首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Hierarchical polymerized high internal phase emulsions synthesized from surfactant-stabilized emulsion templates
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Hierarchical polymerized high internal phase emulsions synthesized from surfactant-stabilized emulsion templates

机译:由表面活性剂稳定的乳液模板合成的分层聚合的高内相乳液

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摘要

In building construction, structural elements, such as lattice girders, are positioned specifically to support the mainframe of a building. This arrangement provides additional structural hierarchy, facilitating the transfer of load to its foundation while keeping the building weight down. We applied the same concept when synthesizing hierarchical open-celled macroporous polymers from high internal phase emulsion (HIPE) templates stabilized by varying concentrations of a polymeric non-ionic surfactant from 0.75 to 20 w/vol %. These hierarchical poly(merized)HIPEs have multimodally distributed pores, which are efficiently arranged to enhance the load transfer mechanism in the polymer foam. As a result, hierarchical polyHIPEs produced from HIPEs stabilized by 5 vol % surfactant showed a 93% improvement in Young's moduli compared to conventional polyHIPEs produced from HIPEs stabilized by 20 vol % of surfactant with the same porosity of 84%. The finite element method (FEM) was used to determine the effect of pore hierarchy on the mechanical performance of porous polymers under small periodic compressions. Results from the FEM showed a clear improvement in Young's moduli for simulated hierarchical porous geometries. This methodology could be further adapted as a predictive tool to determine the influence of hierarchy on the mechanical properties of a range of porous materials.
机译:在建筑物结构中,诸如桁架梁之类的结构元件被专门放置以支撑建筑物的主机架。这种布置提供了附加的结构层次结构,有助于在将建筑重量降低的同时将载荷转移到基础上。从高内相乳液(HIPE)模板合成分层的开孔大孔聚合物时,我们采用了相同的概念,该模板通过将聚合物非离子表面活性剂的浓度从0.75改变到20 w / vol%来稳定化。这些分级的聚(合并)HIPE具有多峰分布的孔,这些孔被有效地布置以增强聚合物泡沫中的载荷传递机理。结果,与由孔隙率84%的20体积%的表面活性剂稳定的HIPE生产的常规聚HIPE相比,由5体积%的表面活性剂稳定的HIPE生产的分层聚HIPE显示杨氏模量提高93%。使用有限元方法(FEM)来确定孔隙等级对小周期压缩下多孔聚合物力学性能的影响。有限元分析的结果表明,模拟的分层多孔几何结构的杨氏模量有了明显的改善。该方法可以进一步用作确定层级对一系列多孔材料机械性能的影响的预测工具。

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