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Specific Heat Capacity Measurements Using DSC and Modulated DSC

  Overview Specific heat capacity measures the ability of a material to absorb thermal energy. Specific heat capacity is an important property in many fields; it involves thermal energy exchange. People have been studying specific heat capacity for decades on a wide variety of materials such as phase change materials, carbon nanomaterials, heating and cooling…

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Stability Testing of Energetic Materials by Isothermal Microcalorimetry

Stability Testing of Energetic Materials by Isothermal Microcalorimetry Overview This webinar introduces the use of isothermal microcalorimetry for stability measurement of energetic materials. Energetic materials refer to materials, chemicals and substances which exhibit a risk for self-decomposition associated with self-heating ultimately resulting in run-way reactions. Such materials include propellants, percarbonates and peroxides, and these…

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Steady State & Flash Methods for Thermal Diffusivity and Thermal Conductivity Determination

  Overview In this presentation we will demonstrate accurate and high-throughput methods to measure the critical heat transfer properties of thermal diffusivity and thermal conductivity. Direct and indirect methods provide suitable measurements for a wide variety of materials – including polymers, ceramics, carbons, graphite, composites, glasses, metals, and alloys – and at temperatures from -150°C…

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Steady State and Light Flash Methods for Measuring Thermal Diffusivity and Thermal Conductivity

  Overview The ability of a material to store and transfer heat is characterized with the material properties of thermal diffusivity, thermal conductivity, and specific heat capacity. Understanding these properties is critical when exposing a material to a wide array of temperature environments: large gradients, rapid changes, and maintaining stability, to name a few. Accurate…

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