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KLA Instruments™ T150 UTM
The T150 UTM tensile tester machine measures the time-dependent response of strain rate-sensitive materials. The universal testing machine employs an electromagnetic transducer head to produce tensile force (load on sample) combined with a precise capacitive gauge to deliver high sensitivity over a large range of strain. The UTM tensile tester also lets users investigate tension/compression properties of biological materials using a dynamic characterization mode that permits accurate measurement at each point during testing.

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T150 UTM Tensile Tester

T150 UTM

T150 UTM Tensile Tester

The T150 UTM tensile tester machine measures the time-dependent response of strain rate-sensitive materials. The universal testing machine employs an electromagnetic transducer head to produce tensile force (load on sample) combined with a precise capacitive gauge to deliver high sensitivity over a large range of strain. The UTM tensile tester also lets users investigate tension/compression properties of biological materials using a dynamic characterization mode that permits accurate measurement at each point during testing.

Product Description

The T150 UTM tensile tester has an electromagnetic transducer that functions as a load cell, delivering high sensitivity over a large range of strain. To facilitate the continuous determination of mechanical properties while the specimen is strained, the Continuous Dynamic Analysis (CDA) option allows direct, accurate measurement of the specimen’s stiffness at each point in the experiment. CDA makes it possible to determine storage and loss modulus, as well as to measure complex moduli over a range of frequencies. Applications of the T150 UTM tensile testing machine include yield of compliant fibers and biomaterials, dynamic studies of fibers and biomaterials, and tensile and compression studies of polymers.

Features

  • Electromagnetic transducer for high sensitivity over a large range of strain

  • Dynamic characterization mode for measurement of evolution of mechanical properties with strain

  • Flexible, upgradeable and configurable system for a variety of applications

  • Easy test protocol development for real-time experimental control

  • Compliant with ASTM standards

 

Applications

  • Thin individual polymers, metals, composite or ceramic fibers

  • Electrospun polymer nanofibers

  • Polymer films

  • Biomaterials (e.g., spider silk, soft tissue scaffold)

  • Textiles

  • MEMS: Micro-electro-mechanical systems

 

Industries

  • Universities, research labs and institutes

  • MEMS: Micro-electro-mechanical systems

  • Fibers and textile

  • Polymer thin films

  • Biomedical

  • Medical devices

 

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