An oil-free servoelectric single-column benchtop fatigue tester. It handles 0.55 kN loads with a 100 mm stroke, executing clean sinusoidal waveform generation up to 15 Hz for quiet, high-cycle component lifecycle analysis.
The Newton Fatigue Platform is designed for materials testing laboratories, aerospace engineering teams, and biomedical researchers who require precise long-term durability analysis. Built to support cyclic, constant-amplitude, and multi-block fatigue testing, it transforms conventional test frames into advanced dynamic testing systems capable of delivering consistent, high-integrity results. Whether your applications involve generating S-N curves, evaluating fracture toughness, or monitoring component degradation over millions of load cycles, Newton Fatigue provides the stability, signal accuracy, and continuous performance needed to track crack initiation and propagation with confidence.
These servoelectric models provide a clean, oil-free alternative to hydraulic systems, capable of high-frequency cycling (up to 15 Hz) for component life-cycle and fatigue analysis.
Expert Commentary
For users moving from static to dynamic testing, the 510-series frames provide a seamless bridge. They handle standard tension/compression tasks while allowing for complex waveform generation.
Pro Tip
BIOMEDICAL WAVEFORMS: Use sinusoidal controller routines to replicate consistent blood vessel or spinal implant cycle profiles across thousands of continuous cycles.
Applications & Expert Insights
Expert Nugget
These servoelectric models provide a clean, oil-free alternative to hydraulic systems, capable of high-frequency cycling (up to 15 Hz) for component life-cycle and fatigue analysis.
Expert Commentary
For users moving from static to dynamic testing, the 510-series frames provide a seamless bridge. They handle standard tension/compression tasks while allowing for complex waveform generation.
Pro Tip
BIOMEDICAL WAVEFORMS: Use sinusoidal controller routines to replicate consistent blood vessel or spinal implant cycle profiles across thousands of continuous cycles.