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Identification of Crystalline Phases in Toothpaste byPowder Diffractometry
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作者 沙维 《Rare Metals》 SCIE EI CAS CSCD 1996年第2期128-131,共4页
The abrasive crystalline phases in Colgate Regular, Aquafresh , and Macleans tcothpaste were identifiedby X-ray powder diffractometry to be calcium ortho-phaphate hydrate (CaHPO_4 . 2H_2O),calcite (CaCO_3) ,and aragon... The abrasive crystalline phases in Colgate Regular, Aquafresh , and Macleans tcothpaste were identifiedby X-ray powder diffractometry to be calcium ortho-phaphate hydrate (CaHPO_4 . 2H_2O),calcite (CaCO_3) ,and aragonite and calcite (beth CaCO_3), respectively. 展开更多
关键词 toothpaste phase identification x-ray diffraction techniques
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Application of X-ray Powder Diffraction Method in Microscopic Image and Rock Identification Technology Combined with Microscopic Image
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作者 HAN Lingfei 《外文科技期刊数据库(文摘版)自然科学》 2020年第1期010-014,共8页
In order to accurately identify the rock, it is necessary to study the identification method of the rock. The rock identification method, the thin slice microscopic image technique, the electron probe analysis method ... In order to accurately identify the rock, it is necessary to study the identification method of the rock. The rock identification method, the thin slice microscopic image technique, the electron probe analysis method or the X-ray powder crystal diffraction method cannot accurately determine the rock. An X-ray powder diffraction method combined with thin-film microscopic image technique and rock identification method was proposed. The X-ray powder diffraction method was combined with the thin-film microscopic image technique to identify the rock, and the microscopic image technique was used to determine the rock. The particle size, structure, shape, mineral color and structure, determine the type of rock, and then determine the mineral and mineral content of the rock by X-ray powder diffraction method, name the rock, and complete the identification of the rock. The experimental results show that the X-ray powder diffraction method or the thin-film microscopic image technique can not accurately determine the rock and combine the X-ray powder diffraction method with the thin-film microscopic image technology to identify the rock. Improve the accuracy of rock identification results. 展开更多
关键词 x-ray powder diffraction thin section microscopic imaging technique rock identification
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Investigation of the isothermal section of the Ce-Co-Al ternary system at 573 K 被引量:1
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作者 姚青荣 周怀营 +1 位作者 唐成颖 潘顺康 《Journal of Rare Earths》 SCIE EI CAS CSCD 2011年第7期650-653,共4页
The isothermal section of the Ce-Co-Al ternary system at 573 K was investigated by X-ray powder diffraction (XRD), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS) techniques. It... The isothermal section of the Ce-Co-Al ternary system at 573 K was investigated by X-ray powder diffraction (XRD), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS) techniques. It consisted of 19 single-phase regions, 46 two-phase regions and 25 three-phase regions. Four ternary compounds, namely CeCoAl, Ce2Co15Al2, CeCoAl4, CeCo2Al8, were confirmed in this system. At 573 K, the maximum solid solubilities of Co in CeAl2 and Al in CeCo2 were about 10.4 at.% and 10.0 at.%, respectively. The homogeneity range of CoAl phase extended from about 46.0 to 56.0 at.% Al. 展开更多
关键词 rare-earth alloys x-ray diffraction phase identification electron microscopy
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