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Growth kinetics and texture formation of pyroxene reaction rims in thin films settings

Growth kinetics and texture formation of pyroxene reaction rims in thin films settings
薄膜环境中辉石反应边缘的生长动力学和织构形成
批准号:
168863991
负责人:
Privatdozent Dr. Ralf Milke
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Units
财政年份:
2010
资助国家:
德国
项目状态:
已结题
起止时间:
2009-12-31 至 2017-12-31

项目摘要

项目成果

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中文摘要
翻译
温度驱动扩散控制反应层生长是实验室测量多晶反应扩散的常用方法。将实验结果应用于地壳中由于时间尺度不同而产生的扩散问题,将通过将薄膜内的设置小型化来解决。本文的工作重点是研究刚玉和方长石之间的尖晶石反应层以及橄榄石和石英之间的正辉石层的织构和残余应变。我们将研究两种不同的设置:由衬底和种子层组成的2层系统和由衬底、种子层和反应物层组成的3层系统。该项目旨在作为项目6在实验和分析方面的补充,该项目旨在研究不同应力对纹理形成的影响。在这个FOR 741 D-A-CH提案“纳米尺度工艺和岩土材料特性”中-项目2项目应力不会外部施加到反应样品上,但我们将检测和量化由内部衍生应力引起的晶格应变。这个项目的标志是使用原位方法来观察应变和纹理,不仅在它们的最终状态,而且在它们出现的方式。由于在退火过程中各层(衬底层、种子层和反应物层)的结晶度发生了变化,我们建议采用原位能量色散同步x射线衍射(EDXRD)实验来跟踪生长过程中反应环的发展。在这个实验中,薄膜设置将在一个特殊的反应室中退火,该反应室可以安装在柏林同步加速器设施Bessy的EDDI束流线上。这种特殊的实验装置可以实时监测微观结构和纹理演变,并将该项目提高到卓越的分析水平。为了研究非原位反应层的微观结构、织构和残余应变,该项目强烈支持最新的x射线衍射方法。与高空间分辨率方法相反,这些方法原则上是批量方法。然而,由于我们打算应用于薄膜研究的专门应用(掠入射x射线衍射)以及同步加速器光束的高分辨率,我们实际上解决了反应环的结构特征,这些结构特征在10到100纳米的尺度上,这是微尺度和纳米尺度之间的范围,有时被称为中尺度。该区域对于理解织构和微观结构演变具有特殊的意义,因为通常在这里,净转移反应的能量收支明显受到应变和界面能的贡献的支配。
英文摘要
The temperature driven diffusion controlled growth of reaction layers is an established method for laboratory measurements of reactive diffusion in polycrystals. The problem arising when applying the experimental results to diffusion in the earth crust due to different timescales will be solved by miniaturising the settings within thin films. The proposed work focuses on texture and residual strain in spinel reaction layers between corundum and periclase as well as orthopyroxene layers between olivine and quartz. We will investigate two different kinds of settings: a 2-layer system consisting of substrate and seed layer and a 3-layer system consisting of substrate, seed layer and reactant layer. The proposed project is designed as a complement both in experimental and in analytical aspects to project 6, that aims at the effect of differential stress on texture formation. In this FOR 741 D-A-CH Proposal “Nanoscale Processes and Geomaterials Properties” - Project No. 2 project stress will not be externally applied to the reacting samples, but we will detect and quantify the lattice strain that is induced by internally derived stress. The trade mark of this project is the use of use in-situ methods to observe strain and texture not only in their final states but also the way they emerge. Because the crystallinity of the layers (substrate, seed layer as well as reactant) changes during the annealing process we propose to perform in-situ energy dispersive synchrotron X-ray diffraction (EDXRD) experiments to follow the development of the reaction rim during the growth process. For this experiment the thin film setting will be annealed within a special reaction chamber, which can be installed at the EDDI beam line of the Berlin synchrotron facility Bessy. This special experimental setup enables a real time monitoring of microstructure and texture evolution and will raise the project to an outstanding analytical level. To investigate the microstructure, texture and residual strain of the reaction layers ex-situ, the project bears strongly on up-to-date X-ray diffraction methods. These are in principle bulk methods as opposed to high spatial resolution methods. However due to the specialised applications for thin film investigations that we intend to apply (grazing incidence X-ray diffraction) as well as the high resolution of synchrotron beams we actually address structural features in reaction rims that are on a scale of 10s to 100s of nanometers, that is the range between micro- and nanoscale that is sometimes referred to as mesoscale. This region is of special interest for the understanding of texture and microstructure evolution, because typically here the energy budget of net-transfer reactions becomes clearly dominated by the contributions of strain and interface energy.
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  • 批准号:
    51078108
  • 项目类别:
    面上项目
  • 资助金额:
    36.0万元
  • 批准年份:
    2010
  • 负责人:
    丁杰
  • 依托单位:
水合物储存氢气的应用基础研究
  • 批准号:
    50806050
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    20.0万元
  • 批准年份:
    2008
  • 负责人:
    谢应明
  • 依托单位: