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The research findings demonstrated that ECC remains durable and maintains its high mechanical performance even after 200 days of exposure to concentrated sulfate and combined sulfate-chloride environments.
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They additionally indicate that even when these changes are anatomically restricted (in the present case only in primary mineralized bone), coupled with changes in bone structural properties, they are sufficient to influence the mechanical performance of whole bone, even in the absence of concomitant mineral quantitative and/or qualitative properties alterations.
In nano-cutting, the subsurface deformed (SSD) layers have great influence on machining dimensional accuracy, surface shape accuracy, and surface roughness, which even affect the mechanical performance and lifetime of machined components.
The evaluation of samples hardened in vitro showed that the initial stiffness of the foams was much lower compared to non-foamed CPC, indicating that the foams may not significantly contribute to the mechanical performance of the bone material composite in the defect region, even if the mechanical properties of the SG-foam are increased compared to the G-foam [7].
Notably, the enhancement of mechanical properties of supercapacitors enables them to maintain their electrochemical performance even when twisted or folded.
This PANI/graphene composite showed stable electrical performance even in bending states due to superior mechanical properties of graphene, Fig. 8.
The results indicate that the mechanical performance of the FML manufactured with the novel process could be even better than the one fabricated with traditional autoclave process, when the appropriate surface treatment and molding conditions were applied.
Even at very low temperatures, absorbed water influences the mechanical performance in an unexpected way.
The mechanical performance of cemented paste backfill (CPB) placed in underground openings (e.g., mine stopes) often differs from laboratory-predicted performance, even under the same atmospheric curing conditions (ambient temperature and relative humidity).
The sustained mechanical performance and the clear presence of hydrate phases such as brucite and M-S-H even after longer exposures highlighted the resistance of MgO-SiO2 formulations and their potential to be utilized in structural applications.
To address this, an animal model was utilized in the present study to test the hypothesis that even anatomically confined alterations in collagen cross-links can affect whole bone mechanical performance independent of mineral.
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CEO of Professional Science Editing for Scientists @ prosciediting.com