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Method for Generating and Realizing Replicates of Randomly Roughened Surfaces, Tested on Poly Methyl (Methacrylate)

机译:在聚甲基丙烯酸甲酯上测试的生成和实现随机粗糙表面复制品的方法

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摘要

In experimental studies the need of having replicates of specimens is crucial. This requirement becomes even more critical when performing statistical analysis in combination with destructive tests. We report a novel technique to generate and realize random rough surfaces at different stages of degradation based on the central limit theorem, with either linear or nonlinear growth. To materialize the technique, the realization of surfaces is carried out using poly(methyl methacrylate) (PMMA) as substrate, a CO2 laser system as etcher, and degradation is assumed to be linear. To substantiate this method, profiling, imaging analysis, and nanoindentation characterizations techniques are utilized. Though the depths of surfaces developed here grow to Gaussian, the present method can be adapted to any other topology, as long as the surface is mathematically or digitally represented. A successful application of this method using PMMA has been previously reported. The extension to other polymeric materials is dependent solely on the etching process to be used. This method finds direct applications in the forensic sciences, where the safeguarding of evidence material is crucial, allowing for replicate surrogates for destructive testing purposes. Other applications include tribology, in vitro testing of sun protecting factor, and coatings studies.
机译:在实验研究中,需要复制样本至关重要。当结合破坏性测试执行统计分析时,此要求变得更加关键。我们报告了一种新技术,该技术基于中心极限定理(具有线性或非线性增长)在退化的不同阶段生成和实现随机粗糙表面。为了实现该技术,使用聚甲基丙烯酸甲酯(PMMA)作为基材,使用CO2激光系统作为蚀刻剂来实现表面,并假定降解是线性的。为了证实该方法,利用了轮廓分析,成像分析和纳米压痕表征技术。尽管在此展开的表面的深度增长到高斯,但是本发明的方法可以适用于任何其他拓扑,只要该表面以数学或数字方式表示即可。先前已经报道了使用PMMA对该方法的成功应用。向其他聚合物材料的扩展仅取决于要使用的蚀刻工艺。这种方法可直接应用于法医学,其中,证据材料的保护至关重要,从而可以进行重复替代以进行破坏性测试。其他应用包括摩擦学,防晒因子的体外测试和涂料研究。

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