球晶(高分子物理)
微晶
材料科学
层状结构
相(物质)
结晶学
微束
相变
同步加速器
复合材料
衍射
极地的
放松(心理学)
凝聚态物理
变形(气象学)
化学物理
极限抗拉强度
亚稳态
位错
上部结构
延伸率
应变率
压扁
压力(语言学)
堆积
动力学
形态学(生物学)
聚结(物理)
偏振光显微镜
光学
X射线晶体学
原位
微观结构
单斜晶系
丁二腈
作者
Congwen Zhao,Shaodong Mou,Zhiyong Jiang,Yongfeng Men
出处
期刊:Macromolecules
[American Chemical Society]
日期:2026-01-29
卷期号:59 (3): 1358-1370
标识
DOI:10.1021/acs.macromol.5c03216
摘要
The stress-accelerated form II to form I phase transformation in Polybutene-1 (PB-1) is critical to its mechanical properties, yet the phase transition kinetics at different microdomains within its spherulitic superstructure upon tensile elongation remains elusive. This study elucidates the in situ structural evolution and polymorphic transition within individual PB-1 spherulites in form II as a function of strain by means of the synchrotron microbeam wide-angle X-ray diffraction (WAXD) technique. The spatially resolved maps of crystallinity, phase content, and crystallite size across the spherulite at various strains confirm that localized inter- and intralamellar block slips were at first activated at the spherulite center at small deformations followed by the spread to the diagonal domains with the lamellar stacks oriented at 45° to the stretching direction and meanwhile the equatorial and polar ones started to develop a greater stress. The finding that the local stress in the diagonal domains is stronger than that in the equatorial and polar ones at moderate deformations is directly evidenced by the markedly faster growth rate of the form I fraction and decrease in the crystallite size L(200)II for the diagonal regions. On the other hand, the interspherulitic domains exhibit a significantly more fraction of the form I crystallites induced by stretching than those within the spherulite due to the sparse arrangement of crystalline lamellae and thus the higher local strain accommodated by the soft matrix. These direct, spatially resolved observations provide a comprehensive micromechanical picture linking the initial microstructure, the local strain fields, and the complex, heterogeneous pathways of stress-induced phase transformation in PB-1 spherulites.
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