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Materials Science

D-Index
68
Citations
15304
World Ranking
4910
National Ranking
1297

Overview

Chang Dae Han is a researcher affiliated with the University of Akron in the United States. Their academic profile encompasses work conducted within this institution.

There are no recent papers, frequent co-authors, publication venues, or book publications available to document in this profile. Similarly, there is no specified data regarding their main or subfields of study or primary research topics.

No awards have been recorded for Chang Dae Han, and they are currently living.

Best Publications

  • Rheology in polymer processing

    Chang Dae Han

  • Multiphase flow in polymer processing

    Chang Dae Han

  • Determination of the order-disorder transition temperature of block copolymers

    Chang Dae Han;Jinhwan Kim;Jin Kon Kim

  • Correlations of the first normal stress difference with shear stress and of the storage modulus with loss modulus for homopolymers

    Chang Dae Han;Myung S. Jhon

  • Rheological behavior of polymer blends

    Hsiao-Ken Chuang;Chang Dae Han

  • On the use of time-temperature superposition in multicomponent/multiphase polymer systems

    Chang Dae Han;Jin Kon Kim

  • Effect of Volume Fraction on the Order-Disorder Transition in Low Molecular Weight Polystyrene-block-Polyisoprene Copolymers. 1. Order-Disorder Transition Temperature Determined by Rheological Measurements

    Chang Dae Han;Deog Man Baek;Jin Kon Kim;Toshihiro Ogawa

  • Order−Order and Order−Disorder Transitions in a Polystyrene-block-Polyisoprene-block-Polystyrene Copolymer

    Naoki Sakamoto;Takeji Hashimoto;Chang Dae Han;Do Kim

  • Criteria for rheological compatibility of polymer blends

    Chang Dae Han;Hsiao-Ken Chuang

  • Effects of coupling agents on the rheological properties, processability, and mechanical properties of filled polypropylene

    C. D. Han;T. Van Den Weghe;P. Shete;J. R. Haw

  • Studies on structural foam processing. IV. Bubble growth during mold filling

    Chang Dae Han;Hee Ju Yoo

  • Origin of the Difference in Order−Disorder Transition Temperature between Polystyrene-block-poly(2-vinylpyridine) and Polystyrene-block-poly(4-vinylpyridine) Copolymers

    Weibin Zha;Chang Dae Han;Dong Hyun Lee;Sung Hyun Han

  • Effect of hydrogen bonding on the rheology of polycarbonate/organoclay nanocomposites

    Unknown

  • Effects of titanate coupling agents on the rheological and mechanical properties of filled polyolefins

    C. D. Han;C. Sandford;H. J. Yoo

  • Rheology of organoclay nanocomposites: Effects of polymer matrix/organoclay compatibility and the gallery distance of organoclay

    Unknown

  • Evolution of polymer blend morphology during compounding in an internal mixer

    Je Kyun Lee;Chang Dae Han

  • Effect of microdomain structure on the order-disorder transition temperature of polystyrene-block-polyisoprene-block-polystyrene copolymers

    Chang Dae Han;Deog Man Baek;Jin Kon Kim

  • Rheological technique for determining the order–disorder transition of block copolymers

    Unknown

  • Evolution of polymer blend morphology during compounding in a twin-screw extruder

    Je Kyum Lee;Chang Dae Han

  • Chemorheology of thermosetting resins. I. The chemorheology and curing kinetics of unsaturated polyester resin

    Chang Dae Han;Kwok-Wai Lem

  • Rheological properties of calcium carbonate-filled polypropylene melts

    Chang Dae Han

  • Studies on multilayer film coextrusion II. Interfacial instability in flat film coextrusion

    Chang Dae Han;R. Shetty

  • Rheology and processing of polymeric materials

    Chang Dae Han

  • Rheology and Processing of Polymeric Materials: Volume 1: Polymer Rheology

    Chang Dae Han

Frequent Co-Authors

Takeji Hashimoto
Takeji Hashimoto Kyoto University
Jovan Mijovic
Jovan Mijovic New York University
Patrick T. Mather
Patrick T. Mather Pennsylvania State University
Myung S. Jhon
Myung S. Jhon Carnegie Mellon University
An-Chang Shi
An-Chang Shi McMaster University
Wei Min Huang
Wei Min Huang Nanyang Technological University

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