Statistical Analysis of Aluminum Doped Titanium Dioxide Using Solid State Method

Statistical Analysis

Authors

  • Mohammed RASHEED Applied Sciences Department- University of Technology- Iraq https://orcid.org/0000-0002-0768-2142
  • Mohammed Abdelhadi Sarhan Mathematics Science Department, College of Science, Mustansiriyah University, Baghdad, Iraq
  • Ahmed Shawki Jaber Mathematics Science Department, College of Science, Mustansiriyah University, Baghdad, Iraq
  • Dikra Bouras Mathematics Science Department, College of Science, Mustansiriyah University, Baghdad, Iraq
  • Mustafa Nuhad Al-Darraji Department of Biology, College of Science, University of Al-Anbar, Iraq
  • Ahmed Rashid Al Iraqia University, College of Arts, Baghdad, Iraq

DOI:

https://doi.org/10.29304/jqcm.2022.14.3.955

Keywords:

Al:TiO2, solid state method, thermal properties, hardness, optical microscope

Abstract

In the present research, titanium dioxide nanoparticles were fabricated using the solid-state technique, then all of the aluminum materials were added in three ratios that are (0, 1, 2, and 3 (wt. %). The dry press method was used through a hydraulic press from one direction, using a mold of diameter (10 mm) to obtain a ceramic compressed dimension that was firing at a temperature of 900 °C. The thermal conductivity is studied for all samples that include pure with the added proportions and compared between them when adding the proportions for aluminum. The ratio of (2% wt.) is the highest conductivity among the used ratios. The mechanical properties included the hardness when adding percentage from aluminum toTiO2 (2% wt.) ratio showed is the highest hardness value between other ratios, the samples surface, taking surface pictures of the samples through an optical microscope.

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References

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Published

2022-08-12

How to Cite

RASHEED, M., Sarhan, M. A., Jaber, A. S., Bouras, D., Al-Darraji, M. N., & Rashid, A. (2022). Statistical Analysis of Aluminum Doped Titanium Dioxide Using Solid State Method: Statistical Analysis. Journal of Al-Qadisiyah for Computer Science and Mathematics, 14(3), Math Page 1–8. https://doi.org/10.29304/jqcm.2022.14.3.955

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