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Journal articles on the topic 'Massive electrically conductive armature'

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1

Plait, Antony, and Frédéric Dubas. "Volumic Eddy-Current Losses in Conductive Massive Parts with Experimental Validations." Energies 15, no. 24 (2022): 9413. http://dx.doi.org/10.3390/en15249413.

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In this paper, the analytical determination of volumic eddy-current losses in rectangular-shaped conductive massive parts is presented with experimental validations. Eddy currents, as well as the resulting volumic losses, are generated by a sinusoidal spatially uniform applied magnetic field. A U-shaped electromagnetic device with a flat mobile armature (or adjustable air gap) is used to measure the eddy-current losses. The experimental device, its instrumentation, and the conductive massive parts are presented in detail in the paper. Thereafter, the magnetic field distribution applied on the
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2

Agunov, Alexander V., Ilya A. Terekhin, and Ivan A. Baranov. "Analysis of the application of electric conducting concrete in the power industry." Transportation Systems and Technology 7, no. 2 (2021): 5–15. http://dx.doi.org/10.17816/transsyst2021725-15.

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At present, on the territory of the Russian Federation, there is no massive use of electrically conductive reinforced concrete structures in the electric power industry due to insufficient operating experience and a low rate of research on electrically conductive concretes.
 The article compares the main characteristics of existing electrically conductive concrete. The paper shows the disadvantages of traditional concrete and existing electrically conductive concrete. The electrically conductive concrete was selected, the most suitable for further research, testing and direct modernizatio
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3

Solomin, Vladimir A., Andrej V. Solomin, Nadejda A. Trubitsina, and Larisa L. Zamchina. "Stepper induction motors for electric drive." Transportation Systems and Technology 7, no. 1 (2021): 85–98. http://dx.doi.org/10.17816/transsyst20217185-98.

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Aim: The goal is to present a new asynchronous principle of operation of stepper motors, based on the use of counter-rotating (or traveling) magnetic fields.
 Method: A change in the degree of symmetry of one of these magnetic fields leads to the fact that the armature (rotor or secondary element) makes a precise discrete movement.
 Result: The force moving the armature of a stepper induction motor is created as a result of the interaction of eddy currents in the armature with a rotating or traveling magnetic field. Stepper induction motors can rotate the rotor at a certain angle and
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4

Nurzatul Ikma Omar, Siti, Zaidah Zainal Ariffin, Rabiatuladawiyah Mad Akhir, Mohamed Izzharif Abd Halim, Rosmamuhamadani Ramli, and Mohd Muzamir Mahat. "Electrically Conductive Polyester Fabrics Embedded Polyaniline." International Journal of Engineering & Technology 7, no. 4.14 (2019): 524. http://dx.doi.org/10.14419/ijet.v7i4.14.27783.

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Recently, conductive fabric has attracted massive attention among researchers due to their unique conductive properties with a wide range of possible applications. This study explores the fabrication of poly aniline (PANI) conductive fabric through an immersion technique of polyester fabric in PANI solution. Two types of acids (sulphuric acid (H2SO4) and p-toulene sulfonic acid (pTSA) have been employed as the doping agent to induce the conductivity in various weight percentages (0.3, 0.6 and 0.9 wt%) with immersion time of 5, 10 and 15 minutes. The fabricated conducting fabrics were then char
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5

Lin, Bo, Ao Li, Ivan Miguel De Cachinho Cordeiro, et al. "MXene Based Flame Retardant and Electrically Conductive Polymer Coatings." Polymers 16, no. 17 (2024): 2461. http://dx.doi.org/10.3390/polym16172461.

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Modern polymer coatings possess tremendous multifunctionalities and have attracted immense research interest in recent decades. However, with the expeditious development of technologies and industries, there is a vast demand for the flame retardancy and electrical conductivity of engineered polymer coatings. Traditional functional materials that render the polymer coatings with these properties require a sophisticated fabrication process, and their high mass gains can be a critical issue for weight-sensitive applications. In recent years, massive research has been conducted on a newly emerged
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6

Bolyukh, V. F., and O. I. Kocherga. "Efficiency of multi-armature linear pulse electromechanical power and speed converters." Electrical Engineering and Electromechanics 2024, no. 3 (2024): 3–10. https://doi.org/10.20998/2074-272X.2024.3.01.

