
Keel Soft Connector Suspended Floor
This raised floor system works well in offices, data rooms, exhibition halls, educational buildings and other indoor spaces. ...
Keel Soft Connector Suspended Floor adopts a modular supporting structure. The soft connector between keels forms a flexible joint connecting floor panels and supporting bases, forming a raised flooring system for a wide range of indoor applications. Different from rigid fixed connections, its soft connectors absorb vibration and reduce structure-borne sound transmission. When slight slab deformation or temperature fluctuation occurs, this structure eases compression between floor panels and suppresses creaking noise.
The whole system consists of supporting pedestals, adjustable keels, soft connector accessories and floor panels. On-site installation is straightforward without large-area cement mortar leveling, which helps shorten construction time. Height-adjustable pedestals accommodate uneven base surfaces and reserve underfloor space for pipes and cables, facilitating later inspection and rewiring.
This raised floor system works well in offices, data rooms, exhibition halls, educational buildings and other indoor spaces. Various surface panel materials are available to match different usage requirements. The panel surface is wear-resistant and only requires regular cleaning for daily maintenance. The system can bear loads meeting general indoor requirements, delivering flat and stable walking surfaces after installation.
The soft keel connection helps lower risks of floor cracking and arching caused by minor building settlement, improving structural adaptability of the whole flooring system. Panels can be disassembled and reused. Components can be recycled during renovation or relocation, supporting low-carbon construction. All products undergo basic performance tests before delivery and comply with relevant flooring engineering standards. Installation should be carried out by qualified workers following standard procedures to ensure paving quality and long-term service performance.

