LS-UTM-E10A Electromechanical Universal Testing Machine (10 kN)
LS-UTM-E10A Electromechanical Universal Testing Machine (10 kN) is a universal testing machine and servo-hydraulic UTM systems for ISO 7500-1, ASTM E4 workflows.
Available Configurations
The LS-UTM-E electromechanical line covers 10 / 20 / 30 / 50 / 100 / 200 / 300 / 600 kN capacities with single-column / dual-column / extended-travel / high-capacity variants for low-to-medium force universal testing.
Precision Electromechanical Control
Closed-loop force, displacement, and strain control supports tensile, compression, peel, flexural, puncture, fastener, wire, textile, polymer, composite, and light metal workflows.
Clean Fixture-Based Workflow
The frame can be configured with grips, platens, bend fixtures, environmental accessories, extensometers, and application-specific tooling while keeping the public product matrix compact.
Application & Search Guide
Universal testing machine platforms for materials testing
LS-UTM-E10A Electromechanical Universal Testing Machine (10 kN) is a universal testing machine for tensile, compression, flexural, bend, peel, and fixture-based materials testing under ISO 7500-1, ASTM E4. It supports laboratories comparing servo-hydraulic UTM and electromechanical universal testing machine platforms for metals, polymers, composites, fasteners, rebars, and construction products.
What is LS-UTM-E10A Electromechanical Universal Testing Machine (10 kN) used for?
LS-UTM-E10A Electromechanical Universal Testing Machine (10 kN) is used for universal testing machine workflows in civil engineering materials laboratories, quality control labs, research programs, and construction material acceptance testing.
Which standards does LS-UTM-E10A support?
LS-UTM-E10A supports ISO 7500-1, ASTM E4. Lithostek can also configure reporting fields, accessories, and calibration documents around local project or laboratory requirements.
Can Lithostek configure LS-UTM-E10A for my laboratory?
Yes. Lithostek application engineers can review specimen format, target standards, throughput, power supply, data output, and training requirements before quoting a suitable configuration.
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