测定针织物张力的非接触超声法

Q3 Engineering
N. Zashchepkina, V. Zdorenko, M. O. Markin, S.V. Barilko, D.O. Shipko
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引用次数: 0

摘要

得到了通过被控材料的超声振动的测量振幅值。将这些值与织物样品在施加初始张力时通过的波的振幅进行比较。然后,确定每个针织物样品在其三个区域的总张力电流值。测定了试样材料不同区域的总张力分布。已经确定,超声波通过纺织材料不同区域的振幅可以用来确定针织物在其织物的整个宽度上的张力。说明了用超声波非接触法测定针织设备上织物张力的可行性和方便性。针织物的张力是针织物生产中的主要工艺参数,它的大小决定了成品织物的物理、机械性能和消费性能,尤其是基重。在生产过程中直接使用操作技术控制针织物的张力,将提高成品的质量,从而提高个人防护装备,特别是防弹衣使用的可靠性。提出了在针织设备上生产针织物时,通过改变在张力作用下穿过材料的超声波振幅来确定针织物张力的方法,而在工艺设备的运动过程中,超声波振幅也会发生变化。所提出的非接触式方法很有前途,因为它比现有的接触式方法有许多显著的优点。在研究过程中,对超声波的振幅进行了实验测量。这些波在拉伸时穿过各种材料的织物样品。用频率为40 kHz的超声波脉冲信号对针织物样品进行辐照。以58x2特克斯凯夫拉线和高分子量44x3特克斯聚乙烯线双织1x1弹性针织物样品为研究基础。对于结构不允许在张力作用下通过孔隙拉伸的纺织织物,需要根据相应的样品额外调整非接触式传感器的频率和容量。得到了通过被控材料的超声振动的测量振幅值。将这些值与织物样品在施加初始张力时通过的波的振幅进行比较。然后,确定每个针织物样品在其三个区域的总张力电流值。测定了试样材料不同区域的总张力分布。超声波的振幅,通过纺织材料在其不同的区域传播,对总张力值的依赖关系,并对织物的张力分布的值在其整个宽度得到。给出了用标准法和超声法测定该参数所显示的张力的δP偏差。还确定了通过受控织物不同区域的波幅值之间的偏差δU。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Contactless ultrasonic method for determining knitted fabrics tension
The values of the measured amplitudes of ultrasonic vibrations that have passed the controlled material have been obtained. These values were compared with the amplitude of the waves passing through the fabric sample when the initial tension was applied to it. After that, the total current value of the tension of each sample of the knitted fabric in its three zones was determined. The distribution of the total tension in different zones of the sample material was also determined. It has been established that the amplitude of ultrasonic waves passing through different zones of the textile material can be used to determine the tension of the knitted fabric over the entire width of its fabric. The possibility and expediency of determining the fabric tension on knitting equipment by using the ultrasonic contactless method has been shown. The tension of the knitted fabric in its manufacture is the main technological parameter, the value of which determines the physical, mechanical and consumer properties of the finished fabric, especially basis weight. The use of operational technological control of the tension of knitted fabrics directly during their production will improve the quality of finished products, and, accordingly, the reliability of use in personal protective equipment, in particular in body armour. It has been proposed to determine the tension of knitted fabrics in their production on knitting equipment by changing the amplitude of ultrasonic waves passing through the material under the action of tension, which also changes during the movement of the process equipment. The proposed contactless method is quite promising, since it has a number of significant advantages over the existing contact methods. In the course of the research, experimental measurements of the amplitude of ultrasonic waves have been carried out. These waves passed through samples of fabric of various materials while stretching. The samples of knitted fabrics were irradiated with an ultrasonic pulse signal with a wave frequency of 40 kHz. The samples of knitted fabrics from 58x2 Tex Kevlar threads and high molecular weight 44x3 Tex polyethylene yarns with double weave 1x1 elastic have been taken as a basis for the research. For textile fabrics, the structure of which does not allow stretching through pores under the action of tension, it is necessary to additionally adjust the contactless sensors in frequency and capacity depending on the corresponding sample. The values of the measured amplitudes of ultrasonic vibrations that have passed the controlled material have been obtained. These values were compared with the amplitude of the waves passing through the fabric sample when the initial tension was applied to it. After that, the total current value of the tension of each sample of the knitted fabric in its three zones was determined. The distribution of the total tension in different zones of the sample material was also determined. The dependences of the amplitude of ultrasonic waves, transmitted through the textile material in its different zones, on the value of the total tension, and on the value of the distribution of the tension of the fabric over its entire width were obtained. The deviations δP of the tension display between the determination of this parameter by the standard and ultrasonic methods are shown. The deviations δU between the amplitudes of waves passing through different zones of the controlled fabric are also determined.
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来源期刊
Journal of Achievements in Materials and Manufacturing Engineering
Journal of Achievements in Materials and Manufacturing Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
2.10
自引率
0.00%
发文量
15
期刊介绍: The Journal of Achievements in Materials and Manufacturing Engineering has been published by the Association for Computational Materials Science and Surface Engineering in collaboration with the World Academy of Materials and Manufacturing Engineering WAMME and the Section Metallic Materials of the Committee of Materials Science of the Polish Academy of Sciences as a monthly. It has 12 points which was received during the evaluation by the Ministry of Science and Higher Education journals and ICV 2017:100 on the ICI Journals Master list announced by the Index Copernicus. It is a continuation of "Proceedings on Achievements in Mechanical and Materials Engineering" published in 1992-2005. Scope: Materials[...] Properties[...] Methodology of Research[...] Analysis and Modelling[...] Manufacturing and Processingv Biomedical and Dental Engineering and Materials[...] Cleaner Production[...] Industrial Mangement and Organisation [...] Education and Research Trends[...]
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