Product details
Stainless Steel Construction: Ensures durability and resistance to corrosion.
High-Quality Material: Enhances longevity and performance in steam systems.
Customized Solutions: Tailored to meet specific steam equipment needs.
Efficient Heat Exchange: Optimizes energy use in industrial applications.
Steam System Compatibility: Ideal for various industrial settings requiring steam heat exchange.
Frequently asked questions
It is a customized tube heat exchanger with stainless steel core, specially matched with steam equipment. It realizes heat transfer by steam heating medium (water, oil, process fluid etc.), widely used for heating, heat recovery, temperature control in industrial steam boiler systems, steam heating production lines, food processing, chemical industry, central heating and pharmaceutical equipment.
Support full customization: heat exchange area, tube diameter, shell size, working pressure, working temperature, connection flange standard, material grade of stainless steel, layout of tube bundle, internal baffle structure, anti-corrosion & anti-scaling design, installation bracket and control matching module.
Stainless steel core features excellent corrosion resistance, suitable for clean medium, slightly corrosive fluid, food-grade and pharmaceutical working conditions. It avoids rust pollution of medium, longer service life, easier cleaning, meets high hygiene requirements; carbon steel is optional for ordinary non-corrosive working conditions as alternative.
Regular options: SUS304, SUS316L. Special working conditions can support 321, 2205 duplex stainless steel. Material certificate (EN / ASTM standard) can be provided.
Standard design: steam working pressure ≤1.6 MPa, steam temperature ≤204°C. Higher pressure & temperature parameters can be customized according to customer steam equipment parameters.
Steam usually flows on shell side for heating; tube side medium can be clean water, glycol solution, thermal oil, beverage, process liquid. We can adjust internal structure if you need steam inside tubes.
Optimized tube bundle layout improves heat transfer coefficient, reduces steam consumption; reasonable flow channel design lowers flow resistance, reduces pump power consumption. Recover residual heat from condensed steam to reduce energy waste, effectively cut operating cost of your steam equipment.
Yes. After matching design according to your actual heat load, the heat exchange efficiency is improved, less steam is needed to reach the target temperature. The energy-saving rate depends on your existing system design and operating conditions.