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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 50, 2006 - Issue 9
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Original Articles

Numerical Simulation of Laser-Induced Modification Processes of Ceramic Substrates

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Pages 835-849 | Received 19 Aug 2005, Accepted 03 Feb 2006, Published online: 04 Dec 2006

REFERENCES

  • K.-H. Zum Gahr and J. Schneider , Surface Modification of Ceramics for Improved Tribological Properties , Ceram. Int. , vol. 26 , pp. 363 – 370 , 2000 . [CSA]
  • S. Rüdiger , H. Gruhn , R. Heidinger , M. Rohde , J. Schneider , and K.-H. Zum Gahr , Laser Induced Surface Modification of Cordierite , in H. Dimigen (ed.), Surface Engineering EUROMAT 99 , vol. 11 , pp. 510 – 515 , 1999 .
  • U. Duitsch , S. Schreck , and M. Rohde , Experimental and Numerical Investigation of Heat and Mass Transport in Laser-Induced Modification of Ceramic Substrates , Int. J. Thermophys. , vol. 24 , pp. 731 – 740 , 2003 . [CSA] [CROSSREF]
  • A. Kar and J. Mazumder , Effect of Cooling Rate on Solid Solubility in Laser Cladding , Proc. ASME/JSME , Honolulu , HI , vol. 3 , pp. 237 – 249 , 1987 .
  • A. Kar and J. Mazumder , One Dimensional Model for Extended Solid Solution in Laser Cladding , J. Appl. Phys. , vol. 61 , no. 7 , pp. 2645 – 2655 , 1987 . [CSA] [CROSSREF]
  • M. Picasso and A. F. A. Hoadley , Finite Element Simulation of Laser Surface Treatments including Convection in Melt Pool , Int. J. Meth. Heat Fluid Flow , vol. 4 , pp. 61 – 83 , 1994 . [CSA] [CROSSREF]
  • X. He , B. L. Mordike , N. Pirch , and E. W. Kreutz , Laser Surface Alloying of Metallic Materials , Laser Eng. , vol. 4 , pp. 291 – 316 , 1995 . [CSA]
  • Y. Zhang and A. Faghri , Melting and Solidification of a Subcooled Mixed Powder Bed with Moving Gaussian Heat Source , ASME J. Heat Mass Transfer , vol. 31 , no. 11 , pp. 883 – 891 , 1998 . [CSA]
  • M. Bamberger , W. D. Kaplan , B. Medres , and L. Shepeleva , Calculation of Process Parameters for Laser Alloying and Cladding , J. Laser Appl. , vol. 10 , no. 1 , pp. 29 – 33 , 1998 . [CSA]
  • S. Sakar , P. Mohan Raj , S. Chakraborty , G. Phanikumar , K. Chattopadhyay , and P. Dutta , Transport Phenomena in Laser Surface Alloying , J. Mater. Sci. , vol. 38 , pp. 155 – 164 , 2003 . [CSA] [CROSSREF]
  • E. Toyserkani , A. Khajepour , and S. Corbin , 3-D Finite Element Modelling of Laser Cladding by Powder Injection: Effects of Pulse Shaping on the Process , Opt. Lasers Eng. , vol. 41 , pp. 849 – 867 , 2004 . [CSA] [CROSSREF]
  • S. Z. Shuja , B. S. Yilbas , and M. O. Budair , Modelling of Laser Heating of Solid Substance including Assisting Gas Impingement , Numer. Heat Transfer A , vol. 33 , pp. 315 – 339 , 1998 . [CSA]
  • S. Sakar , P. Mohan Raj , and S. Chakraborty , 3-D Computational Modeling of Momentum, Heat and Mass Transfer in a Laser Alloying Process , Numer. Heat Transfer A , vol. 42 , pp. 307 – 326 , 2002 . [CSA] [CROSSREF]
  • I. H. Chowdhury and X. Xu , Heat Transfer in Femtosecond Laser Processing of Metal , Numer. Heat Transfer A , vol. 44 , pp. 219 – 232 , 2004 . [CSA]
  • S. Roychoudary and T. L. Bergman , Response of Agglomerated, Multiceramic Particles to Intense Heating and Cooling for Thermal Plasma Spraying Simulation , Numer. Heat Transfer A , vol. 46 , pp. 211 – 233 , 2004 . [CSA]
  • C. Del Borello and E. Lacoste , Numerical Simulation of the Liquid Flow into a Porous Medium with Phase Change: Application to Metal Matrix Composites Processing, Numer. Heat Transfer A , vol. 44, pp. 743–741, 2004. [CSA]
  • I. Ahmed and T. L. Bergman , An Engineering Model for Solid–Liquid Phase Change within Sprayed Ceramic Coatings of Nonuniform Thickness , Numer. Heat Transfer A , vol. 41 , pp. 113 – 129 , 2002 . [CSA] [CROSSREF]
  • J. F. Li , L. Li , and F. H. Stott , Predictions of Flow Velocity and Velocity Boundary Layer Thickness at Surface during Laser Melting of Ceramics , J. Phys. D , vol. 33 , pp. 945 – 947 , 2004 . [CSA] [CROSSREF]
