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Journeys of our ancestors: Conservation science approaches to the analysis of cultural material.

机译:我们祖先的旅程:保护科学对文化材料进行分析的方法。

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摘要

The application and use of non-destructive portable x-ray fluorescence (XRF) analysis is a critical tool in the preservation and interpretation of cultural material. Portable XRF instrumentation produce elemental compositional data that is used to reconstruct current artifact composition, which can be related to materials and methods of manufacture, technological practice, as well as object condition and presence of corrosion surfaces. Portable XRF analysis is used to assess a variety of material classes utilized in artifact manufacture. The dissertation research is based on a series of three case studies that represent typical groups of material culture commonly encountered in conservation and conservation science research.;Conservators and conservation scientists frequently undertake analysis and interpretation of disparate groups of materials. Often, these objects are tied together by research questions or themes directed by outside influences including preservation issues requiring action; curatorial research interests; museum exhibition programs; as well as many other cultural heritage stakeholders. To this end, both non-destructive and destructive tools that provide measurements of interest play critical roles in analysis. The case studies have been designed to answer common compositional questions relating to (a) bulk analysis of Chinese coins, (b) characterization of Southwestern ceramic colorants, and, (c) chemical examination of post-depositional manganese dioxide accretions occurring on archaeological ceramic materials. They evaluate the value of data produced using effectiveness of non-destructive portable XRF analysis for the interpretation of archaeological materials. The case studies provide a template for the development of conservation science research, predicated on object preservation, which produce meaningful data for the interpretation and conservation of the analyzed archaeological artifacts. Portable XRF provides useful data that is used to successfully interpret archaeological materials through (a) classification of metal alloys that can be related to published coin data, (b) identification of ceramic colorants and production technologies, and, (c) characterization of post-depositional product composition when used with established visual typologies.
机译:无损便携式X射线荧光(XRF)分析的应用和使用是文化材料保存和解释的关键工具。便携式XRF仪器产生的元素成分数据可用于重建当前的工件成分,这些成分可能与材料和制造方法,技术实践以及物体状况和腐蚀表面的存在有关。便携式XRF分析用于评估人工制品制造中使用的各种材料类别。论文的研究基于三个案例研究,代表了在保护和保护科学研究中经常遇到的典型的物质文化群体。环境保护者和保护科学家经常对不同的物质群体进行分析和解释。通常,这些对象是由外部影响(包括需要采取行动的保存问题)所引起的研究问题或主题联系在一起的;策展研究兴趣;博物馆展览计划;以及许多其他文化遗产利益相关者。为此,提供感兴趣的测量的非破坏性和破坏性工具在分析中都起着至关重要的作用。案例研究旨在回答与(a)中国硬币的大量分析,(b)西南陶瓷着色剂的表征以及(c)考古陶瓷材料上沉积后二氧化锰积垢的化学检查有关的常见组成问题。他们使用无损便携式XRF分析的有效性评估产生的数据价值,以解释考古材料。案例研究为保护科学研究的发展提供了模板,该模板以对象保护为基础,可为解释和保护分析的考古文物提供有意义的数据。便携式XRF提供了有用的数据,这些数据可通过(a)与公开硬币数据相关的金属合金分类,(b)陶瓷着色剂和生产技术的鉴定,以及(c)后期的特征来成功地解释考古材料。与确定的视觉类型一起使用时的沉积产物组成。

著录项

  • 作者

    O'Grady, Caitlin Rose.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Anthropology Archaeology.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 407 p.
  • 总页数 407
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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