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Morphology of polytetrafluoroethylene before and after irradiation

机译:聚四氟乙烯辐照前后的形貌

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Supramolecular structure and morphology of as-polymerized, sintered, and gamma-irradiated suspension PTFE were studied with scanning electron microscopy. Irradiation was performed both below and above melting point of crystal phase. Fibrillar supramolecular structure of as-polymerized PTFE is preserved after its sintering. In contrast to as-polymerized PTFE, in the sintered polymer some segments of fibrils form lamellae of thickness 100-300 nm and length up to several microns, with fibrils arranged perpendicularly to a lamella. Irradiation below the melting point (20 and 200 °C) does not change quantitatively PTFE morphology. In both cases and also in the case of pristine PTFE, dense and loose (porous) regions are present in its morphology. Dense regions are packages of irregular shape and consist of densely packaged fibrils. Loose regions consist of individual ribbons and fibrillar lamellae. Irradiation at 200 °C increases greatly the width of lamellae. PTFE structure rearrranges drastically under irradiation above the melting point New morphology units, spherulites of size about 50 μ.m, are formed, the spherulites consisting of radially extending fibrils, and porosity decreases substantially. Formation of spherulites is ascribed to radiation-induced chain scission and decrease in molecular mass and viscosity of polymer.
机译:用扫描电子显微镜研究了聚合后的,烧结的和γ辐照的悬浮PTFE的超分子结构和形态。在结晶相的熔点以下和以上均进行照射。烧结后的聚四氟乙烯的原纤维超分子结构得以保留。与聚合后的PTFE相比,在烧结的聚合物中,某些原纤维段形成厚度为100-300 nm,长度可达几微米的薄片,且原纤维垂直于薄片排列。低于熔点(20和200°C)的辐射不会定量改变PTFE的形态。在这两种情况下以及在原始PTFE情况下,其形态都存在致密和疏松(多孔)区域。密集区域是不规则形状的包装,由密集包装的原纤维组成。松散的区域由单个的条带和原纤维薄片组成。 200°C的辐射大大增加了薄片的宽度。 PTFE结构在高于熔点的辐射下会发生剧烈的重排,形成新的形态学单元,尺寸约为50μm的球晶,这些球晶由径向延伸的原纤维组成,孔隙率大大降低。球晶的形成归因于辐射引起的断链以及聚合物分子量和粘度的降低。

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