JIANG Shi-jie, CHEN Pi-feng, SUN Ming-yu, DONG Tian-kuo. Theoretical Study on the Apparent Viscosity of Melt Inside the Fused Filament Fabrication Extrusion Liquefier Under Vibration Field[J]. Journal of Northeastern University(Natural Science), 2021, 42(3): 395-401.
[1]Hebda M,McIlroy C,Whiteside B,et al.A method for predicting geometric characteristics of polymer deposition during fused-filament-fabrication[J].Additive Manufac-turing,2019,27:99-108. [2]Rahim T N A T,Abdullah A M,Akil H M.Recent developments in fused deposition modeling-based 3D printing of polymers and their composites[J].Polymer Reviews,2019,59(4):589-624. [3]Beran T,Mulholland T,Henning F,et al.Nozzle clogging factors during fused filament fabrication of spherical particle filled polymers[J].Additive Manufacturing,2018,23:206-214. [4]傅志红,魏灵娇,喻坚.入口速度振动对单管挤出口模熔体流动的影响 [J].塑料工业,2014,42(4):43-47.(Fu Zhi-hong,Wei Ling-jiao,Yu Jian.Effect of oscillation of entrance velocity on polymer melt flow through extrusion dies with a single tube[J].China Plastics Industry,2014,42(4):43-47.) [5]刘跃军,江太君,曾广胜.振动力场下圆管内聚合物熔体速度场的数值模拟 [J].塑料工业,2009,37(10):37-40.(Liu Yue-jun,Jiang Tai-jun,Zeng Guang-sheng.Numeric simulation of velocity field of polymer melts in tube under vibration force field[J].China Plastics Industry,2009,37(10):37-40.) [6]Liu Y J.The formula for apparent viscosity of polymer melt extruding through a capillary under a superimposed vibration [J].Polymer-Plastics Technology and Engineering,2005,44(8/9):1645-1656. [7]Liu Y J,Xiang G,Yu G H.Characterization theory and technique for polymer melt under the superimposed vibration [C] // AIP Conference Proceedings.Monterey,California,2018:1192-1194. [8]Liu Y J,Qu J P,Cao X W.Mathematical model of shear rate of polymer melt dynamic extruding through capillary [J].Journal of Applied Polymer Science,2010,95(5):1056-1061. [9]吴晓,柳和生.振动场对聚合物熔体在异型材挤出口模内的流动影响 [J].塑料工业,2007,35(1):188-191.(Wu Xiao,Liu He-sheng.Effect of oscillation field on polymer melt flow in extrusion die of profile[J].China Plastics Industry,2007,35(1):188-191.) [10]Ellenberger J,Krishna R.Flow enhancement of shear hinning liquids in capillaries subjected to longitudinal vibrations [J]. Chemie Ingenieur Technik,2017,89(10):1360-1366. [11]Hong X M,Xiao X,Zhang Z,et al.Effects of ultrasonic vibration on the rheological behavior of high-density polyethylene composites filled with flash aluminum flake pigments [J].Journal of Applied Polymer Science,2017,134(23):1002-1010. [12]Zheng S X,Xu Z,Su S,et al.Online research on plasticizing process of starch under superimposed vibration field [J].Journal of Macromolecular Science:Part B,2017,56(11/12):821-833. [13]Liu G D,Li H.Extrusion of ultrahigh molecular weight polyethylene under ultrasonic vibration field [J].Journal of Applied Polymer Science,2003,89(10):2628-2632. [14]Wan Y,Fu Z,Wei L,et al.Numerical simulation and experiment on effect of ultrasonic in polymer extrusion processing [C] //IOP Conference Series:Materials Science and Engineering.Kuala Lumpur:Malaysia IOP Publishing,2018:206-214. [15]Li X G,Liu Y J,Li D X.Method of calculation of instantaneous shear stress of polymer melts extruding through a capillary under vibration [J].Journal of Macromolecular Science:Part B,2012,51(6):1228-1241. [16]Bellini A,Guceri S,Bertoldi M.Liquefier dynamics in fused deposition [J].Journal of Manufacturing Science and Engineering,2004,126(2):237-246. [17]Schwach E,Averous L.Starch-based biodegradable blends:morphology and interface properties [J].Polymer International,2004,53(12):2115-2124.(上接第394页)