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Добірка наукової літератури з теми "Питома електропровідність"
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Статті в журналах з теми "Питома електропровідність"
Новосад О. В., Божко В. В., Федосов С. А. та Шигорін П. П. "ТЕРМОЕЛЕКТРИЧНІ ВЛАСТИВОСТІ КРИСТАЛІВ AgSbSe2–PbSe". Перспективні технології та прилади, № 17 (27 січня 2021): 183–89. http://dx.doi.org/10.36910/6775-2313-5352-2020-17-27.
Повний текст джерелаTarasenko, N. L., N. O. Savina, V. M. Britsun та N. V. Оstanina. "ВИЗНАЧЕННЯ ЗАЛИШКОВИХ КІЛЬКОСТЕЙ МИЙНОГО ЗАСОБУ NEODISHER LABOCLEAN PLM НА ЛАБОРАТОРНОМУ ПОСУДІ". Фармацевтичний часопис, № 1 (28 лютого 2020): 42–50. http://dx.doi.org/10.11603/2312-0967.2020.1.10903.
Повний текст джерелаBritsun, V. M., N. L. Tarasenko, N. O. Savina та N. V. Оstanina. "КОНТРОЛЬ ЗАЛИШКОВИХ КІЛЬКОСТЕЙ ПЕРОКСИДУ ВОДНЮ ПІСЛЯ ДЕЗІНФЕКЦІЇ ЛАБОРАТОРНОГО ПОСУДУ ТА ОБЛАДНАННЯ". Фармацевтичний часопис, № 2 (14 липня 2021): 21–27. http://dx.doi.org/10.11603/2312-0967.2021.2.12145.
Повний текст джерелаСєрова, Тамара Олександрівна, Володимир Григорович Федотов та Олександр Іванович Міхеєв. "ФЕНОМЕН МОРСЬКОЇ ВОДИ". Vodnij transport, № 3(31) (10 грудня 2020): 134–43. http://dx.doi.org/10.33298/2226-8553.2020.3.31.15.
Повний текст джерелаVishnyakov, L. R., V. P. Krasovskyy, I. N. Kokhana, I. I. Chernyavsky, V. A. Kokhanyi, O. P. Yaremenko та N. A. Krasovskyа. "РОЗРОБКА В’ЯЗАНО-ПАЯНИХ СІТОК-БЛИСКАВКОВІДВОДІВ З БЕЗСВИНЦЕВИМ ПРИПОЄМ ДЛЯ ЗАХИСТУ ПОЛІМЕРНИХ КОМПОЗИТІВ ВІД ДІЇ ПРЯМОГО УДАРУ БЛИСКАВКИ". Технологические системы, № 81/4 (29 березня 2018). http://dx.doi.org/10.29010/081.5.
Повний текст джерелаДисертації з теми "Питома електропровідність"
Шібан, Тамер. "Електромагнітний багатопараметровий перетворювач з просторово-періодичним полем для контролю циліндричних виробів". Thesis, Національний технічний університет "Харківський політехнічний інститут", 2019. http://repository.kpi.kharkov.ua/handle/KhPI-Press/41998.
Повний текст джерелаThe dissertation presents the scientific and technical results of the study of the electromagnetic multi-parameter transducer for the cylindrical metal products parameters determining, which principle is based on the allocation of the amplitude and phase of the spatial harmonics of a nonuniform magnetic field presented in the form of a Fourier series. The object of the study is in the full extent described in the scientific literature. It is shown that further increase of information parameters controlled by one transducer can be carried out in several ways. For example, the use of different frequency to power the transducers, signal filtering and separation of amplitude and phase at each frequency. Such implementation of multiparameter sensors is quite complicated and does not always give the true picture of the processes taking place in the controlled object due to the different depth of field penetration (skin effect). It has been shown that the application of the study results provides an opportunity to obtain more information about the studied object that could not be obtained by using traditional methods. Therefore, the application of the developed method is promising. The physic-mathematical model of an electromagnetic transducer with non-uniform distribution of an electromagnetic field for a conductor with a current located along the lateral surface of a cylindrical product at a distance d from the center of a metallic cylinder of radius a. The spatial problem of the distribution of a magnetic field variable in time is solved and expressions allowing calculating the functions for any spatial harmonic are obtained and it is possible to make a picture of the distribution of the field in any area (inside the product, between the product and conductor with current, as well as beyond this conductor). Mathematical expressions are obtained to determine the intensity of the magnetic field for r-th and φ-th components, generated by the current of one conductor (or pole with finite angular dimensions). The thickness of the pole with a total current is taken into account, which leads to the replacement of r quantity in the formulas for field strength by effective radius. Mathematical expressions are obtained to determine amplitude and phase of transducer’s signal n-th spatial harmonics, which are generated in the measuring windings located along the surface of the cylindrical object with the angular coordinate φ on a circle of radius d. Experiments have been carried out to confirm the adequacy of the transducer’ proposed model, which showed the difference between the calculated and experimentally obtained values of the EMF of the transducer’ output signal. For instance, for measuring windings with angular coordinates φ = 0° і φ = 180° difference of voltage values is less than 5% and for measuring windings with angular coordinates φ = 30°, 60°, 300° і 330° difference is less than 10%. Methods and algorithms of allocating the necessary spatial harmonics and eliminating harmonics with high numbers are offered also. The latter allows us to reduce the influence of the higher spatial harmonics down to 1%. To exclude from the spatial distribution of the field odd or even harmonics it is suggested to use a system of conductors with the same and opposite directions of currents in them. The universal transformation functions for the amplitude and phase of the n-th