THE DIFFERENCE IS SUPERIOR TECHNOLOGY

CFMTS® uses the principles of fluid dynamics to calculate your material’s ideal flow path and speed. Our predictive models optimize surface contact, angle and velocity –– which are essential to eliminating plugging and spillage. CFMTS® can also provide online route switching and precise load portioning onto as many as five separate legs, as well as vibratory feeder chutes and crushers.

Substantially increased throughput

Thanks to its incredible precision and control, CFMTS can significantly boost your output by reducing spillage and delivering the maximum amount of material to the desired destination. This can lead to a reduction in the overall cost of owning and operating your system.

Precise diversion capabilities

Our proprietary diverter technology lets you precisely proportion your load to each transfer point along your system – up to five legs for a single input. Online switching and splitting allows you to easily control the desired amount of material passing through each leg. There’s no need to stop the belt as material flows at uniform velocity and direction and is then softly loaded onto the next transfer point.

Reduction of respirable dust and other hazards

CFMTS reduces workplace hazards like spillage, which can cause operator injury and downtime. And because Flexco is dedicated to safety, we make it easy to comply with the standards of OSHA, NIOSH and other regulatory bodies.

In addition, CFMTS® delivers:

  • Substantially increased throughput
  • Reductions in overall cost of ownership
  • Minimization of belt wear and noise
  • Reduced spillage and cleanup costs without expensive dust collectors, baffling and skirting
  • Compatibility with any conveyor orientation, including reversing conveyors and samplers
  • Enhanced compliance with OSHA, NIOSH and other regulatory standards
  • Incredible durability with virtually no maintenance for decades

Click here to view our process.

Click here to view our technology.

CFMTS® Success Stories
NRG Gladstone Power StationClick to learn more.