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Typically, these composites are loaded to 58%to75%5% by volume and are radiopaque.
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The synthesized composites were loaded in epoxy resin and subsequently coated on mild steel substrate using powder coating technique.
In this work, the synthesized graphene oxide/TiO2/doxorubicin (GO/TiO2/DOX) composites were loaded into the chitosan/poly(lactic acid) (PLA) solutions to fabricate the electrospun chitosan/PLA/GO/TiO2/DOX nanofibrous scaffolds via electrospinning process.
In these studies, injectable synthetic composites were loaded with HA combined with pre-adipocytes for soft tissue regeneration.
The synthesized polymer composite was loaded in epoxy resin to develop coatings for mild steel substrates using powder coating technique.
Tensile and flexural modulus were compared concluding that its value was independent of the manner the composite was loaded.
The tensile strength of the extracted fiber (SCS-6) from fatigue-loaded specimens shows a reduced strength which is attributed to the debonding of the outermost coating while the composite is loaded.
Therefore, it is impossible for the two components, i.e., the matrix and short fiber, to separate at their interfaces when the composite is loaded or heated.
The most significant, in order of the variables that affect the volume loss and friction of UHMWPE composites is load, followed by sliding distance and speed.
When brittle composites (ceramics, concrete) are loaded up to their ultimate capacity, micro-cracks initiate and propagate from these flaws in a sudden manner.
Modern aircraft contain a large number of composite structures which are loaded with different load spectra.
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