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Rheo-Raman Accessory

Rheo-Raman Accessory Simultaneous Rheology & Raman Spectroscopy for the Discovery Hybrid Rheometer. Description Features Applications Rheo-Raman Accessory The new Rheo-Raman Accessory for the Discovery Hybrid Rheometers allows for simultaneous collection of Raman spectroscopy data during rheology experiments. Raman spectroscopy is a technique that provides critical information about molecular structure and bonding and can elucidate intermolecular…

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Rheological Evaluation of Battery Slurries with Different Graphite Particle Size and Shape

Application Note Rheological Evaluation of Battery Slurries with Different Graphite Particle Size and Shape Keywords: Rheology, Battery, Battery slurry, particle size, particle shape, viscosity, viscoelasticity, thixotropy, yield, Discovery Hybrid Rheometer (DHR) Battery slurry processing is one of the key steps in battery manufacturing that can significantly influence battery performance. The slurry suspension includes multiple components…

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Rheology is Maza: Unveiling the Secrets of Flowing Rangoli Colors

Powders are a big part of everyday life, from baking and laundry to cosmetics and pharmaceuticals. Understanding powder rheology—how powders flow and deform—is crucial for optimizing their use in various applications. This knowledge helps industries maintain consistency and product quality.

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Rheology of Coatings and Inks

Rheology of Coatings and Inks Coatings and inks are two of the most common structured fluids that are characterized on rotational rheometers. Rheometers offer experimentalists many opportunities to perform selected tests that can reveal information about the properties of the fluids and allow one to predict the processability of these systems. Of particular interest are…

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Rheology of Hydrogels

Hydrogels are three-dimensional porous strctures that can absorb large amounts of water. They can be made up of polymers, protein, peptides, colloids, surfactants, or lipids.1 Hydrogels’ ability to uptake large amounts of water is useful for many biological applications, including drug delivery and tissue engineering. Since a hydrogels’ properties change as it absorbs water, scientists must accurately characterize its behavior at different saturation amounts and in varying conditions.

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