Processing-Structure-Property Relationships in Solid-State Shear Pulverization: Parametric Study of specific energy


Autoria(s): Brunner, Philip J.; Clark, Joshua T.; Torkelson, John M.; Wakabayashi, Kat
Data(s)

01/07/2013

Resumo

Solid-state shear pulverization (SSSP) is a unique processing technique for mechanochemical modification of polymers, compatibilization of polymer blends, and exfoliation and dispersion of fillers in polymer nanocomposites. A systematic parametric study of the SSSP technique is conducted to elucidate the detailed mechanism of the process and establish the basis for a range of current and future operation scenarios. Using neat, single component polypropylene (PP) as the model material, we varied machine type, screw design, and feed rate to achieve a range of shear and compression applied to the material, which can be quantified through specific energy input (Ep). As a universal processing variable, Ep reflects the level of chain scission occurring in the material, which correlates well to the extent of the physical property changes of the processed PP. Additionally, we compared the operating cost estimates of SSSP and conventional twin screw extrusion to determine the practical viability of SSSP.

Identificador

http://digitalcommons.bucknell.edu/fac_journ/465

Publicador

Bucknell Digital Commons

Fonte

Faculty Journal Articles

Palavras-Chave #POLYMER BLEND COMPATIBILIZATION #MOLECULAR-WEIGHT DISTRIBUTION #TWIN-SCREW EXTRUDERS #PHYSICAL-PROPERTIES #CRYSTALLIZATION KINETICS #GRAPHITE NANOCOMPOSITES #THERMAL-PROPERTIES #Polymer Science
Tipo

text