Microporous Formation Mechanism of Biaxial Stretching PA6/PP Membranes with High Porosity and Uniform Pore Size Distribution.
Microporous Formation Mechanism of Biaxial Stretching PA6/PP Membranes with High Porosity and Uniform Pore Size Distribution.
复制标题
高孔率、孔径分布均匀的双向拉伸PA6/PP膜微孔形成机理
DOI:
10.3390/polym14112291
复制
发表时间:
2022-06-05
期刊:
影响因子:
5
通讯作者:
Guo, Shaoyun
中科院分区:
文献类型:
--
作者:
Fang, Wenxiang;Liang, Guixue;Li, Jiang;Guo, Shaoyun
关键词:
The low porosity and wide pore size distribution of biaxial stretching PP microporous membranes continue to be the primary impediments to their industrial application. To solve this problem, there is a critical and urgent need to study the micropore-forming mechanism of PP membranes. In this research, the interfacial micropore formation mechanism of PA6/PP membranes during biaxial stretching was investigated. PA6/PP membranes containing spherical PA6 and fibrillar PA6 were found to exhibit different interfacial micropore formation mechanisms. Numerous micropores were generated in the PA6/PP membranes, containing PA6 spherical particles via the interface separation between the PP matrix and PA6 spherical particles during longitudinal stretching. Subsequent transverse stretching further expanded the two-phase interface, promoting the breakdown and fibrosis of the PP matrix and forming a spider-web-like microporous structure centered on spherical PA6 particles. In PA6/PP membranes with PA6 fibers, fewer micropores were generated during longitudinal stretching, but the subsequent transverse stretching violently separated the PA6 fibers, resulting in a dense fiber network composed of PA6 fibers interwoven with PP fibers. Crucially, the PA6/PP biaxial stretching of microporous membranes presented an optimized pore structure, higher porosity, narrower pore size distribution, and better permeability than β-PP membranes. Furthermore, this study explored a new approach to the fabrication of high-performance PA6/PP microporous membranes, with good prospects for potential industrial application.
登录
查看更多内容
影响因子:
9.2
作者:
Ihm, D;Noh, J;Kim, J
通讯作者:
Kim, J
影响因子:
4.6
作者:
Chandavasu, C;Xanthos, M;Gogos, CG
通讯作者:
Gogos, CG
影响因子:
4.6
作者:
CHU, F;YAMAOKA, T;KIMURA, Y
通讯作者:
KIMURA, Y
影响因子:
4.6
作者:
CHU, F;YAMAOKA, T;KIMURA, Y
通讯作者:
KIMURA, Y
影响因子:
9.5
作者:
Chandavasu, C;Xanthos, M;Gogos, CG
通讯作者:
Gogos, CG