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Thermal expansion measuring instrument Product List

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Differential Thermal Expansion Rate Measurement Device 'DIL802/802L'

This is an introduction to the "DIL802/802L," which is skilled in dynamic temperature programs used for shrinkage rate control sintering (RCS) and measurements in low-temperature regions.

The DIL 802 is a device that achieves true differential measurement, providing the highest measurement accuracy. By measuring only the difference between the sample and the reference material, it eliminates the effects of system expansion. This design is particularly beneficial for dynamic temperature programs and measurements at low temperatures. The DIL 802 is suitable for measurements in vacuum or inert gas, while the DIL 802L is specialized for measurements in air. The horizontally arranged furnace ensures temperature uniformity and eliminates the effects of air convection. A high-sensitivity LVDT is used to accurately measure even minute thermal expansion events.

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Thermomechanical Analysis / Thermal Expansion Rate Measurement Device Discovery TMA

Various measurement modes! High-sensitivity mechanical analysis is possible over a wide temperature range.

The thermal analysis device/thermomechanical measurement device "TMA Series" is designed to measure dimensional changes of samples under controlled temperature, time, stress, and atmosphere. It offers a variety of measurement modes, enabling the evaluation of material excessive properties (such as creep and stress relaxation) and the separation of overlapping thermal events (MTMA). This product is a research and development grade thermomechanical measurement device, equipped with high performance suitable for research, education, and quality control applications. 【Features】 ■ High sensitivity measurement ■ High versatility ■ Variety of measurement modes ■ Capable of measurements over a wide temperature range

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Optical thermal expansion coefficient measurement device

Optical expansion measurement is an innovative and multifunctional technology that can measure expansion changes without coming into contact with the sample, not only at the softening point but also up to the melting point!

**Optical Dilatometer**: A device that can measure dimensional changes of a sample without contact between the measurement system and the sample. Unlike conventional push-rod dilatometers, experiments can be extended beyond the softening point. The typical sensitivity must be better than 1µm. **Heating Microscope**: A non-contact device that can analyze the entire image of a sample and the shape changes occurring within a defined temperature range. Experiments can be extended until melting occurs beyond the softening point. The typical sensitivity is in the range of 10µm. **Optical Fleximeter**: A non-contact device for studying the bending behavior of materials undergoing actual industrial firing cycles without applying load.

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Single Sample Thermal Expansion Rate Measurement Device 'DIL801/801L'

Introducing the "DIL801," which allows measurements in air, vacuum, and inert gas purge, and the "DIL801L," which is ideal for evaluating the properties of ceramic materials.

The DIL 801 is an ideal device for measuring the thermal expansion of a single sample. It allows measurements in vacuum or inert gas environments, while the DIL 801L is specialized for measurements in air. This makes it suitable for evaluating the properties of ceramic materials. The horizontally arranged furnace ensures temperature uniformity and eliminates the effects of air convection. A high-sensitivity LVDT is used to accurately measure even minute thermal expansion events. Key features: - Measurement of linear dimensional changes over a wide temperature range - Capable of measurements in vacuum, inert gas, and air - Accurate displacement measurement with high-sensitivity LVDT - Ensures temperature uniformity with a horizontally arranged furnace - Compatible with various furnaces and easily interchangeable - Accurate temperature measurement with thermocouples or pyrometers - The measurement system can be composed of materials such as quartz glass, alumina, sapphire, graphite, and tungsten.

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Dual Sample Thermal Expansion Rate Measurement Device 'DIL803/803L'

Introducing the "DIL802/802L," capable of high-precision dual sample measurement.

The DIL 803 is a dual-sample dilatometer that maximizes productivity by measuring two samples simultaneously. It can measure in vacuum or inert gas environments, while the DIL 803L is specialized for measurements in air. The horizontally arranged furnace ensures uniform temperature and eliminates the effects of air convection. A high-sensitivity LVDT is used to accurately measure even minute thermal expansion events.

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Vertical Thermal Expansion Rate Measurement Device "DIL820 Series"

Measurement of thermal expansion in the vertical direction is possible! The highest sensitivity is guaranteed by a high-resolution inductive sensor (LVDT).

The DIL820 series (DIL 821/822) is a high-precision vertical dilatometer belonging to the DIL 820 series from TA Instruments. These models are equipped with a new optical encoder that has a resolution of 1nm, making them particularly suitable for the analysis of challenging samples. The DIL 822 employs true differential measurement technology, providing the best sensitivity and accuracy for CTE (coefficient of thermal expansion) in the market.

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Optical Thermal Expansion Rate Measurement Device "DIL806"

Introducing the "DIL806," capable of measuring thermal expansion rates without contact. It is an ideal tool for measuring amorphous and soft samples.

The DIL 806 optical dilatometer is a high-performance thermal expansion and contraction measurement device provided by TA Instruments. By adopting optical measurement principles, this device enables non-contact measurements that were difficult with conventional dilatometers. The DIL 806 uses an absolute measurement process that is not affected by the expansion or contraction of the testing apparatus itself, eliminating the need to correct measurement results for different temperature programs. This device irradiates a wide planar light onto the sample using high-performance LEDs and detects the shadow of the sample with a high-resolution CCD sensor. A digital edge detection processor evaluates this signal, accurately and sensitively measuring the dimensional changes of the sample in response to temperature variations. The DIL 806 is ideal for measuring materials such as metals and plastics, and thin samples can be easily analyzed using a dedicated sample holder. The furnace allows for rapid heating up to 100°C/min and rapid cooling from 1400°C to 50°C in under 10 minutes. This enables efficient analysis of dynamic processes and tests that include multiple temperature steps.

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