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Published in: Polymer Science, Series D 4/2023

01-12-2023

Ultrasonic Technologies in Producing Adhesive Joints: A Review

Author: S. K. Sundukov

Published in: Polymer Science, Series D | Issue 4/2023

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Abstract

An overview of the current state of research on intensifying the processes of obtaining adhesive joints using ultrasonic vibrations is presented. Two types of ultrasound applications are considered: processing or preparing an adhesive composition before gluing and applying vibrations to the elements being glued. The main mechanisms that determine the increase in the properties of the resulting compounds are cavitation, which leads to the destruction of polymer chains and a decrease in the viscosity of the adhesive, and the sonic capillary effect, which consists in increasing the ability of the adhesive to fill micro- and submicron irregularities of the bonded surfaces.

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Literature
1.
go back to reference N. V. Lapina and N. I. Baurova, “Study of the properties of polymer materials used in the repair of road construction machines using the method of dynamomechanical analysis,” Vest. Mosk. Avtomob.-Dorozh. Gos. Tekh. Univ., No. 4, 28–33 (2018). N. V. Lapina and N. I. Baurova, “Study of the properties of polymer materials used in the repair of road construction machines using the method of dynamomechanical analysis,” Vest. Mosk. Avtomob.-Dorozh. Gos. Tekh. Univ., No. 4, 28–33 (2018).
2.
go back to reference S. K. Sundukov, R. I. Nigmetzyanov, and D. S. Fatyukhin, “Structure of the weld formed during the application of ultrasonic vibrations,” Russ. Metall. 2021, 1667–1672 (2021).CrossRef S. K. Sundukov, R. I. Nigmetzyanov, and D. S. Fatyukhin, “Structure of the weld formed during the application of ultrasonic vibrations,” Russ. Metall. 2021, 1667–1672 (2021).CrossRef
3.
go back to reference R. I. Nigmetzyanov, S. K. Sundukov, and D. S. Fatyukhin, “Ultrasonic assembly of press-fit joints,” Russ. Eng. Res. 37, 1044–1047 (2017).CrossRef R. I. Nigmetzyanov, S. K. Sundukov, and D. S. Fatyukhin, “Ultrasonic assembly of press-fit joints,” Russ. Eng. Res. 37, 1044–1047 (2017).CrossRef
4.
go back to reference N. I. Baurova and A. Y. Sergeev, “Structural studies of fracture patterns in adhesive joints after pullout testing,” Polym. Sci., Ser. D 7, 298–302 (2014). N. I. Baurova and A. Y. Sergeev, “Structural studies of fracture patterns in adhesive joints after pullout testing,” Polym. Sci., Ser. D 7, 298–302 (2014).
5.
go back to reference D. S. Fatyukhin, “Ultrasonic cleaning equipment for automobile components,” Russ. Eng. Res. 32, 305–307 (2012).CrossRef D. S. Fatyukhin, “Ultrasonic cleaning equipment for automobile components,” Russ. Eng. Res. 32, 305–307 (2012).CrossRef
6.
go back to reference D. S. Fatyukhin et al., “A comparison of the effects of ultrasonic cavitation on the surfaces of 45 and 40Kh steels,” Metals 12, 138 (2022).CrossRef D. S. Fatyukhin et al., “A comparison of the effects of ultrasonic cavitation on the surfaces of 45 and 40Kh steels,” Metals 12, 138 (2022).CrossRef
7.
go back to reference R. I. Ningmetzyanov et al., “Dynamics of surface properties of steel Kh12MF during cavitation-erosion treatment,” Met. Sci. Heat Treat. 64, 236–242 (2022).CrossRef R. I. Ningmetzyanov et al., “Dynamics of surface properties of steel Kh12MF during cavitation-erosion treatment,” Met. Sci. Heat Treat. 64, 236–242 (2022).CrossRef
8.
go back to reference A. Livanskiy et al., “Research on the influence of ultrasonic vibrations on paint coating properties,” Trans. FAMENA 40, 129–138 (2016). A. Livanskiy et al., “Research on the influence of ultrasonic vibrations on paint coating properties,” Trans. FAMENA 40, 129–138 (2016).
9.
go back to reference R. L. V. Kumar, M. R. Bhat, and C. R. L. Murthy, “Some studies on evaluation of degradation in composite adhesive joints using ultrasonic techniques,” Ultrasonics 53, 1150–1162 (2013).CrossRef R. L. V. Kumar, M. R. Bhat, and C. R. L. Murthy, “Some studies on evaluation of degradation in composite adhesive joints using ultrasonic techniques,” Ultrasonics 53, 1150–1162 (2013).CrossRef
