About: Combining XRD with Hole-drilling Method in Residual Stress Gradient Analysis of Laser Hardened C45 Steel     Goto   Sponge   NotDistinct   Permalink

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Description
  • Localized laser hardening of steel surface performed with optimal parameters not only hardens the surface layer, but is also capable of generating advantageous hook-like shape of residual stress depth distribution. Upon combining two most common methods of XRD and hole-drilling, the residual stresses up to the depth of 13 mm were analysed for two widths of high-powered diode beam. Narrower laser beam generates wider area with compressive stresses and the diffraction technique as compared with hole-drilling method always indicates higher values of compressive residual stress maxima.
  • Localized laser hardening of steel surface performed with optimal parameters not only hardens the surface layer, but is also capable of generating advantageous hook-like shape of residual stress depth distribution. Upon combining two most common methods of XRD and hole-drilling, the residual stresses up to the depth of 13 mm were analysed for two widths of high-powered diode beam. Narrower laser beam generates wider area with compressive stresses and the diffraction technique as compared with hole-drilling method always indicates higher values of compressive residual stress maxima. (en)
Title
  • Combining XRD with Hole-drilling Method in Residual Stress Gradient Analysis of Laser Hardened C45 Steel
  • Combining XRD with Hole-drilling Method in Residual Stress Gradient Analysis of Laser Hardened C45 Steel (en)
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  • Combining XRD with Hole-drilling Method in Residual Stress Gradient Analysis of Laser Hardened C45 Steel
  • Combining XRD with Hole-drilling Method in Residual Stress Gradient Analysis of Laser Hardened C45 Steel (en)
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  • RIV/49777513:23210/14:43922381!RIV15-MSM-23210___
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  • P(EE2.3.30.0038)
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  • 7831
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  • RIV/49777513:23210/14:43922381
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  • depth distribution; hole-drilling method; X-ray diffraction; laser hardening (en)
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  • [611E13E2C8E4]
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  • Advanced Materials Research
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  • Fojtík, František
  • Ganev, Nikolaj
  • Kolařík, Kamil
  • Pala, Zdenek
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  • 000348282100045
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issn
  • 1022-6680
number of pages
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  • 10.4028/www.scientific.net/AMR.996.277
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  • Trans Tech Publications
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  • 978-3-03835-153-5
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  • 23210
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