欢迎登录材料期刊网

材料期刊网

高级检索

简要介绍了无机刚性粒子对聚丙烯(PP)的增韧机理,并着重介绍了利用无机刚性粒子增韧PP时,PP基体、无机刚性粒子的性质及用量、无机刚性粒子在PP基体中的分散情况、无机刚性粒子与PP基体间的界面相互作用等因素对增韧效果的影响.

参考文献

[1] Hayashi K,Morioka T,Toki S.Microdeformation Mechanisms in Propylene-ethylene Block Copolymer[J].J Appl Polym Sci,1993,48:411-418.
[2] Jiang W,Liang H J,Zhang J,et al.Effect of Particle Size on Impact Strength of Polymer Blends[J].J Appl Polym Sci,1995,58:537-539.
[3] Liu Z H,Li R K Y,Tjong S C,et al.Influence of Particle Dispersion on the Matrix Ligament Thickness of Polymer Blends:1.The Configuration of Well-dispersed Particles versus Simple Cubic Lattice[J].Polymer,1998,39:4433-4436.
[4] SU Jiakai.The Preparation of POE Toughening Modified Polypropylene[J].Plast Manuf,2010,(3):65-67 (in Chinese).苏家凯.POE增韧改性聚丙烯复合材料的制备[J].塑料制造,2010,(3):65-67.
[5] Merz E H,Claver G C,Baer M J.Studies on Heterogeneous Polymeric Systems[J].J Polym Sci,1956,22 (101):325-329.
[6] Bucknall C B,Smith R R.Stress-whitening in High-impact Polystyrenes[J].Polymer,1965,6(8):437-446.
[7] Newman S,Strella S.Stress-strain Behavior of Rubber-reinforced Glassy Polymers[J].J Appl Polym Sci,1965,9 (6):2297-2310.
[8] ZHANG Huixuan,BAO Xiaoye,YANG Haidong.Toughening Mechanism of Plastics[J].J Changchun Univ Technol (Nat Sci Edn),2002,23(B08):77-79(in Chinese).张会轩,鲍晓野,杨海东.塑料的增韧机理[J].长春工业大学学报(自然科学版),2002,23(B08):77-79.
[9] HE Yang,LIANG Guozheng,YU Qiuxia,et al.The Blending Toughening Modification of PVC[J].Polym Mater Sci Eng,2004,20(6):6-10(in Chinese).何洋,梁国正,於秋霞,等.PVC的共混增韧改性[J].高分子材料科学与工程,2004,20(6):6-10.
[10] Bucknall C B.Rubber-toughening of Plastics:Part 1,Creep Mechanisms in HIPS[J].Mater Sci,1972,7(12):202-210.
[11] Wu S.Phase Structure and Adhesion in Polymer Blends:A Criterion for Rubber Toughening[J].Polymer,1985,26(12):1855-1863.
[12] Margolina A,Wu S.Percolation Model for Brittle-tough Transition in Nylon/Rubber Blends[J].Polymer,1988,29(12):2170-2173.
[13] Kurauchi T,Ohta T.Energy Absorption in Blends of Polycarbonate with ABS and SAN[J].J Mater Sci,1984,19 (5):1699-1709.
[14] Jancar J,Dibenedetto A,Dianselmo A.Effect of Adhesion on the Fracture Toughness of Calcium Carbonate-filled Polypropylene[J].Polym Eng Sci,1993,33 (9):559-563.
[15] LI Dongming,QI Zongneng.The Fracture Toughness CaCO3 Reinforced Polypropylene Composite[J].Polym Mater Sci Eng,1991,7 (2):18-25 (in Chinese).李东明,漆宗能.碳酸钙增强聚丙烯复合材料的断裂韧性[J].高分子材料科学与工程,1991,7(2):18-25.
[16] QIAO Fang,ZHU Xiaoguang,GUAN Shumin,et al.Criterion of Interfacial Adhesion for Filler Toughening Polyolefin Composites[J].Polym Mater Sci Eng,1996,12 (6):63-67 (in Chinese).乔放,朱晓光,关淑敏,等.硅灰石增韧聚合物的界面粘接判据[J].高分子材料科学与工程,1996,12(6):63-67.
[17] LV Suping,ZHU Xiaoguang,QI Zongneng.Damage Competition Mechanism of the Brittle Ductile Transition of Polymer Blends:Ⅱ.Effect of Matrix Parameters on the Brittle Ductile Transition[J].Polym Mater Sci Eng,1996,12(5):61-66(in Chinese).吕素平,朱晓光,漆宗能.聚合物共混体脆韧转变的损伤竞争理论:Ⅱ.基体性能对脆韧转变的影响[J].高分子材料科学与工程,1996,12(5):61-66.
[18] Fu Q,Wang G H,Shen J S.Polypropylene Toughened by CaCO3 Particle:Brittle-ductile Transition of CaCO3-toughened HDPE[J].J Appl Polym Sci,1993,49 (4):673-677.
