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负压实型铸造金属基复合材料的成型理论研究 被引量:1
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作者 崔益华 陶杰 沃丁柱 《南京航空航天大学学报》 EI CAS CSCD 北大核心 2002年第3期221-225,共5页
负压实型铸造金属基复合材料的合金液前沿受到气化模气化产生的气体阻力 Pe、凝固阻力 Pf、毛细作用力 Pc、自身重力 G、纤维间的摩擦阻力 f以及充型时端部紊流引起的非线性力等 ,其中气体的阻力、凝固阻力、毛细作用力是主要的作用力... 负压实型铸造金属基复合材料的合金液前沿受到气化模气化产生的气体阻力 Pe、凝固阻力 Pf、毛细作用力 Pc、自身重力 G、纤维间的摩擦阻力 f以及充型时端部紊流引起的非线性力等 ,其中气体的阻力、凝固阻力、毛细作用力是主要的作用力。文中通过分析影响这些作用力的因素 ,提出了改善合金液充填的有效途径 :严格控制气化模中纤维的分布形态 ,使得合金液的充填速度均匀 ;控制浇注过程中的工艺参数 ;对纤维进行适当的表面处理 。 展开更多
关键词 负压实型铸造 金属基复合材料 成型理论 理论研究 浸渗 润湿 影响因素 浇注
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A review of 3D graphene materials for energy storage and conversion
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作者 WU Zi-yuan XU Chi-wei +2 位作者 ZENG Jin-jue JIANG Xiang-fen WANG Xue-bin 《新型炭材料(中英文)》 北大核心 2025年第3期477-518,共42页
Three-dimensional(3D)graphene monoliths are a new carbon material,that has tremendous potential in the fields of energy conversion and storage.They can solve the limitations of two-dimensional(2D)graphene sheets,inclu... Three-dimensional(3D)graphene monoliths are a new carbon material,that has tremendous potential in the fields of energy conversion and storage.They can solve the limitations of two-dimensional(2D)graphene sheets,including interlayer restacking,high contact resistance,and insufficient pore accessibility.By constructing interconnected porous networks,3D graphenes not only retain the intrinsic advantages of 2D graphene sheets,such as high specific surface area,excellent electrical and thermal conductivities,good mechanical properties,and outstanding chemical stability,but also enable efficient mass transport of external fluid species.We summarize the fabrication methods for 3D graphenes,with a particular focus on their applications in energy-related systems.Techniques including chemical reduction assembly,chemical vapor deposition,3D printing,chemical blowing,and zinc-tiered pyrolysis have been developed to change their pore structure and elemental composition,and ways in which they can be integrated with functional components.In terms of energy conversion and storage,they have found broad use in buffering mechanical impacts,suppressing noise,photothermal conversion,electromagnetic shielding and absorption.They have also been used in electrochemical energy systems such as supercapacitors,secondary batteries,and electrocatalysis.By reviewing recent progress in structural design and new applications,we also discuss the problems these materials face,including scalable fabrication and precise pore structure control,and possible new applications. 展开更多
关键词 GRAPHENE 3D network SYNTHESIS Energy storage Energy conversion
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