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Real-time in situ light scattering and X-ray scattering studies of polyethylene blown film deformation

机译:聚乙烯吹膜变形的实时原位光散射和X射线散射研究

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摘要

A series of linear low-density polyethylene blown films were studied using the techniques of time-resolved, small-angle X-ray scattering (SAXS) using a synchrotron source and a time-resolved, small-angle light scattering. Scattering patterns and the load-extension curve were obtained simultaneously during deformation. It was found that the initial orientation of the film, with respect to the tensile axis, was important in determining the operative elastic deformation modes. Films drawn paral lel to the machine direction (MD) showed evidence for lamellar separation, whereas interlamellar shear occurred in films drawn parallel to the transverse direction. In films drawn at 45 degrees to MD, lamellar stack rotation was observed via SAXS. In all cases, the yield point corresponded to the activation of crystallographic deformation and the onset of the disruption of crystalline lamellae. In films drawn parallel to MD, the SAXS showed a distinct 4-point pattern upon macroscopic yield, indicating lamellar corrugation. Regardless of the initial orientation, a fibrillar morphology was achieved at some strain after yield that coexisted with the fragmenting lamellar morphology. Comparison of results from deformed spherulitic bulk samples showed that the study of oriented blown film containing a stacked lamellar morphology may be used, to a first approximation, as a model for the deformation of different regions of spherulites in unoriented spherulitic samples. (C) 1998 John Wiley & Sons, Inc. [References: 28]
机译:使用使用同步加速器源的时间分辨小角度X射线散射(SAXS)和时间分辨小角度光散射技术,研究了一系列线性低密度聚乙烯吹塑薄膜。在变形过程中同时获得了散射图案和载荷-延伸曲线。已经发现,相对于拉伸轴,膜的初始取向对于确定有效的弹性变形模式很重要。沿纵向(MD)平行拉伸的薄膜显示出层状分离的证据,而平行于横向拉伸的薄膜则发生层间剪切。在与MD成45度角拉伸的薄膜中,通过SAXS观察到层状堆叠旋转。在所有情况下,屈服点对应于晶体学变形的激活和晶体薄片破裂的开始。在平行于MD的胶片中,SAXS在宏观屈服时显示出明显的4点图案,表明层状波纹。不管初始取向如何,在屈服后与断裂的层状形态共存的某些菌株中都获得了原纤维形态。对变形球状块状样品的结果进行的比较表明,可以将包含堆叠层状形态的定向吹塑薄膜的研究用作近似模型,以作为未定向球状样品中球晶不同区域变形的模型。 (C)1998 John Wiley&Sons,Inc. [参考:28]

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