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首页> 外文期刊>Journal of Microscopy >Two new microscopical variants of thermomechanical modulation: scanning thermal expansion microscopy and dynamic localized thermomechanical analysis
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Two new microscopical variants of thermomechanical modulation: scanning thermal expansion microscopy and dynamic localized thermomechanical analysis

机译:热机械调制的两个新的微观变体:扫描热膨胀显微镜和动态局部热机械分析

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摘要

We describe two ways in which thermomechanical modulation may be used in conjunction with scanning thermal microscopy, in order to distinguish between different components of an inhomogeneous sample. The sample is subjected to a modulated mechanical stress, and the heating is supplied locally by the probe itself. Scanning thermal expansion microscopy is an imaging mode, in which an imposed localized temperature modulation is used to generate thermal expansion, which in turn produces mechanical strain and gives thermal expansion contrast images. We present results using two types of active thermal probe. For polymer/resin samples, the depth of material contributing to the measured thermal expansion is typically a few micrometres. Under certain conditions we observe a reversal in contrast as the frequency of the temperature modulation is increased. In dynamic localized thermomechanical analysis, the modulated stress is applied directly, and accompanied by a localized temperature change, as used in other forms of localized thermal analysis. The resulting modulated lateral force signals are obtained. The glass transition of polystyrene is detected, and shows a significant variation with frequency. The amplitude or phase signal may be used to obtain image contrast for inhomogeneous samples. [References: 22]
机译:我们描述了热机械调制可以与扫描热显微镜结合使用的两种方法,以区分不均匀样品的不同成分。样品受到调制的机械应力,并且加热本身由探头本身提供。扫描热膨胀显微镜是一种成像模式,其中使用施加的局部温度调制来生成热膨胀,热膨胀又会产生机械应变并提供热膨胀对比图像。我们介绍了使用两种类型的有源热探头的结果。对于聚合物/树脂样品,有助于测量热膨胀的材料深度通常为几微米。在某些条件下,随着温度调制频率的增加,我们观察到相反的变化。在动态局部热力学分析中,直接应用调制应力,并伴随局部温度变化,这与其他形式的局部热分析一样。获得所得的调制横向力信号。检测到聚苯乙烯的玻璃化转变,并显示出随频率的显着变化。幅度或相位信号可用于获得非均匀样本的图像对比度。 [参考:22]

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