太赫兹范围内3D打印长丝样品材料折射率光谱测定方法的改进

IF 0.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia Pub Date : 2022-06-24 DOI:10.30837/rt.2022.2.209.22
Y. Khoroshailo, N. Zaichenko, О.B. Zaichenko
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引用次数: 0

摘要

本文研究了3D打印中线材无损检测的热点问题。本课题是利用太赫兹光谱技术在时域内研究了考虑样品对壁反射的3D打印用长丝材料折射率测定过程。来自对面墙壁的反射称为法布里-佩罗效应,而来自墙壁反射的干扰分量传统上是通过求和来考虑的,并表示为一系列。简单求和形式的模型的缺点是拒绝了第4序列以上的成员,导致模型不准确。太赫兹光谱学特别是本研究的主要问题是太赫兹光谱学的快速发展与太赫兹光谱学所用模型的缓慢发展之间的矛盾,而邻近的微波区有一套现成的模型。模型基于对微波束驻波的描述,并进行了改进,转移到时域太赫兹光谱的新区域。科学上的新奇之处在于通过考虑以前未考虑的干扰因素来提高准确性。太赫兹光谱学中使用的法布里-佩罗效应与微波多探头万用表中的反射之间的类比提出了以下建议。首先,由于微波万用表中传感器之间的相位距离与太赫兹光谱中样品的厚度相似,因此,选择了这样的样品厚度来补偿干扰分量;其次,不是简单地求和,而是有可能应用算法处理,其条件是除了主信号外,在时域中记录的回波信号的振幅要小得多,因此,人们可以建立一个方程组,并通过求解它来确定所需的灯丝样品材料的折射率参数。
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Improvement of spectroscopic method for determining refractive index of filament sample material for 3D printing in terahertz range
The article considers the topical problem of non-destructive filament defectoscopy for 3D printing. The subject of the research is the process of determining the refractive index of the filament material for 3D printing taking into account the reflections from sample opposite walls, which is studied by terahertz spectroscopy in the time domain. Reflections from opposite walls are called the Fabry-Perot effect, and interference members resulting from reflections from walls are traditionally taken into account by summation and represented as a series. The disadvantage of the model in the form of a simple summation is the rejection of the members of the series above the fourth, which leads to inaccuracies in the model. The main problem with terahertz spectroscopy and this study in particular is the contradiction between the rapid development of terahertz spectroscopy and the slow development of models used in terahertz spectroscopy, while the adjacent microwave region has a set of ready-made models. Models based on the description of a standing wave in the microwave tract with refinements, transferred to a new region of terahertz spectroscopy in the time domain. The scientific novelty lies in increasing accuracy by taking into account previously unaccounted for interference members. The analogy between the Fabry-Perot effect used in terahertz spectroscopy and the reflections in a microwave multiprobe multimeter suggested the following recommendations. First, because the phase distance between the sensors in the microwave multimeter is similar to the thickness of the sample in terahertz spectroscopy, therefore, there was choosen such a sample thickness that the interference members are compensated, and secondly, instead of simple sum up it is possibility apply algorithmic processing, the condition for this is the existence in addition to the main signal in the time domain of the recorded echo signals of much smaller amplitude, therefore, one can build a system of equations and by solving it to determine the desired refractive index parameters of the filament sample material.
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Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia
Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia ENGINEERING, ELECTRICAL & ELECTRONIC-
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