
Eastbrook Tunstall H 589mm Towel Hanger Matt Anthracite | 101.0045
Eastbrook Tunstall H 589mm Towel Hanger – Matt Anthracite – 101.0045
The Eastbrook Tunstall H 589mm towel hanger in matt anthracite offers a refined, contemporary addition to compatible Tunstall radiators. Its horizontal bar provides practical hanging space for towels, while the matt anthracite finish introduces a soft, architectural depth that pairs beautifully with modern, industrial, and tonal bathroom schemes. Designed specifically for the Tunstall collection, it enhances both functionality and visual cohesion.
Key Features:
- Product Code: 101.0045
- Width: 589mm
- Type: Towel hanger for Tunstall radiators
- Finish: Matt anthracite
- Design: Clean, modern profile with a smooth, muted surface
- Compatibility: Suitable for selected Eastbrook Tunstall models
- Guarantee: Manufacturer’s warranty
Installation Notes: Designed for secure fitting onto compatible Tunstall radiators. Ensure correct placement for optimal stability and performance.
Original: $64.51
-65%$64.51
$22.58Product Information
Product Information
Shipping & Returns
Shipping & Returns
Description
Eastbrook Tunstall H 589mm Towel Hanger – Matt Anthracite – 101.0045
The Eastbrook Tunstall H 589mm towel hanger in matt anthracite offers a refined, contemporary addition to compatible Tunstall radiators. Its horizontal bar provides practical hanging space for towels, while the matt anthracite finish introduces a soft, architectural depth that pairs beautifully with modern, industrial, and tonal bathroom schemes. Designed specifically for the Tunstall collection, it enhances both functionality and visual cohesion.
Key Features:
- Product Code: 101.0045
- Width: 589mm
- Type: Towel hanger for Tunstall radiators
- Finish: Matt anthracite
- Design: Clean, modern profile with a smooth, muted surface
- Compatibility: Suitable for selected Eastbrook Tunstall models
- Guarantee: Manufacturer’s warranty
Installation Notes: Designed for secure fitting onto compatible Tunstall radiators. Ensure correct placement for optimal stability and performance.























