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      KCI등재 SCIE SCOPUS

      Flow characteristic during injection molding of PC/MWNT nanocomposites

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      https://www.riss.kr/link?id=A107134362

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      다국어 초록 (Multilingual Abstract)

      This work investigates the flow characteristic during injection molding process of PC/MWNT nanocomposites especially focusing on jetting. The initial flow pattern while filling has been compared with that of neat and other particle-filled PCs. The experimental results show that the flow of PC/MWNT 5% is comparable to that of PC/GF 15% and PC/CF 10%. It has been found that small amount of filled MWNT causes significant filling difficulty. Based on rheological investigations, this is attributed to extraordinary shear thinning by MWNT fillers.
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      This work investigates the flow characteristic during injection molding process of PC/MWNT nanocomposites especially focusing on jetting. The initial flow pattern while filling has been compared with that of neat and other particle-filled PCs. The exp...

      This work investigates the flow characteristic during injection molding process of PC/MWNT nanocomposites especially focusing on jetting. The initial flow pattern while filling has been compared with that of neat and other particle-filled PCs. The experimental results show that the flow of PC/MWNT 5% is comparable to that of PC/GF 15% and PC/CF 10%. It has been found that small amount of filled MWNT causes significant filling difficulty. Based on rheological investigations, this is attributed to extraordinary shear thinning by MWNT fillers.

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      참고문헌 (Reference)

      1 홍지선, "핫 러너 사출 공정에서 수지의 색 교체 특성 연구" 대한기계학회 39 (39): 111-115, 2015

      2 Zouari, R., "Time evolution of the structure of organoclay/polypropylene nanocomposites and application of the time-temperature superposition principle" 56 : 725-734, 2012

      3 Winter, H. H., "Three views of viscoelasticity for Cox–Merz materials" 48 : 241-243, 2009

      4 Vergnes, B., "The use of apparent yield stress to characterize exfoliation in polymer nanocomposites" 26 : 229-232, 2011

      5 A1-Hadithi, T. S. R., "The relationship between the linear (oscillatory) and nonlinear (steadystate)flow properties of a series of polymer and colloidal systems" 270 : 40-46, 1992

      6 Lee, W. J., "The mechanical properties of MWNT/PMMA nanocomposites fabricated by modified injection molding" 76 : 406-410, 2006

      7 Ganss, M., "Structural interpretations of deformation and fracture behavior of polypropylene/multiwalled carbon nanotube composites" 56 : 2247-2261, 2008

      8 Jain, S., "Strong decrease in viscosity of nanoparticle-filled polymer melts through selective adsorption" 4 : 1848-1854, 2008

      9 Liang, S., "Shear enhanced interfacial interaction between carbon nanotubes and polyethylene and formation of nanohybrid shishkebabs" 49 : 4925-4929, 2008

      10 Han, C. D., "Rheology and Processing of Polymeric Materials" Oxford University Press 2007

      1 홍지선, "핫 러너 사출 공정에서 수지의 색 교체 특성 연구" 대한기계학회 39 (39): 111-115, 2015

      2 Zouari, R., "Time evolution of the structure of organoclay/polypropylene nanocomposites and application of the time-temperature superposition principle" 56 : 725-734, 2012

      3 Winter, H. H., "Three views of viscoelasticity for Cox–Merz materials" 48 : 241-243, 2009

      4 Vergnes, B., "The use of apparent yield stress to characterize exfoliation in polymer nanocomposites" 26 : 229-232, 2011

      5 A1-Hadithi, T. S. R., "The relationship between the linear (oscillatory) and nonlinear (steadystate)flow properties of a series of polymer and colloidal systems" 270 : 40-46, 1992

      6 Lee, W. J., "The mechanical properties of MWNT/PMMA nanocomposites fabricated by modified injection molding" 76 : 406-410, 2006

      7 Ganss, M., "Structural interpretations of deformation and fracture behavior of polypropylene/multiwalled carbon nanotube composites" 56 : 2247-2261, 2008

      8 Jain, S., "Strong decrease in viscosity of nanoparticle-filled polymer melts through selective adsorption" 4 : 1848-1854, 2008

      9 Liang, S., "Shear enhanced interfacial interaction between carbon nanotubes and polyethylene and formation of nanohybrid shishkebabs" 49 : 4925-4929, 2008

