Investigation of mechanical and thermo-mechanical strength of ceramic foam filters (CFFs)

Исследование механической и термомеханической прочности керамических пенистых фильтров (CFF)
Christos G. Aneziris, Shahid Akhtar, Claudia Voigt, Robert Fritzsch, L. Arnberg, Are Bergin, Ragnhild E. Aune
2022-10-31

Al2O3-based filtersceramic foam filters (CFFs)compression strengthmolten aluminium exposurethermo-mechanical strength
During aluminium production, the molten metal will always contain varying amounts of impurities, e.g., non-metallic inclusions, and for high-quality products removing such inclusions is essential. This can be achieved by filtration using ceramic foam filters (CFFs). However, these filters are highly brittle materials subjected to strong mechanical and thermo-mechanical stresses during transport and operation, which occasionally leads to failure of the filter material. In the present study, the compression strength of five different Al2O3-based CFFs was measured at room temperature and elevated temperature (compressed at 730 °C), as well as while submerged in molten aluminium with varying melt compositions (pure aluminium and an aluminium-magnesium alloy). The compression strengths at room temperature were established to be in the range of 1.19–2.09 MPa depending on the filter type tested. In the case of the CFFs compressed at elevated temperature, a reduction in compression strength in the range of 9.2–58.6% was established to exist depending on filter type and heating duration, except in three of the filter/duration-combinations tested. Compression of CFF samples submerged in molten aluminium led to an even further reduction in compression strength in the range of 42.6–69.4% depending on filter type and duration of exposure. With an exposure time of only 5 min, no difference in compression strength was observed between the two aluminium melts.
1
Compression at elevated temperature (730 °C) caused compression strength reductions of 9.2–58.6%, varying with filter type and heating duration, though three filter/duration combinations did not show reduction.
2
Compression strength of five Al2O3-based ceramic foam filters (CFFs) at room temperature ranges from 1.19 to 2.09 MPa depending on filter type.
3
Compression while submerged in molten aluminium caused further compression strength reductions of 42.6–69.4%, depending on filter type and exposure duration.
4
No difference in compression strength was observed between pure aluminium and aluminium-magnesium alloy melts after 5 minutes of exposure.

Al2O3-based ceramic foam filters (CFFs)

Mechanical and thermo-mechanical compression strength of the CFFs under room temperature, elevated temperature (730 °C) and while submerged in molten aluminium/alloy with varying exposure durations and melt compositions

Publication Details
Publication Date
2022-10-31
Journal
Publisher
ISSN
Cited by
6
Access Type
Author Information
Authors
Christos G. Aneziris
Shahid Akhtar
Claudia Voigt
Robert Fritzsch
L. Arnberg
Are Bergin
Ragnhild E. Aune
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%