期刊文献+

木塑复合材料的热氧化规律研究 被引量:8

Study on Thermal Oxidation of Wood-plastic Composites
下载PDF
导出
摘要 以聚丙烯(PP)和木粉为主要原料制备了木塑复合材料(WPC),用差示扫描量热法(DSC)和热重分析(TG)研究了WPC及其主要原料PP、木粉的热氧化曲线特征,并研究了木粉、抗氧剂对WPC氧化诱导时间的影响。结果表明,在含有抗氧剂1010的条件下,PP和WPC都不会被显著氧化,而当抗氧剂1010消耗完毕后(氧化诱导时间之后),PP和WPC都会发生明显热氧化而使DSC曲线上出现放热峰,同时使TG曲线上出现快速热失重;抗氧剂对提高木粉的热稳定性没有显著效果;在WPC中加入抗氧剂硫代二丙酸二月桂酯(DLTP)对提高WPC的热稳定性具有显著效果。 Wood-plastic composites (WPC) were prepared from polypropylene(PP)and wood flour. Thermal properties and oxidation induction time of the WPC, PP, and wood flour were studied using differential scanning calorimetry (DSC) and thermogravimetric (TG). The effects of wood flour and antioxidant on oxidation induction time of WPC were investigated. No significant oxidation was observed in PP or WPC containing antioxidant 1010. An exothermic peak in DSC curve and a rapid weight loss on TG curve were found after exhausting antioxidant 1010 (after oxidation induction time), which means an obvious thermal oxidation decomposition of PP or WPC. The antioxidant had little effect on the thermal stability of wood flour. The thermal stability of WPC was improved obviously by adding antioxidant dilauryl thiodipropionate (DLTP).
出处 《中国塑料》 CAS CSCD 北大核心 2011年第5期46-50,共5页 China Plastics
基金 浙江省重大科技专项(优先主题)(2008C13G2150004) 杭州市科技发展计划(20090231T08)
关键词 聚丙烯 木粉 木塑复合材料 热氧化性能 氧化诱导时间 抗氧剂 polypropylene wood flour wood-plastic composite thermal oxidation oxidation induction time antioxidant
  • 相关文献

参考文献10

  • 1Boyong Xue, Kenichi Ogata, Akinori Toyota. Synthesis of Polymeric Antioxidants Based on Ring-opening Metathesis Polymerization (ROMP) and Their Antioxidant Ability for Preventing Polypropylene (PP) from Thermal Oxidation Degradation[J]. Polymer Degradation and Stability, 2008,93 : 347-352.
  • 2Araujo J R, Waldman W R, M A De Paoli. Thermal Properties of High Density Polyethylene Composites with Natural Fibres Coupling Agent Effect[J]. Polymer Degradation and Stability, 2008,93 : 1770-1775.
  • 3王伟宏,王清文,宋永明.木塑复合材料老化性能研究进展[J].林业科学,2008,44(5):143-149. 被引量:22
  • 4Walter W Focke, Isbe Van Der Westhuizen.Oxidation Induction Time ang Oxidation Onset Temperature of Polyethylene in Air[J]. Journal of Thermal Analysis and Calorimetry, 2010, 99 : 285-293.
  • 5Peltzer M, Navarro R, Lopez J, et al. Evaluation of the Melt Stabilization Performance of Hydroxytyrosol (3,4-dihydroxy-phenylethanol) in Polypropylene [ J ]. Polymer Degradation and Stability, 2010, 95: 1636-1641.
  • 6Schmid M, Ritter A, Affolter S. Determination of Oxidation Induction Time and Temperature by DSC [J]. Journal of Thermal Analysis and Calorimetry,2006, 83 (2):367-371.
  • 7Mason L R, Reynolds A B. Standardization of Oxidation Induction Time Testing Used in Life Assessment of Polymeric Electric Cables [J]. Journal of Applied Polymer Science, 1997,66: 1691-1702.
  • 8陈宗藩,朱坤.国产抗氧剂3114和1010在聚丙烯中的稳定行为[J].合成材料老化与应用,1996,25(3):7-11. 被引量:2
  • 9Bertaud F, .Holmbom B. Chemical Composition of Earlywood and Latewood in Norway Sspruce Heartwood, Sapwood and Transition Zone Wood[J]. Wood Science and Technology, 2004,38(4) : 245-256.
  • 10Lin S Y, Denee C W. Methods in Lignin Chemistry[M]. Heidelberg: Springer-Verlag, 1992:33-62.

