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Ceramics, glasses, minerals

Challenges for ceramic materials
Phase transition, heat capacity, thermal conductivity, sintering behavior, thermal expansion coefficient, shrinkage behavior are parameters of major importance for ceramics, glasses and minerals.
Thermal Analysis and calorimetry are perfect tools for complete characterization and understanding, product development, quality control and process optimization of ceramics materials.

Ceramics, glasses, minerals
SETARAM offers specially designed systems
With its High-Sensitivity and High-Temperature (up to 2400°C) Thermal Analyzers, SETARAM offers a wide range of systems that are specially designed for R & D on ceramic materials. Additional accessories and systems allow thermal measurements in special atmospheres (oxidative, damp, corrosive, etc.) and coupling to gas analyzer (mass spectrometry, FTIR, etc.).

High-performance modular thermal analyzers (ambient / 2400°C)

High-performance modular thermal analyzers (ambient / 2400°C)
 
Widest temperature range (-150 / 2400°C) on the market
Modularity: the different modules DTA, DSC, TGA, TMA can be adapted interchangeably around the same structure
Measurement performance: satisfy unique resolution, precision and sensitivity criteria
SETSYS Evolution is today the state-of-the-art in research-grade thermal analyzers.
It includes:
-SETSYS Evolution DTA (up to 2400°C), DSC (up to 1600°C)
-SETSYS Evolution TGA
-SETSYS Evolution simultaneous TGA-DTA/DSC-EGA
-SETSYS Evolution TMA






Reaction, isothermal and scanning calorimeter (ambient to 300°C)

Reaction, isothermal and scanning calorimeter (ambient to 300°C)
 
C80
Using SETARAM's exclusive 3D-Sensor calorimetric sensor, the C80 offers in-situ calorimetric measurement possibilities on mixtures, solid or liquid interactions with liquid or gas.
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An innovative line of Thermal Analyzers (-120 / 830°C) with 3D-Inside technology: DSC, High Pressure DSC, Robot DSC, TG-DSC-EGA

An innovative line of Thermal Analyzers (-120 / 830°C) with 3D-Inside technology: DSC, High Pressure DSC, Robot DSC, TG-DSC-EGA
 
The SENSYS evo offers the most precise DSC sensor together with a truly symmetrical microbalance to give YOU a combined TG-DSC system with totally unmatched performance. Additionally both measurement sensors are totally independent,so can be operated independently or simultaneously without compromising performance.
SENSYS evo can be used in various configurations:
- DSC in horizontal or vertical mode
- High Pressure DSC(up to 500 bars at 600°C)
- Robotic DSC, with 48 samples, even under pressure
- Simultaneous TG-DSC-coupling to gas analysis (BET, gas sorption, FTIR, MS)




Large volume thermal analyzers (ambient / 2100°C) : Calorimeter, DTA/DSC, TGA-DTA/DSC, TMA

Large volume thermal analyzers (ambient / 2100°C) : Calorimeter, DTA/DSC, TGA-DTA/DSC, TMA
 
96 LINE, a modular line of high-temperature (ambient - 2100°C) and large-volume thermal analyzers

Large sample volume: for analysing bulky, massive and non-dissociable samples (e.g. corrosion studies of mechanical parts, etc), for working on mixed materials (concrete core sample), for detecting very weak variations of mass in TGA (corrosion studies on sheet steel, etc.)
Modularity: the different calorimeter modules (DTA, DSC, TGA, TMA) can be adapted interchangeably around the same structure
96 Line includes:
- MHTC 96 for calorimetric (drop) and DSC measurements
- DTA, DSC 96
- TGA 96 for thermogravimetric and simultaneous TGA and DSC/DTA measurements
- TMA 96







TGA, DTA, DSC and Simultaneous TGA-DTA, TGA-DSC from ambient to 1600°C

TGA, DTA, DSC and Simultaneous TGA-DTA, TGA-DSC from ambient to 1600°C
 
LABSYS evo
- Coupling to gas analysis (FTIR, MS) - New 3D high-precision Cp sensor - Cp measurement within 2 % up to 1600 °C - Calisto software LABSYS evo offers TGA with simultaneous DTA or DSC and Cp measurement within the temperature range of ambient to 1 600 °C. The LABSYS evo features a NEW high performance top loading balance and a unique 3D high-precision (Calvet type) Cp rod. Thanks to its unique ergonomic design and market leading Calisto software the LABSYS evo offers you the most easy-to-use Thermal Analysis system with uncompromised performance.
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More Thermal Conductivity Testing in less time

More Thermal Conductivity Testing in less time
 
TCi
The C-Therm Technologies TCi is truly a 'one size fits all' thermal conductivity tool. No other instrument can test solids, liquids, powders, and pastes. Within a material type, the technology has the attributes necessary as a lab tool to accelerate your research & development efforts or improve your quality control. As an added bonus, the technology can be migrated to the shop floor to gain insights into your production processes.
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An-easy-to-use Differential Scanning Calorimeter DSC (-170 to 700°C) with a 3-year warranty

An-easy-to-use Differential Scanning Calorimeter DSC (-170 to 700°C) with a 3-year warranty
 
DSC131 evo
DSC131 evo: for testing, QC and academic thermal analysis laboratories. An instrument designed from the ground up to be robust, high performance and above all user friendly featuring market leading intuitive CALISTO software and low operating costs.
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Controlled Humidity Generator

Controlled Humidity Generator
 
Wetsys
Humidity is known to have a significant influence on the stability of many materials. The controlled humidity generator WETSYS can: - deliver a very precise level of relative humidity (RH) from 5 to 95% depending on the temperature - be connected to other SETARAM instruments, and in particular to the SENSYS TG DSC as well as other analysis instrument (RX, GC, etc.) for studies of sorption, hydration, stability, etc.
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Unique automated Quality/Control instrument for determination of σs for ferromagnetic compounds

Unique automated Quality/Control instrument for determination of σs for ferromagnetic compounds
 
Sigmameter
σs: Specific saturation magnetizationThe magnetic specifications of ferromagnetic compounds can vary widely as a result of mechanical and/or thermal treatments. Specialists make us of these variations in magnetic specification to study the evolution of some solid state transitions. Magnetic measurements offer high sensitivity and allow the detection of very subtle metallurgical events.
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 Application Notes
Stability of SiC under O2

Thermal expansion of zirconia

Zircona under water vapour up to 1700°C

Thermochemistry and structure of the liquid Na2O-GeO2 system

Thermophysical properties of the composite ceramic-salt system (SiO2/Na2SO4)

Decomposition of calcium oxalate

Analysis of kaolinite

Characterization of glass

Analysis of plaster with high volume TG

Testing Ceramics

DSC analysis of a plaster containing phase change materials

See all application notes

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