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METHOD AND DEVICE FOR NON-CONTACT DETERMINATION OF SPECIFIC ELECTRICAL RESISTANCE OF METALS IN HIGH TEMPERATURES

机译:非接触测定高温金属比电阻的方法和装置

摘要

FIELD: physics.;SUBSTANCE: invention relates to physics, namely to analysis of materials by non-contact determination of specific electrical resistance of a cylindrical-shaped metal sample heated in an inductor of a high-frequency induction generator in the temperature range of 1,000–2,500 K. In the disclosed method, the measurement principle is based on the dependence on the specific electric resistance of the material of a cylindrical sample magnitude of electromotive force inductively induced on one circular turn of multi-turn coil, coaxially located in the middle of the sample placed in the electromagnetic field created by the high-frequency induction generator. Two coils of different diameter coaxially located in the middle of the sample are used, which enables to determine specific electric resistance of the sample relative to electromotive forces induced inductively on one turn of each coil. Electric resistivity found by this method enables calculating the power introduced into the sample during inductive heating, which enables to find, in particular, values of the integral degree of blackness according to the Stefan-Boltzmann law. Proposed method is realized on the basis of an installation containing a vacuum chamber with an inductor of a high-frequency generator (of the HGT7-15/440 type), in which there is a cylindrical metal sample with two ceramic coils placed coaxially with it. Electromotive forces induced in turns of coils are alternately measured with a voltmeter (type V7-27a), and then there are EMF values per one turn -ε11/n1 and ε22/n2. Absolute and brightness temperature of the sample are measured by an optical pyrometer (LOP-72 type). Generator frequency is displayed on its display. Objective of the proposed invention is to develop a contact-free method of determining specific electrical resistance of a sample material heated by a high-frequency induction generator. Found values of specific electric resistance allow calculating the power introduced into the sample at induction heating and thus the value of the integral degree of blackness, which provides for the complexity of the method.;EFFECT: increased accuracy and informativeness of the data.;2 cl, 1 dwg
机译:技术领域本发明涉及物理学,即通过非接触确定在温度范围为1,000的高频感应发生器的感应器中加热的圆柱形金属样品的比电阻来分析材料。 –2,500K。在所公开的方法中,测量原理基于对材料的比电阻的依赖性,该材料的圆柱形电阻在多匝线圈的一个圆匝中感应感应出的电动势的圆柱形样本量,同轴地位于中间放置在高频感应发生器产生的电磁场中的样品使用同轴地位于样品中间的两个不同直径的线圈,这使得能够确定样品相对于在每个线圈的一匝上感应感应的电动势的比电阻。通过这种方法求出的电阻率能够计算感应加热期间引入样品中的功率,这尤其能够根据Stefan-Boltzmann定律求出黑度的积分度值。所提出的方法是基于一种设备而实现的,该设备包含一个带有高频发生器(HGT7-15 / 440型)感应器的真空室,其中有一个圆柱形金属样品,并带有与之同轴放置的两个陶瓷线圈。用电压表(类型V7-27a)交替测量在线圈匝中感应的电动势,然后每转一圈就有EMF值-ε 1 1 / n 1 和ε 2 2 / n 2 。样品的绝对温度和亮度温度通过光学高温计(LOP-72型)测量。发电机频率显示在其显示屏上。发明内容本发明的目的是开发一种用于确定由高频感应发生器加热的样品材料的比电阻的无接触方法。所发现的特定电阻值允许计算感应加热时引入样品的功率,因此可以计算出整体黑度的值,这提供了方法的复杂性;效果:提高了数据的准确性和信息性; 2 cl,1 dwg

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