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Small scale fracture behaviour of multilayer TiN/CrN systems: Assessment of bilayer thickness effects by means of ex-situ tests on FIB-milled micro-cantilevers

机译:多层锡/ CRN系统的小规模断裂行为:通过在FIB铣削微悬臂器上进行前u试验评估双层厚度效应

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摘要

TiN/CrN multilayered PVD coatings are known to exhibit outstanding micromechanical properties and wear resistance. On the other hand, information on their small scale fracture behaviour is rather scarce. The present work aims to address it by testing to failure FIB-milled microbeams of multilayer TiN/CrN systems with different bilayer periods (8, 19 and 25 nm). In doing so, these micrometric specimens are first FIB notched, and thus deflected by means of a nanoindentation system. It is found that multilayer architecture translates into a beneficial synergic effect regarding critical load for reaching unstable failure; and thus, on energy absorption at fracture. Such behaviour is associated with small scale crack deflection as main toughening mechanism.
机译:已知锡/ CRN多层PVD涂层表现出出色的微机械性能和耐磨性。另一方面,关于他们小规模骨折行为的信息相当稀缺。目前的工作旨在通过测试具有不同双层周期(8,19和25nm)的多层锡/ CRN系统的故障FIB研磨的Microbeams来解决它。在这样做时,这些微米标本是第一个FIB缺口,因此通过纳米狭窄系统偏转。发现多层体系结构转化为关于临时负荷的有益协同效果,以实现不稳定的故障;因此,在骨折处的能量吸收上。这种行为与小规模裂缝偏转有关,作为主要增韧机制。

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