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In the area of materials development, the guiding concept of bio-inspired hierarchical structures combined with controlled fabrication at multiple scales has the potential to result in substantially improved mechanical performance.
Fibre-reinforced cementitious composite (FRCC), by adding short discrete fibres randomly in cementitious composites, exhibits substantially improved mechanical properties than conventional cementitious composites due to the fibre bridging action and the existence of multiple micro-cracks.
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These results demonstrate that the Ta coating deposited onto nano-roughened NiTi substantially improved the mechanical stability, radiopacity, and biocompatibility of the NiTi stent.
Methods to diminish the margin of error have not been substantially improved with mechanical jigs, suggesting that intraoperative feedback is difficult to teach and learn, and resulting decision making is not as predictable as one would hope.
(5) Improved mechanical reliability .
Our results demonstrate the ability to substantially improve the mechanical properties of chitosan fibers without adversely affecting their biological properties.
The methodology involves embedding zeolite crystals within the pores of the supports in the nanocomposite architecture membranes thereby substantially improving the mechanical strength and thermal stability.
Moreover, elevated pressure during curing helps reduce the porosity of the bone cement; thus, high-pressure insertion of implants substantially improves the mechanical properties of the bone cement (Bayne et al. 1975, Apostolou et al. 2007).
Representative images are shown in Figure 4. We have previously shown that fatty acids and triglyceride oils are able to substantially improve the mechanical properties of acrylic bone cements in terms of lowering their elastic modulus [ 17].
The results show that SS addition substantially improved the thermal and mechanical properties of the composites.
This study demonstrate that a very small quantity of CNT substantially improved thermal stability and mechanical properties of the TLCP nanocomposites, providing a design guide of CNT-filled TLCP composites with as great potential for industrial use.
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