二级参考文献35

  • 1Agarwal U P. 1999. On the importance of hydroquinone-p-quinone redox system in the photoyellowing of mechanical pulps//Conference Proceedings 10^th International Symposium in Wood Pulping Chemistry, ( 1 ) : 694 - 697.
  • 2Castellan A, Nourmamode A, Jaeger C, et al. 1993. Photochemistry of methoxy-p-benzoquinone and methoxyhydroquinone in solid 2-hydropxypropyl cellulose films and on fiber paper: UV/VIS (UV/visible light) absorption and diffuse reflectance spectroscopy studies. Nord Pulp Paper Res, 8: 239- 244.
  • 3Chetanachan W, Sookkho D, Sutthitavil W, et al. 2000. PVC/Wood: A New Look in Construction. Proc Vinyltec 2000, sponsored by Vinyl Division-SPE, Philadelphia Section, Philadelphia, PA, October.
  • 4Chetanachan W, Sookkho D, Sutthitavil W, et al. 2001. PVC wood: A new look in construction. J Vinyl & Additive Technology,(7) : 134 - 137.
  • 5Clemons C M, Ibach R E. 2004. Effects of processing method and moisture history on laboratory fungal resistance of wood-HDPE composite. Forest Products Journal,54(4) : 50 - 57.
  • 6Dence C W. 1992. The determination of lignin//Lin S Y, Dence C W. Methods in lignin chemistry. Springer-Verlag, 33 - 62.
  • 7Falk R H, Lundin T, Colin F. 2000. The Effects of Weathering on Wood-Thermoplastic Composites Intended for Outdoor Applications. Proceedings of the 2^nd Annual Conference on Durability and Disaster Mitigation in Wood-rame Housing. November 6 - 8, 2000. Madison, Wisconsin, 175 - 179
  • 8Gijsman P. 2002. New synergists for hindered amine light stabilizers. Polymer, 43(5) :1573 - 1579.
  • 9Heitner C. 1993. Light induced yellowing of wood containing papers//Heitner C, Scaiano J C. Photochemistry of lignocellulostic materials. ACS symposium series, 531. American Chemical Society,3 - 25.
  • 10Hon D N-S. 2000. Weathering and photochemistry of wood//Hon D N-S, Shiraishi N. Wood and cellulostic chemistry. 2^nd ed. New York: Marcel Dekker,512 - 546.

共引文献22

同被引文献85

  • 1LAW T T, MOHD ISHAK Z A. Water absorption and di- mensional stability of short kenaf fiber-filled polypropylene composites treated with maleated polypropylene [ J ]. J Appl Polym Sci, 2011, 120:563-572.
  • 2ROZMAN H D, LAI C Y, ISMAIL H, et al. The effect of coupling agents on the mechanical and physical properties of oil palm empty fruit bunch-polypropylene composites [ J ]. Polym Int, 2000, 49: 1273- 1278.
  • 3BLEDZKI A K, FARUK O. Wood fibre reinforced polypro- pylene composites: Effect of fibre geometry and coupling a- gent on physico-mechanical properties [ J ]. Appl Compos Mater, 2003, 10:365-379.
  • 4ABDELMOULEH M, BOUFI S, BELGACEM M N. Short natural-fiber reinforced polyethylene and natural rubber com- posites: Effect of silane coupling agents and fibers loading [J]. Compos Sci Technol, 2007, 67 (7- 8): 1627 - 1639.
  • 5Zhang Zhengming, Du Hua, Wang Weihong, et al. Pro- perty Changes of Wood-fiber/HDPE Composites Colored by Iron Oxide Pigments After Accelerated UV Weathering [J]. Journal of Forestry Research, 2010, 21(1).. 59-62.
  • 6Ndiaye D, Fanton E, Morlat-Therias S, et al. Durability of Wood Polymer Composites= Part 1. Influence of Wood on the Photochemical Properties[J]. Composites Science and Technology, 2008, 68=2779 2784.
  • 7Beg M D H, Pickering K L. Accelerated Weathering of Unbleached and Bleached Kraft Wood Fiber Reinforced Polypropy!ene Composites [J]. Polymer Degradation and Stability, 2008, 93.. 1939-1946.
  • 8Kaci M, Hebal G, Touati N. Kinetic Study of Hindered Amine Light Stabilizer Photografting in Poly(propylene) Films Under Natural Weathering and Accelerated UV Conditions.. Effect of Additive Concentration [J]. Macro- molecular Materials and Engineering:, 2004, 289..681-687.
  • 9Hon D N S, Shiraishi N. Weathering and Photochemistry of Wood Cellulosic Chemistry [M]. 2nd ed. New York: Marcel Dekker, 2000.- 512-546.
  • 10Lin Qunfang, Zhou Xiaodong, Dai Gance. Effect of Hy- drothermal Environment on Moisture Absorption and Mechanical Properties of Wood Flour Filled Polypropy- lene Composites[J]. Journal of Applied Polymer Science, 2002, 85: 2824-2832.

引证文献8

二级引证文献40

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部