Triangle Leg Dining Table is designed by Simon Jones Studio for HAY — a dining table defined by the triangular leg profile that gives both this table and the bench from the same series their name and their primary formal identity. The triangular leg section creates a visual quality that changes substantially with viewing angle — presenting a different apparent width and spatial weight when seen from the end of the table compared to from the long side — giving the dining table a formal dynamism and geometric interest that conventional round or square leg dining tables simply cannot achieve within the same level of visual restraint.
The table's clean, contemporary character and the geometric quality of its triangular legs make it a dining table of clear design personality suited to interiors where individual furniture pieces contribute a specific formal presence and visual identity to the overall spatial composition. The surface and frame are available in HAY's material and finish range suited to different dining room interior directions, and the Triangle Leg series' formal consistency between the bench and dining table formats allows them to be used as a coherent and visually unified complete dining arrangement. Simon Jones Studio's formal intelligence ensures the triangular section is proportionally resolved and visually integrated into the table's overall design with full consideration of its effect at different scales and viewing distances.
The Triangle Leg Dining Table is well suited to residential dining rooms and kitchen settings where a dining table of distinctive geometric leg character and clean contemporary design quality is required. It pairs naturally with the Triangle Leg Bench from the same series for a coherent and formally consistent dining arrangement, and its design identity makes it an appropriate specification for design-conscious interiors where the formal character of individual furniture pieces contributes meaningfully to the overall spatial narrative of the dining room.
Available as a 2D DWG drawing and 3D model.