Radiant Collection
The Radiant Collection showcases premium engineered hardwood flooring with generous 7.5-inch planks that create a luxurious foundation while delivering exceptional radiant heat compatibility. The precision-milled tongue-and-groove profile enables professional installation using glue-down or floating methods, ensuring optimal thermal contact with radiant heating elements.
PRODUCT DETAILS
Description
The Radiant Collection showcases premium engineered hardwood flooring with generous 7.5-inch planks that create a luxurious foundation while delivering exceptional radiant heat compatibility. Crafted from select Maple, Ash, and Birch, these specialized wood floors feature consistent grading and subtle color variations that establish a refined, balanced appearance ideal for contemporary heating system installations. The smooth-sanded surface with matte finish presents an elegant, natural aesthetic that complements modern architectural elements.
Specifically engineered for superior thermal conductivity, this specialized flooring incorporates a substantial 3mm wear layer protected by a commercial-grade UV-cured finish that delivers excellent scratch and stain resistance while efficiently transferring heat from radiant systems. The innovative core construction provides optimized heat distribution throughout the floor surface, creating comfortable, energy-efficient warmth without compromising the wood’s natural beauty or structural integrity. Ideal for radiant heating installations in both residential and commercial settings, this collection combines practical warmth with sophisticated aesthetics for spaces requiring both comfort and style.
The precision-milled tongue-and-groove profile enables professional installation using glue-down or floating methods, ensuring optimal thermal contact with radiant heating elements. The specialized engineered construction provides exceptional dimensional stability with minimal expansion and contraction during heating cycles, maintaining structural integrity and appearance even with the temperature fluctuations inherent in radiant heating systems.