316L stainless steel metal bellows compensators have good corrosion resistance:
316L stainless steel contains molybdenum, which can resist corrosion by acidic and alkaline media, seawater, and high-temperature steam, making it suitable for harsh environments such as chemical engineering and marine applications.
Structural Design:
The main body is a multi-layer hydraulically formed 316L stainless steel corrugated tube, supplemented by flange/welded connection ends and protective structures (such as flow guides to prevent erosion and tie rods to prevent excessive deformation).
This is a pipeline displacement compensation device manufactured using 316L austenitic stainless steel as the core material, combining excellent corrosion resistance and mechanical properties.
It absorbs axial, lateral, and angular displacements caused by thermal expansion and contraction of the pipeline, reducing pipeline stress.
It alleviates the impact of equipment vibration or earthquakes on the pipeline system. The operating pressure is typically 0.1–2.5 MPa (high-pressure types can reach higher pressures), and the design pressure must match the requirements of the pipeline system.
Application Scenarios
1. Chemical/Petrochemical: Corrosion resistance suitable for transporting acids, alkalis, salts and other media.
2. Heating Networks: Compensates for thermal deformation of steam pipes and extends pipe life.
3. Water Supply/Power Systems: Adaptable to complex conditions such as ground subsidence and mechanical vibration.
316L stainless steel metal bellows compensators have good corrosion resistance:
316L stainless steel contains molybdenum, which can resist corrosion by acidic and alkaline media, seawater, and high-temperature steam, making it suitable for harsh environments such as chemical engineering and marine applications.
Structural Design:
The main body is a multi-layer hydraulically formed 316L stainless steel corrugated tube, supplemented by flange/welded connection ends and protective structures (such as flow guides to prevent erosion and tie rods to prevent excessive deformation).
This is a pipeline displacement compensation device manufactured using 316L austenitic stainless steel as the core material, combining excellent corrosion resistance and mechanical properties.
It absorbs axial, lateral, and angular displacements caused by thermal expansion and contraction of the pipeline, reducing pipeline stress.
It alleviates the impact of equipment vibration or earthquakes on the pipeline system. The operating pressure is typically 0.1–2.5 MPa (high-pressure types can reach higher pressures), and the design pressure must match the requirements of the pipeline system.
Application Scenarios
1. Chemical/Petrochemical: Corrosion resistance suitable for transporting acids, alkalis, salts and other media.
2. Heating Networks: Compensates for thermal deformation of steam pipes and extends pipe life.
3. Water Supply/Power Systems: Adaptable to complex conditions such as ground subsidence and mechanical vibration.