19,349 research outputs found

    Flux-lattice melting in LaO1βˆ’x_{1-x}Fx_{x}FeAs: first-principles prediction

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    We report the theoretical study of the flux-lattice melting in the novel iron-based superconductor LaO0.9F0.1FeAsLaO_{0.9}F_{0.1}FeAs and LaO0.925F0.075FeAsLaO_{0.925}F_{0.075}FeAs. Using the Hypernetted-Chain closure and an efficient algorithm, we calculate the two-dimensional one-component plasma pair distribution functions, static structure factors and direct correlation functions at various temperatures. The Hansen-Verlet freezing criterion is shown to be valid for vortex-liquid freezing in type-II superconductors. Flux-lattice meting lines for LaO0.9F0.1FeAsLaO_{0.9}F_{0.1}FeAs and LaO0.925F0.075FeAsLaO_{0.925}F_{0.075}FeAs are predicted through the combination of the density functional theory and the mean-field substrate approach.Comment: 5 pages, 4 figures, to appear in Phys. Rev.

    3D printing of cement composites

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    The aims of this study were to investigate the feasibility of generating 3D structures directly in rapid-hardening Portland cement (RHPC) using 3D Printing (3DP) technology. 3DP is a Additive Layer Manufacturing (ALM) process that generates parts directly from CAD in a layer-wise manner. 3D structures were successfully printed using a polyvinylalcohol: RHPC ratio of 3:97 w/w, with print resolutions of better than 1mm. The test components demonstrated the manufacture of features, including off-axis holes, overhangs / undercuts etc that would not be manufacturable using simple mould tools. Samples hardened by 1 day post-build immersion in water at RT offered Modulus of Rupture (MOR) values of up to 0.8Β±0.1MPa, and, after 26 days immersion in water at RT, offered MOR values of 2.2Β±0.2MPa, similar to bassanite-based materials more typically used in 3DP (1-3 MPa). Post-curing by water immersion restructured the structure, removing the layering typical of ALM processes, and infilling porosity

    Electron-doped phosphorene: A potential monolayer superconductor

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    We predict by first-principles calculations that the electron-doped phosphorene is a potential BCS-like superconductor. The stretching modes at the Brillouin-zone center are remarkably softened by the electron-doping, which results in the strong electron-phonon coupling. The superconductivity can be introduced by a doped electron density (n2Dn_{2D}) above 1.3Γ—10141.3 \times10^{14} cmβˆ’2^{-2}, and may exist over the liquid helium temperature when n2D>2.6Γ—1014n_{2D}>2.6 \times10^{14} cmβˆ’2^{-2}. The maximum critical temperature is predicted to be higher than 10 K. The superconductivity of phosphorene will significantly broaden the applications of this novel material

    Raman scattering study of electron-doped Prx_xCa1βˆ’x_{1-x}Fe2_2As2_2 superconductors

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    Temperature-dependent polarized Raman spectra of electron-doped superconducting Prx_xCa1βˆ’x_{1-x}Fe2_2As2_2 (xβ‰ˆ0.12x \approx 0.12) single crystals are reported. All four allowed by symmetry even-parity phonons are identified. Phonon mode of B1g_{1g} symmetry at 222 cmβˆ’1^{-1}, which is associated with the c-axis motion of Fe ions, is found to exhibit an anomalous frequency hardening at low temperatures, that signals non-vanishing electron-phonon coupling in the superconducting state and implies that the superconducting gap magnitude 2Ξ”c<272\Delta_c < 27meV.Comment: 4 pages, 3 figure

    Dynamic characteristics analysis of rolling mill gear reducer using nutation face gear transmission

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    The nutation face gear transmission system has advantages such as high reduction ratio, high power density, compact structure, and smooth transmission, making it suitable for high-power transmission in metallurgical machinery, tunnel boring machines, and other applications. In this study, a 12-degree-of-freedom bending-torsion-axial coupling dynamic model of the transmission system is established. The impact of mesh stiffness amplitude on the dynamic characteristics of the novel rolling mill gear reducer is considered. The research indicates that an increase in gear pair mesh stiffness leads to an increase in torsional vibration amplitude
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