Universal Testing Machine (UTM)
The Agilent universal testing machine (UTM) offers researchers a superior means of nanomechanical characterization. The state-of-the-art UTM T150 employs a nanomechanical actuating transducer to deliver high sensitivity over a large strain. Dynamic characterization captures evolution of mechanical properties such as strain, tensile strength and yield stress. And, outstanding software offers real-time experimental control and easy test protocol applications.
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1-21 of 21
| Tensile Testing of Fibers using Agilent T150 UTM Quasi-static Tensile Test
The Agilent T150 UTM is a specifically designed instrument to measure the tensile properties of wide range of fibers with small cross-sectional diameters. this application note discussed testing of various fibers
Application Note 2013-04-08 |
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| Evolution of Dynamic Mechanical Properties of Nylon-PET Island-in-the-Sea Biocomponent Fibers
Study of mechanical properties of individual nylon-PET bicomponent IS fibers, with two different PET molecular weights, were characterized using the Agilent T150 UTM.
Application Note 2013-01-10 |
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| Statistical Variation and Strain-Rate Sensitivity of the Mechanical Properties of Individual PET Fib
Overview of strain rate and sensitivity of PET fibers
Application Note 2012-11-14 |
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| On Characterization of Mechanical Deformation in Flexible Electronic Structures
Demonstrates how the Agilent T150 UTM has been successfully utilized to characterize nano/micro-mechanical failure in inorganic thin films on flexible substrates.
Application Note 2012-08-28 |
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| Quasistatic and Continuous Dynamic Mechanical Behavior of Bicomponent Fibers
Study of the mechanical behavior of polymer fibers
Application Note 2012-07-13 |
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| Tensile Deformation of Fibers Used in Textile Industry
Discussion of UTM T150 used to test four different individual textile fibers — cotton, wool, polyester and rayon — under tensile loading.
Application Note 2012-04-02 |
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| Determination of Critical Tearing Energy of Polymer Films
Overview of critical tearing energy for two commercially available polymer tapes that are measured from trouser-tear tests. The capability of measuring small loads, along with the high force resolution, enabled us to capture the variations in force during tearing of thin polymer films
Application Note 2012-03-22 |
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| Tensile Stress-Strain Response of Small Diameter Electrospun Fibers
Overview of characterization of tensile stress-strain behavior of small diameter electrospun fibers of PCL using the Agilent UTM T150
Application Note 2012-03-20 |
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| Nanoindenter Bibliography
Demo 2012-01-11 |
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| Quasi-static and Dynamic Compression Behavior of Flexible Cellular Materials
Study of mechcnical properties of lightweight cellular materials
Application Note 2012-01-04 |
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| Tensile Testing of Copper Fibers in Conformance with ASTM C1557 Using an Agilent UTM 150
Tensile test of copper fibers that prove Thst the T150 UTM meets ASTM standards
Application Note 2011-11-15 |
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| For your convenience you can register for a FREE copy of your nanoindentation system user’s manual
User Manual 2011-09-13 |
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| Measurement of System Compliance Using Template Grip Technique and the Agilent T150
System compliance using template grips for measuring mechanical properties of single fibers.
Application Note 2011-08-01 |
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| Mechanical Characterization of Grey & Brown Hair
Application Note 2011-07-20 |
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| Agilent NanoSuite 6.0
NanoSuite Data Sheet
Data Sheet 2011-02-09 |
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| Agilent T150 UTM
Agilent T150 UTM Data Sheet
Data Sheet 2010-02-09 |
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| Quasi-Static and Dynamic Properties of Technical Fibers
Application Note 2010-01-11 |
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| How to Select the Correct Nanoindenter Tip
Application Note 2009-10-12 |
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| Continuous Dynamic Analysis and Quasi-Static Measurement of Spider
Application Note 2009-07-06 |
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| Tensile Testing of Basalt Fibers Using a T-150
Application Note 2009-07-06 |
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| Continuous Dynamic Analysis (CDA)
Data Sheet 2009-06-10 |
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