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INTERFACES AND PROPERTIES OF TIC/alpha-C:H NANOCOMPOSITE COATINGS

机译:Tic /α-C:H纳米复合涂层的界面和性质

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In this paper we deal with interfaces involved in TiC/a-C:H nanocomposite coatings, at three different length scales namely coating interface adjacent to the substrate (micron scale), boundary of columnar structures (sub-micron scale) and phase interface between nanocrystallite and amorphous matrix (nanometer scale), and their influences on the properties of the coatings. The coating interface has to be engineered to optimize the adhesion of the coatings, which is a primary requisite for their function. Columnar boundaries (CBs) are harmful as preferential cracking path, resulting in low fracture toughness. Therefore, our efforts are devoted to eliminate CBs by adjusting the deposition parameters. The amorphous carbon matrix is intrinsically brittle as a common characteristic of amorphous materials. Introducing nanocrystalline ceramic particles into an amorphous matrix generates a high density of interphase interfaces that assist in crack path delocalization and termination of crack propagation. Especially, the localization of shear in amorphous matrix is hampered by the particles, leading to a spread of the cracks that enhances the toughness provided the size of TiC particles becomes of the same size as the separation between the crystalline particles. Based on the experimental results, guidelines for the development and optimization of highly adherent and tough nanocomposite coatings are provided.
机译:在本文中,我们处理TiC / Ac:H纳米复合涂层的界面,三种不同的长度缩放含有与基板(微米级)相邻的涂布界面,柱状结构(亚微米级)的边界和纳米晶体和纳米晶体之间的相界面非晶基质(纳米级)及其对涂层性质的影响。必须设计涂层界面以优化涂层的粘附性,这是其功能的主要必要条件。柱状边界(CBS)是有害的优先开裂路径,导致低断裂韧性。因此,我们的努力致力于通过调整沉积参数来消除CBS。无定形碳基质本质上是脆性的作为非晶材料的常见特征。将纳米晶陶瓷颗粒引入非晶基质中产生高密度的相邻界面,其有助于裂纹路径分层和裂缝繁殖的终止。特别地,通过颗粒阻碍了非晶基质中剪切的定位,导致裂缝的扩散,其提高了韧性,条件是由于颗粒的尺寸变得与结晶颗粒之间的分离相同的尺寸。基于实验结果,提供了高度粘附和坚韧纳米复合涂层的开发和优化的指导。

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