Exact(7)
The obtained results could be useful to guide the design of composites with optimal CTEs.
Consequently, it was concluded that control of the PA6,6/PP ratio would be an effective way to produce composites with optimal combination of superior overall mechanical properties.
The results obtained imply that high-performance composites with optimal CNT-network structures can be designed and fabricated by fully considering the surface properties of components and CNT polymer interactions.
The influences of microstructural parameters on the micro-deformation and effective stiffness of the R-CNT composite are studied to aid the design of new composites with optimal properties.
These results would give us a guideline for atomic scale structural manipulation of metallic glasses, and help develop novel metallic glass matrix composites with optimal properties through effective mechanical processing as well as heat treatment.
Furthermore, longtime (30 h) stable FE is achieved from GNF CNT composites with optimal shapes at a high mean emission current density of 45.47 mA/cm2 and a low operation field of 1.766 V/μm, showing promising prospects in high-performance vacuum electronic device applications.
Similar(53)
The established quantitative relations between microstructures and tensile properties of cast alloys can be utilized to design and manufacture the metallic composite with optimal mechanical properties.
The yields of methanol and ethanol obtained over the composite with optimal content of MoS2 (0.4 wt%) were 36.7 and 36.6 μmol gcat−1 after 4 h of visible light irradiation, respectively, which were 1.94 times higher than that over pure Bi2WO6.
In addition, we describe a positive effect of 45S5 Bioglass® on A549 cell behaviour in a dose-dependent manner, indicating the potential of using PDLLA/Bioglass® composites with an optimal concentration of 45S5 Bioglass® not only in bone tissue engineering but also in lung tissue engineering.
The results showed that C/SiC-SiBC composites with an optimal PyC interphase thickness of 450 nm exhibited flexural strength of 412 MPa and fracture toughness of 24 MPa m1/2, which obtained 235% and 300% improvement compared with the one with 50 nm-thick PyC interphase.
Composite slab with optimal design is field tested under 1 kg TNT contact detonation, and the results are compared with slabs made of conventional and ultra-high performance concrete without steel wire meshes.
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