In Situ Metallography Applications in the Pipeline Industry

IF 0.5 4区 材料科学 Q4 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
B. Amend, M. Gould, P. Veloo, O. Oneal, R. González, N. Switzner
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引用次数: 1

Abstract

The Merriam-Webster Dictionary defines metallography as “a study of the structure of metals, especially with the microscope.” The structure of a steel visible at high magnification can reveal information about how the steel was formed or heat-treated, the general “quality” of the steel, whether any observed discontinuities originated during manufacturing or while the component was in service, and the extent to which properties may be consistent across the wall thickness. Microstructural features such as grain size, the amount and distribution of inclusions, and the types and amounts of different microstructural phases are known to influence a material’s properties. In some cases, the observed attributes are qualitatively characterized. In other cases, manual or digital image analysis facilitates quantitative descriptions of attributes such as grain size, the percent of a selected phase, or inclusions that are present. Typically, small sections are cut from the pipe or other component and metallographic sample preparation and examination are performed in a laboratory. When destructive sampling is impractical, the specimen preparation, visual examination, and related photo documentation can be performed nondestructively in the field. That process is known as “in situ metallography” and is the subject of this paper.
原位金相技术在管道工业中的应用
韦氏词典将金相学定义为“对金属结构的研究,尤指用显微镜进行的研究”。高倍放大镜下可见的钢的结构可以揭示有关钢的形成或热处理方式的信息,钢的一般“质量”,是否有在制造过程中或部件使用时产生的观察到的不连续性,以及在多大程度上性能可能在壁厚上一致。微观结构特征,如晶粒尺寸、夹杂物的数量和分布,以及不同微观结构相的类型和数量,都会影响材料的性能。在某些情况下,观察到的属性是定性的。在其他情况下,手动或数字图像分析有助于对诸如粒度、所选相的百分比或存在的内含物等属性的定量描述。通常,从管道或其他部件上切下一小段,并在实验室中进行金相样品制备和检查。当破坏性取样不可行时,标本准备、目视检查和相关的照片记录可以在现场进行无损检测。这一过程被称为“原位金相学”,也是本文的主题。
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来源期刊
Materials Evaluation
Materials Evaluation 工程技术-材料科学:表征与测试
CiteScore
0.90
自引率
16.70%
发文量
35
审稿时长
6-12 weeks
期刊介绍: Materials Evaluation publishes articles, news and features intended to increase the NDT practitioner’s knowledge of the science and technology involved in the field, bringing informative articles to the NDT public while highlighting the ongoing efforts of ASNT to fulfill its mission. M.E. is a peer-reviewed journal, relying on technicians and researchers to help grow and educate its members by providing relevant, cutting-edge and exclusive content containing technical details and discussions. The only periodical of its kind, M.E. is circulated to members and nonmember paid subscribers. The magazine is truly international in scope, with readers in over 90 nations. The journal’s history and archive reaches back to the earliest formative days of the Society.
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