Functionally Graded AlO-CTZ Ceramics Fabricated by Spark Plasma Sintering.

Materials (Basel)

Institute of Materials and Environmental Chemistry, Research Centre for Natural Sciences, Magyar Tudósok krt. 2, H-1117 Budapest, Hungary.

Published: March 2022

AI Article Synopsis

  • - We investigated the creation of functionally graded ceramics made from AlO-CeO-stabilized-ZrO (CTZ) using spark plasma sintering, resulting in a composition and porosity gradient along the axial direction.
  • - The gradient was achieved by layering powders with varying AlO to CTZ ratios and using a specialized tool configuration that created a temperature difference during sintering, leading to distinct porosity characteristics in the samples.
  • - Testing revealed that the ASY samples exhibited a significant increase in microhardness (up to 10 GPa difference between sides) and higher flexural strength compared to standard samples, attributed to reduced porosity and the formation of elongated CeAlO particles.

Article Abstract

We studied the fabrication of functionally graded AlO-CeO-stabilized-ZrO (CTZ) ceramics by spark plasma sintering. The ceramic composite exhibits a gradual change in terms of composition and porosity in the axial direction. The composition gradient was created by layering starting powders with different AlO to CTZ ratios, whereas the porosity gradient was established with a large temperature difference, which was induced by an asymmetric graphite tool configuration during sintering. SEM investigations confirmed the development of a porosity gradient from the top toward the bottom side of the AlO-CTZ ceramic and the relative pore volume distributed in a wide range from 0.02 to 100 µm for the samples sintered in asymmetric configuration (ASY), while for the reference samples (STD), the size of pores was limited in the nanometer scale. The microhardness test exhibited a gradual change along the axis of the ASY samples, reaching 10 GPa difference between the two opposite sides of the AlO-CTZ ceramics without any sign of delamination or cracks between the layers. The flexural strength of the samples for both series showed an increasing tendency with higher sintering temperatures. However, the ASY samples achieved higher strength due to their lower total porosity and the newly formed elongated CeAlO particles.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912109PMC
http://dx.doi.org/10.3390/ma15051860DOI Listing

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