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Dispersoids in Al-Mg-Si Alloy AA 6086 Modified by Sc and Y
Published 2023-04-01“…The aluminium alloy AA 6086 attains the highest room temperature strength among Al-Mg-Si alloys. …”
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Effective Platform Heating for Laser Powder Bed Fusion of an Al-Mn-Sc-Based Alloy
Published 2023-12-01Get full text
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Growth of Highly c-Axis Oriented AlScN Films on Commercial Substrates
Published 2022-05-01Get full text
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Raman Spectroscopy and Spectral Signatures of AlScN/Al<sub>2</sub>O<sub>3</sub>
Published 2022-11-01Get full text
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Characterization of Aluminium-Silicon (Al-Si) cast alloy refined with Titanium Diboride (TiB2) and Scandium (Sc) / R. Rosmamuhamadani... [et al.]
Published 2018“…The aluminium-silicon (Al-Si) alloys, based on the Metal Matrix Composites (MMCs) system are widely used in light-weight constructions and transport applications requiring a combination of high strength and ductility. …”
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Automated Parameter Extraction Of ScAlN MEMS Devices Using An Extended Euler–Bernoulli Beam Theory
Published 2020-02-01Get full text
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Numerical analysis of residual stress of Al-Mg-Mn-Sc-Zr alloy subjected to surface strengthening by shot peening
Published 2015-03-01“…In this paper, we presented the results of the analysis of the stresses in the Al-Mg5%-Mn1,5%-Sc0,8%-Zr0,4% alloy after shot peening process using solver ANSYSANSYSANSYS LS-Dyna. …”
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Microstructures and High Temperature Tensile Behaviours of Laser Powder Bed Fusion Fabricated Al-Mn-Sc Alloy
Published 2023-04-01“…The introduction of Sc/Zr inoculates to aluminium (Al) alloys for laser powder bed fusion (LPBF) provides numerous benefits, including laser processability improvement, solidification microstructure control and mechanical property enhancement. …”
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Experimental study of the incorporation of Li, Sc, Al and other trace elements into olivine
Published 2010“…Unlike Sc, Al does not appear to form a stable complex with Li in the olivine structure. …”
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The strengthening mechanism synergy of heat-treated 3D printed Al-Sc alloy
Published 2023-12-01“…Among the aluminium alloys, scalmalloy (Al-4.49Mg-0.71Sc-0.51Mn-0.27Zr-0.07Fe-0.03Si alloy) was developed to overcome the hot crack issue during the laser powder bed fusion (LPBF) process. …”
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Production of Al-Sc Alloy by Electrolysis from Cryolite Melt Using Secondary Feedstock Material
Published 2021-11-01“…Electrolysis experiments to produce Al-Sc alloys were carried out in galvanostatic mode using a cryolitic melt with a NaF/AlF<sub>3</sub> molar ratio of 2.2 at 980 °C, using both synthetic and waste feeds. …”
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Flow Stress Modelling and 3D Processing Maps of Al4.5Zn4.5Mg1Cu0.12Zr Alloy with Different Scandium Contents
Published 2021-05-01Subjects: Get full text
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Development of thermal-resistant Al–Zr based conductor alloys via microalloying with Sc and manipulating thermomechanical processing
Published 2023-07-01“…Thermal-resistant Al–Zr based conductor alloys were developed using microalloying with a low level of Sc (≤0.10 wt%) and two thermomechanical processing routes, in which the cold wire drawing was conducted before and after the aging treatment. …”
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Corrosion behaviour of Al-Si cast alloy reinforced with titanium diboride (TiB2) and scandium (Sc)
Published 2018“…The aluminium-silicon (Al-Si) based on Metal Matrix Composites (MMCs) is widely used in lightweight constructions and transport applications requiring a combination of high strength and ductility. …”
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Crystal Structure, Microstructure and Electronic Properties of a Newly Discovered Ternary Phase in the Al-Cr-Sc System
Published 2021-12-01“…This study focused on the crystal and electronic structures of a newly discovered phase in the Al-Cr-Sc system. The latter two species do not mix in a binary alloy, but can be alloyed with aluminium in the vicinity of the Al<sub>2−x</sub>Cr<sub>x</sub>Sc composition, where 0.3 < x < 0.5. …”
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Strong and ductile Al–Mn–Mg–Sc–Zr alloy achieved in fabrication-rate enhanced laser powder bed fusion
Published 2023-12-01“…The high cost of laser powder bed fusion (LPBF) fabricated high-strength Sc containing aluminium alloy hinders its applications. …”
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