首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Spatial variation of structural hierarchy in injection molded PVDF and blends of PVDF with PMMA. Part II. Application of microbeam WAXS pole figure and SAXS techniques
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Spatial variation of structural hierarchy in injection molded PVDF and blends of PVDF with PMMA. Part II. Application of microbeam WAXS pole figure and SAXS techniques

机译:注塑PVDF以及PVDF与PMMA的混合物中结构层次的空间变化。第二部分微束WAXS极图和SAXS技术的应用。

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摘要

The influence of blend composition on the processing-structure-property relationships in injection molded PVDF and blends of PVDF with PMMA was investigated. Local crystalline order and chain orientation were studied using newly developed microbeam wide angle X- ray pole figure camera. The depth profiling of lamellar texture was investigated using SAXS combined with microtomy. These techniques provided a general picture on the macro and microstructural spatial gradients developed in the injection molded parts as influenced by the process condition and the composition of the blends.The injection molded PVDF samples were found to exhibit a typical three layer morphology. The skin layer is formed as a result of the extensional flow with dominant c-axis orientation along the flow direction (FD). The crystal lamellae in this region are mainly extended in the direction perpendicular to the FD. The "shear zone" formed under the shear flow possesses "shish-kebab" structure. The "shish" structure is formed under high shear stress with "kebab.. lateral overgrowth that occurs at subsequent stages. The chains in the shear zone are highly oriented in the FD with the local symmetry axis slightly tilted inwards1owards the core. This tilt angle tends to be the largest at the interior portions of the shear crystallized zone essentially following an approximate parabolic profile indicating that this feature of the structure is established by the spatial variation of the flow kinematics during injection. The microbeam X-ray pole figure results indicate that the a- and b- axes of the a crystals are distributed in a plane close to the ND- TD plane in the skin and shear zone. The level of orientation gradually decreases towards the mid symmetry plane at the interior of the samples from the slow cooling that takes place in these regions. The addition of small amount ofdiluent PMMA was found to enhance the chain orientation levels in the PVDF. This was attributed to the increase of melt viscosity as well as reduction of "self' entanglements of the crystallizable PVDF chains.
机译:研究了共混物组成对注塑PVDF以及PVDF与PMMA共混物的加工-结构-性能关系的影响。使用新开发的微束广角X射线极图相机研究了局部晶体有序性和链取向。使用SAXS结合切片机研究了层状结构的深度轮廓。这些技术为共混物的工艺条件和组成的影响提供了有关注塑件中宏观和微观结构空间梯度的总体情况,发现注塑PVDF样品表现出典型的三层形态。由于沿流动方向(FD)具有主导c轴取向的拉伸流动形成表皮层。该区域中的晶体薄片主要在垂直于FD的方向上延伸。在剪切流下形成的“剪切区”具有“烤肉串”结构。 “ shish”结构是在高剪切应力下形成的,在随后的阶段出现“ kebab ..横向过度生长”。剪切区中的链条在FD中高度定向,局部对称轴稍微向内向内倾斜。 X射线极谱图结果表明,该结构在剪切结晶区的内部往往是最大的,基本上遵循近似抛物线形,表明该结构特征是由注入过程中流动运动学的空间变化确定的。 a晶体的a轴和b轴分布在表皮和剪切带中靠近ND-TD平面的平面中,样品的取向方向从慢速向内部逐渐向中间对称平面减小在这些区域发生冷却,发现添加少量的PMMA稀释剂可增强PVDF中的链取向水平,这归因于熔体粘度的增加以及可结晶PVDF链的“自身”缠结的减少。

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