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TMA 402 F1 /F3 Hyperion

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The heart of the TMA 402 Hyperion® is a highly precise inductive displacement transducer (LVDT). This technology has stood the test of time; it is also used for dilatometers and allows measurement of even the smallest of length changes, into the nanometer range (digital resolution of 0.125 nm). Simultaneous measurement of force and displacement signal…

The heart of the TMA 402 Hyperion® is a highly precise inductive displacement transducer (LVDT).

This technology has stood the test of time; it is also used for dilatometers and allows measurement of even the smallest of length changes, into the nanometer range (digital resolution of 0.125 nm).

Simultaneous measurement of force and displacement signal

The force operating on the sample is generated electromagnetically in the TMA 402 Hyperion®. This guarantees a quick response time for experiments with a changing load, e.g. tests on

Creep

Creep describes a time and temperature dependent plastic deformation under a constant force. When a constant force is applied to a rubber compound, the initial deformation obtained due to the application of the force is not fixed. The deformation will increase with time.

creep behavior. A highly sensitive force sensor (digital resolution < 0.01 mN) continuously measures the force exerted via the push rod and readjusts it automatically. This sets the TMA 402 Hyperion® apart from other instruments, which use only preset values.

Cat – https://analyzing-testing.netzsch.com/_Resources/Persistent/2/0/0/8/20080b2502f5559c28e64f1d3eae0f6f645994cb/TMA_402_F1_F3_Hyperion_en_web.pdf

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