Harrison Spinks Premium Austen Headboard

Feather & Black £1,299.00 Go to Feather & Black First seen in Jun 2024
Description
Add a dose of opulence to your divan with the Premium Austen Headboard. This rich panelled design offers timeless glamour, with a high, statement finish and full depth design that sits flush to the floor for easy assembly. Invitingly padded with certified fully recycled materials, Austen is your glamorous go-to for any occasion. Each Harrison Spinks headboard is lovingly handcrafted right here in the UK, so our expert team can upholster your favourite design in a fabric that speaks to you. Choose from 12 striking fabrics in a wide variety of sumptuous textures and colours. Our Empire, Herringbone and Diamond fabrics are comprised of 100% new wool, a natural product with dirt-repelling antistatic properties. Produced by Yorkshire-based heritage brand Moon, these wool fibres are fully traceable from farm to fabric, with pioneering sustainability practices baked into the manufacturing process. Our Hemp fabrics are also created in Yorkshire, by British textile manufacturer Camira, whose production has been based in Huddersfield since 1783. This hard-wearing fabric is naturally dirt-repellent and fully compostable, comprising a carefully crafted blend of 60% pure new wool and 40% hemp. Discover the full Harrison Spinks range for more high-quality designs, handmade in Britain. A statement piece with stunning high panelled design Skilfully assembled and upholstered at the Harrison Spinks factory in Leeds At full depth, the Austen sits flush to the floor for easy attachment to your divan base Luxuriously padded with no-foam polyester Manufactured with FSC-accredited wood, and crafted with recycled materials throughout The Austen headboard is 100% recyclable when it’s time for a refresh, so you can rest easy 7 Year Guarantee Choose your dream fabric from our premium finishes Hemp: A blend of pure new wool and hemp, fully compostable and naturally hard wearing. Sustainably manufactured to support hemp’s inherent carbon-storing properties
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