[19] LV Suping,ZHU Xiaoguang,LIU Zhehui,et al.Damage Competition Criterion of Brittle Ductile Transition of Polymer Blends:Ⅲ.Effect of Morphology Parameter and Interfacial Adhesion on Brittle Ductile Transition of Polymer Blends[J].Polym Mater Sci Eng,1996,12(6):9-14(in Chinese).吕素平,朱晓光,刘浙辉,等.聚合物共混体脆韧转变的损伤竞争理论:Ⅲ.分散相形态和界面粘接对脆韧转变的影响[J].高分子材料科学与工程,1996,12(6):9-14.
[20] Fuad M Y A,Hanim H,Zarina R,et al.Polypropylene/Calcium Carbonate Nanocomposites-effects of Processing Techniques and Maleated Polypropylene Compatibiliser[J].Exp Polym Lett,2010,4 (10):611-620.
[21] Zhu P,Chen J,Wu C F.Crystallization Behavior and Mechanical Properties of Polypropylene/Modified Carbon Black Composites[J].Polym Compos,2009,30 (4):391-398.
[22] Pérez E,Bernal C,Piacquadio M.Multifractal Analysis of Tensile Toughness and Filler Dispersion for Polypropylene-CaCO3 Composites[J].Appl Surf Sci,2012,258(22):8940-8945.
[23] Zhang Z S,Wang C G,Meng Y Z,et al.Synergistic Effects of Toughening of Nano-CaCO3 and Toughness of β-Polypropylene[J].Compos Part A,2012,43(1):189-197.
[24] Lin Y,Chen H B,Chan C M,et al.Nucleating Effect of Calcium Stearate Coated CaCO3 Nanoparticles on Polypropylene[J].J Colloid Interface Sci,2011,354(2):570-576.
[25] Oyama H T,Sekikawa M,Shida S.Effect of the Interface Structure on the Morphology and the Mechanical,Thermal,and Flammability Properties of Polypropylene/Poly (phenylene ether) /Magnesium Hydroxide Composites[J].Polym Degrad Stab,2012,97(5):755-765.
[26] Karsli N G,Aytac A.Effects of Maleated Polypropylene on the Morphology,Thermal and Mechanical Properties of Short Carbon Fiber Reinforcedpolypropylene Composites[J].Mater Design,2011,32 (7):4069-4073.
[27] Ke F Y,Jiang X W,Xu H Y,et al.Ternary Nano-CaCO3/Poly(ethylene terephthalate) Fiber/Polypropylene Composites:Increased Impact Strength and Reinforcing Mechanism[J].Compos Sci Technol,2012,72(5):574-579.
[28] Kim G M,Michler G H.Micromechanical Deformation Processes in Toughened and Particle-filled Semicrystalline Polymers:Part 1.Characterization of Deformation Processes in Dependence on Phase Morphology[J].Polym,1998,39(23):5689-5697.
[29] Yang K,Yang Q,Li G,et al.Morphology and Mechanical Properties of Polypropylene/Calcium Carbonate Nanocomposites[J].Mater Lett,2006,60(6):805-809.
[30] Yang K,Yang Q,Li G X,et al.Mechanical Properties and Morphologies of Polypropylene with Different Sizes of Calcium Carbonate Particles[J].Polym Compos,2006,27(4):443-450.
[31] Yang K,Yang Q,Li G X,et al.Mechanical Properties and Morphologies of Polypropylene/Single-filler or Hybrid-filler Calcium Carbonate Composites[J].Polym Eng Sci,2007,47(2):95-102.
[32] LI Wendong,YANG Guisheng.Effect of Molecular Weight and Molecular Weight Distribution on Mechanical Properties and Crystallization of Isotactic Polypropylene[J].Polym Mater Sci Eng,1996,(1):41-46 (in Chinese).李文东,杨桂生.相对分子质量及其分布对聚丙烯力学性能和结晶行为的影响[J].高分子材料科学与工程,1996,(1):41-46
[33] LEI Hua,XU Tao,YU Jie.The Effect of Molecular Weight and Its Distribution on Crystalline Morphology of PP Materials[J].Polym Mater Sci Eng,2004,20(5):166-168,173(in Chinese).雷华,徐涛,于杰.相对分子质量及其分布对聚丙烯材料结晶形态的影响[J].高分子材料科学与工程,2004,20 (5):166-168,173.
[34] Lin Y,Chen H B,Chan C M,et al.Effects of Coating Amount and Particle Concentration on the Impact Toughness of Polypropylene/CaCO3 Nanocomposites[J].Eur Polym J,2011,47 (3):294-304.
