Manufacturing Technology 2018, 18(3):400-405 | DOI: 10.21062/ujep/112.2018/a/1213-2489/MT/18/3/400

Application of the Weld Deposits on Function Surfaces of the Forest Machines Components

Daniela Kalincová, Miroslava Ťavodová, Veronika Ľuptáčiková
Faculty of Environmental and Manufacturing Technologies, Technical University in Zvolen. Študentská 26, 960 53 Zvolen. Slovak Republic

The abrasive wear of pulley surfaces at winding of the ropes causes changes of the shape and quality surface of the groove and has influenced lifetime of the skidding machine. The pulley is made of steel C45E without heat treatment and its structure is not suitable for the abrasive wear of the pair metal-metal. Contribution describes a research aimed to changes in material structure by the heat treatment. The pulleys (first one in original state and second one after heat treatment) were tested in operating load at skidding during 320 hours. After experimental test, measurable properties as weight loss, groove dimensions of the pulleys were compared. On the samples from the pulleys, material resistence to wear was tested too. Another alternative for change of material properties would be an aplication of various types of weld deposits on the steel C45E. We have examined the quality of weld deposits and compared their hardness and microstructure. The results of experimental tests resulted to recommendations for practice.

Keywords: pulley, resistence to wear, weld deposit, microstructure, hardness

Published: June 1, 2018  Show citation

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Kalincová D, Ťavodová M, Ľuptáčiková V. Application of the Weld Deposits on Function Surfaces of the Forest Machines Components. Manufacturing Technology. 2018;18(3):400-405. doi: 10.21062/ujep/112.2018/a/1213-2489/MT/18/3/400.
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References

  1. HNILICA, R., MESSINGEROVÁ, V., STANOVSKÝ, M., SLUGEŇ, J., HNILICOVÁ, M., FERENČÍK, M. (2015). Possibilities of mechanization of work on forest founding and upbringing. Monography. pp. 99, ISBN 978-80-228-2722-5.
  2. MÜLLER M., NOVÁK P., CHOTĚBORSKÝ R., HRABĚ PETR (2018). Reduction of ploughshare wear by means of carbide overlay In: Manufacturing technology, Vol. 18, No. 1. ISSN 1213-2489. Go to original source...
  3. ŤAVODOVÁ, M., KALINCOVÁ, D., HNILICOVÁ, M., HNILICA, R. (2016). The influence of heat treatment on tool properties mulcher. In: Manufacturing Technology Vol. 16, no. 5 p. 1169-1173, ISSN 1213-2489.
  4. CHOTĚBORSKÝ, R., HRABĚ, P., MÜLLER, M., SAVKOVÁ, J., JIRKA, M., NAVRÁTILOVÁ, M. (2009). Effect of abrasive particle size on abrasive wear of hardfacing alloys. In. RES. AGR. ENG., 55, 2009 (3): 101-113 [available on the Internet] [cit.2018.01.19]. https://www.agriculturejournals.cz/publicFiles/10581.pdf Go to original source...
  5. SUCHÁNEK, J., KUKLÍK, V., ZDRAVECKÁ, E. (2007). Abrasive wear of materials Praha. ČVUT, 2007. ISBN 978-80-01-03659-4, 162 str.
  6. ŤAVODOVÁ, M., KALINCOVÁ, D., KOTUS, M. (2017). Possibilities of increasing wear resistance on functional surfaces of the mulcher tool. In CD Conference Proceedings ZVÁRANIE 2017.
  7. DRBÚL, M., STANČEKOVÁ, D., BABÍK, O., HOLUBJÁK, J., GÖRÖGOVÁ, I., VARGA, D. (2016). Simulation possibilities of 3D measuring in progressive control of production. In: Manufacturing Technology. Vol. 16, no. 1 s. 53-58, ISSN 1213-2489. Go to original source...
  8. ČSN 01 5084 (1974). Determination of resistance of abrasive wear on the abrasive cloth
  9. HRIVŇÁK, I. (2009). Welding and weldability of materials. Bratislava: Vydavateľstvo STU v Bratislave, 486 s. ISBN 978-80-89628-18-6
  10. Repair and maintenance (2013). ESAB. Slovakia s.r.o
  11. MÜLLER, M., HRABĚ, P. (2013). Overlay materials used for increasing lifetime of machine parts working under conditions of intensive abrasion. In Research in Agricultural Engineering, vol. 59, no. 1, pp. 16-22. ISSN 1212-9151. Go to original source...
  12. CHOTĚBORSKÝ, R. et al (2009). Abrasive wear of welded-on materials on the basis of Fe-Cr-C. In KONSTRUKCE 1/2009 [available on the Internet] [cit.2018.01.14] http://www.konstrukce.cz/clanek/abrazivni-opotrebeni-navarovych-materialu-na-bazi-fe-cr-c/
  13. LNM 420 FM [available on the Internet] [cit.2018.01.14]. <http://www.lincolnelectric.com/assets/global/Products/ConsumableEU_MIGWires-LNM-LNM420FM/LNM420FM-ENG.pdf>
  14. PAULIČEK, T., KOTUS, M., DAŇKO, M., ŽÚBOR, P. (2013). Resistance of hard-facing deposit created by laser surfacing technology. In: Advanced Materials Research, 801(special iss.): 117-122. Go to original source...
  15. KOVÁČ, I., TOLNAI, R. (2007). Improvement of the mechanical properties of surface layers of 14 220 and 15 203 saturated boron steels. In: Acta technologica agriculturae, vol. 9, no. 1, pp. 1-3. ISSN 1335-2555.
  16. VOTAVA, J. - ČERNÝ, M - FILÍPEK, J. (2005). Effect of heat treatment on abrasive wear. In Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis, vol. LIII, no. 5, pp. 175-185. ISSN 1211-8516. Go to original source...

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