PFA Hose

PFA Hose
Details:
PFA Hose is a high-performance industrial hose made of PFA material, featuring excellent corrosion resistance, high-temperature performance, and cleanliness characteristics. It is widely used in demanding fluid delivery systems, such as in the semiconductor, biopharmaceutical, chemical, laboratory, and hydrogen energy industries.
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Description
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PFA Hose is a high-performance industrial hose made of PFA material, featuring excellent corrosion resistance, high-temperature performance, and cleanliness characteristics. It is widely used in demanding fluid delivery systems, such as in the semiconductor, biopharmaceutical, chemical, laboratory, and hydrogen energy industries.

 

Product Benefits

 

 

Chemical stability

It is inert to strong acids and alkalis such as 98% concentrated sulfuric acid, fuming nitric acid, 50% sodium hydroxide, as well as potassium permanganate and organic solvents. It does not react at high temperatures, fundamentally avoiding the risk of corrosion and leakage.

01

Stability over a wide temperature range

Can work continuously at -80℃ to 260℃, with a short-term temperature resistance of 300℃; will not crack at low temperatures (can be exposed to -196℃ liquid nitrogen for a short period of time), has a stable structure at high temperatures, and has minimal thermal deformation.

02

Excellent toughness and strength

Tensile strength 28-32MPa, elongation 250%-400%, impact resistance and fatigue resistance, stable performance after tens of thousands of bending cycles, suitable for frequently adjusted hoseline scenarios.

03

Easy processing and adaptability

Can be hot-melt welded (high weld strength), supports complex hoseline forming; hose joints are precisely adapted to hoselines, with reliable sealing, and are suitable for welding or mechanical connection scenarios.

04

 

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Application

 

 

Chemical industry

Transporting corrosive media such as sulfuric acid, nitric acid, and organic solvents; used for reactor connection and waste liquid treatment; corrosion resistance ensures production safety.

01

Semiconductors and electronics

Transmit ultrapure water, photoresist, hydrofluoric acid, etc., adapt to wafer cleaning and etching processes, and meet low pollution and high temperature resistance requirements.

02

Medicine and Biopharmaceuticals

Transporting water for injection and liquid medicine, in compliance with FDA and USP Class VI standards, withstanding high temperature sterilization, and used for the production of sterile preparations.

03

Food and Beverage

Conveying acidic juice and high-temperature syrup, meeting food contact standards, avoiding contamination, and used for production line material transportation.

04

New energy field

Transporting phosphorus oxychloride in the manufacture of photovoltaic cells, transmitting electrolyte in the production of lithium batteries, and withstanding high temperature and corrosion in the process.

05

 

About Us

 

 

We are a Chinese manufacturer specializing in the research, development, and production of PFA tubing. Our state-of-the-art facility in Dongguan spans 5,000 square meters and employs 160 staff members, including a dedicated R&D team of 30 professionals. We possess extensive expertise in fluoroplastic material research and process innovation. The company has invested in advanced extrusion production lines, hot melt welding equipment, and precision testing instruments, covering the entire production process from raw material purification, forming, to performance testing. We strictly control product quality, with multiple inspections conducted from raw materials to finished products to ensure that each batch of PFA tubing meets international standards. Additionally, we offer customization services, enabling us to tailor products according to specifications such as tube diameter, type, and performance requirements, providing reliable fluid transmission solutions for industries including chemicals, semiconductors, and pharmaceuticals.

 

 

FAQ

 

 

Q: 1.Which has better corrosion resistance, PFA hoses or PTFE hoses?

A: Both are high-performance fluoroplastics with excellent resistance to most acids, alkalis, and organic solvents. Theoretically, PTFE has slightly better corrosion resistance due to its more stable molecular structure; but in practical application, their performance is similar. However, PFA is more suitable for complex hoseline systems due to its ability to be hot - melt welded and better flexibility.

Q: 2.Can PFA hoses meet the cleanliness requirements of the semiconductor industry?

A: Yes. High-purity PFA hoses are made of virgin materials and processed with special techniques, with metal ion elution ≤10ppb, total organic carbon (TOC) ≤50ppb, and surface roughness Ra≤0.1μm. They meet SEMI F57 standards and are core hoses for semiconductor ultra-pure water and photoresist transportation .

Q: 3.Can PFA hoses be used in the food or pharmaceutical industry? What certifications are required?

A:  Yes. Food/pharmaceutical-grade PFA hoses are required, with core certifications including FDA 21 CFR 177.1550 and USP Class VI to ensure that no harmful substances are leached out and suitable for food delivery, pharmaceutical infusion and other scenarios . and USP Class V, ensuring no harmful substances are released, suitable for food transportation, pharmaceutical infusion, etc.

Q: 4.Can PFA hoses replace stainless steel hoses for transporting corrosive media?

A: In most scenarios, yes. Compared with stainless steel, PFA hoses have more comprehensive corrosion resistance, are lighter, and easier to install; but their pressure resistance is lower. High-temperature and high-pressure scenarios need evaluation, and PFA-lined composite hoses may be necessary.

Q: 5.Are there anti-static PFA hoses? Which scenarios are they suitable for?

A: Yes . Made by adding conductive carbon fibers or metal powders, with surface resistance 10⁶-10⁹Ω, they can discharge static electricity, avoiding risks caused by static accumulation in flammable and explosive media (such as organic solvents, fuels) , suitable for chemical explosion-proof areas, coating transportation, etc.

 

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