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Utjecaj obrade površine termoplastičnih poliolefina plamenom na adheziju premaza u industrijskim uvjetima robotskog bojenja

Authors: Vlado Merzel; Sanja Lučić Blagojević; Zrinka Buhin Šturlić; Mario Meheš; Mirela Leskovac;

Utjecaj obrade površine termoplastičnih poliolefina plamenom na adheziju premaza u industrijskim uvjetima robotskog bojenja

Abstract

In this paper, the influence of flame treatment on the surface properties of polypropylene (PP) and thermoplastic polyolefins with talc and carbon black filler (TPO), and adhesion of the applied coating in the conditions of industrial robotic dyeing process were investigated. The flame treatment was carried out at two distances from the flame (7.5 cm and 12.5 cm) at constant air and methane flows as well as speed of the burner. The thermal stability of untreated samples was investigated using thermogravimetric analysis (TGA). The change in thermal properties before and after flame treatment was investigated using differential scanning calorimetry (DSC). Changes of the samples’ surface energy were examined before flame treatment, 1 h and 24 h after flame treatment, by the contact angle method. Qualitative analysis of the surface chemical composition, before and after flame treatment, was performed by ATR – FTIR analysis, and morphological changes by scanning electron microscopy (SEM). After applying the base layer, dye and topcoat on the surface of the treated samples, the adhesion was determined by standard methods ISO 2409 and ISO 16925/D25 2018-B. The results showed that TPO containing talc and carbon black filler have better thermal stability compared to PP. Flame treatment influenced the surface characteristics of the samples, namely the increase in surface free energy and the appearance/structure of the surface. With ATR – FTIR, the existence of polar groups on the surface after flame treatment were determined. According to the standards, all dyed samples met the requirements of excellent adhesion on the substrate/coating interface. This work is licensed under a Creative Commons Attribution 4.0 International License.

U ovom radu istražen je utjecaj obrade plamenom polipropilena (PP) i termoplastičnih poliolefina s talkom i čađom (TPO) na površinska svojstva i adheziju nanesenog premaza u uvjetima industrijskog procesa robotskog bojenja. Obrada plamenom provedena je na dvije udaljenosti plamena od površine (7,5 cm i 12,5 cm) pri konstantnom protoku zraka i metana te brzini kretanja plamenika. Toplinska postojanost netretiranih uzoraka ispitana je primjenom termogravimetrijske analize (TGA). Promjena toplinskih svojstava prije i nakon obrade plamenom praćena je primjenom diferencijalne pretražne kalorimetrije (DSC). Metodom kontaktnog kuta određena je površinska energija uzoraka prije obrade plamenom te 1 h i 24 h nakon obrade plamenom. Promjene uzrokovane obradom plamenom istražene su ATR – FTIR analizom, a morfološke promjene pretražnim elektronskim mikroskopom (SEM). Nakon nanošenja temeljnog sloja, sloja boje i sloja laka na površinu obrađenih uzoraka određena je adhezija standardnim metodama ISO 2409 i ISO 16925/D25 2018-B. Rezultati su pokazali da TPO uzorci koji sadrže punilo talk i čađu imaju bolju toplinsku postojanost u odnosu na PP. Obrada plamenom utječe na promjenu površinskih karakteristika uzoraka, povećanje slobodne površinske energije i na izgled/strukturu površine. ATR – FTIR analizom utvrđeno je postojanje polarnih skupina na površini nakon obrade plamenom. Svi obojeni uzorci prema zahtjevima normi zadovoljavaju uvjete izvrsne adhezije na međupovršini supstrat/premaz. Ovo djelo je dano na korištenje pod licencom Creative Commons Imenovanje 4.0 međunarodna.

Country
Croatia
Related Organizations
Keywords

premaz, Chemistry, polipropilen; termoplastični poliolefini; obrada plamenom; slobodna površinska energija; premaz; adhezija, slobodna površinska energija, obrada plamenom, polipropilen, General Chemical Engineering, polypropylene; thermoplastic polyolefins; flame treatment; surface free energy; coating; adhesion, General Chemistry, polipropilen ; termoplastični poliolefini ; obrada plamenom ; slobodna površinska energija ; premaz ; adhezija, termoplastični poliolefini, adhezija, QD1-999

16 references, page 1 of 2

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3. E. Medeiros, R. Brandes., H. Ali Al-Qureshi, D. de O. S. Recouvreux, Effect of flame treatment in the coating adhesion on polypropylene substrate, 24th ABCM International Congress of Mechanical Engineering, December 3-8, (2017) Cu-

4. S. Waddington, D. Briggs, Adhesion mechanisms between polymer coatings and polypropylene studied by X.p.s. and SIMS, Polym. commun. 32 (16) (1991) 506-508.

5. F. Awaja, M., Gilber, G. Kelly, B. Fox, P. J. Pigram, Adhesion of polymers, Prog. Polym. Sci. 34 (2009) 948-968, doi: https:// doi.org/10.1016/j.progpolymsci.2009.04.007.

6. S. Farris, S. Pozzoli, P. Biagioni, L. Duó, S. Mancinelli, The fundamentals of flame treatment for the surface activation of polyolefin polymers - A review, Polymer 51 (2010) 3591- 3605, doi: https://doi.org/10.1016/j.polymer.2010.05.036. [OpenAIRE]

7. S. Wu, Polar and non-polar interactions in adhesion, J. Adhes. 5 (1973) 39-55, doi: https://doi. org/10.1080/00218467308078437.

8. R. J. Good, Contact angle, wetting, and adhesion: A critical review, u K. L. Mittal (ur.) Contact Angle, Wettability and Adhesion, VSP, Utrecht, 1993, str. 3-36.

9. Paints and Varnishes - Cross-cut test, ISO 2409:2007 E.

10. Paint and Varnishes - Determination of the Resistance of Coating to Pressure Water-Jetting, ISO 16925:2014.

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citations
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
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