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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructural evolution, mechanical properties and strengthening mechanism of TiN/Ni nanocomposite film
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Microstructural evolution, mechanical properties and strengthening mechanism of TiN/Ni nanocomposite film

机译:锡/镍纳米复合膜的微观结构演化,力学性能和强化机理

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摘要

A series of TiN/Ni nanocomposite films with different Ni content were synthesized by reactive magnetron sputtering. The microstructural evolution, mechanical properties and strengthening mechanism of TiN/Ni nanocomposite film were studied. When Ni:Ti ratio is less than 1:24, the small amount of Ni can be dissolved in the TiN matrix, leading to the slight decrease of the hardness and elastic modulus. When Ni:Ti ratio rises to 4:21, Ni inclines to separate from TiN due to the thermodynamic incompatibility as an interfacial phase and grow coherently with adjacent TiN crystallites. As a result, the TiN/Ni film was remarkably strengthened with the maximal hardness and elastic modulus of 33.3 GPa and 373 GPa. As Ni:Ti ratio further increases to 5:20, Ni interface transforms into amorphous state, leading to the destruction of the epitaxial growth structure and the rapid decrease of hardness and elastic modulus. The strengthening effect of TiN/Ni nanocomposite film can be attributed to the coherent interface between Ni interfacial layers and TiN crystallites. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过反应性磁控溅射合成具有不同Ni含量的一系列锡/ Ni纳米复合膜。研究了锡/镍纳米复合膜的微观结构演化,机械性能和强化机理。当Ni:Ti比率小于1:24时,少量的Ni可以溶解在锡基质中,导致硬度和弹性模量的略微降低。当Ni:Ti比率上升至4:21时,由于热力学不相容性作为界面相,Ni倾向于与锡分开,并且与相邻的锡结晶相干,生长。结果,具有33.3GPa和373GPa的最大硬度和弹性模量显着强化锡/ Ni膜。作为Ni:Ti比率进一步增加到5:20,Ni界面变为无定形状态,导致外延生长结构的破坏和硬度和弹性模量的快速降低。锡/镍纳米复合膜的强化效果可归因于Ni界面层和锡结晶之间的相干界面。 (c)2016 Elsevier B.v.保留所有权利。

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