Premium Metered Aerosol Valve for Cosmetics with Precision Dispensing
Our Premium Metered Aerosol Valve is designed specifically for the cosmetics industry. It offers precise and consistent dispensing, ensuring the right amount of product is released every time. The valve is made from high-quality materials, guaranteeing durability and reliability. It features an advanced metering mechanism that allows for accurate dosing, preventing waste. With its easy-to-use design, it is suitable for a wide range of cosmetic products such as sprays, mists, and foams. The valve is also leak-proof, maintaining the integrity of the product inside. Its compatibility with various aerosol cans makes it a versatile choice for cosmetic manufacturers.
Bullet points:
High-precision metering for accurate dispensing
Durable construction for long-term use
Leak-proof design to preserve product quality
Easy to use for enhanced user experience
Compatible with diverse aerosol cans
Component |
Part Description |
Mounting cup |
tinplate or aluminum |
Dosage |
25ul , 35ul , 50ul , 75ul , 100ul , 120ul , 150ul , 200ul |
Stem |
plastic stem or metal stem |
Dip tube |
according to the height of tin cans |
It is installed on the production lines to regulate the flow of cooling water or compressed air, maintaining the proper operation of machinery.
The valves are carefully packed in shockproof and moisture-proof materials to prevent damage during transportation. They are labeled with clear handling instructions to ensure safe delivery.
Q: What is the accuracy of the metering?
A: The metering accuracy is within ±0.1ml, ensuring precise dispensing.
Q: Is the valve compatible with all aerosol cans?
A: It is compatible with most standard aerosol cans in the cosmetics industry.
Q: How do I clean the valve?
A: It can be cleaned with a mild detergent and warm water.
Q: What materials are used in the valve?
A: The valve is made from high-quality plastic and metal components.
Q: Can the valve be customized for different viscosities?
A: Yes, we can adjust the valve design to accommodate different viscosities.