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We present a review of recent in situ experimentation studies of solidification front patterns and microstructures in alloys.
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X-ray diffraction (XRD) and scanning electron microscopy (SEM) analysis revealed substantial changes in the diffraction patterns and microstructure components of the TBCB paste over the curing period, confirming the formation of cementitious products.
The dependent variables included measures related to the task goal (accuracy and variability of error of the overall movement and force patterns) and movement pattern (macro- and microstructures).
Textural properties, whiteness, expressible moisture content, protein pattern, and microstructure and sensory properties of gels were determined.
Textural properties, whiteness, expressible moisture content, trichloroacetic acid (TCA -soluble pepTCA -soluble, peptide pattern and micontentcture of gels were determined.
Patterning and microstructuring of functional polymers is a key process in order to control the emission properties of polymer thin films towards the design and realisation of devices such as electroluminescent diodes (OLEDs) or organic lasers.
In addition, the improvement of hot cracking resistance by controlling the morphology of Laves phase particles is discussed by analyzing the cracking pattern and microstructure in the laser deposited material.
In contrast to traditional metal-forming processes that require processing at elevated temperatures to form surface patterns and manipulate microstructures, Pt-BMGs are processed at low temperatures (below 300 °C) in air, similar to thermoplastics.
The hot stage environmental SEM revealed interesting gas evolution patterns and char microstructure development in real time during thermal degradation of the biomass.
XRD patterns and the microstructure, examined by optic microscope and SEM, show that both of the two low-Co alloys are composed of three phases, LaNi5 matrix phase, AlMnNi2 secondary phase and LaNi tertiary phase.
Results revealed a similar error of the overall patterns for all groups in both experiments and that they adapted themselves differently in terms of the macro- and microstructures of movement patterns.
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