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X 射线衍射分析
2008. 9
Outline
Introduction
Materials Characterization
Comparison of some test methods
XRD
History retrospection
Nature and production of X ray
Interaction of X rays and materials
What is Materials Science and Engineering ?
Materials science investigates the relationships that exist between
the structure and properties of materials
? Materials engineering engineers the structure of materials to
produce substances with a predetermined set of properties
过程
Processing
结构
Structure
性能 效能 Properties
结构形成过程
“材料工艺”
中心环节
材料学基础
构件、器件的制备
“材料选择”
Performance
Materials Science and Engineering
Goal/means
Cause/effect
Structure
Properties
Structure-Property Linkages
MSE develops from physics, chemistry and mathematics, and is a bridge between science and engineering. The physics and chemistry are needed to understand why Materials behave in certain ways.
研究材料组成、结构、性能与使用效能之间关系,最终实现按要求设计材料的目的。为获得所需性能指标的材料,必须考虑适宜的材料合成、制备、加工等研究技术。
为研究所获得材料的化学组成、物相组成、结构和各种研究技术对材料性能的影响,需要采用相应的分析分析表征方法。分析测试方法的选择和使用贯穿材料研究、应用的全过程.
“Seeing” is believing
MSE and Materials Characterization
材料科学与工程和材料表征
Materials Characterization
Elemental Analysis
Phase identification
Phase transformation
Structure at different levels, Macro to molecules and atoms
Surface, interface
Microscopy, spectroscopy and analysis, diffraction and imaging, thermal methods
多层次的物质结构Matters are organized differently at different length scale.
宏观:Macroscopic (0.1mm)
Structure elements on the scale visible with human eye.
微观:Microscopic (0.1micron-0.1mm)
Grain or other mesoscopic objects consisting of a group of atoms and observable with a light microscope
介观:Mesoscopic (1-100nm)
Structure between atomic and microscopic
原子:Atomic (0.1-1 nm)
Arrangement of atoms in materials, electronic bondings
亚原子:Subatomic (0.1 nm)
Electrons, protons, neutrons
材料科学研究范畴
Domain of material science
Materials Characterization
Elemental Analysis
Phase identification
Phase transformation
Structure at different levels, Macro to mol
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