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Ð’ данной работе разработана Ð¾Ð¿Ñ‚Ð¸Ð¼Ð°Ð»ÑŒÐ½Ð°Ñ Ñхема Ð¸Ð·Ð¼ÐµÑ€ÐµÐ½Ð¸Ñ Ð¿Ð¾Ñ‚ÐµÐ½Ñ†Ð¸Ð°Ð»Ð¾Ð² на поверхноÑти медно-титановых Ñтержней. УÑтановлено, что амплитуда измеренного Ñигнала однозначно ÑвÑзана Ñ Ð¿Ñ€Ð¾Ñ‚ÑжённоÑтью дефекта и его радиальным отклонением от Ð¿Ð¾Ð»Ð¾Ð¶ÐµÐ½Ð¸Ñ Ð·Ð¾Ð½Ð´Ð°. Рекомендовано Ñимметричное заземление ÑтержнÑ. ОпиÑано применение Wavelet-анализа данных. Были проведены иÑÐ¿Ñ‹Ñ‚Ð°Ð½Ð¸Ñ 25 реальных медно-титановых Ñтержней. Проведенные теоретичеÑкие, модельные и ÑкÑпериментальные иÑÑÐ»ÐµÐ´Ð¾Ð²Ð°Ð½Ð¸Ñ Ð¿Ð¾Ð·Ð²Ð¾Ð»Ð¸Ð»Ð¸ Ñформулировать оÑновные Ñ‚Ñ€ÐµÐ±Ð¾Ð²Ð°Ð½Ð¸Ñ Ð´Ð»Ñ ÑÐ¾Ð·Ð´Ð°Ð½Ð¸Ñ Ð°Ð²Ñ‚Ð¾Ð¼Ð°Ñ‚Ð¸Ñ‡ÐµÑкой измерительной уÑтановки Ð´Ð»Ñ Ð¼Ð°ÑÑовой диагноÑтики медно-титановых Ñтержней.
In this paper, an optimal scheme for measuring potentials on the surface of copper-titanium rods was developed. It is established that the amplitude of the measured signal is uniquely related to the length of the defect and its radial deviation from the probe position. Recommended symmetrical grounding rod. The use of wavelet data analysis is described. 25 real copper-titanium rods were tested. Theoretical, model, and experimental studies have made it possible to formulate the basic requirements for creating an automatic measuring installation for mass diagnostics of copper-titanium rods.
медно-ÑиÑановÑе ÑÑеÑжни, УлÑÑÑазвÑк, СÑеÑжни, ÑеÑÑÑÑÑ -зондовÑй меÑод, взÑÑÐ²Ð½Ð°Ñ ÑÐµÑ Ð½Ð¾Ð»Ð¾Ð³Ð¸Ñ, ÐомпÑÑÑеÑное моделиÑование, ÑоÑаÑÐ¸Ð¾Ð½Ð½Ð°Ñ ÐºÐ¾Ð²ÐºÐ°, авÑомаÑизаÑÐ¸Ñ Ð¸Ð·Ð¼ÐµÑений
медно-ÑиÑановÑе ÑÑеÑжни, УлÑÑÑазвÑк, СÑеÑжни, ÑеÑÑÑÑÑ -зондовÑй меÑод, взÑÑÐ²Ð½Ð°Ñ ÑÐµÑ Ð½Ð¾Ð»Ð¾Ð³Ð¸Ñ, ÐомпÑÑÑеÑное моделиÑование, ÑоÑаÑÐ¸Ð¾Ð½Ð½Ð°Ñ ÐºÐ¾Ð²ÐºÐ°, авÑомаÑизаÑÐ¸Ñ Ð¸Ð·Ð¼ÐµÑений
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