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用于表征环境辅助开裂的纳米至微米长度尺度技术:评估

Nanometre to micrometre length-scale techniques for characterising environmentally-assisted cracking: An appraisal.

作者信息

Clark Ronald N, Burrows Robert, Patel Rajesh, Moore Stacy, Hallam Keith R, Flewitt Peter E J

机构信息

National Nuclear Laboratory Limited, 102B, Stonehouse Park, Sperry Way, Stonehouse, Gloucestershire, GL10 3UT, United Kingdom.

University of Bristol, Interface Analysis Centre, HH Wills Physics Laboratory, Tyndall Avenue, Bristol, BS8 1TL, United Kingdom.

出版信息

Heliyon. 2020 Mar 11;6(3):e03448. doi: 10.1016/j.heliyon.2020.e03448. eCollection 2020 Mar.

Abstract

The appraisal is strongly focussed on challenges associated with the nuclear sector, however these are representative of what is generally encountered by a range of engineering applications. Ensuring structural integrity of key nuclear plant components is essential for both safe and economic operation. Structural integrity assessments require knowledge of the mechanical and physical properties of materials, together with an understanding of mechanisms that can limit the overall operating life. With improved mechanistic understanding comes the ability to develop predictive models of the service life of components. Such models often require parameters which can be provided only by characterisation of processes occurring over a range of scales, with the sub-micrometre-scale being particularly important, but also challenging. This appraisal reviews the techniques currently available to characterise microstructural features at the nanometre to micrometre length-scale that can be used to elucidate mechanisms that lead to the early stages of environmentally-assisted crack formation and subsequent growth. Following an appraisal of the techniques and their application, there is a short discussion and consideration for future opportunities.

摘要

该评估主要聚焦于与核领域相关的挑战,然而这些挑战代表了一系列工程应用中普遍会遇到的情况。确保关键核电站部件的结构完整性对于安全和经济运行至关重要。结构完整性评估需要了解材料的力学和物理性能,同时还需要理解那些可能会限制整体使用寿命的机制。随着对机理理解的加深,就有能力开发部件使用寿命的预测模型。此类模型通常需要一些参数,而这些参数只有通过对在一系列尺度上发生的过程进行表征才能提供,其中亚微米尺度尤为重要,但也颇具挑战性。本评估回顾了目前可用于表征纳米至微米长度尺度微观结构特征的技术,这些技术可用于阐明导致环境辅助裂纹形成早期阶段及后续扩展的机制。在对这些技术及其应用进行评估之后,还对未来机遇进行了简短的讨论和思考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aeb5/7068651/2d9880bb8d81/gr1.jpg

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