Alloy 625vibrant flex bellows
Our alloy 625 vibrant flex bellows are engineered to absorb thermal expansion and contraction, vibrations, and displacement within piping systems and equipment. Simultaneously, they provide pressure-sealing and isolation from corrosive media, making them ideal for high-temperature, corrosive, and vibration-intensive operating conditions. Their core characteristics include exceptional corrosion resistance, high-temperature tolerance, structural flexibility, and fatigue life, rendering them suitable for demanding industrial environments.
Alloy 625vibrant flex bellows
Our alloy 625 vibrant flex bellows are engineered to absorb thermal expansion and contraction, vibrations, and displacement within piping systems and equipment. Simultaneously, they provide pressure-sealing and isolation from corrosive media, making them ideal for high-temperature, corrosive, and vibration-intensive operating conditions. Their core characteristics include exceptional corrosion resistance, high-temperature tolerance, structural flexibility, and fatigue life, rendering them suitable for demanding industrial environments.

alloy 625vibrant flex bellows
Alloy 625vibrant flex bellows
Core Functions
Displacement and Vibration Compensation: Absorbs pipeline displacement caused by thermal expansion/contraction, mechanical vibration, and equipment operation through axial/lateral/angular flexible deformation of the bellows structure, preventing cracking or leakage due to stress concentration.
Pressure Sealing: Maintains system integrity under high-pressure conditions, preventing fluid (gas/liquid) leakage. Suitable for pressurised systems in chemical, oil and gas, nuclear power, and other industries.
Corrosion Isolation: Utilises the corrosion resistance of Alloy 625 to isolate corrosive media (e.g., seawater, acids, chlorides) from pipelines/equipment, extending system lifespan.
Noise and Vibration Reduction: The bellows structure attenuates fluid pulsations and mechanical vibration transmission, minimising the impact of system noise and vibration on surrounding equipment.
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