10.
go back to reference J. Kowalczyk et al., “Adhesive joints of additively manufactured adherends: ultrasonic evaluation of adhesion strength,” Materials 15, 3290 (2022).CrossRefPubMedPubMedCentral J. Kowalczyk et al., “Adhesive joints of additively manufactured adherends: ultrasonic evaluation of adhesion strength,” Materials 15, 3290 (2022).CrossRefPubMedPubMedCentral
11.
go back to reference W. Wang and S. I. Rokhlin, “Evaluation of interfacial properties in adhesive joints of aluminum alloys using angle-beam ultrasonic spectroscopy,” J. Adhes. Sci. Technol. 5, 647–666 (1991).CrossRef W. Wang and S. I. Rokhlin, “Evaluation of interfacial properties in adhesive joints of aluminum alloys using angle-beam ultrasonic spectroscopy,” J. Adhes. Sci. Technol. 5, 647–666 (1991).CrossRef
12.
go back to reference C. Jeenjitkaew and F. J. Guild, “The analysis of kissing bonds in adhesive joints,” Int. J. Adhes. Adhes. 75, 101–107 (2017).CrossRef C. Jeenjitkaew and F. J. Guild, “The analysis of kissing bonds in adhesive joints,” Int. J. Adhes. Adhes. 75, 101–107 (2017).CrossRef
13.
14.
go back to reference X. Xi, C. Yu, and W. Lin, “Investigation of nanographite/polyurethane electroconductive adhesives: preparation and characterization,” J. Adhes. Sci. Technol. 23, 1939–1951 (2009).CrossRef X. Xi, C. Yu, and W. Lin, “Investigation of nanographite/polyurethane electroconductive adhesives: preparation and characterization,” J. Adhes. Sci. Technol. 23, 1939–1951 (2009).CrossRef
15.
go back to reference M. Castaings et al., “Ultrasonic characterization of cohesive and adhesive properties of adhesive bonds,” J. Acoust. Soc. Am. 138, 1766–1766 (2015).CrossRef M. Castaings et al., “Ultrasonic characterization of cohesive and adhesive properties of adhesive bonds,” J. Acoust. Soc. Am. 138, 1766–1766 (2015).CrossRef
16.
go back to reference A. Szewczak and M. Szelag, “Modifications of epoxy resins and their influence on their viscosity,” IOP Conf. Ser.: Mater. Sci. Eng. 471, 022038 (2019). A. Szewczak and M. Szelag, “Modifications of epoxy resins and their influence on their viscosity,” IOP Conf. Ser.: Mater. Sci. Eng. 471, 022038 (2019).
17.
go back to reference A. Szewczak, “mpact of epoxy resin modification on their strength parameters,” Budownictwo i Architektura 18, 041–050 (2019). A. Szewczak, “mpact of epoxy resin modification on their strength parameters,” Budownictwo i Architektura 18, 041–050 (2019).
18.
go back to reference M. M. Ganiev, “Influence of ultrasonic machining on physico-mechanical properties of adhesive joints and epoxide compounds,” Russ. Aeronautics 51, 223–225 (2008).CrossRef M. M. Ganiev, “Influence of ultrasonic machining on physico-mechanical properties of adhesive joints and epoxide compounds,” Russ. Aeronautics 51, 223–225 (2008).CrossRef
19.
go back to reference A. F. Magsumova, L. M. Amirova, and M. M. Ganiev, “The influence of ultrasonic treatment on the technological properties of epoxy oligomer,” Vestn. Kazan Gos. Tekh. Univ., No. 2, 8–10 (2005). A. F. Magsumova, L. M. Amirova, and M. M. Ganiev, “The influence of ultrasonic treatment on the technological properties of epoxy oligomer,” Vestn. Kazan Gos. Tekh. Univ., No. 2, 8–10 (2005).
20.
go back to reference L. M. Amirova and M. M. Ganiev, RF Patent No. 2283695 C2, Byull. Izobret., No. 6 (2006). L. M. Amirova and M. M. Ganiev, RF Patent No. 2283695 C2, Byull. Izobret., No. 6 (2006).
21.
go back to reference V. M. Popov, A. N. Vnukov, and A. V. Latynin, “The influence of a combined physical field on the polymerization process of adhesives,” in Proceedings of 6 th International Scientific and Technical Symposium “Modern Energy and Resource Saving Sett Technologies,” 2017, pp. 30–32. V. M. Popov, A. N. Vnukov, and A. V. Latynin, “The influence of a combined physical field on the polymerization process of adhesives,” in Proceedings of 6 th International Scientific and Technical Symposium “Modern Energy and Resource Saving Sett Technologies,” 2017, pp. 30–32.
22.
