In the fields of pharmaceuticals, biologics, etc., the production of drugs packaged in penicillin bottles requires multiple continuous processes. The penicillin bottle filling production linkage line integrates various equipment links to achieve automated operations from bottle processing to finished product output, which is a key system to ensure production efficiency and drug quality. Its structural design revolves around "process coherence and operational collaboration", with clear division of labor and mutual cooperation among each component. The following will provide a detailed introduction to its main structure:

1、 Supply and organization structure of penicillin bottles
As the starting point of the linkage line, this structure is responsible for organizing and transporting penicillin bottles, including bottle storage devices, bottle sorting components, and conveying tracks. The bottle storage device temporarily stores penicillin bottles to reduce the frequency of replenishment; The bottle sorting component adjusts the messy bottle body to a unified direction; The conveyor track delivers bottles at a stable speed to the next stage, and uses positioning components to prevent displacement and tipping, providing an orderly supply of bottle bodies.
2、 Cleaning and drying structure of penicillin bottles
To meet the cleanliness requirements of drug production, this structure is responsible for the clean treatment of the bottle body and consists of a cleaning unit and a drying unit. The cleaning unit removes impurities from the bottle body through spraying and soaking to ensure cleanliness and compliance with standards; The drying unit uses hot air and other methods to remove moisture from the bottle body, avoiding affecting the stability of the medicine and laying the foundation for subsequent sterilization.
3、 Sterilization structure of penicillin bottle
This structure is an important part of ensuring drug safety and is used to kill microorganisms in the bottle body. It includes a sterilization chamber, a conveying component, and a temperature control unit. The penicillin bottle enters the chamber with the conveying component, and a specific sterilization environment is formed inside the chamber to complete the operation; The temperature control unit monitors the temperature to ensure stable sterilization conditions and prevent damage to the bottle body.
4、 Liquid filling structure
As the core of the linkage line, this structure is responsible for quantitative liquid injection, consisting of a liquid storage device, a filling valve group, and a metering component. The liquid storage device temporarily stores the medicinal solution to ensure continuous supply; The filling valve group controls the injection speed and total amount according to the set dosage; The measuring component monitors the filling volume and adjusts the valve group to ensure consistent and accurate drug dosage.
5、 Sealing structure of penicillin bottle
After filling, the structure is responsible for sealing the penicillin bottle to prevent contamination and leakage, including sealing components and detection units. The sealing component is sealed by pressing plugs, rolling caps, and other methods according to the bottle shape; The inspection unit checks the sealing effect and promptly removes any non-conforming products to avoid them flowing into subsequent processes.
6、 Finished product inspection and removal structure
As a quality control point, this structure inspection screens finished products, including visual inspection, weight detection components, and rejection units. Visual inspection uses image recognition to detect leakage, sealing defects, and other issues; Weight detection assists in determining the filling volume; Eliminate non-conforming products separated by units to ensure that the finished products meet quality standards.
7、 Finished product transportation and collection structure
As the end of the linkage line, this structure transports and collects qualified finished products, consisting of a conveyor belt and a collection device. The conveyor belt transports the finished product from the testing stage to the collection device; The collection device organizes and stacks finished products according to demand, facilitating subsequent packaging, storage, or transportation, and completing the production loop.