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Temperature modulated DSC and DSC studies on the origin of double melting peak in poly(ether ether ketone)

机译:温度调制DSC和DSC研究聚醚醚酮中双熔融峰的起源

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摘要

Crystallization kinetics and melting behavior of poly(ether ether ketone) were studied by differential scanning calorimetry (DSC) and temperature-modulated DSC (TMDSC).The isothermal crystallization was performed between 290 and 320 deg C.The Avrami exponents and the level off time were determined from the Avrami analysis.The minimum induction time required for the occurrence of double melting peaks was obtained by increasing the isothermal crystallization time in steps of one minute.It was found that the level off time did not represent the delimitation of single- or double-melting peak behavior.To elucidate the behavior of double melting peaks,the samples were crystallized isothermally between 280 and 320 deg C for 10 min,and then they were heated to 380 deg C at 2 deg C/min.From the TMDSC results,the exothermic behavior in the non-reversing curves supports the mechanism of melting-recrystallization at T_c<=310 deg C.On the other hand,no exothermic flow for T_c at 320 deg C supports the mechanism of two different morphologies.As the isothermal crystallization temperature increased from 280 to 320 deg C,the contribution of melting-recrystallization to the upper melting peak gradually decreased,and finally disappeared.
机译:通过差示扫描量热法(DSC)和温度调节DSC(TMDSC)研究了聚醚醚酮的结晶动力学和熔融行为,在290至320℃之间进行了等温结晶.Avrami指数和稳定时间通过Avrami分析确定。发生双解链峰所需的最短诱导时间是通过以1分钟为步长增加等温结晶时间而获得的,发现平整时间并不代表单峰或单峰的界限。为了阐明双熔融峰的行为,将样品在280至320摄氏度之间等温结晶10分钟,然后以2摄氏度/分钟的速度加热至380摄氏度。 ,非可逆曲线上的放热行为支持了T_c <= 310℃时熔融重结晶的机理。另一方面,T_c在320℃时没有放热流动随着等温结晶温度从280℃升高到320℃,熔融再结晶对上部熔融峰的贡献逐渐减小,最终消失。

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