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首页> 外文期刊>Journal of Applied Polymer Science >The Structure Change of Dynamically Fatigued Unfilled Natural Rubber Vulcanizates
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The Structure Change of Dynamically Fatigued Unfilled Natural Rubber Vulcanizates

机译:动态疲劳未填充天然橡胶硫化胶的结构变化

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摘要

The submicrostructure of dynamically fatigued Unfilled natural rubber vulcanizates was investigated by using scanning electron microscope (SEM) and atomic force microscope (AFM). AFM photographs showed the sample surface roughness became worse after tensile fatigue and the largest surface undulation was as twice that of the unfatigued sample. SEM photographs showed that many micropores of 10(1)-10(2) mn, a sort of defect, occurred on the cross section of samples after tensile fatigue. The surface roughness became weaker and the size of the micropore was reduced to a few to dozens of nanometers with the addition of antiaging agent N-(1,3-dimethyl butyl butyl)-N'-phenyl-p-phenylene diamine (4020); furthermore, the mechanical properties and dynamic viscoelastic properties in the later period of fatigue changed much. E' decreased greatly and tan 6 increased obviously with the extension of fatigue. It indicated that 4020 was only effective in the early period of tensile fatigue.
机译:通过使用扫描电子显微镜(SEM)和原子力显微镜(AFM)研究了动态疲劳的未填充天然橡胶硫化胶的亚显微结构。 AFM照片显示,样品在拉伸疲劳后表面粗糙度变得更差,最大的表面起伏是未疲劳样品的两倍。 SEM照片显示,拉伸疲劳后,在样品的横截面上出现了许多10(1)-10(2)mn的微孔,这是一种缺陷。通过加入抗老化剂N-(1,3-二甲基丁基丁基)-N'-苯基-对亚苯基二胺(4020),表面粗糙度变得更弱,微孔的尺寸减小到几十到数十纳米。 ;此外,疲劳后期的力学性能和动态粘弹性性能发生了很大变化。随着疲劳的延长,E'大大降低,tan 6明显增加。这表明4020仅在拉伸疲劳的早期有效。

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