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<strong><em>Introduction.</em></strong><em>&nbsp;High-speed linear pulse electromechanical converters (LPEC) provide acceleration of the executive element in a short active section to high speed with significant displacement, while power-purpose LPECs create powerful power impulses of the executive element on the object of influence with minor movements. One of the areas of improvement of LPEC is the creation of multi-armature structures.</em>&nbsp;<strong><em>Methodology.</em></strong><em>&nbsp;To analyze the electromechanical characteristics and indicators of LPEC, a mathematical model was u
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7

Roschning, Benedikt, and Jörg Weissmüller. "Electrochemical Actuation of Hybrid Materials Made from Nanoporous Metals and Electrically Conductive Polymers." ECS Meeting Abstracts MA2018-01, no. 32 (2018): 1989. http://dx.doi.org/10.1149/ma2018-01/32/1989.

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The surface stress of a metallic solid-body immersed in an electrolyte can be modified by variation of an applied electrical potential. The stress at the surface is transferred to the underlying bulk material, where it leads to strain and, hence, electrochemical actuation. For massive bodies, which exhibit a small ratio of surface to volume atoms, this effect is sparsely pronounced and not usable. Nanoporous metals on the other hand exhibit a high intrinsic, externally accessible surface area and are therefore suitable as functional materials such as sensors or actuators. Another class of chem
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8

Chetverushkin, B. N., A. V. Saveliev, and V. I. Saveliev. "Kinetic algorithms for the modeling of conductive fluids flow on high performance computational systems." Доклады Академии наук 489, no. 6 (2019): 552–57. http://dx.doi.org/10.31857/s0869-56524896552-557.

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This letter presents the results of the mathematical modeling of processes of electrically conducting fluid flow dynamics for complex heat transfer systems. The study was carried out based on detailed calculations on parallel high performance computational systems on the basis of the kinetically consistent magnetogasdynamic approach, adjusted for this class of problems. The kinetically consistent algorithm adapts well to the architecture of high performance computational systems with massive parallelism and makes it possible to conduct effective research of complex heat transfer systems with h
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9

ARUTYUNOV, K. YU, A. S. GURSKY, S. D. MONAKHOVA, et al. "LOW-TEMPERATURE ELECTRONIC TRANSPORT IN HYBRID THIN-FILM NANOSTRUCTURES BASED ON AN ELECTRICALLY CONDUCTIVE POLYMER." Izvestia Ufimskogo Nauchnogo Tsentra RAN, no. 1 (March 31, 2023): 42–48. http://dx.doi.org/10.31040/2222-8349-2023-0-1-42-48.

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Most polymers are usually poor conductors of electric current and, accordingly, they can be classified as organic dielectrics. However, there is a special class of polymers, usually characterized by presence of conjugated pbonds, which provide electron delocalization, leading to electrical conductivity in the ground state of the system. In addition to such materials, there have been found polymers that are insulators in the ground state, but under the influence of external factors demonstrate a finite electrical conductivity. Polydiphenylenephthalide (PDP) belongs to the class of carbocyclic o
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10

Safipour, Roxana, Sebastian Hölz, Jesse Halbach, Marion Jegen, Sven Petersen, and Andrei Swidinsky. "A self-potential investigation of submarine massive sulfides: Palinuro Seamount, Tyrrhenian Sea." GEOPHYSICS 82, no. 6 (2017): A51—A56. http://dx.doi.org/10.1190/geo2017-0237.1.

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The self-potential (SP) method detects naturally occurring electric fields, which may be produced by electrically conductive mineral deposits, such as massive sulfides. Recently, there has been increasing interest in applying this method in a marine environment to explore for seafloor massive sulfide (SMS) deposits, which may contain economic resources of base and precious metals. Although SMS sites that are associated with active venting and are not buried under sediment cover are known to produce an SP signal, the effectiveness of the method at detecting inactive and sediment-covered deposit
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11

Zhukhovitsky, Vladimir, Tatyana Smirnova, and Nataliya Shevlyagina. "Abstract OR-5: Helicobacter pylori Surface Structures." International Journal of Biomedicine 11, Suppl_1 (2021): S9. http://dx.doi.org/10.21103/ijbm.11.suppl_1.or5.

