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1.中国科学院化学研究所 中国科学院工程塑料重点实验室 北京分子科学国家研究中心 北京 100190
2.青岛大学 生物多糖纤维成形与生态纺织国家重点实验室 海洋纤维新材料研究院 青岛 266071
3.中国科学院大学 北京 100049
Published:2020-1,
Published Online:22 November 2019,
Received:10 September 2019,
Revised:6 October 2019,
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Li-li Wang, Ping Zhu, Xia Dong, Du-jin Wang. Strain-induced Crystallization of Long Chain Polyamide and Its Copolymers. [J]. Acta Polymerica Sinica 51(1):1-11(2020)
Li-li Wang, Ping Zhu, Xia Dong, Du-jin Wang. Strain-induced Crystallization of Long Chain Polyamide and Its Copolymers. [J]. Acta Polymerica Sinica 51(1):1-11(2020) DOI: 10.11777/j.issn1000-3304.2020.19165.
长碳链聚酰胺(LCPA)作为聚酰胺的特殊品种,较长的亚甲基链和极性酰胺基团使其兼具聚烯烃和聚酰胺的双重特性. 在加工或使用过程中,拉伸诱导结晶现象对长碳链聚酰胺及其共聚物的强度和弹性行为具有重要影响,深入认识其在外场下的微观结构响应对该材料的设计及制备具有重要意义. 围绕拉伸诱导结晶作用,该专论主要基于本团队2010年以来在长碳链聚酰胺及其共聚物的拉伸诱导结晶工作,并综述了国内外的相关研究,涉及拉伸诱导结晶现象、拉伸诱导结晶的影响因素、拉伸诱导结晶与力学性能的构效关系及拉伸诱导结晶的表征方法等方面.
As a special species of polyamide
long chain polyamide (LCPA) provides combined performances of polyolefin and polyamide due to its chemical structure with long methylene chains segments between two neighbor polar amide groups. During the processing or application
strain-induced crystallization (SIC) has a significant effect on the mechanical strength and elasticity of LCPA and LCPA based its copolymers. It is of great importance to further study the microstructural evolution mechanism for the design and production of LCPA and its copolymers under the external field. With a focus on the SIC
this feature article mainly summarizes our group’s work on SIC of LCPA since 2010 and some related studies of other researchers
including the phenomenon of SIC observed in LCPA and its copolymer
the influencing factors of SIC and the corresponding rules
the correlation between SIC and the mechanical properties
and the characterization technics as well.
长碳链聚酰胺长碳链聚醚酰胺拉伸诱导结晶构效关系表征
Long chain polyamidePoly(ether-b-amide)Strain-induced crystallizationStructure-property relationshipCharacterization
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