胶粘剂
表面张力
材料科学
压力敏感
复合材料
润湿
粘附
表面能
张力(地质)
极限抗拉强度
图层(电子)
热力学
物理
作者
Mitsuo Toyama,Toshio Ito,Hiroshi Nukatsuka,M. Ikeda
标识
DOI:10.1002/app.1973.070171120
摘要
Abstract The relationship between wetting and pressure‐sensitive adhesion was studied using an adhesive composed of poly(butyl acrylate) and various adherends of different surface tension. The amount of adhesive deposit was determined quantitatively by tracer technique although the unbonding process was apparently observed as interface failure. The adhesive force and amount of deposit were both dependent on the critical surface tension of the adherends. Maximum tack value and contamination were observed with adherends whose critical surface tension was close to that but a little higher than that of the adhesive. The adhesive force obtained was lower than cohesive strength of adhesive. From this evidence, a mechanism for pressure‐sensitive adhesion was discussed: the bond breaks in the addesive mass around the very minute spots where interaction is at work between adhesive and adherend. Inasmuch as the density of the minute spots per unit area depends on the surface tension, the adhesive force also depends on the surface tension.
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