期刊文献+

聚氨酯/13X分子筛复合材料的制备及表征 被引量:7

Preparation and Characterization of PU/13X Zeolite Composites
下载PDF
导出
摘要 本文采用预聚法制备了聚酯类聚氨酯/13X分子筛复合材料,考察了分子筛含量和交联系数对聚氨酯弹性体力学性能、耐溶剂性能的影响。结果表明,13X分子筛的加入量为7%,交联系数为0.90时,聚氨酯弹性体的耐撕裂强度从73.1 kN/m提高到94.2 kN/m,拉伸强度从44.5 M Pa提高到49.9 M Pa,断裂伸长率从580%提高到640%,溶胀度从103.78%降低到72.58%。由DSC和DM A分析可知PU/13X复合材料具有更好的微相分离及动态力学性能。 The pre-polymerization method was used to prepare polyurethane/zeolite 13X composites with the polyethylene glycol adipate (PEA), toluene 2,4-ditsocyanate (TDI-100), MOCA and zeolite 13X. The effects of zeolite content, crosslinking coefficient on mechanical properties of polyurethane elastomer were investigated. The results show that the mechanical property of polyurethane elastomer is enhanced obviously by the filling of zeolite. PU/13X composites, with 7% zeolite 13X contented and at crosslinking coefficient 0. 90 represented that the tensile strength increases from 44.5MPa to 49.9 MPa, the elongation percentage at break increases from 580% to 640%, the tear resistance strength increases from 73.1 kN/m to 94.2 kN/m and the de- gree of swelling decreases from 103.78% to 72.58%, which are compared to those of pure PU. FT-IR analysis told us that there is an interaction between zeolite surface and the chain of PEA. DSC and DMA analysis indicated that PU/13X composites have better microphase separation and dynamic-mechanical property.
出处 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2007年第3期113-116,共4页 Polymer Materials Science & Engineering
基金 国家自然科学基金资助项目(50273025)
关键词 聚氨酯 分子筛 力学性能 微相分离 polyurethane zeolite mechanical property microphase separation
  • 相关文献

参考文献7

二级参考文献29

  • 1MAJi-sheng QIZong-neng ZHANGShu-fan.高分子学报 (Acta Polymerica Sinica),2001,(3):325-328.
  • 2.化工百科全书(4) (Chemical Encyclopaedia(4))[M].化学工业出版社 (Chemical Industry Press),1999.803~821.
  • 3.化工百科全书(4)[M].化学工业出版社,1999.803-821.
  • 4饯逸泰.结晶化学导论(第二版)[M].中国科学技术出版社,1999.259-263.
  • 5Roe R L, Weidert E W. U S P . 6,150,025 Nov 21, 2000.
  • 6Colby S A. U S P. 5,952,053 Sep 14,1999.
  • 7Blinka T A, Edwards F B, Miranda N R, et al. U S P. 6,391,403 May 21,2002.
  • 8Baral D, De P P, Nando G B. Polymer Degradation and Stability, 1999, 65(1): 47-51.
  • 9Petrovic Z S, Zhang W. Glassy and Elastomeric Polyurethanes Filled with Nano-Silica Particles. 3rd Yugoslov- Materials- Research- Society Conference,SEP20-24, 1999, Trends in Advanced Materials and Processes, 2000:171-176.
  • 10Ball P, Garwin Li. Nature, 1992, 355(9):761-766.

共引文献155

同被引文献137

引证文献7

二级引证文献15

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