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Focused ion beam and nanomechanical tests for high resolution surface characterisation: New resources for platinum group metals testing

机译:聚焦离子束和纳米力学测试以实现高分辨率的表面表征:铂族金属测试的新资源

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摘要

Recently, the increasing importance and scope of nanotechnology has extended the need for high resolution characterisation tools beyond their traditional domains. As a consequence, advanced high-resolution tools at the nanoscale are now increasingly used in research and development (R&D) activities, offering the chance for a better understanding of submicron feature size dependence. This paper gives an overview of the synergic application of two high resolution techniques on the platinum group metals (pgms): focused ion beam (FIB) coupled with electron beam imaging, milling and deposition techniques; and nanoindentation testing. After a brief description of both techniques (architecture, probe-sample interaction basics and operation modes), the effectiveness of this combined approach is demonstrated for microstructural and nanomechanical investigations on very small samples. The advantages are low cost, fast and site-specific sample preparation for transition electron microscopy (TEM) analysis; study of the mechanical hardening effect on microstructure and hardness profile at the micron scale; failure analysis; and understanding of plasticity and elasticity behaviour. Two specific case studies related to a platinum-copper alloy for jewellery use and a platinum-rhodium alloy for sensor manufacturing are presented and discussed.
机译:近来,纳米技术的重要性和范围日益增长,已经超出了其传统领域对高分辨率表征工具的需求。结果,现在在研发(R&D)活动中越来越多地使用纳米级的先进高分辨率工具,这为更好地了解亚微米特征尺寸依赖性提供了机会。本文概述了两种高分辨率技术在铂族金属(pgms)上的协同应用:聚焦离子束(FIB)结合电子束成像,研磨和沉积技术;和纳米压痕测试。在对这两种技术(架构,探针-样品相互作用的基础知识和操作模式)进行了简要说明之后,该组合方法的有效性在很小的样品的微观结构和纳米力学研究中得到了证明。优点是用于过渡电子显微镜(TEM)分析的低成本,快速和针对特定地点的样品制备;在微米尺度上研究机械硬化对组织和硬度分布的影响;故障分析;并了解可塑性和弹性行为。提出并讨论了两个与珠宝首饰用铂铜合金和传感器制造用铂铑合金有关的案例研究。

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