Interstitial panel for the magnetic support of accessories
A ferromagnetic slab with perforations and adhesive attachment addresses the instability of existing panels, providing a stable and secure magnetic support for accessories with easy and permanent installation.
US20260210129A1Pending Publication Date: 2026-07-23ONIRIKA SRL
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Patent Information
- Authority / Receiving Office
- US · United States
- Patent Type
- Applications(United States)
- Current Assignee / Owner
- ONIRIKA SRL
- Filing Date
- 2023-12-13
- Publication Date
- 2026-07-23
AI Technical Summary
Technical Problem
Existing interstitial panels for supporting accessories are difficult to install stably and securely on walls, often leading to unstable attachment and detachment risks.
Method used
A ferromagnetic slab with perforations is used to create a stable magnetic support system, combined with adhesive attachment through holes in the slab, allowing easy and permanent installation on building surfaces.
Benefits of technology
The system provides a stable and secure magnetic support for accessories, enabling easy and permanent installation without damaging the wall, while maintaining aesthetic appeal.
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Figure US20260210129A1-D00000_ABST
Abstract
The interstitial panel (1) for the magnetic support of accessories is provided with at least one slab (2) of ferromagnetic material and comprises a first adhesion face (3a) adapted to be attached, in use, to a laying face (4) of at least one building cladding element (5) and a second adhesion face (3b), arranged opposite said first adhesion face (3a) and adapted to be attached, in use, to a laying surface (6); the cladding element (5) being provided with an exposed face (7), arranged opposite the laying face (4) and on which, in use, at least one accessory (8) is arranged resting and provided with at least one magnetic element (9) adapted, in use, to attach the accessory itself, in a removable manner, on any portion of the exposed face (7) above said slab (2) as a result of the magnetic attraction between the magnetic element (9) and said slab (2); wherein the slab (2) is perforated to define a plurality of through holes (10) distributed on the body of the slab itself, and adapted, in use, to be crossed by at least one adhesive (11) for the attachment of the laying face (4) onto the laying surface (6) by interposition of said slab (2).
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