The 4 Module Libro Bookcase combines a structure with delicate lines with a spacious, rhythmic composition, designed to organise the space without compromising its visual lightness. The succession of open shelves creates different display levels, allowing for a balance between storage, decoration and personal style.
The steel-tube frame ensures stability and strength, whilst the carefully crafted joints preserve the continuity and precision of the design. The lacquered MDF shelves provide functional surfaces for books, documents, decorative objects or collectables.
The option to customise the frame and shelves separately allows you to create a more serene monochromatic composition or explore colour contrasts with greater visual impact. The four-module configuration offers a complete solution for organising demanding interiors, whilst maintaining an open and contemporary presence.
Ideal for living rooms, offices, reception areas and professional spaces, the Libro Bookcase combines capacity, customisation and an architectural aesthetic capable of enhancing and structuring the environment.
*Images are for illustrative purposes only and colors may vary slightly from reality.
The Libro bookcase stands out for the robustness of its metal construction and the quality of its modular components:
Metal Structure: Constructed with 12 mm diameter and 2 mm thick steel tubes, which give shape and support to the piece.
Joining and Finishing: The connections between the tubes are made using TIG welding, guaranteeing high-strength joints and a premium finish, characteristic of the esPattio quality standard. The structures are joined by specific plates and screws.
Shelves (Panels): They have a 12 mm thick MDF core, with a lacquered finish available in the exclusive colors of the esPattio line.
Leveling and Options: Includes the option of a continuous ceiling to compensate for any height irregularities in the upper shelves due to uneven floor surfaces.
Load Capacity: The panels are designed to support a weight of up to 1 kg/dm², ensuring structural integrity under load.