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首页> 外文期刊>International Biodeterioration & Biodegradation >Visualization and measurement of nanometer dimension surface features using dental impression materials and atomic force microscopy
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Visualization and measurement of nanometer dimension surface features using dental impression materials and atomic force microscopy

机译:使用牙科印模材料和原子力显微镜对纳米尺寸表面特征进行可视化和测量

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The resolving ability of polyvinyl siloxane impression material at a submicron scale was tested in order to determine its ability to reproduce the topographical features of worn contact surfaces such as those found in the food processing industry. Three impression materials were tested against three surfaces with standardized surface features. Cryo scanning electron microscopy and atomic force microscopy were used to provide high magnification images of the surfaces and impressions of the surfaces. Dimensional information was also provided by surface profilometry techniques using a solid stylus and a laser profilometer. Although the three impression materials accurately reproduced the line spacing of the largest scale test specimen, the least viscous material gave the most satisfactory surface reproduction, although a degree of vertical relief was lost. This material has been used to monitor wear of food contact surfaces in situ. Such information enables further research into the effect of increased or altered substratum surface roughness upon microbial and organic soil retention.
机译:测试了聚乙烯硅氧烷印模材料在亚微米级的分辨能力,以确定其再现磨损的接触表面(如食品加工行业中发现的)接触表面的形貌特征的能力。针对具有标准化表面特征的三个表面测试了三种印模材料。使用冷冻扫描电子显微镜和原子力显微镜来提供表面的高放大倍率图像和表面印象。还通过使用固体测针和激光轮廓仪的表面轮廓仪技术提供了尺寸信息。尽管三种印模材料可以精确地再现最大比例试样的线距,但粘度最小的材料却能提供最令人满意的表面再现,尽管会损失一定程度的垂直起伏。该材料已用于现场监测食物接触表面的磨损。这样的信息使得能够进一步研究增加或改变的基质表面粗糙度对微生物和有机土壤保留的影响。

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