Coil Heat Exchangers

Coil heat exchangers are heat transfer equipment used to provide controlled and highly efficient heat exchange between air and fluids, forming a key component in HVAC and industrial process systems.

At MAXWOR, beyond standard product concepts, we provide project-specific manufacturing across a wide product range, including hot and chilled water and glycol coils, steam coils, duct-type heating and cooling coils, convector coils, aluminum tube heat exchangers, evaporators, condensers, water-glycol coolers, dry coolers, and OEM coil solutions.

These systems deliver efficient, reliable, and long-lasting performance in a wide range of applications, from air handling units to process cooling lines, drying systems, industrial ventilation, energy, and machinery manufacturing sectors.

Technical Specifications

  • MAXWOR coil heat exchangers are designed and optimized according to application-specific requirements such as capacity, air flow rate, temperature ranges, humidity levels, and pressure drop limits.
  • Hot and chilled water as well as glycol coils provide high heat transfer surface area, improving efficiency in HVAC and process applications, while steam coils deliver fast air heating and uniform heat distribution for drying processes.
  • Duct-type coils can be integrated into existing duct systems with custom dimensions, whereas convector coils offer durable solutions for technical spaces.
  • Evaporators ensure efficient cooling and humidity control in DX and cold room applications, while condensers serve as key components in cooling systems with high heat rejection capacity.
  • Water-glycol coolers and dry cooler systems provide stable temperature control, low operating costs, and environmentally friendly operation advantages.
  • OEM solutions offer customized dimensions, serial production standardization, brand adaptation, and full traceability in manufacturing.

Design & Material

  • All coil heat exchangers are engineered based on real operating conditions and designed using advanced heat transfer software for capacity and performance calculations.
  • Tube construction may include copper tubes, alternative diameters, stainless steel, and special alloys, while fin structures offer application-specific aluminum fins, custom fin geometries, and surface treatments such as epoxy coating.
  • The header, casing, and frame structure are selected according to project requirements using galvanized steel, aluminum, or special materials.
  • Systems designed for operating pressures up to 32 bar are engineered to achieve minimum pressure drop, maximum heat transfer, energy optimization, long equipment lifetime, and full system compatibility.
  • In OEM and custom manufacturing projects, all processes—from connection details and labeling to production repeatability and quality consistency—are managed under strict engineering control.

Documents

Quotation Form