Stern Theodor
Department of Chemical Engineering, Biotechnology and Materials, Faculty of Engineering, Ariel University, Ariel 40700, Israel.
Polymers (Basel). 2024 Aug 25;16(17):2411. doi: 10.3390/polym16172411.
The decades-long paradigm of continuous and perpetual lamellar twisting constituting banded spherulites has been found to be inconsistent with several recent studies showing discontinuity regions between consecutive bands, for which, however, no explanation has been found. The present research demonstrates, in three different semicrystalline polymers (HDPE, PEG10000 and Pluronic F-127), that sequential transcrystallinity is the predominant mechanism of banded spherulite formation, heterogeneously nucleated on intermittent self-shear-oriented amorphous layers excluded during the crystals' growth. It is hereby demonstrated that a transcrystalline layer can be nucleated on amorphous self-shear-oriented polymer chains in the melt, by a local melt flow in the bulk or in contact with any interface-even in contact with the interface with air, e.g., in contact with an entrapped air bubble or at the edges of the sample-or nucleated following the multiple directions and orientations induced by a turbulent flow. The bilateral excessive local exclusion of amorphous non-crystallizable material, following a short period of initial non-banded growth, is found to be the source of dislocations leading to spirally banded spherulites, through the transcrystalline layers' nucleation thereon. The present research reveals and demonstrates the sequential transcrystalline morphology of banded spherulites and the mechanism of its formation, which may lead to new insights in the understanding and design of polymer processing for specific applications.
几十年来,关于带状球晶是由连续且持续的片晶扭转构成的范式,已被发现与最近的几项研究不一致,这些研究表明连续条带之间存在不连续区域,然而,尚未找到对此的解释。本研究在三种不同的半结晶聚合物(高密度聚乙烯、聚乙二醇10000和普朗尼克F - 127)中证明,连续的横穿结晶是带状球晶形成的主要机制,在晶体生长过程中被排除的间歇性自剪切取向非晶层上异质成核。由此证明,横穿结晶层可以在熔体中的非晶自剪切取向聚合物链上成核,通过本体中的局部熔体流动或与任何界面接触——甚至与空气界面接触,例如与截留的气泡接触或在样品边缘——或者在湍流诱导的多个方向和取向下成核。在初始的非条带生长短时间后,发现非晶不可结晶材料的双侧过度局部排除是导致螺旋带状球晶的位错源,通过横穿结晶层在其上的成核。本研究揭示并证明了带状球晶的连续横穿结晶形态及其形成机制,这可能会为特定应用的聚合物加工的理解和设计带来新的见解。