DIL L74 Optical dilatometer

Optical non-contact dilatometer - CTE expansion measurement

Description

To the point

The L74 Optical Dilatometer was developed to meet the demanding applications of the glass-ceramics, metal industry and energy industry to fulfill.

A high-resolution CCD camera enables visual real-time analysis of the sample expansion – either as a single image or as a video sequence.
The advantage of this method is that no force is applied to the sample.
In the case of soft samples or samples that change their strength during the measurement, the result is determined by the contact pressure of a classic dilatometer. Classical dilatometer is not falsified.

In the LINSEIS software software integrates several correction and analysis functions and the unique horizontal design enables the most demanding applications.

The special solid-liquid adapter is an extension and enables volume measurements of solids, liquids and solid-liquid phase transitions.
A special sample holder is also available for measuring rigid foils, which would bend too much with a push rod dilatometer due to the forces acting on them.

Functions:

  • Non-contact strain measurement
  • High-resolution CCD camera
  • Optical fleximeter

Measuring principle

In an optical dilatometer, the sample is compared with a reference during the measurement. The result is the difference between the two lines. The field of view has an area of 3.3 x 2.8 mm2.

Optical dilatometer detection of sample and reference

Unique features

Non-contact strain measurement

High-resolution CCD camera

Fully automatic focus

Measurement of solid, liquid and
solid-liquid phase transitions

Temperature range:
-100°C to +2000°C

Operation in different atmospheres:
oxidizing, reducing, inert, vacuum

Precise software with
extensive evaluation
functions

Real-time analysis as
single image or video

Service hotline

+01 (609) 223 2070

 

+49 (0) 9287/880 0

Our service is available Monday to
Thursday from 8 am to 4 pm
and Friday from 8 am to 12 pm.

We are here for you!

Specifications

MODEL

DIL L74 OD

Optical measuring system:Optical dilatometer equipped with a high-resolution camera and fully automated focus
Temperature range:-100°C up to 500°C; RT up to 500/1000/1500/2000°C
Measuring system:optical non contact
Accuracy:up to 1 µm
Field of view:3.3 x 2.8 mm
Atmosphere:oxidizing (optional: red., inert and vac.)
Vacuum:up to 10E-5 mbar
Heating rate:0.01 to 100°C/min (depends furnace)
Int. Standards:ASTM D1857, CEN/TR 15404, BS 1016:Part 15, CEN/TS 15370-1, DIN 51730, IS 12891, ISO 540, NF M03-048
Interface:USB
*Specifications depend on the configurations

Software

Black on white

The powerful LINSEIS thermal analysis software, which is based on Microsoft® Windows®, performs the most important function in the preparation, execution and evaluation of thermoanalytical experiments, in addition to the hardware used.
With this software package, Linseis offers a comprehensive solution for programming all device-specific settings and control functions, as well as for data storage and evaluation.
The package was developed by our in-house software specialists and application experts and has been tried and tested over many years.

General functions

  • Real-time color display
  • Automatic and manual scaling
  • Display of the axes freely selectable (e.g. temperature
    e.g. temperature (x-axis) against delta L (y-axis))
  • Mathematical calculations (e.g. first and second derivatives)
  • Saving complete evaluations
  • Multitasking function
  • Multi-user function
  • Zoom option for various curve sections
  • Any number of curves can be loaded on top of each other for comparison
  • Online Help Menu
  • Free labeling
  • EXCEL® and ASCII export of measurement data
  • Data smoothing
  • Zero curves are offset
  • Cursor function
  • Statistical curve evaluation (mean value curve with confidence interval)
  • Tabular printout of the data and expansion coefficients
  • Calculation of Alpha Phys, Alpha Tech, relative expansion L/L0
  • Curve arithmetic, addition, subtraction, multiplication

Applications

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