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The SDC/YSZ superlattice consisted of 30 bilayers of the two materials with single layer thickness of about 30 unit cells, as estimated from the deposition rate measured by XRR. Figure 7a shows the XRD analysis of such a superlattice.
A real-space phase field model is employed to investigate the domain switching-induced shielding or anti-shielding of a crack in ferromagnetic materials with single and multi-domain states.
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X-ray diffraction (XRD) and Electron back scattered diffraction (EBSD) of 316L treated at 800 °C disclosed a textured material with single austenitic phase.
In contrast the specific brush type molecular architecture seems to prevent the micro phase separation of the PBA and PS components, resulting in amorphous bulk material with single glass transition temperature.
Firstly, the AT theories and methods that deal with the phased-mission, time varying stress, and competitive failures should be established gradually by conducting research on the AT estimation-technology of the operational reliability of the components and material with single failure mode and failure mechanism in practice.
An enzyme-linked immunosorbent assay revealed that the cells on the material with single-walled carbon nanotubes contained a higher concentration of vinculin and talin, i.e. components of focal adhesion plaques (by 56%and35%5%, respectively, compared to the pure terpolymer).
Results are presented for materials with a single slip system.
At 300 °C, creep threshold stresses are considerably higher than for control materials with a single population of either Al2O3 dispersoids or Al3Sc precipitates.
Materials synthesized by living organisms constitute a fantastic source of inspiration for the design of multifunctional materials from a limited set of chemical elements or molecules, whereas traditional industrial preparation methods allow only to design materials with a single function and not able to undergo self-reparation.
For this reason, by employing materials with a single structural arrangement, it is not possible to combine all of these features.
In this paper we summarize the impact of some of these design changes on moderator performance as well as some recent results from a novel inhomogeneous moderator design that combines traditional moderating material (polyethylene) with single crystals of silicon.
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