PE-RT五層阻氧型管
威伯森五層阻氧管由于采用中間阻氧層的結構,因而具有更好的耐熱、耐濕和耐磨的特性,提供更好的可靠性和持久性的保證,適用于低溫輻射地暖系統和散熱器連接系統,是施工環境惡劣的建筑工地的理想之選
創新的5層塑料管制造工藝,應用獨特的擠壓工藝,可以一步完成5層結構的復合,將阻氧層(EVOH)永久可靠地黏合在PE-X內層和PE外層之間。
因為獨特的制造工藝使得五層結構具有更好的耐變形和抗外部應力的能力。
特別的抗老化劑和穩定劑可以保持管道的永久柔韌性并確保較高的熱穩定性。
由于管材的外層保護特性,使得安裝更具靈活性和安友好,水暖工人的安裝更加快速和方便。
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five-layer oxygen blocking tube has better heat resistance, humidity resistance and wear resistance because of the structure of the intermediate oxygen blocking layer, providing better reliability and durability assurance, suitable for low-temperature radiation ground heating system and radiator connection system, Perfect for construction sites with harsh construction conditions.
The innovative five-layer plastic pipe manufacturing process and the unique extrusion process can complete the five-layer structure compounding in one step. The oxygen barrier layer (EVOH) can be permanently and reliably bonded between the PE-X inner layer and the PE outer layer.
Because of the unique manufacturing process, the five-storey structure has better deformation resistance and external stress resistance.
Special anti-aging agents and stabilizers can maintain the permanent flexibility of pipelines and ensure high thermal stability.
Because of the outer protection characteristics of pipes, the installation is more flexible and safe, and the installation of plumbing workers is faster and more convenient.
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引用標準 REFERENCE STANDARD
Wibosn耐高溫聚乙烯管目前執行的標準是DIN 4726 。
WibosnPE-RT管路系統在適用范圍內的溫度和工作壓力情況下可用50年。
The standard of high temperature polyethylene pipe is CJ-T175-2002.The standard of high temperature polyethylene pipe isDIN 4726 .
The PE-RT piping system can be used for 50 years within the applicable range of temperature and working pressure.
技術參數 TECHNICAL PARAMETER
適用范圍:地板采暖
顏色:灰色
最高工作溫度:90℃
軟化溫度:123℃
密度:0.933g/cm
拉伸度:170kg/cm2
橫向膨脹系數:1.9*10-4k-1
管材導熱系數:0.4W/km
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Scope of application: floor heating
Color: Red
Maximum working temperature: 90 ℃
Softening temperature: 123 ℃
Density: 0.933g/cm
Tensile degree: 170kg/cm
Lateral expansion coefficient: 1.9*10-4k-1
Thermal conductivity of pipe material: 0.4W/km
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