THERMAL & PHASE ANALYSIS AT THE LIMITS OF MATERIALS SCIENCE
The Gleeble thermal-mechanical simulator enables precise physical simulation—from dilatometry and CCT diagrams to HAZ and ultra-high-temperature solidification analysis—with exceptional accuracy and repeatability.
WHAT IS THE THERMAL & PHASE ANALYSIS?
Thermal and phase analysis studies how materials transform—structurally, mechanically, and thermodynamically—under controlled temperature and deformation. These insights are essential for alloy development, process optimization, and predictive manufacturing.
The Gleeble system enables real-world physical simulation, producing experimentally validated flow stress data, dilatometric signals, and microstructural evidence. These data underpin and validate computational models such as FEA and CALPHAD. Without reliable physical inputs, simulations remain uncalibrated.
From AHSS and superalloys to titanium and additive materials, Gleeble delivers the control needed to answer critical materials questions—fast.

TURN HEAT INTO INSIGHT
Get precise, real-world thermal and phase data to validate models, optimize processes, and accelerate materials development—faster.
CORE PAIN POINTS - SOLVED
SYSTEM CAPABILITIES
Six Core Analysis Domains
Gleeble combines rapid resistance heating, closed-loop thermal control, and mechanical loading for comprehensive thermal and phase analysis.
ADVANCED GLEEBE SYSTEMS FOR THERMAL & PHASE ANALYSIS
Precision-controlled simulation systems designed for accurate phase transformation data, CCT development, and high-temperature materials characterization.
Gleeble 3500
The industry standard for thermal & phase analysis, delivering precise and reliable materials data.
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Enables precise thermal & phase analysis with controlled heating and cooling cycles
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Ideal for dilatometry, CCT diagram generation, and HAZ simulation
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Produces high-quality phase transformation data for steels, superalloys, and advanced alloys
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Supports accurate heat treatment simulation and process optimization
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Delivers repeatable high-temperature materials testing for research and production environments
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Gleeble 3800
Designed for advanced high-force thermal-mechanical simulation, enabling precise and demanding materials testing.
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Expands capability for complex thermal-mechanical simulation and material behavior analysis
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Generates reliable stress–strain data for direct FEM and modeling input
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Ideal for solidification analysis, microstructure evolution, and advanced alloy development
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Handles demanding tests requiring higher loads and extended temperature ranges
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Provides comprehensive materials characterization for cutting-edge research and industrial applications
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TECHNICAL DEEP DIVES
Applications In Detail
Stress vs. Strain Characterization
Gleeble produces true stress–true strain data under controlled temperatures and strain rates, eliminating gradients common in conventional testing.
Used to develop constitutive models and processing maps for steels, superalloys, titanium, aluminum, and more. Data integrates directly into FEM tools like DEFORM and Simufact.
Dilatometry & Phase Transformation Studies
High-resolution dilatometry measures phase transformations through dimensional changes during heating and cooling.
Supports analysis of transformation temperatures (Ac1, Ac3), kinetics (JMAK), phase fractions, and thermal expansion. Enables both CHT and quench dilatometry studies.
PUBLISHED RESEARCH
Research Papers Using Gleeble
Our application specialists work with your specific materials and research objectives to recommend the right system configuration, test protocols, and data analysis approaches.



