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High-Temperature Testing Systems by ZwickRoell

High-Temperature Testing Systems by ZwickRoell
Brand: Zwick Roell
Product Code: TEMPTESTER
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Specifications: (see all)
Measured / controlled parameters
Tensile, compression and flexure force; elongation; bending angle; strain rate; specimen temperature
Type of studied process
Mechanical testing at high temperatures (tensile, compression, flexure, creep, fatigue)
Research method / operating principle
Heating specimen in a high-temperature furnace and applying static or quasi-static load with deformation measurement
Measurement / experiment range
Load: 5 … 250 kN Temperature: –80 °C … +1,600 °C (up to +2,000 °C with vacuum chamber)
Measurement / analysis accuracy
High sensitivity and reproducibility with sample mass up to 5 g.
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The high-temperature testing systems from ZwickRoell are designed for comprehensive evaluation of material properties under extreme temperature conditions. They enable precise tensile, compression, bending, creep, and fatigue tests in the range from room temperature up to 2000 °C.

Advanced furnaces, protective chambers, and deformation measurement systems ensure highly reproducible results with minimal external influence. With integrated safety features and full automation via testXpert III software, these systems can be combined with climate or vacuum chambers for more complex test setups.

Applications include:

  • Metallurgy and alloy development

  • Energy and turbine testing

  • Aerospace and aviation industries

  • Research and development laboratories

Thanks to high precision, wide configuration options, and compliance with international standards, ZwickRoell high-temperature systems are the optimal choice for long-term material testing under extreme operating conditions.

Tags: Mechanical and physical-chemical tests

Laboratory stands Physical
Measured / controlled parameters
Tensile, compression and flexure force; elongation; bending angle; strain rate; specimen temperature
Type of studied process
Mechanical testing at high temperatures (tensile, compression, flexure, creep, fatigue)
Research method / operating principle
Heating specimen in a high-temperature furnace and applying static or quasi-static load with deformation measurement
Measurement / experiment range
Load: 5 … 250 kN Temperature: –80 °C … +1,600 °C (up to +2,000 °C with vacuum chamber)
Measurement / analysis accuracy
High sensitivity and reproducibility with sample mass up to 5 g.
Measured physical quantities
Compliant with international standards ISO 6892-2, EN 2002-002, ASTM E21
Type of sensors / detectors / indicators
Force, stress, elongation, bending angle, strain rate, specimen temperature
Response time / measurement time
High-temperature load cells, thermocouples, contact and non-contact extensometers, optical cameras
Manual or automatic control option
High response speed; real-time data acquisition
Number of channels / measurement points
Manual and fully automatic control via testXpert III software
Design and features
Multiple channels: force, strain, temperature, bending angle
Housing / working parts material
Metal frame, high-temperature furnace with thermal shielding, corrosion-resistant materials
Power supply availability or mains connection
Yes, mains power supply 230/400 V, 50/60 Hz
Type of interfaces and outputs
USB, Ethernet, PC connectivity via testControl II and testXpert III
Software / PC compatibility
testXpert III software, Windows 10/64-bit support, integration with videoXtens
Memory / data storage
Yes, via testXpert III software, with report generation
Dimensions
Floor-standing systems: up to 2 m height (adjustable); table-top versions – compact
Weight
Depends on configuration (several hundred kilograms)
Country of origin
Germany
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