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首页> 外文期刊>Surface & Coatings Technology >Alloying effects on the structure and elastic properties of hard coatings based on ternary transition metal (M = Ti, Zr or Ta) nitrides
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Alloying effects on the structure and elastic properties of hard coatings based on ternary transition metal (M = Ti, Zr or Ta) nitrides

机译:合金化对基于三元过渡金属(M = Ti,Zr或Ta)氮化物的硬质涂层的结构和弹性性能的影响

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摘要

Multicomponent alloying is an effective design route to increase toughening in hard nitride-based coatings.We provide density functional theory calculations and experimental assessment of the elastic properties of a series of ternary transition metal nitride coatings. M1_(1 ? x)M2_xN films (M1, M2 = Ti, Zr, Ta) were elaborated by reactive magnetron co-sputtering. The structural (texture and microstructure) and growth morphology evolution as a function of film thickness and chemical composition were investigated by X-ray diffraction, X-ray reflectivity, electron probe microanalysis and scanning electron microscopy. The effective elastic constants, C_(33) and C_(44), were obtained from longitudinal and transverse sound velocity measurements, using picosecond ultrasonics (PU) and Brillouin light scattering (BLS), respectively.Weemploy Blackman diagram, as well as Pugh and Pettifor criteria, to derive trends in elastic anisotropy, bonding character and brittleness vs. ductility. The influence of microstructure and preferred orientation on the elastic response of polycrystalline films is discussed. For Ta-rich TiTaN and TaZrN systems, the formation of a nanocomposite system consisting of a mixture of cubic and hexagonal phases has a beneficial contribution to toughening.
机译:多组分合金化是提高硬质氮化物基涂层增韧性的有效设计途径。我们提供密度泛函理论计算和一系列三元过渡金属氮化物涂层弹性性能的实验评估。 M1_(1×x)M2_xN薄膜(M1,M2 = Ti,Zr,Ta)通过反应磁控共溅射制成。通过X射线衍射,X射线反射率,电子探针显微分析和扫描电子显微镜研究了结构(质地和微观结构)和生长形态演变与膜厚度和化学组成的关系。有效弹性常数C_(33)和C_(44)分别通过皮秒超声(PU)和布里渊光散射(BLS)从纵向和横向声速测量获得.Weemploy Blackman图以及Pugh和Pettifor标准,以得出弹性各向异性,粘结特性和脆性与延展性的趋势。讨论了微观结构和优选取向对多晶膜弹性响应的影响。对于富含Ta的TiTaN和TaZrN体系,形成由立方相和六方相的混合物组成的纳米复合体系对增韧具有有益的作用。

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