Title: Gleeble Systems: Physical Simulation Technology
1Gleeble Systems Physical Simulation Technology
Todd A. Bonesteel
- Dynamic Systems Inc.
- Poestenkill, NY 12140
- U.S.A.
2Outline
- History of DSI
- Fundamentals of Physical Simulation
- Development of Gleeble Physical Simulators
- Applications of Physical Simulation Technologies
to Metal Industries
3History of DSI
- Gleeble developed late 1940s to Study Weld HAZ
Phenomena - DSI Founded 1957
- Pioneers of Physical Simulation
- First Export - Society de France - June 1962
4Fundamentals of Physical Simulation
- Furnace Heating
- Induction Heating
- Bulk Heating
5Laboratory Heating
6Gleeble Test Principle
7Axial Thermal Gradient Control
8Axial Thermal Gradient Control
- Steep Thermal Gradient Generation
9Axial Thermal Gradient Control
- Flat Thermal Gradient Generation
10Gleeble Specimen Thermal Profile
- Axial Thermal Gradient Control
11Gleeble Specimen Thermal Profile
- Radial Thermal Gradient Control
12Development of Gleeble Thermal Mechanical
Simulators
- Hot Torsion System HTS-50
- Multi-Axis Deformation Simulator MAXStrain?
System - HDS-V40 SimCast System
13Series 3 Digital Control SystemThe Gleeble? 3500
Since 1995
14Gleeble? 3500 Specifications
- Max. speed 1,000mm/s
- Loading capacity 10 metric tons in tension and
compression - Max. heating rate 10,000C/sec
15Digital Control System The Hydrawedge? System
Since 1990
16Digital Control System The Hydrawedge? System
- Mechanism of the Hydrawedge? System
Load cell
Anvils
Yoke
Stop
Jaw transducer
Specimen loader
17Digital Control System The Hydrawedge? System
- Separate yet Synchronized Control of Strain and
Strain Rate - No Over-Travel at A High Speed
- Multiple Compression at Different Values of
Strain, Strain Rate and Temperature
18Digital Control SystemThe Hot Torsion System /
HTS
Since 1996
19Digital Control System The Hot Torsion System /
HTS
- Typical Torsion Test Setup
Resistance Heating Furnace
Specimn
Floating/ Fixed End
Rotation End
20Digital Control SystemThe Hot Torsion System /
HTS
- Instant Speed-up lt 5msec to reach 1,000 rpm
- Free Coupler for Minimal Strain Error during
Acceleration and Free Unloading - Environment Control Inert gas or vacuum
- In-situ Quenching
21Digital Control SystemThe Hot Torsion System /
HTS
- Servo Hydraulic Control System
- Combined Torsion and Tension/Compression Control
during Torsion - Rapid Resistance Heating and Cooling
- Thermocouple or Pyrometer Control
- Uniform Temp. within Gauge Length
22Why Physical Simulation
23Gleeble Applications on Metals Handbook
24Applications of Physical Simulation Technologies
- Metallurgical Process Simulation
25Basic Materials Studies
- Phase Transformation / Precipitation
- Oxidation / Decarbonization / Diffusion
- Liquid and Solid Metal Thermal Expansion /
Contraction
26Basic Materials Studies
- Work Hardening / Softening
- Recrystallization / Recovery
- Ultra-Fine Grain Materials
27Materials Testing
- Hot Ductility / Hot Workability / SICO
- Uniaxial / Plane Strain Compression
- Dynamic and Static CCT / CHT / TTT
- Weldability / NST / NDT / BTR / RDR
- Thermal and/or Mechanical Fatigue
- Superplasticity / Elongation
- Elastic Modulus / Yield Stress / UTS
28Materials Testing
- Plane Strain Fracture Toughness / CTOD
- ......
29Process Simulation
- TMCP (Rolling, Forging and Extrusion)
- Welding HAZ cycling, Weld metal, Laser welding,
Electron beam welding, Upset butt welding,
Friction stir welding ...
30Process Simulation
- Heat Treatment (Annealing, Normalizing,
Quenching, Tempering, ...)
