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The ceramic is a novel magneto-dielectric ceramic with both high permeability and good dielectric properties, which might be a good candidate for the applications in novel electronic devices.
However, CeO 2 –ZrO 2 has low sinterability, so it is important to investigate the effect of sintering dopants, such as iron, copper and manganese ions, which could improve the sinterability and the mechanical properties of the ceramic.
This kind of ceramic might have some potential value for microwave application for its good microwave dielectric behavior.
The ceramic tool material has good wear resistance when machining grey cast iron with uniform flank wear.
The as-prepared hBN ceramic presents a good application prospect at high temperature.
The results show that iron(III) retention by ceramic membranes is strongly influenced by the molecular weight cut-off of the membranes and their material, although even 50 kDa molecular weight cut-off membranes are capable to efficiently retain iron species.
It is shown that SiAlON ceramics are good cutting tool materials for machining cast iron with the best behaviour obtained for a β-Si 3 N 4 ceramic, and that the α-β-SiAlON is the outstanding material for aerospace alloys.
The results showed that the addition of iron ore waste in the clayey ceramic body significantly changes the microstructure of ceramic.
It has a stable chemical structure and good physical properties for ceramic production.
Ductile cast iron illustrates well cast characteristics and abrasive resistance, excellent corrosion resistance and good mechanical properties.
The graphite in the cast irons can decrease the wear of the ceramic-cast iron pairs.
The composite ceramic is chemically compatible with silver and promising for low-temperature cofired ceramic applications.
This value is higher than that reported for ferrites prepared by the conventional ceramic method.
Moreover, sintered ceramic bodies having good physical and mechanical properties were successfully obtained after sintering up to 1250 °C, and can be used for different applications.
This result is in a good agreement with experimental results obtained from the strength measurements of ceramic materials with controlled flaws.
Open accessJournal ArticleDOI
01 Nov 2016
27 Citations
This is particularly important for manufacturing large-size ceramic products of quality, and also for specialty ceramic materials such as bioceramics and electroceramics.
Within the sphere of local ceramic production, our results demonstrate an unusual pattern of reliance on a single resource relative to other contemporary Iron Age centers.

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