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  • 1
    Electronic Resource
    Electronic Resource
    s.l. ; Stafa-Zurich, Switzerland
    Materials science forum Vol. 591-593 (Aug. 2008), p. 62-67 
    ISSN: 1662-9752
    Source: Scientific.Net: Materials Science & Technology / Trans Tech Publications Archiv 1984-2008
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: The purpose of this paper is the evaluation of the use of a low power CO2 laser beam(50W) to promote the thermal treatment of AISI M2 high-speed steels and evaluate the tribologicalproperties of the graphite coating that takes place on the steel surface after laser irradiation. In orderto minimize the steel surface reflection at approximately 90% of the incident radiation wavelength(10.5 μm), an incident radiation absorber layer was applied to the steel surface sample. This coatingaims to absorber the incident heat and transfer part of heat to the steel surface. As results the surfacepresented high hardness and a thin coating of graphite on the surface. The micro-structural changes,occurred on the steels surface, resulting from heat transfer from the absorbing layer, were evaluatedthrough optical microscopy (MO), scanning electron microscopy (MEV), micro-hardness essays(MH), X-ray analysis (XRD), Raman spectroscopy and tribological testers on the graphite coating.MO analysis showed on the transversal section of the heated affected zone a brighter layer than thesample’s core, 30 micrometers thickness, in the surface sample a black coat 10 micrometersthickness. By MH analysis this brighter layer presented hardness approximately 30% superior thanthe regions without treatment, and by Raman spectroscopy it was evaluated the graphite coating.The XRD analysis on the surface sample reveals an increasing of the martensite and iron-carbidephase. The experimental results of pin-on-disk tests on the graphite coatings reveal a reducedcoefficient friction as compared to the original surface
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    s.l. ; Stafa-Zurich, Switzerland
    Materials science forum Vol. 530-531 (Nov. 2006), p. 364-368 
    ISSN: 1662-9752
    Source: Scientific.Net: Materials Science & Technology / Trans Tech Publications Archiv 1984-2008
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: In this study, the results of the feasibility of sintering green compacts of metallicpowder of MoSi2 by a CO2 laser beam as the heating source has been investigated. The mainadvantage of this technique is to promote a dense material in a reduced time when comparedto the conventional sintering process. In order to sintering the MoSi2 powder, green compactsof 6mm of diameter and 1.6mm thickness were produced in a steel die in a uniaxial press at100MPa and after, isostatic pressed at 350MPa. The micrograph of the samples exposed to thelaser radiation performed by scanning electron microcopy (SEM) reveal the efficiency of thesintering process and the X-ray diffraction of the powders confirmed the presence of singlephase after and before laser processing. The average microhardness of these compacts reachednear to 700 Hv0.2 in the cross section to the laser irradiation, indicating the all sintering of thegreen compact
    Type of Medium: Electronic Resource
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