Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint

Product Details
Customization: Available
After-sales Service: Within One Year
Warranty: 12 Months
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  • Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint
  • Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint
  • Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint
  • Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint
  • Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint
  • Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint
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Basic Info.

Model NO.
DN65
Transport Package
Container
Specification
DN15-DN1000
Trademark
Han Yuan
Origin
China
Production Capacity
50000

Product Description



Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint





Tetrafluorote liner is a specially designed pipeline connection, mainly used in highly corrosive, high-temperature or high-purity fluid delivery systems. The following is a detailed introduction to it: 

Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint
1. The structure and composition matrix materials usually use carbon steel, stainless steel and other metals as shells to provide structural strength. Lining material: A layer of polytetrafluoroethylene (PTFE) is lining the inner wall of the pipeline, with a thickness of 2-3mm, covering all fluid contact surfaces to form an anti-corrosion barrier.

Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint
2. Material characteristics (PTFE advantages) Corrosion resistance: It can resist strong acids (such as sulfuric acid, hydrochloric acid), strong alkalis, organic solvents and other chemical media. Temperature resistance: a wide working temperature range (-196ºC to +260ºC), and can withstand higher temperatures in the short term. Non-stickness: smooth surface, prevent scaling, and reduce fluid resistance. High purity: suitable for industries such as food and pharmac


Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint

3. Application fieldsChemical industry: acid and alkali conveying, reactor pipeline systems. Pharmaceutical/Food: Sterile, contaminated fluid treatment.  Plated/electronic: Corrosive chemical liquid transmission. Environmental Protection Project: Waste gas and wastewater treatment equipment. 
Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint

4. Product Type Equi-diameter tee: The three ports have the same diameter. Separate diameter tee: The branch port is different from the main pipe diameter. Customized design: The angle can be customized according to pressure and flow requirements (such as 45°, 90° branches). 
Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint

5. Core advantagesLong life: Compared with ordinary metal tees, corrosion resistance significantly extends service life. Cost-effective: Metal housing provides mechanical strength, and only lining uses PTFE, saving material costs. Easy maintenance: Reduce leakage and replacement frequency and reduce downtime losses. 
Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint

6. Precautions for use Temperature pressure limit: Avoid exceeding the tolerance limit of PTFE (which may soften at high temperatures). Installation requirements: Special flange gaskets are required to prevent the lining from tearing; avoid violent installation or welding to damage the lining.  Regular check: Pay attention to whether the lining layer falls off and bubbles, especially after violent temperature fluctuations.
Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint

7. Industry Standards Manufacturing usually follows GB/T 26120 (industrial plastic-lined steel pipes and fittings) ANSI/ASME B16.5 and other standards to ensure compliance with the dimensions and pressure levels.



Nuclear-Grade Radiation Protection Tetrafluoro Sealed Three-Way Joint




Summary Lining tetrafluorote becomes an ideal choice for corrosive fluid systems by combining the mechanical properties of metals and the chemical inertia of PTFE, especially suitable for industrial scenarios that require long-term and stable operation. When selecting the model, medium characteristics, temperature and pressure parameters and installation environment must be comprehensively considered to maximize its performance advantages.

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