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首页> 外文期刊>ISIJ international >Phase Quantification of Regular and Turbo-stratified Graphite in Cast Iron by X-ray Diffractometry/Rietveld Refinement
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Phase Quantification of Regular and Turbo-stratified Graphite in Cast Iron by X-ray Diffractometry/Rietveld Refinement

机译:X射线衍射/ RIETVELD改进铸铁中规律和涡轮分层石墨的相位量化

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摘要

A method to quantify regular graphite and turbo-stratified graphite (TS-graphite) forming the free carbon in ductile cast iron was developed using X-ray powder diffractometry. Iron in accurately sampled 2-4 g of the ductile cast iron powder was decomposed using hydrochloric acid without heating, and the residue was centrifugally separated. Graphite, TS-graphite, wustite (FeO), and amorphous silicate were identified in the residue. Calibration-standard mixtures were prepared by mixing corundum (α-Al_2O_3), griceite (LiF), and graphite powder which showed the most similar full-width at half-maximum value of (002) line to that of graphite in the ductile cast iron sample. The calibration curve of graphite showed good linearity, with a range of 0-200 mg corresponding to the 0-5.0 mass% of graphite in the 4.00 g of the cast iron sample. The quantitative value of total graphite in the ductile cast iron sample was 3.17 mass% with 8.0% of relative standard deviation for n = 5. The peak area ratio of graphite and TS-graphite was calculated using Rietveld refinement by assuming the same atomic scattering factor for each graphite measurement. The concentration ratio of graphite and TS-graphite were 67.8 and 32.2%, respectively. The analytical values of graphite were in good agreement with those of the NIST gray cast iron standard material, with concentration ratio of 53.7% and 46.3% for graphite and TS-graphite, respectively.
机译:使用X射线粉末衍射产生法量化形成延性铸铁中的游离碳的正面石墨和涡轮分层石墨(TS-石墨)的方法。在无需加热的情况下使用盐酸分解2-4g延性铸铁粉末的铁,将残余物离心分离。在残余物中鉴定了石墨,Ts-石墨,沃斯特(Feo)和无定形硅酸盐。通过混合刚玉(α-Al_2O_3),GRICEITE(LIF)和石墨粉末制备校准标准混合物,所述石墨粉末在延展岩铸铁中(002)线的半最大值下的最大值最大值和石墨中最相似的全宽度样本。石墨的校准曲线显示出良好的线性度,范围为0-200mg,对应于4.00g铸铁样品中的0-5.0质量%的石墨。延性铸铁样品中总石墨的定量值为3.17质量%,含有8.0%的相对标准偏差,N = 5。通过假设相同的原子散射因子,使用RIETVELD改进计算石墨和TS-石墨的峰面积比对于每个石墨测量。石墨和TS-石墨的浓度比分别为67.8和32.2%。石墨的分析值与NIST灰色铸铁标准材料的分析值良好,浓度比为石墨和TS-石墨的浓度比为53.7%和46.3%。

著录项

  • 来源
    《ISIJ international》 |2021年第8期|2249-2255|共7页
  • 作者单位

    Rigaku Corporation 3-9-12 Matsubara Akishima Tokyo 196-8666 Japan Rigaku Americas Corporation 9009 New Trail Drive The Woodlands Texas 77381 USA;

    Rigaku Corporation 3-9-12 Matsubara Akishima Tokyo 196-8666 Japan;

    Department of Applied Chemistry Meiji University 1-1-1 Higashi-mita Tama Kawasaki Kanagawa 214-8571 Japan;

    Department of Applied Chemistry Meiji University 1-1-1 Higashi-mita Tama Kawasaki Kanagawa 214-8571 Japan;

    Rigaku Corporation 3-9-12 Matsubara Akishima Tokyo 196-8666 Japan Meiji University 1-1 Kanda-Surugadai Chiyoda Tokyo 101-8301 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    X-ray diffractometry; ductile cast iron; graphite; turbo-stratified graphite; Rietveld refinement;

    机译:X射线衍射测量;韧性铸铁;石墨;涡轮增针石墨;RIETVELD改进;

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