- Powder Metallurgy / Sintering / HIPping
31Con-Casting Process Simulation
- Slab Casting Process Simulation
32Con-Casting Process Simulation
- Castability Map Development
33Con-Casting Process Simulation
- Castability Map Development
34Con-Casting Process Simulation
35Con-Casting Process Simulation
- Castability Map Development
36Con-Casting Process Simulation
- Castability Map Development
Optimal cooling rate ( C ) for an aluminum killed
steel to produce crack free billets
37Uniaxial Compression Testing
38Uniaxial Compression Testing
39Uniaxial Compression Testing
- Uniform Deformation with ISO-T TM Anvils
10 mm dia. specimen after 60 reduction at 1000oC
(x100)
40Hot Workability Test Technique
41Hot Workability Test Technique
- Effect of Thermal Gradient on Material Strength
42Hot Workability Test Technique
43Hot Workability Test Technique
44Hot Workability Test Technique
Aluminum Alloy
Austenitic Alloy
Ni-base Superalloy
10 mm dia. SICO bar
45Hot Workability Test Technique
- Critical Strain in SICO Procedure
46Hot Workability Test Technique
- SICOTM Procedure vs. Hot Ductility Test
47Thermomechanical Processing
- Optimization of Thermomechanical Processes
48Thermomechanical Processing
- Optimization of Thermomechanical Processes
49Thermomechanical Processing
- Optimization of Thermomechanical Processes
50Weld Metal Crack Susceptibility Study
- Conventional LBT Procedure
51Weld Metal Crack Susceptibility Study
52Welding Simulation
- Crack Susceptibility of Weld Metals
No cracks, 1050C, 0.41, 3/s, Bottom layer
Some cracks, 1050C, 0.41, 3/s, Top layer
Many cracks, 1050C, 0.41, 3/s, Bottom layer
53Weld Metal Crack Susceptibility Study
54Weld Metal Crack Susceptibility Study
- Micromechanism of Microfissuring
55Weld Metal Crack Susceptibility Study
- Application of the SICOTM Procedure
Compositions (wt) of the Four Electrodes Tested
56Weld Metal Crack Susceptibility Study
- Nil-Strength Temperature Measurement
Nil-Strength Temperatures (oC) of Four Electrodes
57Weld Metal Crack Susceptibility Study
- Application of the SICOTM Procedure
58Weld Metal Crack Susceptibility Study
- Application of the SICOTM Procedure
59Weldability Test Technique
60Weldability Test Technique
61Fracture Criterion
- Strain Fracture Criterion
62Fracture Criterion
- Cockcroft and Lathams Plastic Work Fracture
Criterion
- Modified Plastic Work Fracture Criterion
63Hot Workability
- Fracture Limit and Reduction of Area
64Hot Working Process Simulation
- Stopping Response in High Speed Compression (Hit
2)
65Hot Working Process Simulation
- Stopping Response in High Speed Compression (Hit
3)
66Hot Working Process Simulation
- Hydrawedge System Performance
67Hot Working Process Simulation
- Hydrawedge System Performance
68Hot Working Process Simulation
- Three-Hit Test of Hydrawedge Application
69Hot Working Process Simulation
- Six-Pass Hot Rolling Process Simulation
70CCT / TTT / Laser Welding
- ISO-QTM Quenching Technique
71CCT / TTT Studies
- Effect of Deformation on Phase Transformation
72Laser Measurement
- Patented Laser Tracking System
73CCT / TTT for Strip Specimen
74Strip Annealing Simulation
- Patented SISR Technique for Deep Drawing Ability
Test Specimens
75Strip Annealing Simulation
- Patented SISR Technique for Making Deep Drawing
Ability Test Specimens
76Strip Annealing Simulation
- Specimen Heating Using Patented SISR Technique
77Strip Annealing Process Simulation
- 1mm x 50mm x 200mm Strip Specimen
78Strip Annealing Process Simulation
- Strip Annealing Jaw System
79Gleeble Scrip Language
- Pulse Quenching Techniques
80GLEEBLE Table Programming
81Visit Gleeble Web Page
W W W.GLEEBLE.COM