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The wear performance of such composites was found to be composition dependent with optimal parametric influences that was specific with the nature of the abrasive.
Whilst much research has focussed on the optimization of such composites, there is no published literature on the performance of these experimental compositions under simulated physiological conditions.
These phase compositions reflect the higher density, lower porosity and good mechanical properties of such composites.
Mechanical characteristics of such composites are measured.
Furthermore, mechanical properties of such composites were also largely enhanced.
Some basic questions must be answered before applications of such composites can be addressed.
The properties of such composites depend on Cu spatial localization [17 26].
Ice-templating (freeze casting) is a promising method for preparation of such composites.
Recent studies report the angiogenic potential of such composites in both cases.
Utility properties of such composites are closely approaching the level of standard quality.
This article reviews the applications of such composites for skeletal augmentation.
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