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Real-time small angle X-ray scattering study of two-stage melt crystallization of PEEK

机译:PEEK两步熔融结晶的实时小角X射线散射研究

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摘要

We report a study of dual stage crystallization and subsequent melting of Poly(etherether ketone) (PEEK) and an 80/20 blend with Poly(etherimide) (PEI) using differential scanning calorimetry (DSC) and real-time small angle X-ray scattering (SAXS). The treatment scheme involves annealing/crystallization at T 1 followed by annealing/crystallization at T 2, where either T 1 < T 2 or T 1 > T 2. The holding time during isothermal melt treatment was varied. DSC studies show there exist two endotherms when T 1 < T 2, and three endotherms when T 1 > T 2, for both PEEK and PEEK/PEI blend. Dual populations of crystals form during the first stage regardless whether T 1 < T 2 or T 1 > T 2. In the high-to-low temperature sequence, holding at the second stage causes an additional third population of crystals to grow, creating a third endotherm. As the first stage holding time increases, space available for the growth of additional crystals decreases, and the amount of crystals formed during the second stage decreases. During melting, the average long period increases while the linear stack crystallinity decreases continuously. The average crystal thickness also first increases, as the least perfect, thinnest crystals melt. Eventually, the crystal thickness levels off and begins to decline with increasing temperature. Melting of the thickest, most perfect crystals occurs most probably from the surfaces accounting for the roll-off and decrease in crystal thickness during the final stages of melting.
机译:我们报告了使用差示扫描量热法(DSC)和实时小角度X射线对聚醚醚酮(PEEK)和聚醚醚酰亚胺(PEI)的80/20共混物进行双阶段结晶和随后熔融的研究散射(SAXS)。处理方案包括在T 1 退火/结晶,然后在T 2 退火/结晶,其中T 1 或T 1 。等温熔融处理期间的保持时间是变化的。 DSC研究表明,PEEK和PEEK / PEI共混物在T 1 时存在两个吸热,而在T 1 时存在三个吸热。不论T 1 还是T 1 ,在第一阶段都会形成双晶。在从高到低的温度顺序中,第二阶段的保持会导致另外的第三批晶体生长,从而产生第三次吸热。随着第一阶段保持时间的增加,可用于生长其他晶体的空间减少,并且在第二阶段期间形成的晶体数量减少。在熔化期间,平均长周期增加,而线性叠层结晶度连续下降。随着最不完美,最薄的晶体熔化,平均晶体厚度也会首先增加。最终,晶体厚度趋于平稳并随温度升高而开始下降。最厚,最完美的晶体熔化最有可能发生在表面,这说明在熔化的最后阶段会发生滚落和晶体厚度减小。

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  • 来源
    《Journal of Materials Science》 |2001年第6期|1349-1361|共13页
  • 作者单位

    Department of Physics and Astronomy Tufts University;

    Department of Physics and Astronomy Tufts University;

    Department of Physics and Astronomy Tufts University;

    Department of Physics and Astronomy Tufts University;

    Argonne National Laboratory;

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