首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Relating strain hardening moduli in high density polyethylene copolymers to anisotropic molecular deformation using infrared spectroscopic imaging
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Relating strain hardening moduli in high density polyethylene copolymers to anisotropic molecular deformation using infrared spectroscopic imaging

机译:用红外光谱成像在高密度聚乙烯共聚物中与高密度聚乙烯共聚物中的应变硬化模量相对异位分子变形

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摘要

Understanding and establishing the relationship between the microstructure of high density polyethylene (HDPE) resins and their mechanical behavior is critical in designing new products and catalysts to produce these polymers. Recent advancement in the mid-infrared (IR) spectroscopic imaging techniques combined with intuitive mathematical modelling can provide a powerful tool in solving this industry-wide long-standing challenge. In this work, IR spectral anisotropy methods coupled with the Crystal Tie Mesh (CTM) model were used to examine the effects of various resin architectures (monomodal and bimodal) on the bulk strain hardening moduli in cold drawn HDPE samples. Using a polarized laser for IR imaging, the related stress strain profiles of local strain gradients (100% sample strain) were modelled using a modified Eyring algorithm. A clear correlating trend was found between a resulting structural parameter in this algorithm (beta) and the bulk strain hardening moduli for all samples studied. Results show that the more stable the molecular network (e.g., the lamella segments connected via bridging entanglements and tie molecules), the less strain is observed (i.e. higher beta values) when a load is applied. The observed structural effects on the beta parameter are consistent with previous results obtained using the CTM model that views the system to be a type of cross linked network formed by multiple bridging and entangled tie chains through common crystalline lamella.
机译:理解和建立高密度聚乙烯(HDPE)树脂的微观结构与其力学行为之间的关系对于设计新产品和催化剂以产生这些聚合物至关重要。中红外线(IR)光谱成像技术的最新进步与直观的数学建模相结合,可以提供解决这个行业范围的长期挑战的强大工具。在这项工作中,使用与晶体扎网(CTM)模型耦合的IR光谱各向异性方法来检查各种树脂架构(单峰和双峰)对冷拉HDPE样品的散装菌株硬化模量的影响。使用用于IR成像的偏振光激光器,使用修改的ePified Outing算法建模局部应变梯度(100%样品应变)的相关应力应变谱。在该算法(β)中产生的结构参数和用于所有研究的所有样品的总体应变硬化模量之间存在明显的相关趋势。结果表明,当施加负荷时,将越稳定的分子网络(例如,通过桥接缠结和扎带分子连接的薄片区段),观察到较低的菌株(即,β值更高)。观察到对Beta参数的结构效应与使用使用CTM模型获得的先前结果一致,该CTM模型观察系统是通过普通结晶薄片通过多个桥接和缠绕的扎带链形成的交叉连接网络的类型。

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