that: The compact multi-slot fixing module includes a placement tank body and adjustable spring clamps. The top surface of the placement tank body is provided with a number of placement slots for placing ampoules. The placement slots are suitable for ampoules of different specifications from 1 mL to 10 mL. The adjustable spring clamps are arranged in the placement slots to clamp and fix the ampoules.
4. A batch-opening ampoule and drug traceability management system according to claim 1, characterized in that: The laser cutting module includes a first electric adjustment arm, a laser cutting head, a cutting drive module, a pressure sensor, and a cutting control unit. The laser cutting head is driven by the first electric adjustment arm to the cutting position of the ampoule bottle neck and is driven by the cutting drive module to perform laser cutting. The pressure sensor is used to monitor the cutting force in real time and send it to the cutting control unit. The cutting control unit adjusts the first electric adjustment arm and the cutting drive module according to the ampoule size and cutting force for adaptive cutting.
5. The batch-opening ampoule and drug traceability management system according to claim 1, characterized in that: The waste collection module includes an airtight cover, a negative pressure generator, a dust suction pipe, and a waste box. The airtight cover is sleeved outside the laser cutting module. The airtight cover is provided with an air outlet and is connected to the waste box through the dust suction pipe. The negative pressure generator is arranged in the waste box to form an air pressure difference between the waste box and the airtight cover, so as to adsorb the glass debris in the sealed cover into the waste box.
6. The batch-opening ampoule and drug traceability management system according to claim 1, characterized in that: The liquid medicine pre-extraction module includes a second electric adjustment arm, a liquid suction needle, a liquid suction pipe, and a liquid pumping pump. The liquid suction needle is inserted into the cutting opening of the ampoule through the second electric adjustment arm. The liquid pumping pump is connected to the liquid suction needle through the liquid suction pipe to extract the liquid medicine in the ampoule into the required injection container.
7. A batch-opening ampoule and drug traceability management system as claimed in claim 1, characterized in that: The data statistics and upload module includes a statistics unit and an upload unit. The statistics unit is used to count the number of cut ampoules, compare it with the recorded drug information, and if they match, generate a traceability information record and upload it to the traceability system through the upload unit.