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Effect of coating thickness on the deformation behaviour of diamond-like carbon-silicon system

机译:涂层厚度对类金刚石碳硅体系变形行为的影响

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摘要

The effect of coating thickness on the deformation behaviour of diamond-like carbon (DLC) coatings on silicon substrates was investigated. Following nanoindentation of a 0.6 μm thick DLC coating, the subsurface microstructures were characterized and the data was compared to prior studies on a similar, but thicker coating. Indentation resulted in localized plastic compression in the coating without any through-thickness cracking. It was shown that the discontinuities in the load-displacement curves appeared at lower loads for the thinner coating. Accordingly, the silicon substrate exhibited cracking, plastic deformation and phase transformation at significantly lower loads than in the case of the thicker coating. Further, the widths, parallel to the interface, over which slip and the phase transformation zone are spread out in the substrate, was found to increase with the thickness of the coating. The mechanism responsible for the first pop-in was found to change from phase transformation in uncoated silicon to dislocation nudeation in the presence of the coating.
机译:研究了涂层厚度对硅基底上类金刚石碳(DLC)涂层变形行为的影响。在对0.6μm厚的DLC涂层进行纳米压痕之后,对表面下的微观结构进行了表征,并将数据与类似但更厚的涂层上的先前研究进行了比较。压痕导致涂层中的局部塑性压缩,没有任何贯穿厚度的裂纹。结果表明,对于较薄的涂层,载荷-位移曲线中的不连续性出现在较低载荷下。因此,与较厚涂层的情况相比,硅基板在明显更低的载荷下表现出开裂,塑性变形和相变。此外,发现平行于界面的宽度随着其厚度在涂层中在基底上散布滑移和相变区而在界面上扩展。发现导致第一次弹出的机制从存在涂层的情况下的未涂层硅的相变变为位错裸露。

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