【正文】
heory of formation of polymer crystals with folded chains in dilute solution[J]. J Res Natl Bur Stand. 1960. 64A: 73102.[14] Hamiltonian P, Edwards B J, Ottinger H C, Jongschaap R J J. Timestructure invariance criteria for closure approximations [J]. Rhys Rev E. 1997. 56(4): 40974103.[15] Bushman A C, McHuch A J. A continuum model for the dynamics of flowinduced crystallization [J]. Journal of Polymer Science Part B: Polymer Physics. 1996. 34(14): 23932407.[16] Doi M, Edwards S F. The theory of polymer dynamics[M]. Oxford: Clarendon Press. 1988. 260264.[17] Bird R B, Hassager O, Armstrong R C. Dynamics of polymeric liquids[M]. 1987. New York: John Wiley and Sons Inc. [18] Coppola S, Grizzuti N, Maffettone P L. Microrheological modeling of flowinduced crystallization [J]. Macromolecules. 2001. 34(14): 50305036.[19] Lagasse R R, Maxwell B. An experimental study of the kinetics of polymer crystallization during shear flow[J]. Polymer Engineering and Science. 1976. 16(3): 189199.[20] 孫雅杰, 楊其, 李光憲, 毛益民, 馮德才, 楊坤. 流動(dòng)致結(jié)晶建模方法的研究進(jìn)展[J]. 高分子通報(bào). 2006. 4: 4346.[21] Eder G, JaneschitzKriegl H. Structure development during processing: crystallization[J]. Materials Science and Technology. 1997. 8(4): 189268.[22] Schneider W, Koppl A, Berger J. NonIsothermal Crystallization of Polymers. System of Rate Equations [J]. International Polymer Processing. 1988. 2(34): 151154.[23] Meijer H E H, Zuidema H, Peters G W M. Development and Validation of a Recoverable StrainBased Model for FlowInduced Crystallization of Polymers[J]. Macromol Theory Simul. 2001. 10: 447460.[24] Wunderlich B, Arakawa T. Polyethylene crystallized from the melt under elevated pressure[J]. Journal of Polymer Science PartA: General Papers. 1964. 2(8): 36973706.[25] Southern J H, Porter R S. The properties of polyethylene crystallized under the orientation and pressure effects of a pressure capillary viseter[J]. Journal of Applied Polymer Science. 1970. 14(9): 23052317.[26] Southern J H, Porter R S, Desper C R, Ulrich R D. Orientation and structure of polyethylene crystallized under the orientation and pressure effects of a pressure capillary viseter[J]. Journal of Applied Physics. 1970. 41(11): 42844289.[27] Southern J H, Crystal R G. Morphology of polyethylene crystallized under the simultaneous influence of pressure and orientation in a capillary viseter[J]. Journal of Polymer Science PartA2: Polymer Physics. (9): 16411655.[28] 毛益民, 楊其, 李光憲, 黃亞江. 剪切場(chǎng)下聚合物結(jié)晶形態(tài)學(xué)研究進(jìn)展[J]. 高分子材料科學(xué)與工程. 2004. 20(1): 3644.[29] Somani R H, Hsiao B S, Nogales A. Structure Development during shear flowinduced crystallization iPP: insitu smallangle Xray scattering study[J]. Macromolecules. 2000. 33(25): 93859394.[30] Lee O, Kamal M R. Experimental study of postshear crystallization of polypropylene melts[J]. Polymer Engineering and Science. 1999. 39(2): 236248.[31] Binsbergen F L. Orientationinduced nucleation in polymer crystallization[J]. Nature. 1966. 211(5021): 516517.[32] Varga J, KargerKocsis J. Review supermolecular structure of isotactic polypropylene[J]. Journal of Materials Science. 