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Superplasticity and Microstructure Evolution of Electrodeposited Nanocrystalline Nickel

机译:电沉积纳米晶镍的超塑性和微观结构演化

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Nanocrystalline pure nickel (nc-Ni) was produced by pulse electrodeposition and its superplastic properties at and above room temperature were investigated. The electrodeposited nickel has a narrow grain size distribution with a mean grain size of 70nm. Uniaxial tensile tests at room temperature showed that nc-Ni has a limited plasticity but high tensile strength up to 1GPa at strain rates between 10{sup}(-5) and 10{sup}(-2)s{sup}(-1). However, when the temperature increased to 420 and higher, test specimens showed uniform deformation and the elongation value was larger than 200%. A maximum elongation value of 380% was observed at 450°C and a strain rate of 1.67×10{sup}(-3)s{sup}(-1), SEM and TEM were used to examine the microstructures of the as-deposited and deformed specimens. The results indicated that fracture was caused by intergranular cracking and most cracks were originated from the brittle oxide formed during the tensile test. Grain coarsening was observed in the deformed specimen. The role of temperature and strain on grain growth was evaluated by comparing the microstructure of deformed samples with that of samples statically annealed. Deformation mechanism was discussed based upon the deformed microstructure and strain rate jump tests.
机译:纳米纯镍(NC-Ni)的通过脉冲电,并在和高于室温其超塑性质产生的影响。电解镍具有为70nm的平均晶粒尺寸的窄粒度分布。在室温下单轴拉伸试验表明,NC-Ni具有10 {SUP}之间的有限的可塑性,但高的拉伸强度高达1GPa在应变速率( - 5)和10 {SUP}( - 2)■{SUP}( - 1 )。然而,当温度升高到420和更高,测试标本显示均匀变形和伸长率值大于200%。在450℃观察到的380%的最大伸长率值和的应变速率1.67×10 {SUP}( - 3)■{SUP}( - 1),扫描电镜和透射电镜(TEM)用于检查后原样的微结构沉积和变形样品。结果表明,断裂是由晶界裂纹引起的,最裂纹源于拉伸试验过程中形成的易碎氧化物。在变形的样品中观察到的晶粒粗化。温度和应变的晶粒生长的作用,通过变形样品的微结构与该样品的静态退火比较评价。基于变形组织和应变率跳试验中所讨论的变形机制。

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