An ultra-high travel single-column benchtop frame providing a 2.2 kN capacity and an expansive 1400 mm vertical envelope. It maintains stiff crosshead alignment across the entire stroke, isolating catastrophic material failure events over long extension ranges.
Frame Capacity2.2 kN
Frame StyleBenchtop
Frame TypeSingle Column
Newton TierCharacterization
Advanced Material Characterization & Real-Time Data Integrity
The Newton Characterization Platform is designed for research laboratories, advanced quality assurance environments, and materials development teams that need deeper insight into material performance than traditional break testing can provide. Delivering highly accurate, real-time analysis of material behavior under load, it enables precise determination of yield points, elastic modulus, and other critical mechanical properties. Whether evaluating high-modulus composites, advanced polymers, or biomedical materials, Newton Characterization provides the sensitivity, computational power, and data integrity required to identify subtle material transitions and unlock a more complete understanding of material performance.
An expansive 1400 mm vertical envelope isolates high-strain component failures with extended travel for high elongation materials.
Expert Commentary
Maintains a stiff crosshead alignment over entire travel, safeguarding sensor tracking calibration.
Pro Tip
CABLE SLIPPAGE COUNTERMEASURES: When drawing high-elasticity tethers to failure across a 1.4-meter frame, use self-tightening or pneumatic actions to offset specimen thinning.
Applications & Expert Insights
Expert Nugget
An expansive 1400 mm vertical envelope isolates high-strain component failures with extended travel for high elongation materials.
Expert Commentary
Maintains a stiff crosshead alignment over entire travel, safeguarding sensor tracking calibration.
Pro Tip
CABLE SLIPPAGE COUNTERMEASURES: When drawing high-elasticity tethers to failure across a 1.4-meter frame, use self-tightening or pneumatic actions to offset specimen thinning.