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Homopolymers, crystallization kinetic spherulitic growth rates

The isothermal crystallization of PEO in a PEO-PMMA diblock was monitored by observation of the increase in radius of spherulites or the enthalpy of fusion as a function of time by Richardson etal. (1995). Comparative experiments were also made on blends of the two homopolymers. The block copolymer was observed to have a lower melting point and lower spherulitic growth rate compared to the blend with the same composition. The growth rates extracted from optical microscopy were interpreted in terms of the kinetic nucleation theory of Hoffman and co-workers (Hoffman and Miller 1989 Lauritzen and Hoffman 1960) (Section 5.3.3). The fold surface free energy obtained using this model (ere 2.5-3 kJ mol"1) was close to that obtained for PEO/PPO copolymers by Booth and co-workers (Ashman and Booth 1975 Ashman et al. 1975) using the Flory-Vrij theory. [Pg.310]

As mentioned above, PLA should be addressed as a random copolymer rather than as a homopolymer the properties of the former depend on the ratio between L-lactic acid and D-lactic acid units. A few studies describe the influence of the concentration of D-lactic acid co-units in the PLLA macromolecule on the crystallization kinetics [15, 37, 77-79]. The incorporation of D-lactic acid co-units reduces the radial growth rate of spherulites and increases the induction period of spherulite formation, as is typical for random copolymers. In a recent work, the influence of the chain structure on the crystal polymorphism of PL A was detailed [15], with the results summarized in Figure 5.13. It shows the influence of D-lactic acid units on spherulite growth rates and crystal polymorphism of PLA for two selected molar mass ranges. [Pg.122]


See other pages where Homopolymers, crystallization kinetic spherulitic growth rates is mentioned: [Pg.283]    [Pg.45]    [Pg.32]    [Pg.255]    [Pg.32]    [Pg.1164]    [Pg.267]    [Pg.269]    [Pg.333]    [Pg.154]    [Pg.263]    [Pg.253]    [Pg.1156]   
See also in sourсe #XX -- [ Pg.159 ]




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Crystal growth kinetics

Crystal growth rate

Crystal kinetics

Crystal rates

Crystal spherulites

Crystallization crystal growth rate

Crystallization kinetic

Crystallization kinetics

Crystallization kinetics growth

Crystallization kinetics spherulite growth

Crystallization rates

Growth kinetics

Growth rate

Growth rating

Kinetic rates

Rate Kinetics

Spherulite

Spherulite growth

Spherulite growth rates

Spherulites

Spherulites crystallization kinetics

Spherulites crystallization rates

Spherulites, growth

Spherulitic

Spherulitic growth

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