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首页> 外文期刊>Journal of Applied Polymer Science >Evolution of the amorphous fraction of PEEK during annealing at atmospheric and high pressure above the glass transition temperature
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Evolution of the amorphous fraction of PEEK during annealing at atmospheric and high pressure above the glass transition temperature

机译:在高于玻璃化转变温度的大气压和高压下退火过程中,PEEK非晶态组分的演变

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摘要

The constrained fraction of the amorphous phase of semi-crystalline polymers is in an out-of-equilibrium state so that ?physical aging?-like features can be observed (e.g., by calorimetry) even above the glass transition temperature. This was already addressed in the literature in several semi-crystalline polymers at atmospheric pressure. Despite the well-known influence of pressure on molecular mobility, the pressure-sensitivity of these microstructure rearrangements has never been tackled. This study focuses on annealing in highly pressurized Poly-Ether-Ether-Ketone (PEEK), compared with atmospheric pressure. The phenomenon is tracked by ex-situ Differential Scanning Calorimetry (DSC). A significant influence of pressure is evidenced, without any complete equivalence with temperature. Indeed, pressure seems to confine rearrangements within spatially limited domains. The stability and coexistence of reorganization processes upon successive annealings is also investigated. Finally, relationships between constrained and free amorphous phase rearrangements are discussed via the different glass transition shifts observed after atmospheric or high pressure annealing.
机译:半结晶聚合物的无定形相的受约束部分处于不平衡状态,因此甚至在玻璃化转变温度以上也可以观察到(例如,通过量热法)类似“物理老化”的特征。在文献中已经在大气压力下的几种半结晶聚合物中解决了这一问题。尽管众所周知压力对分子迁移率的影响,但这些微观结构重排的压力敏感性从未得到解决。这项研究的重点是与大气压相比,在高压聚醚醚酮(PEEK)中进行退火。通过异地差示扫描量热法(DSC)跟踪该现象。证明了压力的显着影响,没有与温度完全相等。实际上,压力似乎将重排限制在空间有限的域内。还研究了连续退火后重组过程的稳定性和共存性。最后,通过在大气压或高压退火后观察到的不同玻璃化转变位移,讨论了受约束的非晶态和自由的非晶态重排之间的关系。

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