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Journal articles on the topic 'Novikov Gearing'

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1

Silich, A. A., and E. G. Ishkina. "Application of Novikov Gears, Gear Processing Techniques and Enhanced Possibilities of their Production." Key Engineering Materials 736 (June 2017): 138–42. http://dx.doi.org/10.4028/www.scientific.net/kem.736.138.

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The advantages of using cylindrical Novikov gears are reviewed and compared with involute gearing. The possibility of accurate forming cylindrical Novikov gear wheels is theoretically determined. Rational modes of shaving gear-tooth finishing of wheels are empirically established. We propose the organization of Novikov gears production with a given quantity of controlled size tolerance.
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2

Korotkin, V. I., and E. M. Kolosova. "PROGRAM CALCULATION OF EFFECTIVE CONTACT AND BENDING CRITERIONAL STRESSES OF TEETH OF NOVIKOV GEARING." Spravochnik. Inzhenernyi zhurnal, no. 301 (April 2022): 31–38. http://dx.doi.org/10.14489/hb.2022.04.pp.031-038.

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The article presents the full version of the NOVGOST computer program for determining the effective contact and bending phase criterional stresses of Novikov gearing teeth with basic profile according to GOST 15023–76, developed in the system MAPLE 17. The program reproduces the process of real multipoint engagement of Novikov gearing, which takes into account the inevitable errors in the manufacture and assembly of a gear pair, dependent on the assigned degree of accuracy, as well as the rigidity of the teeth themselves and the associated parts of the gearbox – shafts and bearings. The progra
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3

Liu, Hu Ran. "The Analytical Method of the Construction of the Profile of the Basic Rack for Equal Conjugate Curvature." Applied Mechanics and Materials 44-47 (December 2010): 2897–901. http://dx.doi.org/10.4028/www.scientific.net/amm.44-47.2897.

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After an extensive research on the fundamental theory, the theoretical basis for the Logix gearing will be presented in this paper. This includes the theory for gear meshing with high degree of contact. In comparison to previous studies, the theory of this paper is more restricted going beyond third order parameters into the fourth order, the teeth profile had one order of contact higher than that of the Logix gearing. So that further improved the contact strength of tooth profile. A large category of gearings with high order of contact was presented, while the Logix gear is only one of them,
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4

Wagner, M. J., W. F. Ng, and S. G. Dhande. "Profile Synthesis and Kinematic Analysis of Pure Rolling Contact Gears." Journal of Mechanical Design 114, no. 2 (1992): 326–33. http://dx.doi.org/10.1115/1.2916950.

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The kinematic analysis of a type of gearing which allows for power transmission between shafts with pure rolling contact is presented. This proposed gearing is helical and exhibits theoretical point contact. Comparisons are made between the proposed gearing and conventional types such as involute gearing and Wildhaber-Novikov circular arc gearing. The analysis of the specific proposed profile includes derivation of surface normal, pressure angle, and surface curvature. Curvatures are used to predict possible interference between mating gear surfaces. A curve showing allowable values for the to
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5

Korotkin (, V. I. "GEOMETRIC PARAMETERS OF CYLINDRICAL NOVIKOV GEARING WITH LONGITUDINAL-CIRCULAR TEETH." Spravochnik. Inzhenernyi zhurnal, no. 323 (February 2024): 29–33. http://dx.doi.org/10.14489/hb.2024.02.pp.029-033.

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The main geometric parameters of cylindrical Novikov gearing with longitudinally-circular (arched) teeth shape are considered. The equations of the lateral surfaces of the teeth and the lines of action are obtained. Some elements of the gearing quality are considered. Differences of characteristics for convex and concave sides of teeth are shown. The results obtained made it possible to develop a package of computational programs for evaluating the strength characteristics of this gearing.
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6

Karatushin, S. I., D. A. Khramova, and N. A. Bildyuk. "Comparative Analysis of Novikov and Involute Gearing in the ANSYS Workbench Software Package." Proceedings of Higher Educational Institutions. Маchine Building, no. 3 (732) (March 2021): 16–21. http://dx.doi.org/10.18698/0536-1044-2021-3-16-21.

