A PTFE diaphragm is a flexible membrane made from polytetrafluoroethylene (PTFE) material. It is used in various applications as a barrier or separator, providing resistance to chemicals, temperature, and pressure.
Chemical resistance: PTFE diaphragms offer excellent resistance to a wide range of chemicals, including corrosive substances, making them suitable for applications involving aggressive fluids.
Temperature resistance: They can withstand high temperatures without degradation, maintaining their integrity and sealing performance.
Flexibility: PTFE diaphragms are highly flexible, allowing them to adapt to different shapes and provide effective sealing in various applications.
Low friction: The low-friction properties of PTFE contribute to reduced wear and extended service life in dynamic applications.
Excellent sealing properties: PTFE diaphragms provide reliable sealing, preventing leaks and ensuring separation between two mediums or systems.
Longevity: PTFE diaphragms are durable and resistant to degradation, offering a long service life even in demanding environments.
PTFE material: PTFE diaphragms are made from high-quality polytetrafluoroethylene, which is known for its non-stick, chemical resistance, and high-temperature properties.
Thickness options: They are available in various thicknesses to meet specific application requirements and provide the desired level of flexibility and strength.
Shape versatility: PTFE diaphragms can be manufactured in different shapes and sizes, including round, rectangular, or custom designs, to fit specific equipment or systems.
Smooth surface: The smooth surface of PTFE diaphragms minimizes friction, reduces the risk of material buildup, and enhances their resistance to fouling or contamination.
Flex cracking resistance: They are designed to resist flex cracking, which ensures reliable performance even during repeated cycles of flexing or movement.
Pressure rating: PTFE diaphragms are available with different pressure ratings, allowing for compatibility with a wide range of pressure conditions in various applications.
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