  • J. Cheng and A. Kar , Mathematical Model for Laser Densification of Ceramic Coating , J. Mater. Sci. , vol. 32 , pp. 6268 – 6278 , 1997 . [CSA]
  • D. B. Spalding , PHOENICS Overview, CHAM Tech. Rep. TR 001 , CHAM , London , UK , 2001 .
  • M. Rohde , Thermophysical Properties of Ceramic Substrates with Modified Surfaces, submitted to J. Thermophys. , 2005 . [CSA]
  • M. Rohde and B. Schulz , Radiation Damage in Fusion Window Materials Studied by Thermal Conductivity , in R. E. Stoller , A. S. Kumar , and D. S. Gelles (eds.), ASTM Special Technical Publication 1125 , Philadelphia , pp. 764 – 775 , 1992 .
  • D. Gray and A. Giorgini , On the Validity of the Bousinesq Approximation for Liquids and Gases , J. Heat Transfer , vol. 19 , pp. 545 – 551 , 1976 . [CSA] [CROSSREF]
  • J. Bousinesq , Theorie Analytique de la Chaleur , Gauthier-Villars , Paris , 1903 .
  • A. D. Brent , V. R. Voller , and J. Reid , The Enthalpy Porosity Technique for Modelling Convection-Diffusion Phase Change: Application to the Melting of a Pure Metal , Numer. Heat Transfer , vol. 13 , pp. 297 – 318 , 1988 . [CSA]
  • V. R. Voller and C. Prakash , A Fixed Grid Numerical Modelling Methodology for Convection-Diffusion Mushy Region Phase Change Problems , Int. J. Heat Mass Transfer , vol. 30 , pp. 1709 – 1721 , 1987 . [CSA] [CROSSREF]
  • C.-Y. Li , S. V. Garimella , and J. E. Simpson , Fixed Grid Front-Tracking Algorithm for Solidification Problems , Numer. Heat Transfer B , vol. 43 , pp. 117 – 141 , 2003 . [CSA]
  • K.-G. Kang and H.-S. Ryou , Computation of Solidification and Melting Using the PISO Algorithm , Numer. Heat Transfer B , vol. 46 , pp. 179 – 194 , 2004 . [CSA] [CROSSREF]
  • R. Clift , J. R. Grace , and M. E. Weber , Bubbles, Drops and Particles , Academic Press , New York , 1978 .
  • M. Ishii and M. Zuber , Drag Coefficient and Relative Velocity in Bubbly, Droplet or Particulate Flows , AIChE J. , vol. 25 , no. 5 , pp. 843 – 861 , 1979 . [CSA] [CROSSREF]
  • B. Glorieux , F. Millot , and J. C. Rifflet , Surface Tension of Liquid Alumina from Contactless Techniques , Int. J. Thermphys. , vol. 23 , no. 5 , pp. 1249 – 1257 , 2002 . [CSA] [CROSSREF]
  • J. L. Bates , C. E. McNeilly , and J. J. Rasmussen , Properties of Molten Ceramics , in W. W. Kriegel and H. Palmour (eds.), Ceramics in Severe Environments , pp. 11 – 25 , Plenum Press , New York , 1971 .
  • H. Gruhn , R. Heidinger , M. Rohde , S. Rüdiger , J. Schneider , and K.-H. Zum Gahr , Laser Induced Surface Modification of Ceramic Substrates for Thermal and Electrical Lines in Microsystems: Modeling Compared to Experiment , MSM 99, Int. Conf. on Modeling and Simulation of Microsystems , Puerto Rico , 1999 , pp. 105 – 108 .
  • Z. Zhang and M. F. Modest , Temperature-Dependent Absorptances of Ceramics for Nd:YAG and CO2 Laser Processing Applications , Trans. ASME, J. Heat Transfer , vol. 120 , pp. 322 – 327 , 1998 . [CSA]
  • S. V. Patankar and D. B. Spalding , A Calculation Procedure of Heat, Mass and Momentum Transfer in Three Dimensional Parabolic Flows , Int. J. Heat Mass Transfer , vol. 15 , pp. 1787 – 1799 , 1972 . [CSA] [CROSSREF]
  • J. Powell , P. S. Henry , and W. M. Steen , Laser Cladding with Preplaced Powder: Analysis of Thermal Cycling and Dilution Effects, Surf. Eng. , vol. 4, no. 2, pp. 141–149, 1988. [CSA]
  • K. Poser , J. Schneider , M. Rohde , and K.-H. Zum Gahr , Tin-Particle Reinforced Alumina for Unlubricated Tribological Applications Mated with Metallic Counterbodies , Mat.-wiss. Werkstofftechn. , vol. 36 , pp. 122 – 128 , 2005 . [CSA] [CROSSREF]
  • H. M. Jaeger and S. R. Nagel , Physics of the Granular State , Science , vol. 255 , pp. 1523 – 1531 , 1992 . [CSA] [CROSSREF]
  • T. B. Massalski , Binary Alloy Phase Diagrams , vol. 3 , ASM International , Materials Park , OH , 1990 .
  • S. Bourban , N. Karapatis , H. Hofmann , and W. Kurz , Solidification Microstructures of Laser Remelted Al2O3-ZrO2 Eutectic , Acta Mater. , vol. 45 , no. 12 , pp. 5069 – 5075 , 1997 . [CSA] [CROSSREF]

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