TA Instruments
TA Instruments’ reputation for high technology products, quality manufacturing, and unbeatable after sales support is why more customers recommend TA products to their colleagues around the world. Headquartered in New Castle, DE, TA Instruments prides ourselves in the technical competence and professionalism that our sales force offers. We are the only thermal analysis, rheology, microcalorimetry, and mechanical analysis supplier recognized worldwide for our prompt, courteous and knowledgeable service staff, the hallmark of our company.
- 302-427-4000
- info@tainstruments.com
- 159 Lukens Drive
New Castle, DE 19720
United States of America
Categories
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product
Simultaneous Thermal Analyzer
SDT 650
TA Instruments invites you to experience the world’s finest Simultaneous DSC/TGA, the Discovery SDT 650. Discover the advanced engineering and attention to detail that provides enhancements in every aspect of performance and a new level of user experience. Available with or without an Autosampler, the Discovery SDT is sure to meet your needs and exceed your expectations.
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Vapor Sorption Analysis
Vapor Sorption Analysis is a technique in which a sample is subjected to varying conditions of humidity and temperature, and the response of the sample is measured gravimetrically. Understanding the effects of water content on structure and properties is critical in the development, processing and end use of a broad spectrum of materials. TA Instruments offers the most sensitive, versatile, and productive moisture sorption analyzers on the market. The Discovery SA combines a high-sensitivity thermobalance, innovative humidity control chamber, and reliable autosampler. Innovative technology combined with our unparalleled reputation for service and support make TA Instruments the clear choice of scientists worldwide for vapor sorption studies.
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Optical Dilatometry Platform
OPP 868
Result of over twenty years of R&D of optical instruments for the study of the thermo-mechanical behavior of materials, ODP 868 makes possible the analysis of samples beyond the limits of classical heating microscopy. Its versatility makes of ODP 868 the most innovative tool for production and R&D laboratories for the optimization of all the industrial processes that involve thermal cycles.
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Viscometers
Our Viscometers incorporate the latest measurement technology for the traditional Mooney viscosity, Mooney scorch, and the dynamic viscosity of glasses, slags, and mold powders in the glass, ceramics and metals industries.
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Differential Scanning Calorimeters
Differential Scanning Calorimeters (DSC) measure temperatures and heat flows associated with thermal transitions in a material. Common usage includes investigation, selection, comparison and end-use performance evaluation of materials in research, quality control and production applications. Properties measured by TA Instruments’ DSC techniques include glass transitions, “cold” crystallization, phase changes, melting, crystallization, product stability, cure / cure kinetics, and oxidative stability.
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Rotational Rheometer
ARES-G2
The ARES-G2 is the most advanced rotational rheometer for research and material development. It remains the only commercially available rheometer with a dedicated actuator for deformation control, Torque Rebalance Transducer (TRT), and Force Rebalance Transducer (FRT) for independent shear stress and normal stress measurements. It is recognized by the rheological community as the industry standard to which all other rheometer measurements are compared for accuracy.
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ElectroForce Mechanical Test Instruments
We start with your specific testing needs and combine unique ElectroForce motor technologies with our test applications engineering expertise to create a tailored test solution that meets your testing objectives. After you buy a TA Electroforce product, you become a valued, lifelong customer. Providing exceptional, ongoing support is our commitment to you.
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General Purpose Heat Flow Meters
Thermal conductivity defines a material’s ability to transfer heat. A precise and accurate measurement is critical for any process or material experiencing large or fast temperature gradients, or for which the tolerance for temperature changes is exacting. Accurate values are essential for modeling and managing heat, whether the component of interest is called on to insulate, conduct, or simply withstand temperature changes. Information about these properties are routinely used in heat transfer models of all complexities. Thermophysical property measurements also reflect important information about material composition, purity and structure, as well as secondary performance characteristics such as tolerance to thermal shock.