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The paper introduces the results of studying the stress-strain state of the Novikov gearing in comparison with the involute gearing, similar in geometric parameters. In both versions, the wheel and gear are selected in size and gear ratio in accordance with the most common recommendations without additional hardening by chemical heat treatment. The zone of multiple contact of mated profiles is analyzed: changes in the geometry of contacts, pressure in the contact and stresses in various phases of gearing.
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7

Korotkin, V. I., and N. P. Onishkov. "Novikov gearing: Achievements and ways to further development." Russian Engineering Research 27, no. 4 (2007): 217–19. http://dx.doi.org/10.3103/s1068798x07040119.

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8

Korotkin, V. I., та E. M. Kolosova. "REDUCTION OF THE TENSION OF MODIFIED TEETH OF NOVIKOV GEARING IN THE THREE-STEP GEARBOX Ц3НШ-450-40 DRIVE OF OIL PUMPING UNIT". Spravochnik. Inzhenernyi zhurnal, № 282 (вересень 2020): 25–30. http://dx.doi.org/10.14489/hb.2020.09.pp.025-030.

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The article is devoted to the actual topic – reduce the tension of the modified teeth of Novikov gearing drive gearbox of widely used oil pumping unit for oil production in order to increase the resource of their work and load-bearing capacity. As the object is considered a typical three-stage gearbox model Ц3НШ-450-40, produced by the plant “Izhneftemash” (Izhevsk). Gearbox is equipped with Novikov gearing with the basic rack profile according to GOST 15023–76. It is shown that the use of the proposed longitudinal modification of the working surfaces of the teeth in combination with an increa
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9

Korotkin, V. I., та E. M. Kolosova. "REDUCTION OF THE TENSION OF MODIFIED TEETH OF NOVIKOV GEARING IN THE THREE-STEP GEARBOX Ц3НШ-450-40 DRIVE OF OIL PUMPING UNIT". Spravochnik. Inzhenernyi zhurnal, № 282 (вересень 2020): 25–30. http://dx.doi.org/10.14489/hb.2020.09.pp.025-030.

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The article is devoted to the actual topic – reduce the tension of the modified teeth of Novikov gearing drive gearbox of widely used oil pumping unit for oil production in order to increase the resource of their work and load-bearing capacity. As the object is considered a typical three-stage gearbox model Ц3НШ-450-40, produced by the plant “Izhneftemash” (Izhevsk). Gearbox is equipped with Novikov gearing with the basic rack profile according to GOST 15023–76. It is shown that the use of the proposed longitudinal modification of the working surfaces of the teeth in combination with an increa
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10

Beskopylny, Alexey, Nikolay Onishkov, and Victor Korotkin. "Bending strength assessment of chemically-heat-strengthened Novikov gearing." MATEC Web of Conferences 224 (2018): 02033. http://dx.doi.org/10.1051/matecconf/201822402033.

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The article is devoted to the refinement of the flexural strength assessment of surface-strengthened gears with Novikov’s engagement. For standard involute wheels the results that were calculated in accordance with existing regulations and experiments could differ by an order of magnitude, or even more, then for Novikov’s transmissions, only partial recommendations based on experiments are relatively reliable. The influence of several factors, such as the possible initiation of flexural fractures under the action of contact stresses on the tooth’s leg, as well as the peculiarities of cyclic lo
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11

Сандлер, Александр, Aleksandr Sandler, Сергей Лагутин, and Sergey Lagutin. "Function-specific technology of hobbing cutter relieving for wheel hobbing gears with Novikov mesh." Science intensive technologies in mechanical engineering 2019, no. 9 (2019): 33–43. http://dx.doi.org/10.30987/article_5d2df088619b13.24122927.

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A productive worm of a hob for cutting Novikov gearing with two mash lines has a profile variable not only by a curvature radius, but also by its sign. A procedure is developed for relieving side surfaces of teeth of these milling cutters by a disk tool (abrasive disk) function-specific to ensure back angles of a milling cutter and realization quality of an initial contour of a gear with the production worm of a milling cutter.
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12

Korotkin, V. I. "THE CURRENT STATE AND PROSPECTS OF THE DEVELOPMENT OF NOVIKOV GEARING." Spravochnik. Inzhenernyi zhurnal, no. 311 (February 2023): 13–22. http://dx.doi.org/10.14489/hb.2023.02.pp.013-022.