[35] Lin Y,Chen H B,Chan C M,et al.The Toughening Mechanism of Polypropylene/Calcium Carbonate Nanocomposites[J].Polymer,2010,51(14):3277-3284.
[36] Bramuzzo M,Savadori A,Bacci D.Polypropylene Composites:Fracture Mechanics Analysis of Impact Strength[J].Polym Compos,1985,6(1):1-8.
[37] Zuiderduin W C J,Westzaan C,Hue' tink J,et al.Toughening of Polypropylene with Calcium Carbonate Particles[J].Polymer,2003,44(1):261-275.
[38] Yang K,Yang Q,Li G X,et al.Mechanical Properties and Morphologies of Polypropylene with Different Sizes of Glass Bead Particles[J].Polym Compos,2008,29(9):992-997.
[39] Wu S.A Generalized Criterion for Rubber Toughening:The Critical Matrix Ligament Thickness[J].J Appl Polym Sci,1988,35(2):549-561.
[40] SHI Xuetao,ZHANG Guangcheng,CHEN Ting,et al.Research Progress in the Toughening and Strengthening of Polypropylene via Inorganic Rigid Particles[J].China Plast,2005,19(11):6-11 (in Chinese).史学涛,张广成,陈挺,等.无机刚性粒子增韧增强PP研究进展[J].中国塑料,2005,19(11):6-11.
[41] GAO Jungang,WANG Dong,WEI Xinli.Study of Property of Polypropylene/Nano-TiO2 Hybridized Composite[J].China Plast Ind,2003,31 (8):42-45 (in Chinese).高俊刚,王东,魏鑫丽.聚丙烯/纳米TiO2复合材料的性能研究[J].塑料工业,2003,31(8):42-45.
[42] OU Yuchun.Strengthen and Toughen and Structure of Interfacial Phase of Rigid Particles Filling Polymer[J].Polym Mater Sci Eng,1998,14(2):12-15(in Chinese).欧玉春.刚性粒子填充聚合物的增强增韧与界面相结构[J].高分子材料科学与工程,1998,14(2):12-15
[43] Turcsanyi B,Pukanszky B,Tüd S F.Composition Dependence of Tensile Yield Stress in Filled Polymers[J].J Mater Sci Lett,1988,7(2):160-162.
[44] WANG Jianfeng.Study on Surface Modification of CaCO3 with Core-shell Structure and Its Application in PP composites[D].Fuzhou:Fujian Normal University,2008 (in Chinese).王剑峰.具有核壳结构的CaCO3表面包覆改性及其在PP复合材料中的应用[D].福州:福建师范大学,2008.
[45] Chan C M,Wu J,Li J X,et al.Polypropylene/Calcium Carbonate Nanocomposites[J].Polymer,2002,43(10):2981-2992.
[46] Fuad M Y A,Hanim H,Zarina R,et al.Polypropylene/Calcium Carbonate Nanocomposites-effects of Processing Techniques and Maleated Polypropylene Compatibiliser[J].Exp Polym Lett,2010,4(10):611-620.
[47] FENG Jiachun,CHEN Mingcai.Advance in Polymers Toughened by Rigid Inorganic Particles[J].China Plast,2000,14(11):10-15(in Chinese).冯嘉春,陈鸣才.无机刚性粒子增韧高分子研究进展[J].中国塑料,2000,14(11):10-15.
[48] FANG Zhen.Research on Interfacial Properties of PP/CaCO3 Composites Adjusted by In-situsolid-phase Grafting and Its Performance[D].Fuzhou:Fujian Normal University,2010(in Chinese).方镇.原位固相接枝改性调控聚丙烯/碳酸钙复合材料的界面性质及性能研究[D].福州:福建师范大学,2010.
[49] Zhang Q X,Zhong Z Y,Xie X L,et al.Crystallization and Impact Energy of Polypropylene/CaCO3 Nanocomposites with Nonionic Modifier[J].Polymer,2004,45(17):5985-5994.
[50] Demjén Z,Pukánszky B,Nagy J.Evaluation of Interfacial Interaction in Polypropylene/Surface Treated CaCO3 Composites[J].Compos Part A,1998,29(3):323-329.
[51] Luis I,David P.Dynamic Properties of Thermoplastics Butadiene-Styrene (SBS) and Oxidized Short Carbon Fiber Composites Materials[J].J Appl Polym Sci,1998,67(10):1819-1826.
[52] Ashida M,Noguchi T,Mashimo S.Effrct of Matrix's Type on the Dynamic Properties for Short Fiber Elastomer Composite[J].J Appl Polym Sci,1985,30(3):1011-1021.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%