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Enhancement of the mechanical properties of AZ31 magnesium alloy via nanostructured hydroxyapatite thin films fabricated via radio-frequency magnetron sputtering

机译:射频磁控溅射制备纳米结构羟基磷灰石薄膜增强AZ31镁合金的力学性能

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摘要

The structure, composition and morphology of a radio-frequency (RF) magnetron sputter-deposited dense nano-hydroxyapatite (HA) coating that was deposited on the surface of an AZ31 magnesium alloy were characterized using AFM, SEM, EDX and XRD. The results obtained from SEM and XRD experiments revealed that the bias applied during the deposition of the HA coating resulted in a decrease in the grain and crystallite size of the film having a crucial role in enhancing the mechanical properties of the fabricated biocomposites. A maximum hardness of 9.04 GPa was found for the HA coating, which was prepared using a bias of -50 V. The hardness of the HA film deposited on the grounded substrate (GS) was found to be 4.9 GPa. The elastic strain to failure (H/E) and the plastic deformation resistance (H-3/E-2) for an indentation depth of 50 nm for the HA coating fabricated at a bias of -50 V was found to increase by similar to 30% and similar to 74%, respectively, compared with the coating deposited at the GS holder. The nanoindentation tests demonstrated that all of the HA coatings increased the surface hardness on both the microscale and the nanoscale. Therefore, the results revealed that the films deposited on the surface of the AZ31 magnesium alloy at a negative substrate bias can significantly enhance the wear resistance of this resorbable alloy. (C) 2015 Elsevier Ltd. All rights reserved.
机译:利用AFM,SEM,EDX和XRD对沉积在AZ31镁合金表面的射频(RF)磁控溅射沉积致密纳米羟基磷灰石(HA)涂层的结构,组成和形貌进行了表征。从SEM和XRD实验获得的结果表明,在HA涂层的沉积过程中施加的偏压导致膜的晶粒和微晶尺寸的减小,这对于增强所制造的生物复合材料的机械性能具有关键作用。发现HA涂层的最大硬度为9.04 GPa,该硬度是使用-50 V偏压制备的。沉积在接地基板(GS)上的HA膜的硬度为4.9 GPa。发现在-50 V偏压下制造的HA涂层在50 nm压痕深度下的断裂破坏弹性应变(H / E)和塑性变形抵抗力(H-3 / E-2)增加了,类似于与在GS支架上沉积的涂层相比,分别为30%和74%。纳米压痕测试表明,所有的HA涂层均在微米级和纳米级上提高了表面硬度。因此,结果表明,在负衬底偏压下沉积在AZ31镁合金表面上的膜可以显着提高这种可吸收合金的耐磨性。 (C)2015 Elsevier Ltd.保留所有权利。

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