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Background: Helicobacter pylori, which infects at least half of the human population, is an etiopathogenetic factor in the development of chronic gastritis (CG), gastric and duodenal ulcer disease (UD), and is also considered a risk factor in the occurrence of some forms of stomach cancer. Various surface structures of H. pylori are important pathogenic factors. Methods: Reference (NCTC 11637, NCTC 11639) and freshly isolated H. pylori strains as well as samples of the gastric mucosa were examined using transmission (TEM) and scanning electron microscopy (SEM) by means of “JEM-100 В” (JEOL, Ja
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12

Oldham, Eric, Javier Alvaré, and Dean Wheeler. "The Role of Volume Change in Lithium Oxygen Battery Electrodes." ECS Meeting Abstracts MA2024-02, no. 1 (2024): 130. https://doi.org/10.1149/ma2024-021130mtgabs.

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Lithium oxygen batteries have an exceptionally high theoretical specific capacity, but a variety of obstacles stand in the way of reaching that high capacity over many cycles. Recent research into catalysts and redox shuttles has improved the reversibility of the reaction between lithium ions and oxygen to form lithium peroxide, creating renewed interest in lithium oxygen technologies. A significant obstacle is that achieving high capacity necessarily implies that a large volume fraction of lithium peroxide must be stored in the cathode during discharge, to be released upon charge. Likewise, a
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13

Menezes, Prashanth W., Jan Niklas Hausmann, and Matthias Driess. "Intermetallic Water Splitting (Pre)Catalysts." ECS Meeting Abstracts MA2022-02, no. 48 (2022): 1808. http://dx.doi.org/10.1149/ma2022-02481808mtgabs.

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The continuous increase in the population and industrial development has led to an increase in global energy demand. Most of the current primary energy consumption is obtained from the burning of fossil fuels that releases an enormous amount of greenhouse gases. Notably, hydrogen (H2) is a clean and eco-friendly fuel and has already shown its ability to be a promising substitute for fossil energy. One of the cleanest ways to produce H2 is by splitting of water by electrolysis.1 Recently, numerous inexpensive and robust catalysts based on transition metals (oxides, chalcogenides, pnictides, car
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14

Nondy, Raton Kumar, Md Abul Bashar, Md Aziz ul Huq, Md Tawfikur Rahman, and Prema Nondy. "Integration of MHD System to The Gas Turbine and The Steam Turbine Power Plant: A Brief Review." International Journal Of Scientific Advances 3, no. 2 (2022). http://dx.doi.org/10.51542/ijscia.v3i2.9.

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Electrical energy generation is essential for the survival of the modern society. Fossil fuels are limited and create pollution. Also the conventional power generation systems using fossil fuel have lesser efficiency due to higher amount of losses in different sections of the plants. The Magnetohydrodynamic (MHD) is found as a nonconventional energy generation system which has the capability to enhance the thermal power plant efficiency significantly. The MHD is a direct energy conversion system that describes the interactions of a magnetic field and an electrically conductive fluid to produce
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15

Kim, Yeon Soo, Harry Chung, Suhyoun Kwon, Jihyun Kim, and William Jo. "Grain boundary passivation via balancing feedback of hole barrier modulation in HfO2-x for nanoscale flexible electronics." Nano Convergence 9, no. 1 (2022). http://dx.doi.org/10.1186/s40580-022-00336-4.

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AbstractFlexible electronics has attracted considerable attention owing to its enormous potential for practical applications in various fields. However, the massive strain produced during bending degrades the device. Especially at grain boundaries, due to the accumulation of defects, this degradation is exacerbated in flexible electronic devices. The importance of electrically inactivated grain boundaries increases as devices scale down to the nanoscale. Here, we propose an HfO2-x thin film that can be used as an excellent material for flexible electronics with versatile functionality, especia
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