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Open-hole tension strength was shown to correlate better with neat-resin fracture toughness, but neat-resin properties were otherwise inferior indicators of most composite properties.
Measures of joint activity regarding swelling and tenderness are also part of most composite disease activity indices in RA.
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The deformability of most composites is small and decreases with increasing zeolite content.
The composition, structure and mechanical properties of these MoST composite coatings were investigated using several analytical techniques (XRD, XPS, SEM, TEM, EDAX, nano-indentation and pin-on-disk test).
The results are presented over a wide range of variables commonly found in most composite materials.
Most composite indices of disease activity and response criteria in RA have been validated and compared in clinical trials rather than routine care.
The tensile modulus of most glassy composites was higher than that of the epoxy and increased with higher filler concentration and 4% graphite/epoxy and 4% SWCNT/epoxy exhibited approximately the same highest tensile modulus.
For anisotropy, as in the case of most smart/active and composite material systems, they can persist much further into the interior of the structure, and need to be quantified to design geometry transition zones and to fully understand the delamination effects.
The pure basic materials (urethane dimethacrylate, TEGDMA, bis-GMA, and camphorquinones) are the main materials present in the composition of most of the resin composite brands as supplied by the manufacturers (Air Force Medical Services Public Site, 2012).
The retained properties of most of the composites subjected to tensile creep or fatigue were usually within 20% of the as-produced strength and 10% of the as-produced elastic modulus.
Upon charging (Li desertion) in the same cycle, the polysulfides shrink back to their original state; the linear binders, however, cannot fully follow the shrinkage of polysulfides, thus leading to an inevitably contact loss of electroactive materials from the carbon matrix, coupled with polysulfides dissolution, result in inferior performance of most sulfur-carbon composites.
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