Pharmaceutical Spray Production Line

Pharmaceutical Spray Production Line
Details:
Pharmaceutical aerosols consist of fine solid or liquid particles suspended in a gas, typically released as a spray from a pressurized container. They are classified into two main types of inhalers: Metered-Dose Inhalers (MDI) and Dry Powder Inhalers (DPI), both used to treat respiratory diseases like asthma and COPD. Aerosols allow for easy administration and can be applied directly to affected areas.
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Description
Technical Parameters
FAQ

 

1
What is pharmaceutical aerosol?

 

Pharmaceutical aerosols consist of fine solid or liquid particles suspended in a gas, typically released as a spray from a pressurized container. They are classified into two main types of inhalers: Metered-Dose Inhalers (MDI) and Dry Powder Inhalers (DPI), both used to treat respiratory diseases like asthma and COPD. Aerosols allow for easy administration and can be applied directly to affected areas.

MDI: Deliver specific doses of medication, such as Salbutamol and Fluticasone, that relax airway muscles or reduce inflammation.

DPI: Provide a powder dosage to the lungs and require patient inspiration for effective delivery. They can be passive or active devices, with the latter minimizing inspiratory effort.

 

2
Application of pharmaceutical spray

 

1.Metered Dose Inhalers (MDI): Deliver medication directly to the lungs for respiratory conditions like asthma and COPD.

2.Nebulizer Solutions: Used to create a mist for inhalation, often for patients unable to use MDIs effectively.

3.Topical sprays: Includes antiseptics, analgesics, and anti-inflammatory medications for skin conditions.

4.Nasal sprays: Deliver medications for allergies, congestion, or other nasal conditions.

5.Aerosols vaccine:Used for certain vaccines and medications that require delivery via the respiratory tract.

6.Oral inhalation products: Deliver medications for systemic effects, sometimes used for conditions like migraine or nausea.

 

3
Advantages of pharmaceutical aerosols

 

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1.Targeted delivery:

Directly delivers medication to the lungs or affected areas.

2.Rapid absorption:

Quick onset of action due to immediate absorption.

3.Ease of use:

Simple administration, often requiring no special training.

4.Reduced side effects:

Minimizes systemic effects by localizing treatment.

5.Precise dosing:

Offers accurate dosing, enhancing effectiveness.

6.Improved compliance:

Convenient and portable, encouraging patient adherence.

 

4
How are pharmaceutical spray produced?

 

The 20mm aerosol valve filling equipment developed and produced by Yangzhou Meida Filling Machinery is particularly suitable for the production of pharmaceutical aerosol products.

This aerosol filling machine combines liquid filling, automatic valve insertion, valve sealing, and propellant filling into one efficient system. Controlled by a Siemens PLC and a 7-inch touch screen, it features a servo-driven transmission mechanism for enhanced automation and parameterized control.

With its innovative design, compact structure, and stable, reliable performance, this machine is the ideal solution for filling 20mm aerosol valves with daily chemical and pharmaceutical aerosol products.

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5
Advantages of pharmaceutical spray production line

 

1.High efficiency

Fully automates the filling process, significantly reducing manual labor and boosting production speed.

2.Precision filling

Guarantees accurate fill volumes, ensuring consistent product quality.

3.Versatility

Ideal for a diverse range of aerosol products, including personal care, household, and pharmaceutical applications.

4.Reliable performance:

Engineered for stable operation, minimizing both downtime and maintenance requirements.

5.User-friendly interface

Features intuitive controls that simplify operation and monitoring.

6.Safety

Includes explosion-proof designs and safety mechanisms to safeguard both operators and products.

7.Quality control

Equipped with systems to test and verify seal integrity and fill accuracy, ensuring adherence to industry standards.

8.Compact design

Maximizes floor space while delivering high output capabilities.

 

6
Meida's Research and Development Strength

 

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We, Yangzhou Meida Filling Machinery Co., Ltd. has established our-self as a trailblazer in the aerosol filling machinery industry, driven by our robust technical research and development (R&D) capabilities. Our company collaborates with numerous universities and automation research institutes, fostering an environment where technical expertise and creativity flourish. These partnerships not only enhance our product offerings but also contribute to the broader advancement of aerosol technology.

Our R&D team comprises highly qualified engineers and researchers dedicated to the continuous improvement of our products. This talented team is responsible for designing new machinery and refining existing technologies to ensure us meet both industry standards and customer expectations. Our expertise has led to significant advancements in aerosol filling machines, characterized by high efficiency, precision, and reliability.

We have invested in a state-of-the-art research facility, including a master's and PhD student research station in Jiangsu Province. This facility serves as a hub for developing and deploying cutting-edge technologies in aerosol filling machinery. It also provides valuable training opportunities for emerging talents, ensuring that Yangzhou Meida remains at the forefront of innovation.

We takes pride in its impressive portfolio of intellectual property, which includes 8 software copyrights, 16 invention patents, and 24 utility model patents. These achievements highlight the company's dedication to creating unique, effective solutions that distinguish it from competitors. By protecting its innovations, we ensure it retains a competitive edge in the industry.

 

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Applicable can diameter

20~28mm

Output Capacity

15~20CPM

Liquid filling volume

5~25ml (Customizable)

Gas pressure

0.6~0.8MPa

Liquid filling accuracy

≤±1.5%

Propellant filling accuracy

≤±1.5%

Gas consumption

1m3/min

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