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Hot extrusion reducing tee
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  • Hot extrusion reducing tee

Hot extrusion reducing tee


Application: Water Disposal; Natural Gas; Petroleum Oil.

Category:

  • Product description
  • Size:

    DN6--DN800; 1/8''--32''; Sch5s--Sch160

    Pressure Class:

    150#; 300#; 600#; 900#; 2000#; 3000#; 6000#; 9000#

    Material:

    ASTM A105N; A182Gr.F304/L; F316/L; A350LF2; A694F42 to F70; WP5; WP9; WP11; WP22; NACE MR-0175; Other Grade available on Request

    Standard:

    ASME B16.5; HG20592; DIN2527、2573、2627-2638、2673、2552、2653、2655、2656、2641、2642、2565-2569; GOST12820; JIS B2220

    Sealing surface:

    RF; RJ

    Coating:

    Anti corrosive paint; Galvanized (Hot Dipped Electro-Plating) etc.

    Inspection:

    Chemical Elements; Mechanical Property; Metallographic Test; HIC /SSC; Heat Treatment; Ultrasonic Test; Penetration Test; Magnetic Powder Test; X-Ray Test; Hydraulic Pressure Test; Blasting Experiment; we can make them according to your request.

    Application:

    Water Disposal; Natural Gas; Petroleum Oil.

    Note:

    Our company support OEM and ODM, can customized products according to customer requirements.

     

    Optimize your piping system performance with this robust new Hot extrusion reducing tee, engineered to handle directional changes in high-pressure fluid transport with exceptional reliability. The hot extrusion manufacturing process creates a seamless structure with consistent wall thickness and superior grain flow characteristics that significantly enhance pressure resistance compared to conventional fabricated tees. This reliable new Hot extrusion reducing tee maintains dimensional accuracy across all connection points, ensuring proper alignment with existing piping while providing smooth internal surfaces that minimize turbulence and pressure drop. Pipeline engineers and system designers appreciate the enhanced structural integrity that reduces failure risks at critical junction points where stress concentrations typically occur in piping networks.

    The manufacturing methodology ensures optimal material properties throughout the component. The hot extrusion technique eliminates welding seams and creates a homogeneous molecular structure that withstands cyclic pressure variations and thermal stress more effectively than assembled alternatives. This versatile new Hot extrusion reducing tee serves various industrial applications including chemical processing, oil and gas transportation, and power generation systems where connection reliability directly impacts operational safety and system longevity. The combination of seamless construction, precise dimensions, and enhanced pressure capacity makes this pressure piping component particularly valuable for critical infrastructure projects and industrial facilities where component failure is not an option and long-term performance under demanding conditions is essential for continuous operation.

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