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Inter-Relationship between Coating Micro/Nanostructure and the Tribological Performance of Zr–C Gradient Coatings

机译:涂层微/纳米结构与ZR-C梯度涂层的摩擦学性能之间的相互关系

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The research presented in this article concerns Zr–C gradient coatings that were deposited on HS6-5-2 steel by reactive magnetron sputtering from the Zr target in appropriately programmed C2H2 mass flow rate, resulting in various profiles of atomic carbon concentrations in the coating and consequently in spatial change of the properties (H, E, …) and behavior (H/E, H3/E2, We). In particular, the characteristic changes in hardness and Young’s modulus in the Zr–C coatings represented approximately by the bell curve, which has a maximum at the content of about 50 at.% C, were an inspiration to study the behavior of gradient coatings with carbon content in the range of 0–50 and 50–85 at.% with the same hardness change profile. The obtained results indicate that, firstly, the gradient of spatial changes in the coating composition increases their resistance to cohesive damage in comparison to non-gradient coatings, and, secondly, the results show that high hardness is a desired property but not sufficient to ensure adequate coating performance. Independently, an appropriate nano/microstructural structure is necessary, which determines their tribological behavior. In particular, in the case of the tested Zr–C coatings, the obtained results indicate that gradient coatings with a carbon content in the range of 50–85 at.% have better properties, characterized by the critical force Lc2, wear, coefficient of friction, H/E and H3/E2 ratios.
机译:本文提出的研究涉及通过在适当编程的C2H2质量流量的Zr靶中通过反应磁控溅射沉积在HS6-5-2钢上的Zr-C梯度涂层,从而产生涂层中的原子碳浓度的各种曲线因此,在性质(H,E,......)和行为的空间变化中(H / E,H3 / E2,我们)。特别地,大约由钟曲线表示的Zr-C涂层中的硬度和杨氏模量的特征变化,其在约50℃的含量下具有最大值。%C,是研究梯度涂层的行为的启发碳含量在0-50和50-85的范围内。%,具有相同的硬度变化曲线。得到的结果表明,与非梯度涂层相比,涂料组合物中空间变化的梯度增加了它们对粘性损伤的抗性损伤,其结果表明,高硬度是所需的性质,但不足以确保足够的涂层性能。独立地,需要适当的纳米/微观结构结构,这决定了它们的摩擦学行为。特别地,在所测试的Zr-C涂层的情况下,所获得的结果表明与在50-85的范围内的碳含量梯度的涂层。%有更好的性能,其特征在于,所述临界力器Lc2,磨损,系数的摩擦,H / E和H3 / E2比率。

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