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Mechanical Response of He-Implanted Amorphous SiOC/Crystalline Fe Nanolaminates

机译:He注入非晶SiOC /晶体Fe纳米复合材料的力学响应

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This study investigates the microstructural evolution and mechanical response of sputter-deposited amorphous silicon oxycarbide (SiOC)/crystalline Fe nanolaminates, a single layer SiOC film, and a single layer Fe film subjected to ion implantation at room temperature to obtain a maximum He concentration of 5 at. %. X-ray diffraction and transmission electron microscopy indicated no evidence of implantation-induced phase transformation or layer breakdown in the nanolaminates. Implantation resulted in the formation of He bubbles and an increase in the average size of the Fe grains in the individual Fe layers of the nanolaminates and the single layer Fe film, but the bubble density and grain size were found to be smaller in the former. By reducing the thicknesses of individual layers in the nanolaminates, bubble density and grain size were further decreased. No He bubbles were observed in the SiOC layers of the nanolaminates and the single layer SiOC film. Nanoindentation and scanning probe microscopy revealed an increase in the hardness of both single layer SiOC and Fe films after implantation. For the nanolaminates, changes in hardness were found to depend on the thicknesses of the individual layers, where reducing the layer thickness to 14?nm resulted in mitigation of implantation-induced hardening.
机译:本研究研究了在室温下进行离子注入的溅射沉积非晶碳氧化硅(SiOC)/结晶Fe纳米叠层,单层SiOC膜和单层Fe膜的微观结构演变和力学响应。 5 at。 %。 X射线衍射和透射电子显微镜表明在纳米层压板中没有植入引起的相变或层破裂的证据。注入导致He气泡的形成,并且在纳米叠层的各个Fe层和单层Fe膜中的Fe晶粒的平均尺寸增加,但是发现在前者中气泡密度和晶粒尺寸较小。通过减小纳米层压体中各个层的厚度,气泡密度和晶粒尺寸进一步减小。在纳米叠层的SiOC层和单层SiOC膜中未观察到He气泡。纳米压痕和扫描探针显微镜显示植入后单层SiOC和Fe膜的硬度均增加。对于纳米层压板,发现硬度的变化取决于各个层的厚度,其中将层厚度减小到14?nm可以减轻注入引起的硬化。

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