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首页> 外文期刊>Journal of Materials Science >Ultrasonic cavitation test applied to thin metallic films for assessing their adhesion with mercaptosilanes and surface roughness
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Ultrasonic cavitation test applied to thin metallic films for assessing their adhesion with mercaptosilanes and surface roughness

机译:超声空化测试应用于金属薄膜,以评估其与巯基硅烷的粘合性和表面粗糙度

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Evaluating the adhesion of micrometer or nanometer thick coatings is a challenging question which concerns many application fields. This is especially true for thin films deposited on a substrate of elastic modulus higher than that of the film, or for granular coatings, that do not allow the use of common adhesion tests. Usually, applied to characterize the wear resistance of bulk materials or thick coatings, the ultrasonic cavitation test is applied here to evaluate the adhesion strength of gold and copper thin films (~200 nm) that are evaporated on a silicon substrate. The test is shown to be sensitive enough to discriminate the influence of the surface chemistry on the adhesion strength of gold and copper films. Particularly, the role of (3-mercaptopropyl)triethoxysilane as an effective adhesion promotor is demonstrated. Furthermore, the role of surface roughness of the substrate is characterized and discussed in order to get further insights on the way this parameter interferes with the ultrasonic test and determines the adhesive strength of the coating. An estimate of the adhesive strength is given on the basis of the coating delamination kinetics.
机译:评估微米或纳米厚涂层的附着力是一个具有挑战性的问题,涉及许多应用领域。对于沉积在弹性模量高于薄膜的基材上的薄膜或不允许使用常规粘合力测试的粒状涂料,尤其如此。通常,为了表征散装材料或厚涂层的耐磨性,此处使用超声空化测试来评估在硅基板上蒸发的金和铜薄膜(约200 nm)的粘合强度。该测试被证明足够敏感,可以区分表面化学对金膜和铜膜粘合强度的影响。特别地,证明了(3-巯基丙基)三乙氧基硅烷作为有效的粘合促进剂的作用。此外,对基材表面粗糙度的作用进行了表征和讨论,以进一步了解该参数干扰超声测试并确定涂层的粘合强度的方式。根据涂层分层动力学给出对粘合强度的估计。

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