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Research on ultrasonic vibration assisted repair technology of high temperature and high pressure parts

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dc.contributor.author Che Lei
dc.contributor.author Sun Wenlei
dc.contributor.author Zhang Guan
dc.contributor.author Han Jiaxin
dc.date.accessioned 2019-06-20T03:26:14Z
dc.date.available 2019-06-20T03:26:14Z
dc.date.issued 2018
dc.identifier.citation Research on ultrasonic vibration assisted repair technology of high temperature and high pressure parts / Che Lei, Sun Wenlei, Zhang Guan, Han Jiaxin // Functional Materials. — 2018. — Т. 25, № 4. — С. 809-817. — Бібліогр.: 10 назв. — англ. uk_UA
dc.identifier.issn 1027-5495
dc.identifier.other DOI:https://doi.org/10.15407/fm25.04.809
dc.identifier.uri http://dspace.nbuv.gov.ua/handle/123456789/157421
dc.description.abstract This paper studies the ultrasonic vibration assisted lifting laser cladding technology. Firstly, the simulation model of ultrasonic vibration-enhanced Ni60 self-fluxing alloy powder coated with 45 steel substrate is established, and the variation law of temperature field and temperature gradient in ultrasonic vibration strengthening process are analyzed by using Ansys finite element analysis software. After that, the microstructure, microhardness and surface roughness of the cladding layer are compared with that of the cladding test blocks with and without ultrasonic vibration. The results show that as the ultrasonic frequency increases or the scanning speed decreases, the temperature increases everywhere along the Z-axis, and the temperature gradient from the cladding layer to the interface area decreases. Compared to the cladding layer without ultrasonic vibration, the microstructure of the cladding layer obtained by applying ultrasonic vibration is finer and denser due to the effect of ultrasonic cavitation, and the microhardness is increased by 1.37 times and the surface roughness is reduced by 36.6%. uk_UA
dc.description.sponsorship This work was financially supported by Xinjiang uygur autonomus region hightech research and development project and Xinjiang uygur autonomous region youth natural science fund project. uk_UA
dc.language.iso en uk_UA
dc.publisher НТК «Інститут монокристалів» НАН України uk_UA
dc.relation.ispartof Functional Materials
dc.subject Technology uk_UA
dc.title Research on ultrasonic vibration assisted repair technology of high temperature and high pressure parts uk_UA
dc.type Article uk_UA
dc.status published earlier uk_UA


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