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The article gives a brief overview of the results of many years of theoretical and experimental studies of Novikov’s gear wheels, including those obtained under the guidance of the author by the laboratory of the Research Institute of Mathematics, Mechanics and Informatics named after I. I. Vorovich of the Southern (former Rostov) State University, shows the application in practice and the main promising directions for the development and improvement of these progressive gear wheels.
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13

Korotkin, V. I., and E. M. Kolosova. "THE MAIN PARAMETERS OF THE STRENGTH CALCULATION OF NOVIKOV GEARING WITH STANDARD BASIC RACK PROFILE." Spravochnik. Inzhenernyi zhurnal, no. 291 (June 2021): 3–11. http://dx.doi.org/10.14489/hb.2021.06.pp.003-011.

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The article shows the expediency of using Novikov gearing with standard basic rack profile and with hardened teeth for general purpose gearboxes, also with thermally improved teeth for special purpose gearboxes. It sets out the principled approach for solving the problem definition of basic parameters of the strength calculation of these gears, consisting of two stages: a) definitions of both basic bending, contact stresses and tooth rigidity, and phase taking into account the coefficients of influence of the gear face; b) modeling the process of real multipoint engagement with finding the cri
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14

Syzrantseva, K., and V. Syzrantsev. "Estimation of Novikov Gearing Loading Capacity Based om Integral Strain Gauges Application." Procedia Engineering 206 (2017): 1081–86. http://dx.doi.org/10.1016/j.proeng.2017.10.598.

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15

Silich, A. A., and Eh M. Yusupova. "Mathematical model of shaping toothed products using volumetric tool with one motion parameter." Advanced Engineering Research 20, no. 3 (2020): 295–301. http://dx.doi.org/10.23947/2687-1653-2020-20-3-295-301.

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Introduction. The development of a mathematical model of one-parameter shaping of a toothed product is considered. As an example, shaping of the side surface of the teeth of the Novikov gearing is studied; the mode and magnitude of the change in the shaping error heightwise the wheel tooth are shown. The work objective was to develop a mathematical model of the surface of the product teeth as a generating surface envelope of the tool. A computational and experimental study is carried out. The mathematical models obtained can be used in devices with copiers when shaping the side surface of the
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16

Babichev, D. T. "Concept of Development of Novikov Method for Synthesis of Conjugate Gearing with Initially Point Contact of Surfaces." Intellekt. Sist. Proizv. 15, no. 2 (2017): 14. http://dx.doi.org/10.22213/2410-9304-2017-2-14-18.

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Важный начальный этап проектирования передач - выбор способа образования сопряженного зацепления. Есть две группы таких способов: классические и изначально оптимизирующие. При использовании оптимизирующих способов синтез начинают с выбора вида и положения мгновенных площадок контакта зубьев, при которых передаваемое окружное усилие будет максимальным. Таковым является метод М. Л. Новикова (1956). Но в этом методе отсутствуют методики синтеза оптимальных контактных площадок и линий зацепления. Для доработки метода разработана новая концепция синтеза и проектирования передач. Представлен план ра
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17

Korotkin, V. I., and D. A. Gazzaev. "Bending intensity of teeth under the influence of a distributed load in different phases of Novikov gearing." Journal of Machinery Manufacture and Reliability 43, no. 2 (2014): 104–11. http://dx.doi.org/10.3103/s1052618814020083.

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18

Ye, Gang, and Xian-You Ye. "A new method for seeking the optimum gear tooth profiles––the theoretical basis of Wildhaber–Novikov gearing." Mechanism and Machine Theory 37, no. 10 (2002): 1087–103. http://dx.doi.org/10.1016/s0094-114x(02)00049-6.

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19

Silich, A. A., R. Yu Nekrasov, and A. Zinchenko. "On the Peculiarities of the Circular Cutter Geometry Applied for Cutting the Wheels of Novikov’s Gearings." Key Engineering Materials 736 (June 2017): 153–57. http://dx.doi.org/10.4028/www.scientific.net/kem.736.153.

