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3-D Printing and Additive Manufacturing Process Optimization: A Thermal Approach

  Overview 3-D printing and additive manufacturing are growing segments due to the extreme versatility of the printable materials. The application of such technologies are numerous (rapid prototyping, complex shapes…) and require different materials with different properties. Thermal analysis can be a valuable tool to evaluate the way a material keeps its internal structure during…

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Evaluating Viscoelastic and Fatigue Response of Silica Filled ‘Green Tire’ and Conventional Carbon Black Filled Rubber

Overview Trends in tire development and manufacturing have shifted to high performance rubbers that not only offer better durability but higher performance and lower fuel consumption. Silica, as a filler material, is now replacing conventionally used carbon black due to its unique set of properties. This webinar will illustrate how High Force Dynamic Mechanical Analysis…

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How Sustainable Polymer Development is Supported by Dynamic Mechanical Analysis

Dynamic mechanical analysis (DMA) is a technique to measure the response of materials when they are subjected to dynamic or cyclic forces. Typically, dynamic mechanical analysis involves looking at the elastic and viscous response of the material when it is under a small oscillating load that probes the molecular structure’s response to the perturbation . Other variables, such as temperature, time and frequency may be changed as part of the testing to characterize how the material performs under different environmental conditions.

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Sustainable Polymers Brochure Download

Brochure Sustainable Polymers Brochure Download Analytical Solutions for Polymer, Additive, & Product Characterization Polymer characterization helps research scientists, process engineers and QA/QC analysts gain insights into their material and answer important questions as they innovate to make plastics more sustainable at every step of the value chain. Whether you are incorporating recycled resins in existing…

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Battery Poster Download

Poster New Insights using Isothermal Calorimetry and High Precision Cycling Authors: Vincent L. Chevrier, Larry J. Krause, Steven Recoskie, Dean D. MacNeil, Zilai Yan, Mark N. Obrovac Institution: Cyclikal Technology: TAM IV Calorimeter Parasitics and Lifetime Predictions in Commercial Cells High precision isothermal microcalorimetry and coulometry were performed at various temperatures on commercial 18650s allowing…

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Técnico-Operacional Trios

Técnico-Operacional Trios Este Webinar é feito para o usuário que iniciou o uso dos instrumentos de análise térmica (DSC, TGA, SDT…) mas ainda detém dúvidas e/ou gostaria de aprimorar os seus conhecimentos da técnica e principalmente sobre o software TRIOS. Será um evento ao vivo, on-line e com emissão de certificado de participação aos participantes.

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Optimization of Catalytic Reactions by High-Pressure TGA

Catalytic reactions are everywhere: from plastics and bread to over 90% of all chemicals worldwide, countless goods and materials are manufactured with the aid of catalysts.1 Catalysts are substances that speed up sluggish chemical reactions. Faster reactions are more technologically and economically competitive. Furthermore, optimized catalysts offer a huge potential to reduce energy and resource consumption and lower carbon dioxide emissions.

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How to Set Up a Conductivity Experiment on a Xenon or Laser Flash Instrument

Overview Inhomogeneous, thick, or pliable sample? No problem – our laser flash instruments are able to measure the thermal diffusivity of nearly any material over a wide range of temperatures with non-destructive testing. In this tech tip, we review how to set up a conductivity experiment on the Discovery Xenon or Laser Flash instrument. Laser…

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Cutting-Edge Lithium-Ion Battery Development is Supported by Thermal Analysis Research

Whether you’ve used a cell phone or driven an electric vehicle (please, not at the same time), you’ve probably come to realize that lithium-ion batteries are taking over the energy world. They power our portable electronics, vital medical equipment, electric vehicles, and renewable energy storage. As the market expands, researchers are finding ways to make Li-ion batteries increasingly powerful, dependable, and safe, all while minimizing production time and cost.

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