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SKD11模具钢的强流脉冲电子束辐照改性 被引量:2
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作者 郝胜智 李旻才 +2 位作者 张向东 thierry grosdidier 董闯 《核技术》 CAS CSCD 北大核心 2009年第3期214-216,共3页
本文介绍强流脉冲电子束(HCPEB)材料表面改性原理,采用模具钢SKD11进行辐照处理实验。对处理样品表面进行形貌观察,发现熔坑面密度及粗糙度随脉冲处理次数的增加而减小。X射线衍射分析证实,多脉冲处理条件下表面改性层中碳化物发生溶解... 本文介绍强流脉冲电子束(HCPEB)材料表面改性原理,采用模具钢SKD11进行辐照处理实验。对处理样品表面进行形貌观察,发现熔坑面密度及粗糙度随脉冲处理次数的增加而减小。X射线衍射分析证实,多脉冲处理条件下表面改性层中碳化物发生溶解,形成高奥氏体含量的重熔组织,而过多的能量注入会使奥氏体发生再度分解。磨损性能测试表明,在低电压(19.8kV)处理情况下,耐磨损性能得到改善,脉冲次数为8次时处理样品的耐磨性达到最佳,这与表面改性层中碳化物及奥氏体的相对含量变化密切相关。 展开更多
关键词 强流脉冲电子束 熔坑 粗糙度 显微结构 耐磨性
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Impact of severe plastic deformation on kinetics and thermodynamics of hydrogen storage in magnesium and its alloys 被引量:2
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作者 Kaveh Edalati Etsuo Akiba +10 位作者 Walter J.Botta Yuri Estrin Ricardo Floriano Daniel Fruchart thierry grosdidier Zenji Horita Jacques Huot Hai-Wen Li Huai-Jun Lin Ádám Révész Michael J.Zehetbauer 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第15期221-239,共19页
Magnesium and its alloys are the most investigated materials for solid-state hydrogen storage in the form of metal hydrides,but there are still unresolved problems with the kinetics and thermodynamics of hydrogenation... Magnesium and its alloys are the most investigated materials for solid-state hydrogen storage in the form of metal hydrides,but there are still unresolved problems with the kinetics and thermodynamics of hydrogenation and dehydrogenation of this group of materials.Severe plastic deformation(SPD)methods,such as equal-channel angular pressing(ECAP),high-pressure torsion(HPT),intensive rolling,and fast forging,have been widely used to enhance the activation,air resistance,and hydrogenation/dehydrogenation kinetics of Mg-based hydrogen storage materials by introducing ultrafine/nanoscale grains and crystal lattice defects.These severely deformed materials,particularly in the presence of alloying additives or second-phase nanoparticles,can show not only fast hydrogen absorption/desorption kinetics but also good cycling stability.It was shown that some materials that are apparently inert to hydrogen can absorb hydrogen after SPD processing.Moreover,the SPD methods were effectively used for hydrogen binding-energy engineering and synthesizing new magnesium alloys with low thermodynamic stability for reversible low/room-temperature hydrogen storage,such as nanoglasses,high-entropy alloys,and metastable phases including the high-pressureγ-MgH2 polymorph.This work reviews recent advances in the development of Mg-based hydrogen storage materials by SPD processing and discusses their potential in future applications. 展开更多
关键词 Severe plastic deformation(SPD) Nanostructured materials Ultrafine-grained(UFG)materials Magnesium hydride(MgH_(2)) Magnesium-based alloys Hydrogen absorption Hydrogenation kinetics Hydrogen storage thermodynamics
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