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固液态合金流变性能对于流动型铸造缺陷形成影响机制的分析
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作者 王炳德 刘莹 +2 位作者 李德富 王本贤 王忠堂 《金属成形工艺》 2003年第2期39-41,共3页
根据合金在固液共存状态的流变性能本构方程 ,结合凝固时补缩流动的特点 ,采用多孔介质模型 ,推导了适用于具有B K模型的固液态合金在枝晶骨架中流动的公式 ,分析了缩松的形成机理 ;运用非牛顿流体力学原理 ,推导了固液态合金中气泡、... 根据合金在固液共存状态的流变性能本构方程 ,结合凝固时补缩流动的特点 ,采用多孔介质模型 ,推导了适用于具有B K模型的固液态合金在枝晶骨架中流动的公式 ,分析了缩松的形成机理 ;运用非牛顿流体力学原理 ,推导了固液态合金中气泡、夹杂物、不同密度合金组元等在合金中作stokes流动的速度公式 ,提出了气孔夹杂。 展开更多
关键词 固液态合金 流变性能 铸造缺陷 缩松 气孔
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Bottom-up fabrication of three-dimensional nanoporous gold from Au nanoparticles using nanowelding
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作者 Moxia Li Yaomengli Xu +5 位作者 Bingwu Liu Jianfang Liu Xuguang Sun Dongmei Deng Xidong Duan Jiawen Hu 《Science China Materials》 SCIE EI CAS CSCD 2022年第10期2755-2762,共8页
Three-dimensional(3D)nanoporous gold(NPG)shows promising applications in various fields.However,its most common fabrication strategy(i.e.,dealloying)faces the problems of high energy consumption,resource waste,the use... Three-dimensional(3D)nanoporous gold(NPG)shows promising applications in various fields.However,its most common fabrication strategy(i.e.,dealloying)faces the problems of high energy consumption,resource waste,the use of corrosive solvent,and residue of the sacrificial component.Here,we report a general bottom-up nanowelding strategy to fabricate high-purity NPG from Au nanoparticles(NPs),accomplished via interfacial self-assembly of the Au NPs into monolayer Au NP film,its subsequent layer-by-layer transfer onto a solid substrate,and direct current(DC)nanowelding.We show that the DC nanowelding process can gradually evolve the layered Au NP film into NPG at low temperatures within 10 s,while not damaging their spherical structure.This is because during the nanowelding,electrons are preferred to be localized at the high-resistance NP/NP junctions,whose electrostatic repulsion in turn strengthens their surface atom diffusion to initiate a mild solid-state diffusion nanowelding.Furthermore,when using differently sized Au NPs as the starting building blocks,this strategy allows readily tuning the thickness,ligament size,and pore size,thereby offering great flexibility to create functional porous nanomaterials,e.g.,electrocatalyst for methanol electrooxidation.Surely,low-temperature nanowelding can play a role for the production of diverse nanoporous materials from other NPs beyond Au NPs. 展开更多
关键词 nanoporous gold nanowelding Au nanoparticles surface atom diffusion ELECTROCATALYST
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