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1)  polysiloxane [,pɔli,sə'lɔksein]
聚硅氧烷
1.
Study on polysiloxane in situ modification and its application of precipitated nm SiO_2;
沉淀纳米SiO_2的聚硅氧烷原位改性及应用研究
2.
Structure characterization and film morphology of polyether/UV-absorbing groups containing polysiloxane;
聚醚-紫外侧基聚硅氧烷的结构表征与膜形态
3.
Application of polysiloxane with both polyether and derivative of benzophenone groups;
聚醚/二苯甲酮类紫外吸收基聚硅氧烷应用性能研究
2)  polysiloxanes
聚硅氧烷
1.
Development of the low-yellowing and hydrophilic aminopolysiloxanes;
低黄变和亲水性氨基聚硅氧烷的发展
2.
New amido amino functional polysiloxanes for easy care finish;
用于免烫整理的新型酰胺基氨基功能性聚硅氧烷
3.
Study on epoxy resin modified by polysiloxanes.;
聚硅氧烷改性环氧树脂的研究进展
3)  Polydimethylsiloxane
聚硅氧烷
1.
Synthesis and characterization of polystyrene-g-polydimethylsiloxane copolymers;
聚苯乙烯-聚硅氧烷接枝共聚物的合成与表征
2.
Based on polydimethylsiloxane(PDMS) and poly(methly acrylate)(PMA), a series of sequential interpenetrating polymer networks(IPN), which glass transition temperature is near the room temperature and have excellent damping property above 20 ℃.
制备了聚二甲基硅氧烷与聚丙烯酸甲酯序列半互穿聚合物网络阻尼材料 ,其中聚硅氧烷为交联结构 ,它采用粘度分别为 330 0 Pa· s和 70 0 0 Pa· s 2个品种 ,聚丙烯酸甲酯为线性聚合物。
3.
A composite membrane is prepared by blend and then crosslinking of hydrophilic chitosan and hvdrophobic polydimethylsiloxane.The membrane has a max tensile strength 13.3MPa in wet state with and ultimate enlongation 95%.The results of DSC analyses indicate that the memdrane is stable between-40℃ and+190℃.
利用亲、疏水性不同的甲壳糖和聚硅氧烷,通过共混、交联制备出复合膜材。
4)  polyorganosiloxane [,pɔli,ɔ:ɡənə,si'lɔksein]
聚硅氧烷
1.
Effect of polyorganosiloxane on solvent resistance of NR surface;
聚硅氧烷对天然橡胶表面耐溶剂性的影响
2.
The Synthesis and Drug Release Property of Polyorganosiloxanes Containing Pendant Long Alkyl Ester and Cholesteryl Ester Groups;
侧链带长链烷酯基和胆甾酯基聚硅氧烷的合成及释药性能研究
3.
The surface modification of natural rubber(NR) was carried out by grafting polyorganosiloxane under microwave irradiation.
微波辐照下,用聚硅氧烷对天然橡胶表面进行了处理。
5)  siloxane [英][si'lɔksein]  [美][sɪ'lɑk,sen, saɪ-]
聚硅氧烷
1.
The result of infrared spectroscopy shows that graft polymerˉization takes place between LDPE and siloxane.
为了改善低密度聚乙烯(LDPE)电缆料的性能,采用聚硅氧烷与LDPE物理共混及化学接枝两种方法对其进行改性。
2.
Result of infrared spectroscopy shows that graft polymerization takes place between low density polyethylene and siloxane.
研究了低密度聚乙烯接枝聚硅氧烷后的环境应力开裂性。
3.
This paper discusses the chemical modification of low density polyethylene with siloxane by grafting.
为改善聚乙烯电缆料在高电场下的老化性能 ,用显微镜观察并拍照等方法研究了不同聚硅氧烷接枝量对改性低密度聚乙烯的结晶形态、电性能及机械性能等的影响。
6)  alkoxy polysiloxane
烷氧基聚硅氧烷
补充资料:聚硅氧烷
      见硅氧烷、有机硅高分子。
  

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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