Non-contact Ultrasound Method of Thread Tension Determination for Light Industry Machinery

IF 0.4 Q4 PHYSICS, MULTIDISCIPLINARY
V. Zdorenko, V. Kucheruk, S.V. Barilko, S. Lisovets
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Abstract

It has been established that with the help of a pulsed ultrasonic signal of complex shape, it is possible to determine the tension of a filament with a high linear density in a special waveguide with a rectangular crosssection. It has been proved that the amplitude ratios of ultrasonic waves that interact with different textile filaments are influenced by their linear density, the angle between the passage direction of part of the waves enveloping the fibers in the middle and the surface of these fibers, as well as the angle between the direction of wave propagation enveloping the thread itself from the outside, and the surface of the whole material. It should be noted that the corresponding bypass angles of the ultrasonic waves of the textile depend on the material porosity, frequency of the ultrasonic waves, and their power. To enable non-contact control of the change in the tension of the thread branch, it is advisable to use a pulsed ultrasonic signal with two different peaks of the waves, amplitudes, which are adjusted to the linear density of the thread and its conditional radius. Additionally, the use of this method will provide operational technological control in the production of textile fabrics
轻工机械螺纹张力的非接触超声测定法
已经证实,借助于复杂形状的脉冲超声信号,可以在具有矩形横截面的特殊波导中确定具有高线密度的细丝的张力。已经证明,与不同织物细丝相互作用的超声波的振幅比受其线密度、包封在中间的纤维的部分波的通过方向与这些纤维的表面之间的角度、,以及整个材料的表面。应该注意的是,纺织品的超声波的相应旁通角取决于材料孔隙率、超声波的频率及其功率。为了能够对螺纹分支的张力变化进行非接触式控制,建议使用具有两个不同波峰的脉冲超声波信号,振幅根据螺纹的线密度及其条件半径进行调整。此外,这种方法的使用将为纺织面料的生产提供操作技术控制
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来源期刊
自引率
50.00%
发文量
32
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