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Temperature Dependence of Morphology of Transcrystalline at the Interface of Carbon Fiber and Poly (L-Lactic Acid) Composite Under a Temperature Gradient Stage

机译:在温度梯度阶段下碳纤维和聚(L-乳酸)复合材料界面在碳纤维界面处的形态的温度依赖性

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Thin film of carbon fiber (CF) and poly (L-lactic acid) (PLLA) composite was prepared by a solution casting technique. Influence of crystallization temperature (Tc) on morphology of transcrystalline (TC) on the interface between CF and PLLA was investigated under a temperature-controlled gradient (T-gradient) stage with temperature ranging from 90 ° C to 140 ° C. Morphology of TC was observed by polarized optical microscope (POM). Typical TC structure isothermally crystallized on the T-gradient stage was obtained at the surface of CF when T_c =111~132 ° C. As Tc decreased from 132 to 111 ° C, nuclei density on the surface of single fiber increased while the thickness of TC layer decreased. Crystallization kinetics of TC was investigated through isothermal crystalization under POM equipped with a temperature-controlled stage. As Tc decreased, the nucleation rate of TC increased and the growth rate of TC decreased. Furthermore, it revealed that the thickness of TC layer was conducted by the competition between heterogeneous nucleation on the surface of fiber and homogeneous nucleation in the bulk matrix around the fiber. The nucleation rate of TC structure was much higher than homogeneous nucleation rate of spherulites in the bulk matrix when Tc was above 118 ° C. In this case, TC had enough space to develop perpendicular to fiber axis. Consequently, thickness of TC layer was larger at higher crystallization temperature. On the contrary, transcrystallization was suppressed by homogeneous crystalliza- tion when Tc was below 118 ° C due to enhanced nucleation ability of spherulites.
机译:通过溶液铸造技术制备碳纤维(CF)和聚(L-乳酸)(PLLA)复合材料的薄膜。在温度控制的梯度(T梯度)阶段,在温度范围为90℃至140℃的温度范围内,研究了结晶温度(Tc)对Cf和PLLA之间的界面的形态的影响。由偏振光学显微镜(POM)观察。当T_C = 111〜132℃下,在CF的表面上获得在T梯度阶段上等热结晶的典型TC结构从132℃降低132至111℃,单纤维表面上的核密度增加而厚度TC层减少。通过配备温度控制阶段的POM等温结晶研究了TC的结晶动力学。随着TC降低,TC的成核率增加,TC的生长速率下降。此外,揭示了TC层的厚度通过在纤维周围的纤维表面和均匀成核的表面上的异质成核之间的竞争进行。当TC在118℃高于118℃的TC基质中,Tc结构的成核速率远高于块状基质中的均匀成核速率。在这种情况下,TC具有足够的空间以显着垂直于纤维轴。因此,在更高的结晶温度下,TC层的厚度较大。相反,由于增强球晶的成核能力,在118℃以下时,通过均匀结晶抑制过滤金。

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