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1)  high temperature X-ray diffraction (HTXRD)
高温X射线衍射(HTXRD)
2)  high temperature X-ray diffraction
高温X射线衍射
1.
The phase transformation of thermal explosion synthesized Al-Ti-C at different temperature is investigated with high temperature X-ray diffraction,and the transformation features of the Al-Ti-C microstructure are discussed by morphological analysis of synthesized product by using SEM.
采用高温X射线衍射原位观察Al-Ti-C热爆合成产物的物相变化,通过扫描电镜(SEM)分析合成产物的组织形貌,探讨热爆合成Al-Ti-C组织转变规律。
3)  high temperature in-situ X-ray diffraction
高温原位X射线衍射
1.
The microstructures and properties of 7A52 aluminum alloy under different homogenization conditions were studied by hardness test,electrical-conductivity measurement,optical metallography and high temperature in-situ X-ray diffraction.
采用硬度、电导率测量、金相和高温原位X射线衍射分析技术研究不同均匀化处理条件下7A52铝合金组织与性能的变化规律,着重讨论不同均匀化处理条件下合金的物相组成及其演变、基体固溶体固溶度的变化与合金硬度和电导率的关系。
4)  High temperature X-ray diffraction
动态高温X射线衍射
5)  high temperature X-ray diffractometer
高温X射线衍射仪
6)  dynamic X-ray diffraction
变温X射线衍射
1.
During the presintering process,the crystal structure and phase transition of Nd-doped Bi4Ti3O12 have been studied by dynamic X-ray diffraction at varying high temperatures.
利用变温X射线衍射技术,在预烧过程中分析了Nd掺杂Bi4Ti3O12后生成Bi3。
补充资料:X射线粉末衍射法
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性质:在X射线衍射分析中,采用单色X射线和粉末状多晶样品进行衍射的一种方法。多晶试样大多数情况是多晶粉末,也可以是多晶片或丝。衍射线条的位置、强度,可用德拜法、聚焦法或针孔法等照相记录。粉末法主要用于物质鉴定、晶体点阵常数、多晶体的结构、晶粒大小、高聚物结晶度测定等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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