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Highly porous scaffolds have been fabricated by the replication technique using 45S5 Bioglass® (BG) powder.
Three-dimensional (3D), highly porous, mechanically competent, bioactive and biodegradable scaffolds have been fabricated for the first time by the replication technique using 45S5 Bioglass® powder.
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In the present study, Micro-arc Oxidation process was successfully applied to the open cell Ti6Al4V alloy foams which were manufactured by the use of the replication technique and powder metallurgy method.
We then evaluate the impact of the replication technique.
For this reason, this review highlights the replication technique.
Hence all the mentioned work is work on different challenges while using the replication technique.
Observation of many short cracks using the replication technique indicates that grain boundaries are important microstructural barriers to short crack propagation in these materials.
The 95% confidence intervals of the means and proportions were calculated from the standard errors, estimated by the Balanced Repeated Replication technique [ 12, 24].
For this purpose, Bioglass® (named, BG) and glass (named, NG) with low crystallization affinity, were used for the preparation of scaffolds by replication technique.
The foam replication technique is used to manufacture the scaffolds.
The surface roughness of a micro-dimple also includes the replication of the tool edge radius profile, which can be determined by using a replication technique.
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