Economic feasibility of using the technology of carbon-vibro-arc hardening for hardening the pointed paws of tillage machinery

Nikolay V. Titov , Alexander V. Kolomeychenko , Victor V. Vinogradov , Alla S. Kolomeychenko

Tractors and Agricultural Machinery ›› 2021, Vol. 88 ›› Issue (6) : 99 -104.

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Tractors and Agricultural Machinery ›› 2021, Vol. 88 ›› Issue (6) :99 -104. DOI: 10.17816/0321-4443-2021-6-99-104
Economics, organization and technology of production
research-article

Economic feasibility of using the technology of carbon-vibro-arc hardening for hardening the pointed paws of tillage machinery

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Abstract

The article describes the rational technology of carbo-vibro-arc hardening (CVAH) developed by the authors using a multicomponent paste of the working surfaces of the pointed paw of tillage machinery. An economic assessment of the feasibility of using CVAH for strengthening pointed paws was carried out. PG-FBKh6-2 powder was used for research as the basis of a multicomponent paste for CVAH. The boron carbide B4C served as a ceramic component of the paste, the mass content of cryolite was 10 %. CVAH was carried out on a VDGU-2 installation. A carbon electrode of 8 mm in diameter was used to form reinforcing composite coatings.

The implementation of developed technology involves firstly the cleaning of working part of the paw. Then a multicomponent paste is prepared, it is applied to the surfaces, hardened and dried until cured. After it the CVAH is done with the formation of a composite coating and the resulting coating is monitored. The rational composition of the multicomponent paste according to the results of a set of studies should be as follows: PG-FBH6-2 powder – 60 % by weight, B4C – 30 % by weight, cryolite – the rest. Rational CVAH modes: current strength – 70 ... 80 A, carbon electrode vibration frequency – 25 Hz, electrode vibration amplitude – 1,1 mm. The thickness of the formed reinforcing composite coating is 0,9…1,0 mm, and its hardness is 70…72 HRC. The developed technology, due to low additional capital investments, can be used both in small workshops of farms and in the conditions of specialized repair and restoration enterprises. The calculation of the economic efficiency of the developed technology for strengthening pointed paws showed that the expected annual economic effect from the introduction of the technology will be 120, 191 rubles with the hardening of 430 blades of KShU-12N cultivators. Thus, the developed technology is economically feasible and can be recommended for implementation in production.

Keywords

pointed paw / carbo-arc hardening / composite coating / multi-component paste / economic efficiency

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Nikolay V. Titov, Alexander V. Kolomeychenko, Victor V. Vinogradov, Alla S. Kolomeychenko. Economic feasibility of using the technology of carbon-vibro-arc hardening for hardening the pointed paws of tillage machinery. Tractors and Agricultural Machinery, 2021, 88(6): 99-104 DOI:10.17816/0321-4443-2021-6-99-104

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References

[1]

Mikhal’chenkov A.M., Fes’kov S.A., Anishchenko A.V. Strengthening of the A blade of Morris sowing complex. Sel’skiy mekhanizator. 2017. No 10, pp. 34–35 (in Russ.).

[2]

Михальченков А.М., Феськов С.А., Анищенко А.В. Упрочнение стрельчатой лапы посевного комплекса «Моррис» // Сельский механизатор. 2017. № 10. С. 34–35.

[3]

Lyalyakin V.P., Solov’yev S.A., Aulov V.F. State and prospect of hardening and restoration of parts of tillage machinery by welding and surfacing methods. Trudy GOSNITI. 2014. T. 115, pp. 96–104 (in Russ.).

[4]

Лялякин В.П., Соловьев С.А., Аулов В.Ф. Состояние и перспектива упрочнения и восстановления деталей почвообрабатывающих машин сварочно-наплавочными методами // Труды ГОСНИТИ. 2014. Т. 115. С. 96–104.

[5]

Novikov V.S. Obespecheniye dolgovechnosti rabochikh organov pochvoobrabatyvayushchikh mashin: monografiya [Ensuring the durability of the working bodies of tillage machinery]. Moscow: INFRA-M Publ., 2019. 155 p.

[6]

Новиков В.С. Обеспечение долговечности рабочих органов почвообрабатывающих машин: монография. М.: ИНФРА-М, 2019. 155 с.

[7]

Semchuk G.I., Dudnikov A.A. Analysis of ways to improve the durability of cultivator blades. Vostochnoyevropeyskiy zhurnal peredovykh tekhnologiy. 2003. No 5 (65), pp. 67–71 (in Russ.).

[8]

Семчук Г.И., Дудников А.А. Анализ способов повышения долговечности культиваторных лап // Восточно-европейский журнал передовых технологий. 2003. № 5 (65). С. 67–71.

[9]

Titov N.V. Increasing the durability of the working bodies of soil-cultivating machinery by applying ceramic-metal coatings. Traktory i sel’khozmashiny. 2018. No 6, pp. 27–31 (in Russ.).

[10]

Титов Н.В. Повышение долговечности рабочих органов почвообрабатывающих машин путем нанесения металлокерамических покрытий // Тракторы и сельхозмашины. 2018. № 6. С. 27–31.

