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By James C. Taylor
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These aggregates exhibit a slow relaxation process to their diffusion. Thus, the structure and rheology of the CB particles/aggregates changes with the affinity of the suspending medium. The effects of the primary particle size and the structure of CB aggregates on the rheological properties are summarized. For the CB suspensions exhibiting critical gel behavior, heat-induced gelation and the effects of suspending media are also explained. 1. Introduction Carbon black (CB) is widely used as a reinforcing agent in rubber products and as an additive for pigmentation, UV protection, electrical conductivity, and rheology control in plastics, ink, and coating.
Details of these results are presented in Section 6. 5. Comments of a Conventional Interpretation for the Rheology of Printing Ink The Varnish-1, a rosin-modified phenol resin-type varnish, is a main component in the varnish for printing ink. In Varnish-1, the CB particles form fragmented network-type agglomerates that grow to the self-similar fractal network, and the characteristic power-law type relaxation is observed (cf. Figure 5). 42 Yuji Aoki The Varnish-2, an alkyd resin-type varnish, is a minor component in the varnish for printing ink.
These sub-MICs are also likely to be better tolerated by mammalian cells  while having minimal impact on the environmental biota. EPS produced in BisBAL-treated cultures were generally homologous to those in controls with no BisBAL, yet remarkably different in certain important details. BisBAL-treatment not only decreased proteins (amide I) and carbohydrates concentrations but also altered the extent of O-acetylation and acidification of carbohydrates (Fig 4a) and the expression of various protein secondary structures (aggregated strands, β-sheets, random coils, α-helices, 3-turn helices, and antiparallel β-sheets/aggregated strands) (Fig.