harmonic component for the transducer are obtained. Method is developed for simultaneous testing electrical (σ), magnet (μr) and geometrical (а) parameters of cylindrical objects, by the use of transducer with on magnetizing pole considering 1-st and 2-nd spatial harmonics, which allows unambiguously solve the task of multi-parameter testing for a wide variety of products, various designs and modes of operation of transducers. The method based on the electromagnetic transducer with two magnetized poles and a different direction of current is developed. The universal functions of conversion with use of 1-st and 3-rd spatial harmonics are obtained, also the algorithm of realization of cylindrical wares’ parameters multi-parameter control is offered. The sensitivity of the method is determined and rational modes of transducer operation are found. The calculation is performed and the effect of the higher harmonics of the field on the output signals of the transducer is shown. For example, for a transducer with one excitation wire, the rejection of the 3-rd harmonic will result in an error of the resulting EMF calculation equal to 5%, and for a transducer with two excitatory wires, when the 5-th harmonic is rejected, it is 1.5%. A layout of a laboratory unit with an electromagnetic transducer with a spatial-periodic field structure was developed and experimental studies were carried out to determine μr σ, and а with simulation samples of different sorts to confirm the adequacy of the developed method. The construction of an electromagnetic transducer with two excitation poles and a different direction of the magnetizing current with the use of the amplitude of the 1-st and 3-rd spatial harmonics and the 1-st harmonic phase is presented. As soon as direct estimation of error of testing μr, σ and а for the developed multi-parameter transducer is quite complicated, in the work the measurements of these parameters were carried out by control methods. So, to estimate а of the studied sample micrometer with a diameter measuring range (50 ± 0,01) mm was used, to estimate σ of a cylindrical sample, a contact electric method was used based on the potentiometer of direct current Р363-3 (R363-3), having accuracy class of 0,005, to estimate μr the method of an ammeter – voltmeter for a ring sample was used. It is shown that implementation of the developed transducer allows to receive the most complete information about the condition of electric power lines, that is to define μr, σ, and a of cylindrical wires, as well as the mechanical load, temperature, magnitude of the current flowing in the line correlated with them and the determination of specific electrical losses during the diagnosis of the state of electric power lines, as evidenced by the implementation act dated 18.12.2015 (agreement № 377551 dated 27.07.2015 between NTU “KhPI” and PJSC “Ukrhydroproekt” city of Kharkiv).
Шібан, Тамер. "Електромагнітний багатопараметровий перетворювач з просторово-періодичним полем для контролю циліндричних виробів". Thesis, Національний технічний університет "Харківський політехнічний інститут", 2019. http://repository.kpi.kharkov.ua/handle/KhPI-Press/41997.
Повний текст джерелаDissertation for the degree of candidate of technical sciences (doctor of philosophy) in specialty 05.11.13 – instruments and methods of substance composition control and determination. National Technical University "Kharkiv Polytechnic Institute", Kharkiv, 2019. The physic-mathematical model of an electromagnetic transducer with non-uniform distribution of an electromagnetic field for a conductor with a current located along the lateral surface of a cylindrical product at a distance d from the center of a metallic cylinder of radius a. Mathematical expressions are obtained to determine the intensity of the magnetic field for r-th and φ-th components, generated by the current of one conductor (or pole with finite angular dimensions). The thickness of the pole with a total current is taken into account, which leads to the replacement of r quantity in the formulas for field strength by effective radius. Mathematical expressions are obtained to determine amplitude and phase of transducer’s signal n-th spatial harmonics, which are generated in the measuring windings located along the surface of the cylindrical object with the angular coordinate φ on a circle of radius d. Experiments have been carried out to confirm the adequacy of the transducer’ proposed model, which showed the difference between the calculated and experimentally obtained values of the EMF of the transducer’ output signal. For instance, for measuring windings with angular coordinates φ = 0° і φ = 180° difference of voltage values is less than 5% and for measuring windings with angular coordinates φ = 30°, 60°, 300° і 330° difference is less than 10%. The method based on the electromagnetic transducer with two magnetized poles and a different direction of current is developed. The universal functions of conversion with use of 1-st and 3-rd spatial harmonics are obtained, also the algorithm of realization of cylindrical wares’ parameters multi-parameter control is offered.
Пінчук, А. С. "Електропровідність композиційних плівкових функціональних матеріалів на основі Fe і SiO". Master's thesis, Сумський державний університет, 2021. https://essuir.sumdu.edu.ua/handle/123456789/85593.
Повний текст джерела