Dynamic friction in pin - disk_1919916
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GUNT TM 260.03 Dynamic Friction in Pin-Disk

The GUNT TM 260.03 Dynamic Friction in Pin-Disk experimental unit allows the study of dynamic friction in bearing and drive technology, where sliding and rolling points lead to power losses in technical systems. The unit demonstrates relative translation between two bodies and differentiates sliding, rolling, and spinning friction.

Product Features

  • Dynamic friction occurs at sliding and rolling points, leading to power losses; differentiated into sliding, rolling, and spinning friction.
  • The TM 260.03 tribological system enables clear representation and analysis of dynamic friction and frictional forces.
  • Experimental unit contains a fixed pin pressed axially against a rotating disk as the friction pair.
  • Contact force adjustable gradually up to 80 N using a lever.
  • Rotating disk enclosed in an open cup that can be filled with different lubricants; supports dry friction, water, or oil lubrication experiments.
  • Pins made of different materials included to study various friction pairings.
  • TM 260 drive unit required for experiments; unit mounts quickly and easily on the drive frame with quick-action chucks.
  • Disk driven via clampable coupling; display and control unit shows frictional force and speed and allows continuous speed adjustment.
  • Frictional force and coefficient of friction measured using a force sensor; wear determined by measuring pin length reduction.

Benefits

  • Provides hands-on understanding of dynamic friction in bearing and drive technology.
  • Adjustable contact force and speed allow precise experimentation and analysis.
  • Supports study of different lubrication conditions and material pairings.
  • Wear measurements enable detailed understanding of material performance.

Why Choose GUNT TM 260.03 Dynamic Friction in Pin-Disk?

The GUNT TM 260.03 offers a precise and versatile platform to study dynamic friction, lubrication effects, and wear behaviour, ideal for teaching and research in tribology and drive technology.

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