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Pre-drawing induced evolution of phase, microstructure and property in para-aramid fibres containing benzimidazole moiety

机译:含有苯并咪唑部分的对芳族聚酰胺纤维中相,微观结构和性能的预拉伸诱导的进化

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Copoly( p -phenylene-benzimidazole-terephthalamide) (PBIA) fibre was spun by wet-spinning and drawn in a coagulating bath with different pre-drawing ratios ( R ). The evolution of phase, microstructure structure and conformation induced by pre-drawing were studied by 2D-wide angle X-ray diffraction (2D-WAXD), attenuated total reflection-Fourier transform infrared (ATR-FTIR) and scanning electron microscope (SEM). WAXD results indicate that mesomorphic/amorphous coexisting phases transform to crystal/mesomorphic/amorphous coexisting phases when R is higher than 75%. Even when R reaches an ultimate value of 100%, the content of crystalline is only 10.7% but the mesomorphic phase content is higher than 40%, which indicates that the 3D well defined crystalline structure is disturbed by the introduction of asymmetric benzimidazole units. The ATR-FTIR results indicate that the increase of R leads to conformational order, contributing to phase transition. The results of SEM show that PBIA fibres have a typical skin–core morphology. The sizes of micro-fibrils in the core part become more homogeneous with the increase of R . Moreover, with the increasing R from 0% to 100%, the tensile strength and initial modulus of the PBIA fibre significantly increase from 7.8 cN dt ~(?1) to 21.5 cN dt ~(?1) and from 238 cN dt ~(?1) to 884 cN dt ~(?1) , respectively. Dynamic mechanical analysis (DMA) of PBIA fibres shows two transition peaks, and some amorphous phase is confined by the order phases.
机译:通过湿旋转旋转并在具有不同预拉伸比(R)的凝血浴中脱落,通过不同的预拉伸比(R)旋转共振(对苯基 - 苯并咪唑 - 对苯二酰胺)(PBIA)纤维。通过2D宽角X射线衍射(2D-WAXD)研究了通过预先拉伸的相位,微观结构结构和构象的演化,减弱了总反射 - 傅里叶变换红外(ATR-FTIR)和扫描电子显微镜(SEM) 。 WAXD结果表明,当R高于75%时,中晶/无定形共存相转化为晶体/中晶/非晶态共存相。即使当R达到100%的最终值时,结晶的含量也仅为10.7%,但胚胎相含量高于40%,表明3D良好定义的结晶结构因引入不对称苯并咪唑单元而受到干扰。 ATR-FTIR结果表明R的增加导致构象顺序,有助于相转变。 SEM的结果表明,PBIA纤维具有典型的皮肤核心形态。核心部分中的微原纤维的尺寸随着r的增加而变得更加均匀。此外,随着0%至100%的增加,PBIA纤维的拉伸强度和初始模量从7.8 CN DT〜(α1)至21.5cn dt〜(α1)和238cn dt〜(分别为884cn dt〜(?1)。 PBIA纤维的动态力学分析(DMA)显示出两个过渡峰,一些无定形相由订单阶段限制。

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