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On stress whitening during surface deformation in clay-containing polymer nanocomposites: A microstructural approach

机译:含粘土的聚合物纳米复合材料表面变形过程中的应力增白:一种微观结构方法

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摘要

The study describes the surface deformation behavior and susceptibility to surface damage in two clay-reinforced intercalated polymer nanocom-posite systems that have significant differences in ductility. Neat polybutene (PB) experiences a severe and distinct 'quasi-periodic psiloma-type' deformation process that was absent on reinforcement with clay. In clay-PB nanocomposite system, 'ironing,' a less severe surface damage mechanism is dominant. While in the less ductile polymethylpentene (PMP) polymer system, ploughing-tearing and micro-voiding constitute the surface deformation mechanism. Both the clay-reinforced polymer nanocomposite systems experience significantly reduced stress whitening and is characterized by a lower change in gray level. The optical transparency of the polymeric systems is governed by the micromechanism of deformation and is greater for the ductile PB system. The difference in the susceptibility to surface deformation behavior is discussed in terms of mechanical properties and clay-induced structural changes. The reinforcement of polymers with nanoclay has a positive overriding positive influence on the modulus and yield strength that increases the resistance to surface deformation.
机译:该研究描述了在延展性方面有显着差异的两个粘土增强的插层聚合物纳米复合材料系统中的表面变形行为和表面损伤敏感性。整洁的聚丁烯(PB)经历了严重而独特的“准周期胶质瘤型”变形过程,而在用粘土加固时却没有这种变形过程。在粘土-PB纳米复合材料系统中,“熨烫”是一种较不严重的表面损伤机制。在韧性较低的聚甲基戊烯(PMP)聚合物体系中,犁耕撕裂和微孔隙构成了表面变形机理。两种粘土增强的聚合物纳米复合材料系统均显着降低了应力致白,并且其特征在于灰度变化较小。聚合物系统的光学透明性由变形的微观机制决定,对于延性PB系统则更高。根据机械性能和粘土引起的结构变化讨论了表面变形行为敏感性的差异。用纳米粘土增强聚合物对模量和屈服强度具有积极的积极影响,从而增加了对表面变形的抵抗力。

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