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Nanomechanical Test System

Hysitron TI 980 Nanoindenter

The world's most powerful nanomechanical and nanotribological test system
Hysitron TI 980 TriboIndenter

Lo más destacado

One Giant Leap for Nanomechanical & Nanotribological Testing

Hysitron TI 980 TriboIndenter

Bruker’s Hysitron TI 980 TriboIndenter operates at the intersection of maximum performance, flexibility, reliability, usability, and speed. This industry-leading system builds upon decades of Hysitron technological innovation to deliver new levels of extraordinary performance, enhanced capabilities, and ultimate versatility in nanomechanical characterization. The Hysitron TI 980 nanoindenter is everything a superior nanomechanical test instrument needs to be, achieving remarkable advances in control and throughput capabilities, testing flexibility, applicability, measurement reliability, and system modularity.

Unrivalled
control and throughput capabilities
Delivers the fastest feedback control and lowest noise floors available for truly quantitative nanomechanical and nanotribological characterization.
Synchronized
multiscale and multi-technique measurements
Enables nano-to-micro indentation, nanoscratch, nanowear, dynamic nanoindentation, in-situ SPM imaging and high-speed property mapping.
Maximum
flexibility and characterization potential
Provides the broadest range of innovative characterization techniques, universal sample mounting options and modular system architecture.

Características

Maximizing Your Characterization Potential

Powerful Base Configuration

  1. In-situ SPM imaging
  2. High-resolution optical imaging
  3. 2D capacitive transducer
  4. Metrology-grade granite
  5. Active anti-vibration isolation
  6. Performech II advanced control module
  7. Environmental isolation enclosure
  8. High-speed property mapping (XPM)
  9. Dynamic nanoindentation (nanoDMA III)
  10. Modular system architecture
  11. Versatile sample chuck
  12. High-precision staging

Beneficios

Keeping You at the Forefront of Materials Discovery and Development

Bruker's Hysitron TI 980 nanoindenter provides industry-leading noise floors for quantitative characterization to the low end of nano and and ultra-fast fastest feedback control for superior control over the testing process.

Powered by Bruker's Performech II Advanced Control Module, the TI 980 nanoindenter delivers remarkable advances in control and throughput capabilities, testing flexibility, applicability, sensitivity, measurement reliability, and system modularity. The TI 980's powerful base configuration includes quantitative nanoscale-to-microscale indentation, nanoscratch, nanowear, high-resolution in-situ scanning probe microscopy (SPM) imaging, dynamic nanoindentation, and high-speed mechanical property mapping; providing a comprehensive understanding of material behavior at the nanoscale.

Simplicity and Speed of Automation

Bruker's Hysitron TI 980 enables multiple head measurement synchronicity. Seamlessly test with any combination of two transducers, fully optimized for the task at hand.

The Hysitron TI 980 nanoindenter provides rapid, multi-sample and multi-technique automated testing capabilities for high-throughput characterization. Smart automation routines validate probe shape at user-defined intervals, and its high resolution multi-scale imaging with whole-sample optical surveying streamlines the testing process.

Futureproof Characterization Potential

Ceramic matrix composite modulus map composed of 400 measurements in 67 seconds with XPM.

The TI 980 nanoindenter was developed with maximum flexibility in mind, knowing your characterization needs today will likely be different in the future. The TI 980 supports the largest range of hybrid and correlative nanomechanical characterization techniques, promising to keep your research and materials development at the forefront of technology. Combined with versatile system control and data analysis software, universal sample mounting options (mechanical, magnetic, and vacuum), and a modular environmental enclosure, the TI 980 nanoindenter will adapt to your future characterization requirements.

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