762 x 1981mm Kilburn Oak Glazed Door
This clear glazed oak door from the Kilburn collection is 762mm wide x 1981mm high x 35mm thick. Featuring an elegant three panel design, the two side raised and fielded panels feature traditional Ovolo beading that creates a striking, and geometrically balanced look, the clear toughened safety glass centre panel with Ovolo glazing beads admits plenty of natural light whilst maintaining your room boundaries. Kilburn oak glazed doors perfectly suit traditional and period properties.
30 x 78 Inch Oak Kilburn Glazed Door
This imperial size oak Kilburn glazed door measures 30 inches in width, 78 inches in height, and is 1.3/8 inches thick, equivalent to 2 feet 6 inches by 6 feet 6 inches in size. This oak Kilburn glazed door with clear glass is manufactured with the finest quality crown-cut white oak veneers, and constructed with engineered timber components for strength and stability. Solid oak 10mm lippings allow up to 7mm to be trimmed from each edge, more is possible on the bottom edge.
1981 x 762mm Glazed Kilburn Oak Door
This 1981 x 762mm glazed Kilburn oak door is supplied unfinished ready for your choice of solvent based; wood stain finish, clear lacquer, or our recommendation of the Osmo door oil treatment in a choice of 'raw' finish for a matt open grain look, or the 'clear' for a satin open grain effect, either one will provide a natural looking finish that will show the real beauty of the oak and provide a tactile touch. However you choose to finish your clear glazed Kilburn oak door, please refer to our Door Handling & Finishing Guidelines.
78 x 30 x 1.3/8 Inch Kilburn Glazed Door
Function, beauty, and eco-conscious design are all taken care of with this 78 x 30 x 1.3/8 inch Kilburn glazed door. This door not only offers finishing options, but is designed to enhance the natural flow of light within your interior. Manufactured to the highest environmental standards, incorporating engineered timber components such as laminated timber, MDF and fibreboard to ensure strength and stability.