Study of physical control methods for metric parameters of extended products in cable industry

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
Sh. Yarkimbaev, E. Fedorov, V. V. Redko, O. Galtseva, X. Jiang
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引用次数: 0

Abstract

The paper discusses the problems of electrical cables metric (geometric) parameters measurement. The methods of measuring the eccentricity of the electric cables (contact, ultrasonic, X-ray, and inductive-optical) are considered. The advantages and disadvantages of using these methods of technological control of cable products are shown. A study of the inductive-optical conversion method for measuring the eccentricity of a singlecore cable, including the circuit for switching on the windings of the inductive converter, is proposed; the design of this converter is presented. The proposed solution makes it possible to achieve good conversion linearity when the conductor is displaced in the control zone. Wherein there is no need to use a system of mechanical drives for centering the magnetic transducer. In addition, the proposed scheme enables to combine the magnetic and optical transducer constructively in the same plane, which ensures to reduce its longitudinal dimensions relative to known analogues. The device prototype for eccentricity control is created based on the proposed transducer; its technical characteristics are confirmed. Direction of further research is determined as part of the development of the industrial design of the device.
电缆工业扩展产品计量参数物理控制方法研究
本文讨论了电缆度量(几何)参数的测量问题。考虑了测量电缆偏心率的方法(接触法、超声波法、X射线法和感应光学法)。介绍了采用这些方法对电缆产品进行工艺控制的优缺点。提出了一种测量单芯电缆偏心度的电感-光转换方法的研究,包括电感转换器绕组的接通电路;介绍了该变换器的设计。所提出的解决方案使得当导体在控制区中移位时可以实现良好的转换线性。其中不需要使用机械驱动系统来对磁换能器进行定心。此外,所提出的方案能够将磁性和光学换能器在同一平面内构造性地结合,这确保了相对于已知的类似物减小其纵向尺寸。基于所提出的传感器建立了偏心控制装置原型;确认了其技术特点。作为该装置工业设计发展的一部分,确定了进一步研究的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
50.00%
发文量
32
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