首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Critical operating factors of a jetting dispenser driven by piezostack actuators: statistical analysis of experimental results
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Critical operating factors of a jetting dispenser driven by piezostack actuators: statistical analysis of experimental results

机译:用压电袋执行器驱动的喷射分配器的关键操作因素:实验结果的统计分析

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摘要

In this work, critical operating factors of a jetting dispenser driven by a dual type of the piezostack actuators are experimentally identified. As a first step, geometrical information and working principle of the jetting dispenser are briefly addressed. Subsequently, in order to investigate jetting performance eight important operating (or working) factors of the dispenser such as exciting stroke and frequency are chosen based on two levels for each factor. Then, in order to reduce the number of experiments, one-sixteenth fractional factorial design method is adopted and an experimental apparatus to measure the weight of a single dot is established. After measuring the weight of a single dispensed dot under each test condition, the effect of each operating factor on the jetting performance is analyzed using a statistical program. The main effects and interaction effects on the average and standard deviation of the weight of a single dispensed dot are then analyzed and discussed in details. In addition, the analysis of variance results for average single dot weight is undertaken to determine the specific values of the critical factors which can provide optimal jetting performances. Consequently, critical operating factors for a small amount and small weight variation of a single dot are identified, which directly represent the performances of a non-contact jetting dispenser driven by piezostack actuators such as dotting accuracy and dotting speed.
机译:在这项工作中,通过双重类型的压电棘爪致动器驱动的喷射分配器的关键操作因素进行了实验识别。作为第一步,简要介绍喷射分配器的几何信息和工作原理。随后,为了研究喷射性能,基于每个因素的两个级别选择分配器的八个重要操作(或工作)因子,例如激发行程和频率。然后,为了减少实验的数量,采用第十六分数阶段设计方法,并建立测量单点重量的实验装置。在每个测试条件下测量单个分配点的重量后,使用统计程序分析每个操作因子对喷射性能的影响。然后分析和讨论对单个分配点重量和标准偏差的主要效果和相互作用效应并详细讨论。此外,对平均单点重量的差异结果分析是为了确定可以提供最佳喷射性能的关键因素的特定值。因此,鉴定了少量和小型重量变化的关键操作因子,其直接表示由压电棘爪致动器驱动的非接触式喷射分配器,例如点测精度和点速度。

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