
Fibracon® PTFE + 5% MoS2
Characteristics: High hardness ✓ Minimal effect on chemical and electrical properties ✓ High stiffness ✓ || Industries: Chemical Processing Industry | Vehicle Construction | Electronics | Oil and Gas | Mechanical Engineering Industry | Healthcare | Food Industry | Wind Energy

Fibracon® PTFE + 50% Stainless Steel
Characteristics: Good heat conductivity ✓ Offers greater chemical resistance than bronze filled ✓ PTFE in high pressure applications ✓ Reduced deformation under load ✓ || Industries: Chemical Processing Industry | Vehicle Construction | Electronics | Oil and Gas | Mechanical Engineering Industry | Healthcare | Food Industry | Wind Energy

Fibracon® PTFE + 55% Bronze+ 5% MoS2
Characteristics: Good wear properties ✓ Improved thermal and electrical conductivity ✓ Reduced deformation under load ✓ || Industries: Chemical Processing Industry | Vehicle Construction | Electronics | Oil and Gas | Mechanical Engineering Industry | Healthcare | Food Industry | Wind Energy

Fibracon® PTFE + 60% Bronze
Characteristics: Improved thermal and electrical conductivity ✓ Reduced chemical resistance ✓ Reduced deformation under load ✓ || Industries: Chemical Processing Industry | Vehicle Construction | Electronics | Oil and Gas | Mechanical Engineering Industry | Healthcare | Food Industry | Wind Energy

Fibracon® PTFE + 8% (soft) Carbon+ 2% Graphite
Characteristics: Soft carbon offers reduces tool wear compared with other carbon filled PTFE ✓ Improved thermal and electrical conductivity ✓ Reduced deformation under load ✓ || Industries: Chemical Processing Industry | Vehicle Construction | Electronics | Oil and Gas | Mechanical Engineering Industry | Healthcare | Food Industry | Wind Energy

Fibracon® PTFE + Anti-Static Filler
Characteristics: Addition of carbon gives anti-static properties to the material ✓ Grades are available where the raw material has been approved to FDA standards ✓ || Industries: Chemical Processing Industry | Vehicle Construction | Electronics | Oil and Gas | Mechanical Engineering Industry | Healthcare | Food Industry | Wind Energy

Fibracon® PTFE CLF
Characteristics: Low wear ✓ Non abrasive ✓ Low coefficient of friction ✓ || Industries: Chemical Processing Industry | Vehicle Construction | Electronics | Oil and Gas | Mechanical Engineering Industry | Healthcare | Food Industry | Wind Energy

Fibracon® PTFE FGB
Characteristics: Low coefficient of friction ✓ Non-stick ✓ || Industries: Chemical Processing Industry | Vehicle Construction | Electronics | Oil and Gas | Mechanical Engineering Industry | Healthcare | Food Industry | Wind Energy

Fibracon® PTFE modified
Characteristics: Reduced deformation under load ✓ Reduced porosity ✓ Good wear resistance ✓ || Industries: Chemical Processing Industry | Vehicle Construction | Electronics | Oil and Gas | Mechanical Engineering Industry | Healthcare | Food Industry | Wind Energy

Fibracon® PTFE virgin
Characteristics: Wide operating temperature -200°C to +260°C ✓ Low coefficient of friction ✓ Chemical resistant ✓ || Industries: Chemical Processing Industry | Vehicle Construction | Electronics | Oil and Gas | Mechanical Engineering Industry | Healthcare | Food Industry | Sports & Leisure | Wind Energy | Semiconductor Front-End Wet Bench | Semiconductor Front-End applications

Fibre Laser Cutting
Sweetnam & Bradley are at the forefront with cutting edge technology, acquiring the Amada Ensis 3 KW fibre laser system in 2023. The state-of-the-art system has considerably increased our production capacity together with variable beam control technology allowing high speed piercing, faster cutting rates and vastly improved bevel angles on thicker materials. Utilisation of a single lens and automatic nozzle changer further enhances productivity and therefore higher profitability. The MP Flexit automation module provides continuous, automatic loading and unloading capability increasing machine utilisation offering 24hr unmanned throughput. The Ensis fibre laser system significantly reduces the power consumption for laser material processing. Sweetnam & Bradley Ltd continue to offer a complete ‘one stop shop’ for metal work fabrications and finishes.

Fibre Optic Technology
Stanelco has been a market leading supplier of induction furnace systems to the fibre optic manufacturing industry since the 1990’s, maintaining and increasing this position through constant and continuous improvement in close collaboration with our customers and partners. Stanelco RF Technologies induction furnace systems are embedded globally in world class optical fibre manufacturing facilities, with over 200 furnace systems deployed. The Stanelco “Design for Process” approach delivers four key benefits: - Installation – Stanelco are world leading experts in seamlessly interfacing fibre draw and RF technologies - Integration – Stanelco supplies bespoke communications interface, furnace configuration and process gas deployment solutions to meet precise customer needs - Highly ergonomic operation, with a range of open and closed loop control modes available - Rugged, modular construction for the ultimate in reliability and ease of maintenance We focus on providing furnaces that meet your production needs and benefit your business.

Fibre-Optic Assemblies

Field Coil Winding

Filters and Mesh
2–4 February 2027
Farnborough International Exhibition Centre
2–4 February 2027
Farnborough International Exhibition Centre