论文标题
亚微米颗粒的稀浓度不会改变聚丙烯酰胺水凝胶的脆性断裂
Dilute concentrations of submicron particles do not alter the brittle fracture of polyacrylamide hydrogels
论文作者
论文摘要
在研究脆性水凝胶的动态故障的研究中,已将结合放在过程区尺度上 - 发生物质分离和最终失败的尺度。对于正在研究的聚丙烯酰胺水凝胶系统,该结合设置为20微米。因此,在\ emph {较小}刻度上对材料的任何细微变化都不应原则上改变水凝胶的动态断裂反应。在这里,我们直接通过将亚微米级乳胶聚苯乙烯微球嵌入脆性聚丙烯酰胺水凝胶中的固体分数为0.1 \%。我们验证了以光学显微镜以这种浓度在整个水凝胶材料中分布良好的球体,并使用激光扫描共聚焦显微镜在反向散射模式下重建了这些球体的3D分布。最后,我们用稀释的,嵌入的亚微米球测试了该凝胶的断裂行为,发现该材料常见的脆性材料失败方式\ emph {没有}确实保留了亚微米球。通过比较裂纹尖端打开位移,断裂能和裂纹的速度与先前的实验工作的既定数据,我们证明了这种材料的故障是脆弱的,因为它与纯水凝胶系统非常吻合。
In studies of the dynamic failure of brittle hydrogels, a bound has been placed on the process zone scale - the scale where material separation and ultimate failure occur. For the polyacrylamide hydrogel system under study, this bound is set at 20 microns. Thus, any subtle alterations to the material at a \emph{smaller} scale should not in principle alter the dynamic fracture response of the hydrogel. Here we test this directly by embedding sub-micron-scale latex polystyrene microspheres within the brittle polyacrylamide hydrogel at a solids fraction of 0.1 \%. We verify that the spheres are well-distributed throughout the hydrogel material at this concentration with optical microscopy, and reconstruct the 3D distribution of these spheres using laser scanning confocal microscopy in backscatter mode. Finally, we test the fracture behavior of this gel with the dilute, embedded sub-micron spheres, and find that the brittle material failure modality common to this material \emph{without} the sub-micron spheres is indeed retained. By comparing the crack tip opening displacement, fracture energy and the crack's speed with established data from prior experimental work, we demonstrate that this material's failure is brittle, as it is in good agreement with the pure hydrogel system.