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Since different commercial products are tested and most composites are classified as hybrid due to the use of different sized glass particles, it is difficult to address the effect of different sinalization protocols when making comparisons of materials from different manufacturers.
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The deformability of most composites is small and decreases with increasing zeolite content.
Most polymer composites are traditionally made using reinforcing fibers such as carbon or glass fibers.
To aid in processing, most high-performance composites are strengthened with filaments that are bundled into yarns.
Most carbon fiber composites are rigid: the glue that holds the fibers together, known as matrix, doesn't allow them to bend.
Although most of polymer composites are flammable, their resistance to pyrolysis can be improved.
Even so, most of these composites are applied in photocatalytic degradation of organic pollutants but not in the photocatalytic hydrogen production.
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.
The magnetoelectric effect in most multiferroic composites is known as strain-mediated, in which the ME coupling is a concerted result of the piezoelectric effect from the piezoelectric phase and magnetostrictive effect from the magnetic phase.
Dental resin-based composites are most widely used materials for dental restoration.
Epoxy, polyurethane, elastomer based crosslinked polymer composites are most studied materials and have industrial significance as well.
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