Posted in | Induction Heating

Next-Generation Heating Technology with HDPlas® Functionalized-Graphene Underfloor Heating (FGUH)

Haydale’s unique HDPlas® technology transforms advanced materials from inert to active, enabling diverse uses.

Functionalized nanomaterials offer a wide variety of advantages, including:

  • Electrical conductivity
  • Thermal conductivity
  • Mechanical strength
  • Wear resistance

Getting the Right Combination

Haydale assists in locating the appropriate material for a particular application or product.

Next-Generation Heating Technology with HDPlas® Functionalized-Graphene Underfloor Heating (FGUH)

Image Credit: Haydale Limited

Download the Brochure for More Information

The Vision

Next-Generation Heating Technology with HDPlas® Functionalized-Graphene Underfloor Heating (FGUH)

Image Credit: Haydale Limited

Graphene Heaters, Solar, and Battery Storage

With its revolutionary HDPlas® functionalized graphene, Haydale’s next-generation radiant heating lowers installation and heating expenses.

Delivering Heat to Where It is Needed

  • Amazing results – Large area underfloor heating
  • Safe and easy – Low voltage
  • Easy to install – Standard methods, low-skill
  • Efficient – Saves energy

With Haydale’s innovation, heat is delivered more quickly and effectively than with previous electric-based goods. It is easier to install than heat pumps and hydrothermal solutions.

Next-Generation Heating Technology with HDPlas® Functionalized-Graphene Underfloor Heating (FGUH)

Image Credit: Haydale Limited

Download the Brochure for More Information

Graphene Thermal Fluid, Retrofit Solutions

Enhancing the thermal characteristics of heat transfer fluids by unlocking the properties of graphene nanomaterials using Haydale’s HDPlas® Plasma Functionalization Process is feasible.

Spreading Heat More Effectively

  • More Dynamic – Quicker, transfers more energy
  • Safe and easy – Compatible with existing systems
  • Easy to install – Key industrial partner
  • Efficient – Lowers expenses and carbon emissions

The invention improves central heating and cooling systems more efficiently than conventional commercial products.

Haydale UFH

  • Uniform heat distribution minimizes the development of hot spots and uneven heat distribution.
  • High heat energy transmission across a wide surface area in contrast to wire systems’ localized heating
  • High heat efficiency at low power

Next-Generation Heating Technology with HDPlas® Functionalized-Graphene Underfloor Heating (FGUH)

Image Credit: Haydale Limited

Next-Generation Heating Technology with HDPlas® Functionalized-Graphene Underfloor Heating (FGUH)

Image Credit: Haydale Limited

Next-Generation Heating Technology with HDPlas® Functionalized-Graphene Underfloor Heating (FGUH)

Image Credit: Haydale Limited

Smart Control

Next-Generation Heating Technology with HDPlas® Functionalized-Graphene Underfloor Heating (FGUH)

Image Credit: Haydale Limited

Next-Generation Heating Technology with HDPlas® Functionalized-Graphene Underfloor Heating (FGUH)

Image Credit: Haydale Limited

Next-Generation Heating Technology with HDPlas® Functionalized-Graphene Underfloor Heating (FGUH)

Image Credit: Haydale Limited

Download the Brochure for More Information

Decentralized Heating

Haydale set up a 10 m2 testing facility at Haydale headquarters, enabling them to demonstrate the following:

  • Enable complete control over the temperature of a room with many independently controlled heating zones
  • Even after the mats travel through a standard 14 mm laminate floor, their heat is still localized.
  • Different areas can sustain varying fixed temperatures
  • Haydale’s heating technology outperforms rival devices, which lowers energy costs

Onsite Prototype Testing Results:

  • Up to 30%
    • Cost-effective alternative to traditional wired systems when run off mains
  • Up to 17%
    • Combining battery storage can reduce expenses compared to air-source heat pumps

Other Equipment

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