聚二甲基硅氧烷
材料科学
毛细管作用
胶粘剂
复合材料
孔力学
球(数学)
毛细管冷凝
接触力学
热力学
化学
有限元法
多孔介质
多孔性
吸附
图层(电子)
有机化学
数学分析
物理
数学
作者
Leonid Dorogin,B. N. J. Persson
出处
期刊:Soft Matter
[The Royal Society of Chemistry]
日期:2018-01-01
卷期号:14 (7): 1142-1148
被引量:12
摘要
Adhesion between a glass ball and a polydimethylsiloxane (PDMS) sample is dependent on the PDMS cross-link density, and the transformation of the material from the uncrosslinked liquid state to the fully crosslinked solid state is investigated in this study. The physical picture reflected a gradual transition from capillary forces driven contact mechanics to the classical Johnson-Kendall-Roberts (JKR)-type contact mechanics. PDMS was produced by mixing the base fluid and a cross-linker at a ratio of 10 : 1 and allowed to slowly cross-link at room temperature with simultaneous measurement of the ball-PDMS interaction force. The PDMS sample was in the liquid state during the first ≈16 hours, and in this case the ball-PDMS interaction was purely adhesive, i.e., no repulsive interaction was observed. Later at the PDMS gel-point the cross-linked PDMS clusters percolate, converting the fluid into a soft (fluid-filled) poroelastic solid. In the transition period, PDMS appears similar to pressure-sensitive adhesives. There we observe so-called "stringing" and permanent deformation of the material impacted by the ball. At room temperature, it takes more than ∼100 hours for PDMS to fully cross-link that can be confirmed by the comparison with the earlier-studied reference PDMS produced at elevated temperatures.
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