Geometry Carbon Fibre Chairs

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The Rear Wing Chair by Keon-Jo Debuts at Monaco Grand Prix

The Rear Wing Chair is a full carbon fibre seating object designed by Keon-Jo, translating the geometry of a Formula 1 rear wing directly into a functional chair without modification to the aerodynamic profile, curvature, or surface treatment. The woven carbon fibre weave is left exposed across all surfaces.

The chair measures 1,200 by 760 by 670 millimetres and is the studio's second physical object, following the Front Wing Wall Art, a wall-mounted sculptural piece built from F1 front wing geometry. Both works apply the same methodology: taking components from motorsport engineering and converting them into objects for domestic use.

The Rear Wing Chair debuts during Monaco Grand Prix weekend, running June 6 to 8, 2026. Keon-Jo is a design studio focused on translating the precision engineering of Formula 1 components into furniture and objects for the home.

Trend Themes

  1. Motorsport-inspired Home Design — The adoption of racing component geometries in furniture represents a shift toward heirloom-quality domestic objects that reflect performance heritage.
  2. Exposed Composite Aesthetics — Visible carbon fibre weaves across all surfaces signal a material-first aesthetic that redefines luxury by foregrounding manufacturing technique.
  3. Precision Geometry Translation — Directly converting aerodynamic forms into full-scale objects blurs industrial part and consumer product typologies, suggesting new models of product provenance and authenticity.

Industry Implications

  1. Furniture Design — Studio furniture and contract seating are integrating aerodynamic engineering into forms, producing structurally efficient pieces with sculptural appeal.
  2. Luxury Automotive Lifestyle — Motorsport-linked brands and collectors are extending into home objects and decor, aligning living spaces with racing provenance and collectible value.
  3. Advanced Materials Manufacturing — Carbon fibre producers are encountering demand for finishes that balance exposed-weave aesthetics with consistent structural performance and manufacturability.

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