1992. 27(10): 25572579.[33] 解云川, 張乾, 范曉東. 調(diào)制式DSC測(cè)定聚乙烯的結(jié)晶度[J]. 高分子材料科學(xué)與工程. 2004. 20(3): 179186.[34] 呂文琦, 胡家璁. FRSXRSA表征雙軸取向PET的結(jié)晶度[J]. 高分子學(xué)報(bào). 1996. 4: 385395.[35] 王建國(guó), 劉宇, 黃葆同. 極低密度聚乙烯與其它聚乙烯的共混[J]. 高分子學(xué)報(bào). 1998. (4): 471476.[36] 潘泳康, 阮吉敏, 周達(dá)飛. GMA熔融接枝PP的結(jié)晶性能研究[J]. 高分子材料科學(xué)與工程. 1999. 15(3): 159162.[37] 王路. 聚合物結(jié)晶行為影響因素的研究[J]. 陜西科技大學(xué)學(xué)報(bào). 2008. 26(5): 7778.[38] 王文生, 王旭霞. 聚合物結(jié)晶度對(duì)注塑制品性能影響的研究[J]. 科技情報(bào)開(kāi)發(fā)與經(jīng)濟(jì). 2002. 12(3): 117135.[39] 霍紅, 李宏飛, 蒙延峰, 蔣世春, 安立佳. 剪切場(chǎng)下等規(guī)聚丙烯的結(jié)晶行為[J]. 高分子通報(bào). 2004. 6(3): 5866.[40] 王天興. 注塑成型技術(shù)[M]. 1989. 北京: 化學(xué)工藝出版社. 406411.[41] 張承琦, 曾邦祿. 塑料成型工藝學(xué)[M]. 1984. 北京: 輕工業(yè)出版社. 2427.[42] 吳唯. 注射成型中壓力對(duì)聚丙烯制品性能的影響[J]. 華東理工大學(xué)學(xué)報(bào). 1994. 20(6): 773777.[43] 嚴(yán)正, 申開(kāi)智, 張杰, 秦玉廷. 振動(dòng)場(chǎng)作用下注射成型制件力學(xué)性能的實(shí)驗(yàn)研究[J].高分子材料科學(xué)與工程. 2001. 17(4): 8285.[44] 李又兵, 申開(kāi)智, 張杰, 廖永衡, 高雪芹. 低頻振動(dòng)對(duì)聚乙烯注射件力學(xué)性能的影響[J]. 中國(guó)塑料. 2003. 17(4): 4347.[45] 柯文體. 振動(dòng)注射制件的力學(xué)性能及振動(dòng)場(chǎng)中熔體的流變行為研究[D]. : 四川大學(xué)碩士論文.[46] 楊良波, 周起雄, 曾泰, 申開(kāi)智, 張杰. 振動(dòng)注塑對(duì)IPP力學(xué)性能和晶型的影響[J]. 現(xiàn)代塑料加工應(yīng)用. 2008. 20(3): 14.[47] 白石順一郎. 注塑成型模具[M]. 1987. 北京: 烴加工出版社. 8182.[48] Ozawa T, Kanari K. A theoretical approach to temperature modulated power pensation DSC[J]. Journal of Thermal Analysis and Calorimetry. 1999. 56(2): 691697.[49] 馬躍敏, 鄭大榮. 調(diào)制式DSCTM在食品方面的應(yīng)用[J]. 化學(xué)世界. 1998. 39(9): 470472.[50] Okazaki I, Wunderlich B. Reversible melting in polymer crystals detected by temperaturemodulated differential scanning calorimetry[J]. Macromolecules. 1997. 30(6): 17581764.[51] Defoor F, Groeninckx G, Schouterden P, Van der Heijden B. Molecular, thermal and morphological characterization of narrowly branched fractions of 1octene LLDPE: 2. Study of the lamellar morphology by transmission electron microscopy[J]. Polymer. 1992. 33(24): 51865190.[52] VoigtMartin I G, Mandelkern L. A quantitative electronmicroscopic study of a linear polyethylene fraction crystallized at different temperatures. Journal of Polymer Science: Polymer Physics Edition. 1981. 19(11): 17691790.[53] Robertson M B, Klein P G, Ward I M, Packer K J. NMR study of the energy difference and population of the gauche and trans conformations in solid polyethylene[J]. Polymer Communication. 2001. 42(3): 12611264.[54] Vandermiers C, Moulin J F, Damman P, Dosiere M. Characterization of molecular heterogeneities of LLDPE by multiple crystallization dissolution steps[J]. 2000. 41(8): 29152923.[55] Piorkowska E, Galeski A. Crystallization of isotatic polypropylene and highdensity polyethylene under negative pressure resulting from unpensated volume change[J]. Journal of Polymer Science Part B: Polymer Physics. 1993. 31(10): 12851291.[56] 拉貝克 J F. 高分子科學(xué)實(shí)驗(yàn)方法物理原理應(yīng)用[M]. 北京: 科學(xué)出版社. 1987.[57] Mcfaddin D C, Russell K E, Wu G, Hetding R D. Characterization of polyethylenes by Xray diffraction and 13CNMR: Temperature studies and the nature of the amorphous halo[J]. Journal of Polymer Science P