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Composition distribution breadth index

Other parameters have been proposed in the patent literature to describe the CCD, such as the composition distribution breadth index (CDBI), defined as the weight percentage of the copolymer molecules having a comonomer content within 50% of the median total molar comonomer content [95], or the solubility distribution breadth index (SDBl), which is analogous to the standard deviation of the CCD [96]. [Pg.227]

Here n is the average refractive index, k is Boltzman s constant, and T is absolute temperature (13). If a polyblend were to form a homogeneous network, the stress would be distributed equally between network chains of different composition. Assuming that the size of the statistical segments of the component polymers remains unaffected by the mixing process, the stress-optical coefficient would simply be additive by composition. Since the stress-optical coefficient of butadiene-styrene copolymers, at constant vinyl content, is a linear function of composition (Figure 9), a homogeneous blend of such polymers would be expected to exhibit the same stress-optical coefficient as a copolymer of the same styrene content. Actually, all blends examined show an elevation of Ka which increases with the breadth of the composition distribution (Table III). Such an elevation can be justified if the blends have a two- or multiphase domain structure in which the phases differ in modulus. If we consider the domains to be coupled either in series or in parallel (the true situation will be intermediate), then it is easily shown that... [Pg.210]


See other pages where Composition distribution breadth index is mentioned: [Pg.54]    [Pg.68]    [Pg.68]    [Pg.90]    [Pg.54]    [Pg.68]    [Pg.68]    [Pg.90]    [Pg.691]    [Pg.788]   


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