Benefits
Quick to Install
T-FIT® insulation products are safe, quickly and easily installed, saving costs, and reducing both complexity and downtime. Supplied in clam or tubular form, the cellular construction of T-FIT® products provides for a flexible product that reduces install times around complicated pipe runs and is simple to install.
Workplace Friendly
As T-FIT® is based on PVDF and nylon polymers, then this unrivalled product will not pollute or decrease air quality in any manner for the lifetime of the product. Based on Zotefoams technology, T-FIT® products are inherently pure, nontoxic and odour free, and do not contain residual harmful chemicals left from production processes. All T-FIT® products offer superior personal protection against injury from hot pipework.
Good Manufacturing Practice
T-FIT® insulation, founded upon Zotefoams propriety manufacturing technology is a unique cellular material. Utilizing the exceptional properties of PVDF and polyamide polymers, T-FIT® offers exceptional technical performance. Fire performance, thermal conductivity and other physical properties do not deteriorate across the service lifetime of the product.
Naturally, T-FIT® products offer high levels of chemical resistance, being completely inert when subject to typical cleaning and sterilisation products and processes in common use in highly controlled production environments.
Cost Saving
Quick, easy installation can be achieved with minimal training, saving both initial and maintenance costs. The closed cell structure ensures T-FIT® products will not absorb moisture, thus preventing microbial growth, an important contributor to lifetime cost savings.
T-FIT® products are based on a near 100-year-old unique technology owned by Zotefoams which produces inherently non-fibrous and closed cell foams. T-FIT products, based on its long-established and researched polymer materials, continue to provide unrivalled confidence and security to end users and plant owners, allowing them to be installed while the systems are in operation due to their non-fibre releasing characteristics.