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脉冲电沉积制备的富钴过饱和固溶体Co-Cu纳米晶的微观结构演变与力学稳定性

Microstructure Evolution and Mechanical Stability of Supersaturated Solid Solution Co-Rich Nanocrystalline Co-Cu Produced by Pulsed Electrodeposition.

作者信息

Pratama Killang, Barrirero Jenifer, Mücklich Frank, Motz Christian

机构信息

Chair of Materials Science and Methods, Saarland University, 66123 Saarbrücken, Germany.

Department of Metallurgical Engineering, Institute Technology of Bandung, Bandung 40132, Indonesia.

出版信息

Materials (Basel). 2020 Jun 8;13(11):2616. doi: 10.3390/ma13112616.

Abstract

Thick films of supersaturated solid solution nanocrystalline Co-Cu (28 at.% Cu) were synthesized through the pulsed electrodeposition technique. Microstructural changes of nanocrystalline Co-Cu were intensively studied at various annealing temperatures. Annealing at 300 °C results in a spinodal decomposition within the individual grains, with no grain coarsening. On the other hand, distinct phase separation of Co-Cu is detected at annealing temperatures beyond 400 °C. Static micro-bending tests show that the nanocrystalline Co-Cu alloy exhibits a very high yield strength and ductile behavior, with no crack formation. Static micro-bending tests also reported that a large plastic deformation is observed, but no microstructure change is detected. On the other hand, observation on the fatigue resistance of nanocrystalline Co-Cu shows that grain coarsening is observed after conducting the cyclic micro-bending test.

摘要

通过脉冲电沉积技术合成了过饱和固溶体纳米晶Co-Cu(铜含量为28原子%)厚膜。对纳米晶Co-Cu在不同退火温度下的微观结构变化进行了深入研究。在300°C退火会导致单个晶粒内发生调幅分解,且无晶粒粗化现象。另一方面,在400°C以上的退火温度下检测到Co-Cu有明显的相分离。静态微弯曲试验表明,纳米晶Co-Cu合金具有非常高的屈服强度和韧性行为,无裂纹形成。静态微弯曲试验还报告称,观察到了较大的塑性变形,但未检测到微观结构变化。另一方面,对纳米晶Co-Cu耐疲劳性的观察表明,在进行循环微弯曲试验后观察到了晶粒粗化现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f01/7321557/270b3c99a6c7/materials-13-02616-g001.jpg

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