go back to reference V. M. Popov, O. R.Dornyak, and A. V. Latynin, “Towards the creation of adhesive joints of increased strength based on polymer adhesives modified by impact,” Plast. Massy., Nos. 3–4, 55–59 (2017). V. M. Popov, O. R.Dornyak, and A. V. Latynin, “Towards the creation of adhesive joints of increased strength based on polymer adhesives modified by impact,” Plast. Massy., Nos. 3–4, 55–59 (2017).
23.
go back to reference E. V. Mironova, “Reducing the viscosity of rubber adhesive with ultrasound,” Omsk Nauch. Vestn., No. 2, 37–39 (2013). E. V. Mironova, “Reducing the viscosity of rubber adhesive with ultrasound,” Omsk Nauch. Vestn., No. 2, 37–39 (2013).
24.
go back to reference P. K. Ghosh et al., “Superior dissimilar adhesive joint of mild steel and aluminium using UDM processed epoxy based TiO2 nano-filler composite adhesive,” Composites, Part B 99, 224–234 (2016).CrossRef P. K. Ghosh et al., “Superior dissimilar adhesive joint of mild steel and aluminium using UDM processed epoxy based TiO2 nano-filler composite adhesive,” Composites, Part B 99, 224–234 (2016).CrossRef
25.
go back to reference P. K. Ghosh, A. Patel, and K. Kumar, “Adhesive joining of copper using nano-filler composite adhesive,” Polymer 87, 159–169 (2016).CrossRef P. K. Ghosh, A. Patel, and K. Kumar, “Adhesive joining of copper using nano-filler composite adhesive,” Polymer 87, 159–169 (2016).CrossRef
26.
go back to reference H. Wang et al., “Study on ultrasonic vibration-assisted adhesive bonding of CFRP laminates with laser ablation-treated surfaces,” Compos. Struct. 268, 113983 (2021).CrossRef H. Wang et al., “Study on ultrasonic vibration-assisted adhesive bonding of CFRP laminates with laser ablation-treated surfaces,” Compos. Struct. 268, 113983 (2021).CrossRef
27.
go back to reference H. Wang et al., “Ultrasonic vibration-strengthened adhesive bonding of CFRP-to-aluminum joints,” J. Mater. Proc. Technol. 257, 213–226 (2018).CrossRef H. Wang et al., “Ultrasonic vibration-strengthened adhesive bonding of CFRP-to-aluminum joints,” J. Mater. Proc. Technol. 257, 213–226 (2018).CrossRef
28.
go back to reference G. Yang and W. Yuan, “The influence of ultrasonic vibration-assisted processing on mode-i fracture toughness of CFRP-bonded joints,” Int. J. Adhes. Adhes. 104, 102742 (2021).CrossRef G. Yang and W. Yuan, “The influence of ultrasonic vibration-assisted processing on mode-i fracture toughness of CFRP-bonded joints,” Int. J. Adhes. Adhes. 104, 102742 (2021).CrossRef
29.
go back to reference J. Holtmannspotter, J. V. Czarnecki, and H. J. Gudladt, “The use of power ultrasound energy to support interface formation for structural adhesive bonding,” Int. J. Adhes. Adhes. 30, 130–138 (2010).CrossRef J. Holtmannspotter, J. V. Czarnecki, and H. J. Gudladt, “The use of power ultrasound energy to support interface formation for structural adhesive bonding,” Int. J. Adhes. Adhes. 30, 130–138 (2010).CrossRef
30.
go back to reference V. Prikhodko et al., “Improvement of operational properties of parts permanent joints with ultrasound technologies use,” J. Phys.: Conf. Ser. 1353, 012081 (2019). V. Prikhodko et al., “Improvement of operational properties of parts permanent joints with ultrasound technologies use,” J. Phys.: Conf. Ser. 1353, 012081 (2019).
31.
go back to reference S. K. Sundukov, “The Influence of Ultrasonic Vibrations on the Processes of Obtaining Permanent Connections,” in Technological Support and Improving the Quality of Mechanical Engineering and Aerospace Products, Ed. by D. I. Petreshin (Bryansk Gos. Tekh. Univ., Bryansk, 2022), pp. 199–203. S. K. Sundukov, “The Influence of Ultrasonic Vibrations on the Processes of Obtaining Permanent Connections,” in Technological Support and Improving the Quality of Mechanical Engineering and Aerospace Products, Ed. by D. I. Petreshin (Bryansk Gos. Tekh. Univ., Bryansk, 2022), pp. 199–203.
Metadata
Title
Ultrasonic Technologies in Producing Adhesive Joints: A Review
Author
S. K. Sundukov
Publication date
01-12-2023
Publisher
Pleiades Publishing
Published in
Polymer Science, Series D / Issue 4/2023
Print ISSN: 1995-4212
Electronic ISSN: 1995-4220
DOI
https://doi.org/10.1134/S1995421223040342

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