Study on degrees of mesomorphic zone of polymerII. Determination of the degree of mesomorphic zone of <ce:italic>eucommia ulmoides</ce:italic> gum and natural rubber by dynamic mechanical thermal analysis and differential scanning calorimetry
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Study on degrees of mesomorphic zone of polymerII. Determination of the degree of mesomorphic zone of eucommia ulmoides gum and natural rubber by dynamic mechanical thermal analysis and differential scanning calorimetry

机译:聚合物中间形态区的研究。 通过动态机械热分析和差示扫描量热法测定

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摘要

AbstractIn a foregoing article, a new method based on dynamic mechanical thermal analysis(DMTA)for determining the degrees of crystallinity of the natural rubber (NR) and the eucommia ulmoides (EU) gum, with different crosslink densities, has been established. In order to verify the effectiveness of this method, in the present paper, the degrees of crystallinity of NR andEUgum with different crosslink densities will be determined by differential scanning calorimetry (DSC). The results indicate that the degrees of crystallinity determined by DMTA are much higher than those of DSC. This is because the degree of crystallinity determined by DMTA involves not only the ratio of the crystalline zone, but also the ratio of the mesomorphic zone, while the degree of crystallinity tested by DSC includes only the ratio of the crystalline zone. So, the degree of crystallinity, the degree of mesomorphic zone and the degree of amorphous zone of NR andEUgums with different crosslink densities can be quantitatively determined by the combination of DMTA and DSC. The results show that the degree of crystallinity, the degree of mesomorphic zone and the degree of amorphous zone of NR (crystallized at??25?°C for 12?h) andEUgum are 33%, 53%, 14% and 34%, 54%, 13%, respectively. For NR, increasing the crosslink density or decreasing the induced time will decrease the degree of crystallinity and the degree of mesomorphic zone simultaneously, but will increase the degree of amorphous zones. ForEUgum, increasing the crosslink density will decrease the degree of crystallinity and increase the degree of amorphous zone, but keep the degree of mesomorphic zone invariably consistent within the critical crystallization point, which is approximately 55%. At the end of the paper, the impact of crystallization on the mechanical properties ofEUgum and NR is discussed as well.Graphical abstractThe number of free chain segments of the amorphous zone in NR andEUgum, tested through DMTA, can be used to calculate their degree of crystallinity, which involves not only the ratio of the crystalline zone, but also the ratio of the mesomorphic zone. So, the degree of crystallinity determined by DMTA is much larger than that of DSC. As a result, the degree of crystallinity, the degree of mesomorphic zone and the degree of amorphous zone of NR and EU gums can be quantitatively determined by DMTA and DSC, which are 33%, 53%, 14% and 34%, 54%, 13%, respectively.Display Omitted]]>
机译:<![CDATA [ 抽象 在前面的文章中,一种基于动态机械热分析(DMTA)的新方法,用于确定结晶度的程度已经建立了天然橡胶(NR)和杜仲(欧盟)口香糖,已经建立了不同的交联密度。为了验证该方法的有效性,在本文中,Nr和 Eu:斜体> Gum具有不同交联密度的斜体的结晶度将通过差示扫描量热法(DSC)来确定。结果表明,DMTA测定的结晶度远高于DSC的结晶度。这是因为DMTA测定的结晶度不仅涉及结晶区的比例,而且涉及中间晶区的比例,而DSC测试的结晶度仅包括结晶区的比率。因此,结晶度,中间形态的程度和Nr和斜孔,具有不同的交联密度,可以通过DMTA和DSC的组合定量地确定。结果表明,结晶度,中晶区的程度和NR的无定形区(25℃结晶,12?H)和欧盟:斜体>口香糖分别为33%,53%,14%和34%,54%,13%。对于NR,增加交联密度或降低诱导的时间将同时降低结晶度和中间形态区的程度,但会增加非晶区的程度。对于 eu 口香糖,增加交联密度将降低结晶度并增加非晶区的程度,但保持中间晶区的程度在临界结晶点内总是一致的,即大约55%。在纸张结束时,还讨论了结晶对欧盟:斜体>胶和NR的机械性能的影响。 图形抽象 Nr和 eu 口香糖的无定形区域的自由链段数通过DMTA测试的,可用于计算其结晶度的程度,这不仅涉及结晶区的比例,而且涉及晶体区的比例。因此,DMTA确定的结晶度远大于DSC的结晶度。结果,结晶度,膈肌区的程度和Nr和Eu Gums的无定形区的程度可以通过DMTA和DSC定量测定,33%,53%,14%和34%,54% ,分别为13%。 显示省略 ]]>

著录项

  • 来源
    《Polymer Testing》 |2017年第2017期|共8页
  • 作者单位

    Key Laboratory of Beijing City on Preparation and Processing of Novel Polymer Materials Beijing University of Chemical Technology;

    Engineering Research Center of Elastomer Materials Energy Conservation and Resources Ministry of Education Beijing University of Chemical Technology;

    Engineering Research Center of Elastomer Materials Energy Conservation and Resources Ministry of Education Beijing University of Chemical Technology;

    Engineering Research Center of Elastomer Materials Energy Conservation and Resources Ministry of Education Beijing University of Chemical Technology;

    Beijing Key Laboratory of Bioprocess College of Life Science and Technology Beijing University of Chemical Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

    Eucommia ulmoidesgum; Natural rubber; Degree of crystallinity; Degree of mesomorphic zone; Degree of amorphous zone;

    机译:杜仲Ul.uroidesgum;天然橡胶;结晶度;中间形区的程度;无定形区;

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