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(1892) APPLICATION OF PROGRAMMING SYSTEM “R” TO PLANNING OF EXPERIMENTS

机译:(1892)编程系统的应用“R”规划实验

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It is obvious, that many students have to carry out some experimental research during their PhD studies at technical universities. So, in technical practice, it is very important to understand how factors and responses relate to each other, and to reveal which factors are influential for which responses. If some processes are very complex, it is necessary to recognize and identify the relationships between considered variables only experimentally. In order to minimize costs and time and maximize the reliability and objectivity of information obtained about studied system during experimental work, it is necessary to know how perform experiments with a minimum number of experimental runs and consider interaction between factors. That is why the analysis of these processes by classic methods appears to be non-efficient and many times leads to incorrect conclusions. The change of only one selected factor in given time is considered at COST approach within the frame of experimental work, which is inefficient approach, because it does not provide necessary information in order to reach real optimum, experimental work is overpriced. Design of experiments (DOE) methodology is very useful for this purpose, whereby it enables us to obtain the maximum amount of information with high statistical and numerical correctness at minimum number of performed test runs during experiment and authors have a lot of experience with it. The authors of the paper present the usefulness of DOE methodology and programme system R on own experimental research. The paper deals with the application of mathematical and statistical methods to identify and analyse physical and chemical factors (the electrolyte temperature, anodizing time, amount of sulphuric acid H2SO4 in electrolyte, concentration of aluminium cations Al in electrolyte, etc.) acting during the process of aluminium anodic oxidation on the resulting layer thickness at defined current density. Based on DOE methodology the set of 26 experimental runs was carried out, data were analysed and mathematical prediction model was developed. This article is not only helpful for students as inspiration how to design experiments for doctoral thesis. Moreover, it can be stated that the results obtained by this experimental work have important benefits for technical practice, because they were practically verified under conditions of real production.
机译:很明显,许多学生在技术大学的博士学研究期间必须进行一些实验研究。因此,在技术实践中,了解因素和反应如何彼此相关,并揭示哪些因素有影响力。如果某些过程非常复杂,则必须识别并识别实验中所考虑的考虑变量之间的关系。为了最小化成本和时间,并最大限度地提高实验工作期间所获得的信息的可靠性和客观性,有必要知道如何在最小数量的实验运行中进行实验,并考虑因素之间的相互作用。这就是为什么通过经典方法分析这些过程的原因似乎是非高效的,并且许多次数导致不正确的结论。在给定时间内只有一个选定因子的变化是在实验工作框架内的成本方法考虑,这是低效的方法,因为它没有提供必要的信息,以达到真正的最佳,实验工作价格过高。实验设计(DOE)方法对于此目的非常有用,由此,它使我们能够在实验期间的最小执行测试运行中获得具有高统计和数值正确性的最大信息量,并且作者对其进行了很多经验。本文的作者呈现了对自己实验研究的DOE方法和程序系统R的有用性。本文涉及数学和统计方法的应用,以识别和分析物理和化学因素(电解质温度,阳极氧化时间,电解质中硫酸H2SO4的量,铝阳离子Al在电解质中的浓度等)作用铝阳极氧化对限定电流密度的所得层厚度。基于DOE方法,进行了26个实验运行,分析了数据,开发了数学预测模型。本文不仅有助于学生作为灵感如何设计博士论文的实验。此外,可以说,通过该实验工作获得的结果对技术实践具有重要益处,因为它们在实际生产的条件下实际验证。

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