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The authors determine the tolerance ranges of the shift of the basic rack tooth profile of the tool having the form of a gear wheel (shaver, honing wheel, knurling tool) used for cutting the gear wheels of cylindrical Novikov’s gearings. The tolerance range was obtained proceeding from the condition of the edges of regression formation, width of the topland, contact ratio and permissible width of the toothed rim of the tool. The obtained recommendations were used and can be used for designing instruments for machining the Novikov’s gearing wheels.
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20

Povetkin, Vitaliy Vasilyevich, Saltanat Zharylgasovna Bagitova, Manshuk Fazylovna Kerimzhanova, et al. "THE COMPARATIVE ANALYSIS OF COMPUTER MODEL OPERATION OF TOOTH GEARING WITH EVOLVENT GEARING AND NOVIKOV’S GEARING." NEWS of National Academy of Sciences of the Republic of Kazakhstan 5, no. 437 (2019): 34–45. http://dx.doi.org/10.32014/2019.2518-170x.123.

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21

Beskopylny, Alexey, Nikolay Onishkov, and Viktor Korotkin. "The Contact Mechanics of Novikov’s Surface-Hardened Gearing during Running-in Process." Advances in Tribology 2018 (September 13, 2018): 1–8. http://dx.doi.org/10.1155/2018/9607092.

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The article is devoted to the analysis of the state of the contact surfaces of the higher kinematic pair in the general case of relative motion, that is, in the presence of rolling, sliding, and twisting, which is characteristic of Novikov’s circular-screw gears. The purpose of the work is to assess the impact of friction forces, the state of contact surfaces after tool processing, and the localization of the instantaneous contact spot on the level of contact—fatigue durability of gears. Power contact in the presence of geometric slippage of the mating surfaces leads to a significant change in
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22

"Highly hard modified Novikov gears for special purpose drive gearboxes." Vestnik Mashinostroeniya, April 2023, 318–22. http://dx.doi.org/10.36652/0042-4633-2023-102-4-318-322.

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A comparison of the technical and economic characteristics of the drive gearbox of oil pumping units with different versions of modified Novikov gears with thermally improved and highly hard teeth is considered. The advantages of the latter are shown. Keywords: Novikov gearing, thermally improved teeth, highly hard teeth, contact endurance, bending endurance, technical and economic characteristics of the gearbox. vkorotkin@sfedu.ru
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23

Korotkin, V. I., N. P. Onishko, and Yu D. Kharitonov. "STRESS STATE OF NOVIKOV GEARING TEETH UNDER THE CONDITIONS OF REAL MULTIPAIR ENGAGEMENT." Spravochnik. Inzhenernyi zhurnal, 2015, 11–17. http://dx.doi.org/10.14489/hb.2015.06.pp.011-017.

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24

KRESAN, T., and S. PYLYPAKA. "INTERNAL ROLLING OF NON-CIRCULAR CENTROIDS FORMED FROM THE ARCS OF LOGARITHMIC SPIRAL." Naukovij žurnal «Tehnìka ta energetika» 12, no. 1 (2020). http://dx.doi.org/10.31548/machenergy2021.01.109.

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In the article the internal rolling of flat centroids on each other with simultaneous rotation around fixed centers is considered. A characteristic feature of the considered centroids is that the profile of each of them is formed by successive connection of identical arcs of the same logarithmic spiral. It is similar to the profile of a gear wheel. As in gears, such centroids can transmit rotational motion. Unlike gears the transmission of rotational motion occurs without sliding of the arcs in the contact area. This is due to the fact that the arc lengths of the tooth profiles are equal. In c
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25

Korotkin, V. I. "EVALUTION OF EFFECTIVENESS LONGITUDINAL SURFACE MODIFICATION TEETH OF CYLINDRICAL NOVIKOV GEARING WITH STANDARD BASIC RACK PROFILE ACCORDING TO GOST 30224–96." Spravochnik. Inzhenernyi zhurnal, 2015, 14–20. http://dx.doi.org/10.14489/hb.2015.12.pp.014-020.

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26

Korotkin, V. I. "CRITERION CONTACT INTENSITY, ORDER PHASE DISPLACEMENT AND RIGIDITY OF TEETH OF NOVIKOV GEARING WITH BASIC RACK PROFILE ACCORDING TO GOST 15023–76." Spravochnik. Inzhenernyi zhurnal, 2016, 14–20. http://dx.doi.org/10.14489/hb.2016.06.pp.014-020.

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