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Electrodynamic Low Cycle Testing Machine
Low-cycle electrodynamic testing machines of the LC series are devices used for testing materials, components, and structures in laboratories, research centers, and industrial applications. These machines differ from high-cycle electrodynamic testing machines in that they perform tests at lower frequencies and with fewer cycles in tension, compression, and torsion under various temperature conditions. All modifications of low-cycle electrodynamic testing machines we produce serve as tools for studying the behavior of materials and components under different loads and conditions. They are essential for many sectors, including engineering, materials research, industry, and construction.
KEY FEATURES OF LC SERIES
- Robust vertical table-top or stand-alone design with adjustable crosshead, featuring high rigidity, mechanical resistance, and durability, ensuring 100% repeatability of results in a compact footprint.
- Oil-free and noiseless drive technology.
- Reliable long-term performance at frequencies up to 6 Hz under full load.
- Digitally controlled linear drive cooling system with feedback control.
- Crosshead adjustment can be performed mechanically or fully electrically, including process monitoring.
- Integrated T-slot base plate with special damping system that absorbs up to 95% of machine vibrations.
- Guaranteed system coaxiality in accordance with ASTM E1012.
- Optional torsion system available depending on test frequency and number of cycles.
- Test control via a precise actuator with both force and position control loops.
- Comprehensive evaluation and control of axial or combined torsional testing through the Test&Motion material testing software.
- Force transducers compliant with accuracy class per EN ISO 7500-1 and ASTM E4, with optional linearization.
- EP series machines comply with all relevant EU machinery directives and operate in accordance with the latest safety functions per EN ISO 13850:2015.
- Machine control is performed via EDCi series measuring and control electronics, with sampling rates of 2.5 or 10 kHz.
- Integration of special grips for axial-torsional testing or various fixtures in compliance with applicable standards.
- High-precision testing with temperature chambers or high-temperature furnaces.