Material: Steel. Diameter: 89 Mm. Section: Round. Wall Thickness: 3.5 - 4. Type: Pipe Electric Welding. Metal Cutting, Anti -Corrosion External Insulation (May Include Polyurethane, Polystyrene Foam Or Other Materials For Thermal Insulation). The Technical Characteristics Of The Pipes Should Take Into Account The Working Pressure In The Heating Networks, Usually In The Range Of 10-16 Atm For Most Pipelines Used In Heat Engineering. Corrosion Protection: Pipelines For Heating Networks Should Have Corrosion Protection, It Can Be An Anti -Corrosion Coating Or Cathode Protection., Material: Steel. Diameter: 57 Mm. Section: Round. Wall Thickness: 3.5 - 4. Type: Pipe Electric Welding. Metal Cutting, Anti -Corrosion External Insulation (May Include Polyurethane, Polystyrene Foam Or Other Materials For Thermal Insulation). The Technical Characteristics Of The Pipes Should Take Into Account The Working Pressure In The Heating Networks, Usually In The Range Of 10-16 Atm For Most Pipelines Used In Heat Engineering. Corrosion Protection: Pipelines For Heating Networks Should Have Corrosion Protection, It Can Be An Anti -Corrosion Coating Or Cathode Protection., Material: Steel. Diameter: 57 Mm. Section: Round. Gost: 8732-78 Wall Thickness: 3.5. Type: Seamless. Metal Cutting, Anti -Corrosion External Insulation (May Include Polyurethane, Polystyrene Foam Or Other Materials For Thermal Insulation). The Technical Characteristics Of The Pipes Should Take Into Account The Working Pressure In The Heating Networks, Usually In The Range Of 10-16 Atm For Most Pipelines Used In Heat Engineering. Isolation: External Insulation Should Be Performed Taking Into Account The Minimum Heat Loss And Resistance To External Influences. Corrosion Protection: Pipelines For Heating Networks Should Have Corrosion Protection, It Can Be An Anti -Corrosion Coating Or Cathode Protection.
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