      10 Han, C. D., "Rheology and Processing of Polymeric Materials" Oxford University Press 2007

      11 Prentice, P., "Rheology and Its Role in Plastics Processing" 7 (7): 1995

      12 Milner, S. T., "Relating the shear-thinning curve to the molecular weight distribution in linear polymer melts" 40 : 303-315, 1996

      13 Moretti, F., "Optical monitoring of the injection molding of intercalated polypropylene nanocomposites" 50 : 1326-1339, 2010

      14 김선경, "Numerical Simulation of Crystal Growth in Injection Molded Thermoplastics based on Monte Carlo Method with Shear Rate Tracking" 한국정밀공학회 20 (20): 641-650, 2019

      15 Sung-Joo Choi, "Multi-scale filling simulation of micro-injection molding process" 대한기계학회 25 (25): 117-124, 2011

      16 Shu, H., "Morphology, thermal, and rheological behavior of nylon 11/multi-walled carbon nanotube nanocomposites prepared by melt compounding" 49 : 1063-1068, 2009

      17 Rizvi, S. J. A., "Microcellular PP vs. microcellular PP/MMT nanocomposites: A comparative study of their mechanical behavior" 26 : 375-382, 2011

      18 Dealy, J. M., "Melt rheology and its role in plastics processing theory and applications" Kluwer Academic Publishers 1990

      19 Bao, S. P., "Mechanical behaviors of polypropylene/carbon nanotube nanocomposites: The effects of loading rate and temperature" 485 : 508-516, 2008

      20 Prashantha, K., "Masterbatch-based multi-walled carbon nanotube filled polypropylene nanocomposites: Assessment of rheological and mechanical properties" 69 : 1756-1763, 2009

      21 Oda, K, "Jetting phenomena in injection mold filling" 16 : 585-592, 1976

      22 Kasaliwal, G., "Influence of processing conditions in small‐scale melt mixing and compression molding on the resistivity and morphology of polycarbonate–MWNT composite" 112 : 3494-3509, 2009

      23 Villmow, T., "Influence of injection molding parameters on the electrical resistivity of polycarbonate filled with multi-walled carbon nanotubes" 68 : 777-789, 2008

      24 Muller, M. T., "Influence of feeding conditions in twin-screw extrusion of PP/MWCNT composites on electrical and mechanical properties" 71 : 1535-1542, 2011

      25 Battisti, M., "Influence of elongational flow generating nozzles on material properties of polypropylene nanocomposites" 58 : 3-12, 2018

      26 Kim, S. K., "Flow rate based framework for solving viscoplastic flow with slip" 269 : 37-46, 2019

      27 Mitsoulis, E., "Flow behavior of PP-polymer nanocomposites in capillary and injection molding dies" 32 : 217-226, 2017

      28 Hong, J., "Flow and solidification of semi-crystalline polymer during micro-injection molding" 153 : 119576-, 2020

      29 Garcia, M. C., "Experimental study of shrinkage and ejection forces of reinforced polypropylene based on nanoclays and short glass fibers" 58 : 55-62, 2018

      30 Kumar, D., "Experimental investigation on mechanical and thermo-mechanical properties of alumina filled polypropylene composites using injection molding process" 32 : 316-325, 2017

      31 Richter, S., "Experimental and theoretical studies of agglomeration effects in multi-walled carbon nanotube-polycarbonate melts" 3 : 753-768, 2009

      32 Bose, S., "Electrical, rheological and morphological studies in cocontinuous blends of polyamide 6 and acrylonitrile–butadiene–styrene with multiwall carbon nanotubes prepared by melt blending" 69 : 365-372, 2009

      33 Zhou, S., "Electrical and morphological properties of microinjection molded polystyrene/multiwalled carbon nanotubes nanocomposites" 56 : 1182-1190, 2016

      34 Pandey, G., "Carbon nanotube-based multifunctional polymer nanocomposites" 52 : 355-416, 2012

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2012-01-01 평가 SCIE 등재 (등재유지) KCI등재
      2012-01-01 평가 SCOPUS 등재 (등재유지) KCI등재
      2011-01-01 평가 등재후보학술지 유지 (등재후보2차) KCI등재후보
      2010-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2003-01-01 평가 SCIE 등재 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.01 0.18 0.77
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.59 0.52 0.327 0.06
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