TMS2026-07-29T09:58:35+00:00

Thermo-Mechanical Stimulator(TMS)

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Model Overview.

Thermo-Mechanical Simulator (TMS) is an advanced physical simulation system that reproduces real manufacturing conditions to study material behavior, optimize processes, and develop new materials. It enables accurate materials testing and process simulation while reducing the need for costly full-scale industrial trials.

Model Details.

Model Name2026-07-08T06:41:29+00:00

Gleeble 3800-GTC Simulation System

Specification2026-07-08T06:42:50+00:00
  • Direct resistance High-speed heating system (10,000°C/sec)
  •  Maximum quenching rate (2000°C/sec)
  •  20 Ton Maximum Compression force
  • 10 Ton Maximum Tension Force
  •  2,000 mm/sec maximum stroke rate
  •  High-speed Hydraulic Servo valve system
  •  20HP Hydraulic Pump
  •  Dual air Rams
  •  75KVA Heating Transformer
  •  Gleeble touch control System
  • Embedded computer with digital Signal Processor
Application2026-07-08T06:44:08+00:00

The Gleeble TMS is an advanced physical simulation system used to replicate thermal and mechanical conditions experienced by materials during manufacturing and service. It helps researchers study material behavior, develop new materials, optimize processes, and reduce the need for costly full-scale testing.

Key Applications:

Materials Study

  • Melting & solidification 
  • Work hardening, recovery & recrystallization 
  • Phase transformations 
  • Precipitation studies 
  • Nanomaterials & ultrafine-grained materials 

Materials Testing

  • Hot tensile & compression testing 
  • Dilatometry (CCT/TTT) 
  • Thermo-mechanical fatigue 
  • Creep & stress rupture testing 
  • Stress relaxation 
  • High-temperature mechanical properties 

Process Simulation

  • Continuous casting 
  • Heat treatment 
  • Hot rolling & forging 
  • Quenching & extrusion 
  • Sintering & powder metallurgy 
  • Diffusion bonding 
  • Liquid metal embrittlement studies
Capability of TMS2026-07-08T06:45:18+00:00

The Gleeble Thermo-Mechanical Simulator can precisely control temperature, deformation, heating, and cooling rates to replicate real industrial processing conditions. It enables advanced materials characterization, mechanical testing, and simulation of manufacturing processes such as casting, rolling, forging, welding, and heat treatment.

Faculty Advisor2026-08-03T11:26:23+00:00

Prof. Shanta Chakrabarty

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