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Melt dynamics

To understand the global mechanical and statistical properties of polymeric systems as well as studying the conformational relaxation of melts and amorphous systems, it is important to go beyond the atomistic level. One of the central questions of the physics of polymer melts and networks throughout the last 20 years or so dealt with the role of chain topology for melt dynamics and the elastic modulus of polymer networks. The fact that the different polymer strands cannot cut through each other in the... [Pg.493]

Bourdon B, Turner S, Allegre C (1999) Melting dynamics beneath the Tonga-Kermadec island arc inferred from Pa- U systematics. Science 286 2491-2493... [Pg.304]

We can therefore conclude that differences in the structural relaxation between bead-spring and chemically realistic models can be attributed to either the differences in packing that we discussed above or the presence of barriers in the dihedral potential in atomistic models. To quantify the role of dihedral barriers in polymer melt dynamics, we now examine high-temperature relaxation in polymer melts. [Pg.41]

Figure 6.26 Comparison of melting dynamics for a conventional melting channel and a transverse barrier melting channel for an LDPE resin at identical rates and screw speeds. The conventional channel is in red while the barrier melting section is in black... Figure 6.26 Comparison of melting dynamics for a conventional melting channel and a transverse barrier melting channel for an LDPE resin at identical rates and screw speeds. The conventional channel is in red while the barrier melting section is in black...
A second example is shown in excerpt 13Q. Harpp s proposed work initially involves the collection of held data in two sampling campaigns. Following collection, the samples will be analyzed for trace and major element concentrations and isotopic ratios. In her case, the order in which she conducts these analyses is less important than how she will use the data to answer questions about plume-ridge interaction mechanisms. Thus, she organizes her proposed work (titled Proposed Plan ) not by the tests she will perform, but rather by the types of information the analyzed data will provide (i.e., information about formation mechanisms, melting dynamics, and spatial distributions). [Pg.463]

Melting dynamics and source composition. Rare earth inversion using the path... [Pg.464]

The growth of bubbles is controlled by the rates at which volatiles in the melt can diffuse towards the bubbles, and the opposing viscous forces. Near a bubble, volatiles are depleted such that melt viscosity increases dramatically, and diffusivities drop, making it harder for volatiles to diffuse through and grow the bubble. These opposing factors are described by the nondimensional Peclet number (Pe), which is the ratio of the characteristic timescales of volatile diffusion (T(1 = r lD, where r is the bubble radius and D the diffusion coefficient of the volatile in the melt) and of viscous relaxation (t = 17/AP where 17 is the melt dynamic viscosity and AP the oversaturation pressure, i.e., Pe = Dingwell... [Pg.1396]


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See also in sourсe #XX -- [ Pg.54 ]




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Cluster melting dynamics

Cluster melting molecular dynamics

Dynamic Melt Viscosity Studies

Dynamic Melting Inversion of Melt Compositions

Dynamic melt rheology

Dynamic melt viscosity

Dynamic melting

Dynamic polymer melts

Dynamic processes in block copolymer melts

Dynamic properties of the melt

Dynamics in polymer melts

Dynamics in the melt

Dynamics of Block Copolymer Melts

Dynamics of the melts

Eutectic Dynamic Melting

Eutectic dynamic melting with linear change of

Glassy system dynamics polymer melts

Incongruent Dynamic Melting

Incongruent dynamic melting with constant

Incongruent dynamic melting with linear change of

Melting temperature interfacial dynamics

Modal Dynamic Melting with Constant

U-series Disequilibrium Produced by Dynamic Melting

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