We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Differential thermal analysis equipment.
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Differential thermal analysis equipment Product List and Ranking from 4 Manufacturers, Suppliers and Companies

Differential thermal analysis equipment Product List

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[Analysis Case] Pyrolysis GC/MS Double Shot Method, Identification of Plastics and Additives

Composite analysis using TG-DTA and GC/MS.

By combining TG-DTA (thermogravimetric-differential thermal) analysis with GC/MS analysis, it is possible to select optimal temperature conditions to identify unknown polymer materials and the volatile organic compounds they contain. By investigating the pyrolysis temperature of the plastic parts of commercial products and continuously performing GC/MS measurements under two conditions—gentle heating below the pyrolysis temperature (thermal desorption method) and subsequent rapid heating at high temperatures (pyrolysis method) using the double-shot method—it was determined that this plastic is AS resin and contains the antioxidant additive IRGANOX 1076.

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STA PT1000 type TG-DTA/DSC system

Capable of measuring from room temperature to 1100℃! Introduction to the thermal weight-differential thermal analysis device.

The product is a STA PT1000 type TG-DTA/DSC system manufactured by Linseis. It can measure thermal weight changes and thermal energy changes with high precision in vacuum or high-pressure environments. Measurements can be taken from room temperature to 1100℃. 【Specifications】 ■ Measurement temperature range: Room temperature to 1100℃ ■ Weight sensitivity: 0.1μg ■ Heat sensitivity: 0.2μW ■ Vacuum: 10E-2mbar *For more details, please refer to the PDF document or feel free to contact us.

  • Temperature and humidity measuring instruments
  • Other measurement, recording and measuring instruments

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TG-DTA (Thermogravimetric Differential Thermal Analysis)

Output the temperature difference between the sample and the reference material as a DTA signal! Change the temperature according to a constant program.

TG-DTA (Thermogravimetric Differential Thermal Analysis) is an analysis that simultaneously measures the weight of a sample (TG) and the temperature difference between the sample and a reference material (Differential Thermal Measurement) (DTA) as a function of temperature, while varying the sample's temperature according to a specific program. The measurable conditions are a temperature range of room temperature to 1000°C, a required sample amount of 10 to 20 mg, and sample shapes including film, powder, and bulk. 【Features】 - Thermogravimetric Differential Thermal Analysis - Varies the sample's temperature according to a specific program - Simultaneously measures the sample's weight and the temperature difference from the reference material as a function of temperature - Required sample amount: 10 to 20 mg - Sample shapes include film, powder, and bulk *For more details, please refer to the PDF document or feel free to contact us.

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STA PT1600 type TG-DTA/DSC system

Measuring with high precision in high-pressure environments! Introduction to the thermogravimetric-differential thermal analysis device.

This product is the STA PT1600 TG-DTA/DSC system manufactured by Linseis. It can measure thermal weight changes and thermal energy changes with high precision in vacuum or high-pressure environments. It can measure temperatures from room temperature to 1600°C, with a maximum temperature of 2400°C. 【Specifications】 ■ Measurement temperature range: -150°C to 700°C         Room temperature to 1600°C *Maximum temperature: 2400°C ■ Weight sensitivity: 0.1μg ■ Heat sensitivity: 0.2μW ■ Vacuum: 10E-5mbar ■ Pressure: 5bar *For more details, please refer to the PDF document or feel free to contact us.

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  • Other measurement, recording and measuring instruments

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High Pressure STA System

Pressure 150 bar! Introduction of the differential thermal analysis device.

This product is the High Pressure STA (High Pressure TG-DTA/DSC) system manufactured by Linseis. The measurement temperature range is -170°C to 1800°C. It can accurately measure changes in weight and heat under vacuum or high-pressure environments. 【Specifications】 ■ Measurement temperature range: -170°C to 1800°C ■ Weight sensitivity: 0.1μg ■ Heat sensitivity: 0.2μW ■ Vacuum: 10E-4mbar ■ Pressure: 150bar *For more details, please refer to the PDF document or feel free to contact us.

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[Analysis Case] Quantification of water generated when heating water-absorbent polymers.

This article presents a case where water adhered to the surface of nylon 6, known as a water-absorbing polymer, and water generated during thermal decomposition were quantified separately.

The TG-MS (Thermogravimetric-Mass Spectrometry) method involves introducing gases generated during the TG-DTA (Thermogravimetric Differential Thermal Analysis) measurement of a sample online to a mass spectrometer (MS) for analysis. This technique allows for the acquisition of information regarding the thermal decomposition behavior of the sample, the types of gases generated, and the temperature ranges at which these gases are produced. Additionally, by creating a calibration curve using standard substances, it is possible to quantify the generated gases. [Analysis Sample] Nylon 6 (PA6) [Analysis Equipment] TG-DTA: Rigaku Thermo plus EVO2 GC-MS: Agilent 8890GC/5977B Inert Plus [Analysis Results] The TG-MS method allows for the quantification of water generated from the sample, separated by temperature. [Summary] Using the TG-MS method, it is possible to understand the amount of moisture adhering to the sample length and the amount of moisture generated during thermal decomposition.

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[TG-DTA, -MS] Thermogravimetric Differential Thermal Analysis, Differential Thermal Balance - Mass Analysis Method

TG-DTA simultaneously evaluates weight changes caused by heating (TG) and thermal behavior of endothermic and exothermic reactions (DTA).

TG-DTA-MS continuously evaluates not only TG and DTA but also the volatile components (MS). - TG allows for the detection of weight changes on the order of percentage. - DTA provides insights into reactions such as pyrolysis, melting, sublimation, oxidation, combustion, and phase transitions. - MS enables the structural estimation of volatile components and decomposition products.

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