Emu Vetta White Relaxing Deck Chair
The Emu Vetta deck chair, designed by the acclaimed Chiaramonte / Marin studio, is a sophisticated reinterpretation of the classic folding lounge chair. Defined by its elegant, continuous frame, the Vetta collection uses high-performance materials to create a serene outdoor experience. The White finish provides a crisp, Mediterranean aesthetic that brightens poolside decks, luxury terraces, and lush garden landscapes. Built with a sturdy steel structure and high-resistance EMU-Tex technical fabric, this chair features a functional recline mechanism that allows for multiple positions, ensuring maximum comfort. Its fully foldable design and iconic Italian silhouette make it a perfect blend of style and practicality for modern open-air living.
Note: This product is shipped without the headrest pillow.
Brand: Emu
Model: Vetta
Designer: Chiaramonte / Marin
Width: 104 cm
Depth: 78 cm
Height: 80 cm
Weight: 9.7 kg
Color: White
Material: High-Performance Steel / EMU-Tex Technical Fabric
Product Code: EMU-30171233006532
Key Features
- Adjustable Comfort: Features a discreet integrated mechanism that allows the user to choose between different reclining positions.
- Fully Foldable: Engineered for effortless storage and portability, collapsing into a slim profile when not in use.
- All-Weather EMU-Tex: The technical fabric is breathable, UV-resistant, and specifically designed to withstand humidity and direct sunlight.
- Architectural Steel Frame: Treated with Emu’s advanced anti-corrosion cycles to ensure structural integrity and a long-lasting white finish.
Maintenance Recommendations
To keep the White finish and fabric pristine, we recommend regular cleaning with a soft cloth and mild, neutral detergent. For products located in coastal environments or near swimming pools, frequent rinsing with fresh water is essential to remove salt or chlorine deposits. During the winter months, store the chair in its folded position in a dry, sheltered area to prevent condensation and maintain the vibrancy of the materials.