Experimental Assessment of Roughness Changes in the Cutting Surface and Microhardness Changes of the Material S 355 J2 G3 after Being Cut by Non-Conventional Technologies

Article Preview

Abstract:

Production of components, necessary for the construction of the machine resp. or device is a demanding manufacturing process. One of the possibilities of increasing efficiency and production quality is the introduction of unconventional technologies to the production process. Knowing the dependence of the impact of non-conventional technologies on the mechanical properties of products and their subsequent verification is an important aspect when designing and manufacturing them. The article deals with the impact of used unconventional technology, that means laser, plasma and water jet on the roughness of a cutting edge and microhardness of material S 355 J2 G3.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 314-316)

Pages:

1944-1947

Citation:

Online since:

August 2011

Export:

Price:

[1] V.Blagodarny-S-Pavlenko-J.Paško-J.Haľko, Finishing of geared wheels used with instruments of precision mechanics, In: Transactions of the Universities of Košice, Technical University, ISSN 1335-2334, (2003)

Google Scholar

[2] J.Jurko-M.Džupon-A.Panda-M.Gajdoš-I.Pandová, Deformation of material Under the Machined Surface in the Manufacture of Drilling Holes in Austenitic Stainless Steel. Chemické listy, Material in Engineering Practice 2011, Vol.105, Special issue, pp.600-602, ISSN 0009-2770, (2011).

Google Scholar

[3] J.Jurko-A.Panda-M.Gajdoš, Study of changes under the machined surface and accompanying phenomena in the cutting zone during drilling of stainless steels with low carbon content. Metallurgy No.2 (Metalurgija 2), vol. 50, Zagreb, Croatia (Chorvátsko) 2011, Croatian Metallurgical Society (CMS), ISSN 0543-5846, pp.113-117, (2011)

DOI: 10.1109/icacte.2010.5579026

Google Scholar

[4] J.Jurko-A.Panda-M.Gajdoš, Accompanying phenomena in the cutting zone machinability during turning of stainless steels. International Journal Machining and Machinability of Materials, INDERSCENCE Publisher, Švajčiarsko. ISSN 1748-5711, Vol.5, No.4, 2009, pp.383-400, (2009)

DOI: 10.1504/ijmmm.2009.026899

Google Scholar

[5] A.Panda- J.Jurko-M.Džupon-I.Pandová,Optimalization of Heat Treatment Bearings Rings With Goal to Eliminate Deformation of Material. Chemické listy, Material in Engineering Practice , Vol.105, Special issue, pp.459-461, ISSN 0009-2770, (2011)

Google Scholar

[6] A. Panda-J.Jurko, Simulation of accompanying phenomena in the cutting zone during dribling of stainless steels. In: ICACTE 2010, 3-rd International Conference on Advanced Computer Theory and Engineering. 20-22.8.2010, Chengdu, Publisher: Institute of Electrical and Electronics Engineers, Inc. Printed in Chengdu, China, pp.239-243, (2010) Reference to a book:

DOI: 10.1109/icacte.2010.5579026

Google Scholar

[7] K. Vasilko-J. Kmec, Delenie materiálu. Datapress Prešov, (2003)

Google Scholar