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发泡PVC木塑材料的孔隙结构研究 被引量:1

Study on Pore Structure of Foaming Polyvinyl Chloride Wood-Plastic Composite
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摘要 基于图像法研究发泡PVC木塑材料的孔隙结构,并对孔隙率、中间层孔径分布、孔隙形状系数进行分析.研究结果表明:发泡PVC木塑材料为典型的层状结构,由致密表层和疏松内层构成,夹杂尺径为17.68~25.67μm的木质纤维.内层的孔隙率为73.54%-74.17%,在49.5~101.5μm区间内的孔隙占62.20%,孔隙尺径分布较为集中;孔隙形状系数为1.86,孔隙多为球形至椭球形.建议采取适当提高木纤维掺量或降低成型温度等措施,提高高温流体的黏性.改善孔隙完整性. The pore structure of foaming PVC wood-plastic materials was studied based on image method. The results showed that foaming PVC wood-plastic materials have typical layered structure. And it was composited by the dense surface and the loose inner layer which mixed foot 17.68~25.67 μm of wood fiber. The porosity rate area of inner layer was 73.54%-74.17%, and the 62.2% of pore size was in 49.5-101.5 ixm. Pore size distribution was quite con- centrated. Pore shape factor was 1.86, and it indicated that the pore shape is spherical to ellipsoidal. The analysis re- suits showed that appropriately increasing content wood fiber or lower temperature measures are necessary to increase the viscosity of the fluid in high temperature and improve porosity integrity.
出处 《南通大学学报(自然科学版)》 CAS 2015年第4期53-57,共5页 Journal of Nantong University(Natural Science Edition) 
基金 住房和城乡建设部科学技术项目(K42014159) 南通市应用基础研究计划项目(BK2014043)
关键词 发泡木塑材料 PVC塑料 孔隙结构 孔径分布 foaming wood-plastic composite PVC pore structure pore size distribution
作者简介 陈宇峰(1974-),男,副教授,博士,主要研究方向为新型建筑材料及耐久性.E-mail:chen.yf@ntu.edu.cn
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参考文献9

  • 1PETECHWATrANA N, COVAVISARUCH S. Influences of particle sizes and contents of chemical blowing agents on foaming wood plastic composites prepared from poly (vinyl chloride) and rice hull[J]. Materials & Design, 2011, 32 (5) :2844-2850.
  • 2张学霞,刘星伟,宋瑞文,苗吉军.PVC塑料建筑模板基本性能试验研究[J].低温建筑技术,2013,35(9):38-40. 被引量:14
  • 3MATUANA L M, STARK N M. The use of wood fibers as reinforcements in composites[M]//FARUK O, SAIN M. Biofiber reinforcements in composite materials. Cambridge:Wood-head Publishing, 2015:648-688.
  • 4TIAN Zhenghong, WANG Xiaodong, CHEN Xudong. A new suction method for the measurement of pore size distribution of filter layer in permeable formwork [J]. Construction and Building Materials, 2014, 60:57-62.
  • 5JIANG Haihong, KAMDEM D P. Characterization of the surface and the interphase of PVC-copper amine-treated wood composites[J]. Applied Surface Science, 2010, 256 (14) :4559-4563.
  • 6MICHELL A G M. The limit of economy of material in frame structures[J]. Philosophical Magazine Series, 1904, 8(47) : 589-595.
  • 7SAUCEAU M, FAGES J, COMMON A, et al. New chal- lenges in polymer foaming:a review of extrusion processes assisted by supercritieal carbon dioxide[J]. Progress in Poly- mer Science, 2011, 36(6):749-766.
  • 8XU Zhimin, FAN Xueling, ZHANG Weixu, et al. Numeri- cal analysis of anisotropic elasto-plastic deformation of porous materials with arbitrarily shaped pores [J]. Interna- tional Journal of Mechanical Sciences, 2015, 96/97: 121- 131.
  • 9方永浩,王锐,庞二波,周玥.水泥–粉煤灰泡沫混凝土抗压强度与气孔结构的关系[J].硅酸盐学报,2010,38(4):621-626. 被引量:107

二级参考文献16

  • 1李长瑞,杜嘉林.Midas/Civil在大体积混凝土承台水化热控制中的应用[J].山东交通科技,2011(1):58-61. 被引量:10
  • 2KEARSLEYA E P, WAINWRIGHT P J. The effect of high fly ash content on the compressive strength of foamed concrete [J]. Cem Concr Res, 2001, 31(1): 105-112.
  • 3KEARSLEYA E P, WAINWRIGHT P J. Ash content for optimum strength of foamed concrete [J]. Cem Concr Res, 2002, 32(2): 241-246.
  • 4JONES M R, MCCARTHY A. Utilising unprocessed low-lime coal fly ash in foamed concrete [J]. Fuel, 2005, 84(14/15): 1938-1409.
  • 5KUNHANANDAN Nambiar E K, RAMAMURTHY K. Influence of filler type on the properties of foam concrete [J]. Cem Concr Compos, 2006, 28(5): 475-480.
  • 6JAMBOR J. Pore structure and strength development of cement composites [J]. Cem Concr Res, 1990, 20(6): 948-954.
  • 7TANG Luping. A study on the quantitative relationship between strength and pore size distribution of porous materials [J]. Cem Concr Res, 1986, 16(4): 87-96.
  • 8KEARSLEYA E P, WAINWRIGHT P J. The effect of porosity on the strength of foamed concrete [J]. Cem Concr Res, 2002, 32(2): 233- 239.
  • 9ROBLER M, ODLER I. Investigations on the relationship between porosity, structure and strength of hydrated Portland cement pastes: I. Effect of porosity [J]. Cem Concr Res, 1985, 15(2): 320-330.
  • 10TAYLOR H F W. Cement Chemistry [M]. London: Thomas Telford Publishing, 1997: 253.

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