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Achieving excellent strength–ductility combination of Al-aided Mg–Gd–Al–Zr–Zn alloys fabricated by cold metal transfer-based wire-arc directed energy deposition via uniform equiaxed grains and multiple precipitates - ScienceDirect

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Achieving excellent strength–ductility combination of Al-aided Mg–Gd–Al–Zr–Zn alloys fabricated by cold metal transfer-based wire-arc directed energy deposition via uniform equiaxed grains and multiple precipitates - ScienceDirect

Achieving excellent strength–ductility combination of Al-aided  Mg–Gd–Al–Zr–Zn alloys fabricated by cold metal transfer-based wire-arc  directed energy deposition via uniform equiaxed grains and multiple  precipitates - ScienceDirectAchieving excellent strength–ductility combination of Al-aided Mg–Gd–Al–Zr–Zn alloys fabricated by cold metal transfer-based wire-arc directed energy deposition via uniform equiaxed grains and multiple precipitates - ScienceDirect,One-pot fabrication CoS2 modified MoS2-g-C3N4 ternary heterostructure  composites with enhanced photocatalytic hydrogen production from water -  ScienceDirectOne-pot fabrication CoS2 modified MoS2-g-C3N4 ternary heterostructure composites with enhanced photocatalytic hydrogen production from water - ScienceDirect,Achieving excellent strength–ductility combination of Al-aided  Mg–Gd–Al–Zr–Zn alloys fabricated by cold metal transfer-based wire-arc  directed energy deposition via uniform equiaxed grains and multiple  precipitates - ScienceDirectAchieving excellent strength–ductility combination of Al-aided Mg–Gd–Al–Zr–Zn alloys fabricated by cold metal transfer-based wire-arc directed energy deposition via uniform equiaxed grains and multiple precipitates - ScienceDirect,Microstructure and Properties Characteristics of Ni–25Cr–10Fe–xSi (x = 1,  2, 3, 4) Alloys for Waste Incineration Equipment | Metallurgical and  Materials Transactions AMicrostructure and Properties Characteristics of Ni–25Cr–10Fe–xSi (x = 1, 2, 3, 4) Alloys for Waste Incineration Equipment | Metallurgical and Materials Transactions A,Advanced matter-element extension model and machine learning for  source-specific probabilistic health risk assessment of heavy  metals/metaloids in soil-rose systems in Kushui, Northwest China -  ScienceDirectAdvanced matter-element extension model and machine learning for source-specific probabilistic health risk assessment of heavy metals/metaloids in soil-rose systems in Kushui, Northwest China - ScienceDirect

 

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