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首页> 外文期刊>Materials Science and Engineering >Interfacial fracture for TiN/SiN_x nano-multilayer coatings on Si(111) characterized by nanoindentation experiments
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Interfacial fracture for TiN/SiN_x nano-multilayer coatings on Si(111) characterized by nanoindentation experiments

机译:Si(111)上TiN / SiN_x纳米多层涂层的界面断裂通过纳米压痕实验表征

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摘要

Fracture behavior for TiN/SiN_x nano-multilayer coatings on Si(111) substrates, deposited using magnetron sputtering Ti and Si, is characterized by nanoindentation experiments, and the morphologies of the indentations are revealed by scanning electron microscopy, along with in situ atomic force microscopy (AFM) in nanoindentation experiments. During nanoindentation experiments, under the condition that the displacement limit mode is used and a strain rate is kept at 0.05/s, an interfacial (between the coating and substrate) fracture is observed as the maximum indenter displacement into the coating reaches 2500 ran, and the corresponding unloading segment in the load-displacement curve shows an obvious discontinuity. This discontinuity is attributed to the rebound of the detached film during unloading. The interfacial fracture toughness for TiN/SiN_x nano-multilayer coating on Si(111), which is strongly dependent on the preferred orientation for the TiN layer as well as the interfaces between TiN and SiN_x layer in the multilayer stack, is calculated.
机译:利用纳米压痕实验表征了使用磁控溅射Ti和Si沉积的Si(111)基底上TiN / SiN_x纳米多层涂层的断裂行为,并通过扫描电子显微镜和原位原子力揭示了压痕的形貌纳米压痕实验中的显微镜(AFM)。在纳米压痕实验中,在使用位移极限模式且应变速率保持在0.05 / s的条件下,观察到当最大压头向涂层中的最大位移达到2500 ran时,界面(涂层与基材之间)破裂。荷载-位移曲线中相应的卸荷段表现出明显的不连续性。这种不连续性归因于在卸载过程中分离的薄膜的回弹。计算了Si(111)上的TiN / SiN_x纳米多层涂层的界面断裂韧性,该界面断裂韧性很大程度上取决于TiN层的首选取向以及多层堆叠中TiN和SiN_x层之间的界面。

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