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Effect of elastic modulus of PMMA films on its machinability by AFM-based nanoscratching method

机译:基于AFM的纳米划痕方法对PMMA薄膜的弹性模量的影响

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In the present study, elastic modulus is used to estimate the machinability of Polymethylmethacrylate (PMMA) films using an atomic force microscope (AFM). PMMA is widely used in microsystem field as coatings and packaging materials. A better understanding of its mechanical properties is essential to optimize its application. By spinning coating PMMA solution on a silicon substrate, the influences of the spin-coating speed and concentration of the PMMA solution on the thickness of the PMMA films are studied. Results show that the film thickness decreases with the increase of spin-coating speed and the decrease of solution concentration, respectively. Finally PMMA films with dimensions of the thickness spanning from dozens to hundreds nanometers are obtained. The atomic force microscope has been demonstrated to be a useful tool for fabricating and imaging materials at nanometer scale. Elastic moduli of the PMMA films spin coated with different parameters are evaluated using the PeakForce Quantitative NanoMechanics (QNM) module of the AFM system. Experimental results show that smaller elastic moduli are measured on thicker PMMA films. Meanwhile, several V-shape grooves are scratched with the same normal load by AFM probes on different PMMA film specimens. The relationship between elastic moduli and machinability of the PMMA films is obtained by contrasting the depth of the grooves.
机译:在本研究中,弹性模量用于使用原子力显微镜(AFM)估计聚甲基丙烯酸甲酯(PMMA)膜的可加工性。 PMMA在微系统领域中广泛用作涂料和包装材料。更好地了解其机械性能对于优化其应用至关重要。通过在硅基板上旋涂PMMA溶液,研究了旋涂速度和PMMA溶液浓度对PMMA膜厚度的影响。结果表明,随着旋涂速度的增加和溶液浓度的降低,膜厚分别减小。最终获得厚度跨度为几十至数百纳米的PMMA膜。原子力显微镜已被证明是用于制造和成像纳米级材料的有用工具。使用AFM系统的PeakForce定量纳米力学(QNM)模块评估了旋涂有不同参数的PMMA膜的弹性模量。实验结果表明,在较厚的PMMA薄膜上测得的弹性模量较小。同时,在相同的法向载荷下,AFM探针在不同的PMMA薄膜样品上划伤了多个V形凹槽。 PMMA膜的弹性模量与可加工性之间的关系是通过对比凹槽的深度而获得的。

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