An ultra-capacity floorstanding dual-column servohydraulic press delivering 2000 kN of compression force over a 150 mm stroke. The rigid frame architecture safely absorbs and dissipates severe explosive decompression energy releases.
Frame Capacity2000 kN
Frame StyleFloorstanding
Frame TypeDual Column
Newton TierStrength
High-Throughput Material Evaluation & Break Testing
The Newton Strength Platform is purpose-built for quality control laboratories, manufacturing environments, and high-volume testing facilities where speed, reliability, and precise peak-load verification are essential. Designed for efficient monotonic tensile, compression, and flexural testing, it provides operators with an intuitive and dependable interface for capturing yield points, break forces, and ultimate elongation data. Whether validating metals, rigid plastics, fasteners, or construction materials against international standards, Newton Strength delivers the structural stability and accurate data acquisition needed to maintain consistent product quality and keep production lines running smoothly.
Civil and Infrastructure Testing: Ultra-capacity compression configuration for structural beams, foundational cylinders, and road coupons.
Expert Commentary
Heavy structural concrete blocks and masonry require rigid frame architectures to safely dissipate severe explosive decompression energy releases.
Pro Tip
DEBRIS SHIELD MANDATE: Always ensure poly-carbonate fragmentation shields are locked securely into place before processing severe infrastructure core loads.
Applications & Expert Insights
Expert Nugget
Civil and Infrastructure Testing: Ultra-capacity compression configuration for structural beams, foundational cylinders, and road coupons.
Expert Commentary
Heavy structural concrete blocks and masonry require rigid frame architectures to safely dissipate severe explosive decompression energy releases.
Pro Tip
DEBRIS SHIELD MANDATE: Always ensure poly-carbonate fragmentation shields are locked securely into place before processing severe infrastructure core loads.