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Uses and characteristics of PVDF pipes: PVDF pipes possess excellent resistance to chemical corrosion, as well as good resistance to color change at high temperatures and oxidation. PVDF pipes possess excellent wear resistance, flexibility, high expansion resistance, and impact strength. PVDF pipes exhibit excellent resistance to ultraviolet rays and high-energy radiation. They have poor hydrophilicity. PVDF pipes possess higher stiffness and pressure-bearing capacity compared to polytetrafluoroethylene of similar type, but their smoothness and electrical insulation properties are slightly inferior. They maintain high strength and toughness at low temperatures, and can extinguish themselves spontaneously. The operating temperature ranges from -40 degrees to +150 degrees. PVDF pipes remain stable against chlorides, bromides, and energy rays. It can be used as an engineering plastic. Used to make sealing rings, corrosion-resistant equipment, components for long-term outdoor use, and capacitors. It can also be used as insulating materials, coatings, ion exchange membranes, and other such materials. PVDF pipes possess excellent wear resistance, flexibility, high expansion resistance, and impact strength. PVDF pipes have a high maximum operating temperature in air (they can operate continuously at 150 degrees), excellent resistance to chemical corrosion and hydrolysis, as well as outstanding UV resistance and weather resistance. High mechanical strength, good stiffness, excellent creep resistance, good sliding and wear resistance, inherently low flammability, and good electrical insulation properties. PVDF pipe seals, pump components, rotating discs, valves, slides; manufacturing of components for the petrochemical, chemical, metallurgical, papermaking, textile, pharmaceutical, and nuclear industries. In the pharmaceutical sector, it is used as a final filter element for sterile filtration, effectively removing heat sources.
Should UPVC, PVC, PE, etc. all be introduced as well?