文章摘要
浇注型端羟基聚丁二烯聚氨酯弹性体的合成及性能研究
Synthesis of Castable HTPB Polyurethane and Its Properties
  
DOI:
中文关键词: 浇注型聚氨酯弹性体  端羟基聚丁二烯  扩链剂  力学性能
英文关键词: castable polyurethane elastomer  hydroxy-terminated polybutadiene  chain extender  mechanical property
基金项目:
作者单位
郝立新 青岛化工学院 
朱少庆 青岛化工学院 
张虹 青岛化工学院 
苏桂臣 青岛化工学院 
李德和 青岛化工学院 
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中文摘要:
      采用不同分子量的端羟基聚丁二烯(HTPB)和甲苯二异氰酸酯为主要原料合成预聚物,以N,N-二(2-羟丙基)苯胺为扩链剂制备了浇注型聚氨酯弹性体,并着重研究了预聚体中游离异氰酸酯基含量、扩链剂用量、HTPB分子量以及不同分子量HTPB并用和扩链剂并用对弹性体力学性能的影响,还对弹性体的结构与形态进行了初步分析和探讨。结果表明,预聚体中游离异氰酸酯基含量为9.0%时,拉伸强度最大,且综合性能最佳;扩链系数为0.89时,拉伸强度、定伸应力、硬度出现最大值;HTPB分子量增大,弹性体力学性能有下降趋势,不同分子量HTPB并用时分子量大的HTPB增多,力学性能下降;当HTPBMn=3100,游离异氰酸酯基含量为9.0%,扩链系数为0.89时,弹性体综合性能最佳。电子显微镜照片显示HTPB型聚氨酯有微相分离,且软硬链段分布不规整。
英文摘要:
      A prepolymer was prepared using hydroxy-terminated polybutadienes (HTPB) with different molecular weight and 2,4-toluene diisocyanate.A castable polyurethane was prepared with the said prepolymer and N,N-bis(2-hydroxypropyl)aniline chain extender.The influence of the free isocyanate content in the prepolymer,the extender level,the molecular weight of HTPB,the blend of HTPB with different molecular weight and the blend of various chain extenders on the mechanical properties of the resultant elastomer were investigated.The structure and morphology of the elastomer were preliminary analysed and discussed.The results showed that the maximum tensile strength and the optimum comprehensive properties were obtained when the free isocyanate content in the prepolymer was 9.0%;the maximum tensile strength,modulus and hardness were obtained when the chain extension coefficient was 0.89;the mechanical properties of the elastomer decreased as the molecular weight of HTPB increased.It was showed by TEM that there were micro-phase seperation and irregular distribution of soft and hard blocks in HTPB polyurethane.
Author NameAffiliation
Hao Lixin Qingdao Institute of Chemical Technology 
Zhu Shaoqing Qingdao Institute of Chemical Technology 
Zhang Hong Qingdao Institute of Chemical Technology 
Su Guichen Qingdao Institute of Chemical Technology 
Li Dehe Qingdao Institute of Chemical Technology 
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