TA INSTRUMENTS - ELECTROFORCE
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Dil 805
The DIL805A/D is a special dilatometer used to determine the strain parameter and create DTTT, TTT and continuous cooling diagrams. Distinctive features of the DIL805A (quenching device*) are high heating rates of up to 4000 °C/s and cooling rates of 2500 °C/s. The DIL805D (strain) is distinguished by strain rates between 0.01 and 125 mm/s.
Dil 806
The optical dilatometric measurement method used in the DIL 806 is an absolute process, completely independent of any possible contraction or expansion of the instrument. Consequently, the measured results do not need to be corrected or calibrated for different temperature programs. In addition, the fast response of the DIL 806 furnace makes the system particularly suitable for the analysis of dynamic processes involving several temperature steps and dynamic heating rates.
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DIL 821HT/822HT
The DIL 820 series operates in a vertical orientation, making it uniquely suited for sinter analysis, Rate Controlled Sintering (RCS) and softening temperature determination. All four versions feature the new optical encoder with 1 nm resolution. When combined with the DIL822’s unique true differential measurement technology, the result is simply the best possible sensitivity and accuracy on the market.
OPD 868
As the result of more than twenty years of R&D of optical instruments for the study of thermomechanical behavior of materials, the OPD 868 optical dilatometer platform makes possible the analysis of samples beyond the limits of classical heating microscopy. The versatility makes the OPD 868 the most innovative tool for production and R&D laboratories to optimize all industrial processes involving thermal cycles.
DIL 821/822
The DIL 820 series operates in a vertical orientation, making it uniquely suited for sinter analysis, Rate Controlled Sintering (RCS) and softening temperature determination. All four versions feature the new optical encoder with 1 nm resolution. When combined with the DIL822’s unique true differential measurement technology, the result is simply the best possible sensitivity and accuracy on the market.
HSM/HSML
As the result of more than twenty years of R&D of optical instruments for the study of the thermomechanical behaviour of materials, the HM 867 optical dilatometer platform makes it possible to analyse samples beyond the limits of classical heating microscopy. Its versatility makes the HM 867 the most innovative tool for R&D and for the optimisation of all industrial processes involving thermal cycles.
DIL 801 y DIL801L
The DIL 801 and DIL801L dilatometers are horizontally configured single-sample dilatometers ideal for the widest range of routine thermal expansion measurements. The DIL 801 is designed for measurements under vacuum or inert gas, while the DIL 801L is designed for measurements in air, making it the ideal instrument for measuring ceramic materials that are typically processed in air.
DIL 803/803L
To maximize sample throughput, the DIL 803/803L models offer simultaneous processing of two samples in one horizontal dilatometer. The DIL 803/803L models can also be operated with an inert reference sample for differential measurements, which reduces the influence of expansion on the measurement system and increases its accuracy under dynamic temperature conditions.
DIL 831
The DIL 831 features the patented 1 nm resolution optical encoder, a new dynamic furnace family, and the new sample loading linear motor. The result is the best performing horizontal pushrod single sample dilatometer on the market. An instrument that offers scientists the ideal tool for research and development laboratories to measure linear thermal expansion.
DIL 832
The DIL 832 features an impressive set of unique technologies and capabilities that make it the ideal tool for any R&D laboratory for characterizing mechanical and dimensional properties: TA Instruments’ exclusive True Differential™ technology, the patented 1 nm resolution optical encoder, a family of new dynamic furnaces, and the new linear sample loading motor.




















