Plate Heat Exchanger
Plate heat exchangers use Herringbone and other corrugated patterns to create turbulent fluid flow, enhancing heat exchange efficiency. This turbulence helps maintain a constant fluid temperature and reduces boundary films that hinder heat transfer.
Additionally, the design's self-cleaning effect minimizes scale buildup on the plates, further improving efficiency.
Key Features of HISAKA Plate Heat Exchangers
- High Heat Transfer Efficiency
Corrugated plates create turbulent flow to maximize heat exchange rates—up to 2x more efficient than shell & tube types.
- Compact Design
Space-saving, lightweight, and easy to maintain. Units available from 0.18 m² to 3,400 m² heat transfer area.
- Wide Material Options
Plates made from stainless steel, titanium, nickel alloys, and more. Gasket choices include NBR, EPDM, FPM, and PTFE cushion gaskets (TCG).
- Customizable & Scalable
Over 10 series available including compact, high-pressure, welded, and slurry-compatible units. Processing capacities up to 7,300 m³/h and 4.0 MPaG.
- Environment & Safety First
ISO9001 / ISO14001 / ISO45001 certified manufacturing, with ASME, JIS, and CE standards support.
Using plate type heat exchangers as our core technology,
we provide thermal solutions to our customers all over the world.
Modular, serviceable, and ideal for most applications. Available in glue or glue-free slit-in gasket types.
Use cases: Food processing, HVAC, industrial cooling.
Combines laser-welded plates with gaskets for high pressure and aggressive fluids.
Best for: Refrigerants, corrosive chemical fluids.
Compact and sealed units using copper or nickel brazing. Lightweight, cost-effective.
Ideal for: Heat pumps, water heaters, industrial equipment.
Double-layered safety to prevent fluid cross-contamination, with visible leak detection.
Perfect for: Food, pharmaceuticals, oil coolers.
Withstands up to 250°C and 9.5 MPa, thanks to double-gasket design and reinforced materials.
Application: Boilers, nuclear power, hazardous chemical processing.
Up to 20 mm flow gap to handle fluids with solids or high viscosity.
Used in: Bioethanol, mining, sludge treatment.
Designed to condense vapors efficiently with minimal pressure drop and reduced water consumption.
Recommended for: Steam recovery, vacuum systems.