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Measures of mixing for extrusion by averaging concepts SCIE SCOPUS

Title
Measures of mixing for extrusion by averaging concepts
Authors
Kim, SJKwon, TH
Date Issued
1996-06
Publisher
SOC PLASTICS ENG INC
Abstract
This paper proposes modified Deformation Characteristics (DC) as a new deformation measure for three-dimensional flows in extrusion. In contrast to the previous DC, the modified DC is defined by an averaged length stretch rate with the aid of two subsequent averaging concepts: firstly, average of length stretch rate of all the local elements in a shell, and secondly, average of a fluctuation of the averaged length stretch rate with time using a probability function. The modified DC was applied to the case of a two-dimensional flow approximation based on the analysis of kinematics during one circulation including the ''turning effect.'' Consequently, we have proposed useful formulae to determine the modified DC for the two-dimensional flow approximation. This involves extensive numerical calculations of the modified DC, both for the three-dimensional flow and for the two-dimensional flow approximation. Typical results are discussed with comparisons between the modified DC, the previous DC, and a strain proposed by Pinto and Tadmor. It is interesting to note that the Weighted-Average Deformation Characteristics (WADC) obtained from the three-dimensional analysis was found to be close to that from the two-dimensional approximate analysis. Therefore, the formulae proposed for the modified DC of the two-dimensional flow approximation seems to be useful in analyzing the mixing behavior on extrusion with a large aspect ratio, avoiding the complicated evaluation of the averaging process of the length stretch rate for the three-dimensional flow.
Keywords
RESIDENCE TIME DISTRIBUTION; SCREW EXTRUDERS; FLOW
URI
https://oasis.postech.ac.kr/handle/2014.oak/21559
DOI
10.1002/pen.10541
ISSN
0032-3888
Article Type
Article
Citation
POLYMER ENGINEERING AND SCIENCE, vol. 36, no. 11, page. 1466 - 1476, 1996-06
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권태헌KWON, TAI HUN
Div of Integrative Biosci & Biotech
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