[11]

Zadorozhniy R.N., Tuzhilin S.P. Metallographic studies of steel specimens hardened by carbo-arc surfacing. Trudy GOSNITI. 2016. T. 124. No 2, pp. 57–61 (in Russ.).

[12]

Задорожний Р.Н., Тужилин С.П. Металлографические исследования стальных образцов, упрочненных карбовибродуговой наплавкой // Труды ГОСНИТИ. 2016. Т. 124. № 2. С. 57–61.

[13]

Sharifullin S.N., Adigamov N.R., Adigamov N.N. [et al.]. Surface hardening of cutting elements agricultural ma-chinery vibro arc plasma // Journal of Physics: Conference Series. 2016. V. 669. No 1. R. 012049.

[14]

Sharifullin S.N., Adigamov N.R., Adigamov N.N. [et al.]. Surface hardening of cutting elements agricultural machinery vibro arc plasma // Journal of Physics: Conference Series. 2016. V. 669. № 1. Р. 012049.

[15]

Kolomeychenko A.V., Titov N.V., Vinogradov V.V. [et al.]. The microstructure of composite cermet coatings pro-duced by carbovibroarc surfacing. Welding International. 2017. Vol. 31. No. 9. pp. 739–742. DOI: 10.1080/09507116.2017.1318494

[16]

Kolomeychenko A.V., Titov N.V., Vinogradov V.V. [et al.]. The microstructure of composite cermet coatings produced by carbo-vibroarc surfacing // Welding International. 2017. Vol. 31. No. 9. Pp. 739–742. DOI: 10.1080/09507116.2017.1318494

[17]

Bayniyazova A.T., Abzhayev M.M., Kudryashova Ye.Yu. i dr. Vibroplasmic hardening of the working bodies of agricultural machinery. Tekhnicheskiy servis mashin. 2020. No 1 (138), pp. 132–142 (in Russ.).

[18]

Байниязова А.Т., Абжаев М.М., Кудряшова Е.Ю. и др. Виброплазменное упрочнение рабочих органов сельскохозяйственных машин // Технический сервис машин. 2020. № 1 (138). С. 132–142.

[19]

Titov N.V., Kolomeichenko A.V., Litovchenko N.N. Innovative method of tillage tool hardening // Vestnik Orel-GAU. 2014. No 2 (47). R. 42–48 (in Russ.).

[20]

Titov N.V., Kolomeichenko A.V., Litovchenko N.N. Innovative method of tillage tool hardening // Vestnik OrelGAU. 2014. № 2 (47). Р. 42–48.

[21]

Titov N.V., Kolomeychenko A.V., Vinogradov V.V. i dr. Investigation of the influence of modes and parameters of carbon-vibro-arc hardening on the thickness of the metal-ceramic coating. Tekhnika i oborudovaniye dlya sela. 2016. No 9, pp. 34–37 (in Russ.).

[22]

Титов Н.В., Коломейченко А.В., Виноградов В.В. и др. Исследование влияния режимов и параметров карбовибродугового упрочнения на толщину металлокерамического покрытия // Техника и оборудование для села. 2016. № 9. С. 34–37.

[23]

Babich B.N., Vershinina Yu.V., Glebov V.A. i dr. Metallicheskiye poroshki i poroshkov·yye materialy: spravochnik [Metal powders and powder materials: reference book]. Pod red. Yu.V. Levinskogo. Moscow: EKOMET Publ., 2005. 520 p.

[24]

Бабич Б.Н., Вершинина Е.В., Глебов В.А. и др. Металлические порошки и порошковые материалы: справочник / под ред. Ю.В. Левинского. М.: ЭКОМЕТ, 2005. 520 с.

[25]

Kuznetsov Yu.A., Bashkirtsev V.I., Bashkirtsev Yu.V. Tekhniko-ekonomicheskoye obosnovaniye vnedreniya meropriyatiy nauchno-tekhnicheskogo progressa v APK [Feasibility study for the implementation of measures of scientific and technological progress in the agro-industrial complex]: uchebno-metodicheskoye posobiye. Moscow: FGBOU «Rossiyskaya inzhenernaya akademiya menedzhmenta i agrobiznesA» Publ., 2015. 91 p.

[26]

Кузнецов Ю.А., Башкирцев В.И., Башкирцев Ю.В. Технико-экономическое обоснование внедрения мероприятий научно-технического прогресса в АПК: учебно-методическое пособие. М.: ФГБОУ «Российская инженерная академия менеджмента и агробизнеса», 2015. 91 с.

[27]

Kuznetsov Yu.A., Kolomeychenko A.V., Kulakov K.V. i dr. Tekhniko-ekonomicheskoye obosnovaniye inzhenernykh resheniy v diplomnykh proyektakh [Feasibility study of engineering solutions in graduation projects: textbook]: uchebnoye posobiye. Orel: FGBOU VPO Orel GAU Publ., 2014. 124 p.

[28]

Кузнецов Ю.А., Коломейченко А.В., Кулаков К.В. и др. Технико-экономическое обоснование инженерных решений в дипломных проектах: учебное пособие / Орел: ФГБОУ ВПО Орел ГАУ, 2014. 124 с.

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