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To predict the damage evolution within composites, a material degradation strategy should be generally defined for each individual damage mode.
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The strategy includes (i) harvesting renewable resources instead of fossil fuels, (ii) using environment friendly routes, and (iii) engineering material degradation pathways operating under reasonable time frames.
Where it gets interesting is that the disc is resistant to heat (up to 176 degrees), UV, and normal material degradation.
The one was the material degradation and expansion.
BCP materials have shown bone formation simultaneously with material degradation [24, 25].
No material degradation was observed after the experiments.
Thermomechanical fatigue damage is a progressive process of material degradation.
Limited signs of material degradation were observed (see fig. 5).
Both material degradation and leakage have been shown to be dependent upon time and material composition [ 6].
Moderate signs of material degradation were constantly observed, which increased over time.
The analysis of this effect can be valuable for optimizing the rate of cellulosic material degradation.
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