박사

Comprehensive characterization of directed energy deposition (DED) process

Kim, Jungsub 2020년
논문상세정보
' Comprehensive characterization of directed energy deposition (DED) process' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Directed Energy Deposition (DED)
  • Mechanical Machining
  • Process Characterization
  • additive manufacturing
  • post processing
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' Comprehensive characterization of directed energy deposition (DED) process' 의 참고문헌

  • [9] Kruth, J. P., Wang, X., Laoui, T., Froyen, L. (2003). Lasers and materials in selective laser sintering. Assembly Automation, 23(4), 357-371.
    23 ( 4 ) , 357-371 [2003]
  • [72] ASTM,C. (1958). ASTM Standards. Philadelphia: American Society for Testing Materials.
    [1958]
  • [57] http://www.addispace.eu/es/home State of the art of additive manufacturing technologies: Technologies, trends, opportunities, challenges and applications to the aerospatial sector
  • [56] https://www.newport.com/f/uv-fused-silica-parallel-windows
  • [3] ASTM, ASTM F2792-10 standard terminology for additive manufacturing technologies
  • [26] Das, M., Bhattacharya, K., Dittrick, S. A., Mandal, C., Balla, V. K., Kumar, T. S., ... & Manna, I. (2014). In situ synthesized TiB?TiN reinforced Ti6Al4V alloy composite coatings: microstructure, tribological and in-vitro biocompatibility. Journal of the mechanical behavior of biomedical materials, 29, 259-271.
  • [16] https://www.engineering.com/3DPrinting/3DPrintingArticles/ArticleID/15202/7 Issues to Look Out for in Metal 3D Printing.aspx
  • [15] https://www.trumpf.com/en_SG/applications/additive-manufacturing/
  • Working distance passive stability in laser directed energy deposition additive manufacturing
    161 , 86-94 [2019]
  • W. Review of synchronous powder feeding technology for laser cladding
  • Understanding the microstructure and properties of components fabricated by laser engineered net shaping ( LENS )
    625 [2000]
  • Three dimensional die repair using a hybrid manufacturing system
    [2008]
  • The status , challenges , and future of additive manufacturing in engineering
    69 , 65-89 [2015]
  • The machinability of Inconel 718 .
    63 ( 1-3 ) , 199-204 [1997]
  • The formation and control of Laves phase in superalloy 718 welds
    32 ( 8 ) , 1977-1984 [1997]
  • The effect of laser scanning path on microstructures and mechanical properties of laser solid formed nickel-base superalloy Inconel 718
    509 ( 13 ) , 4505-4509 [2011]
  • Study on microstructure , mechanical properties and machinability of efficiently additive manufactured AISI 316L stainless steel by high-power direct laser deposition .
    240 , 12-22 [2017]
  • Study on factors for pores and cladding shape in the deposition processes of Inconel 625 by the directed energy deposition ( DED ) method
    19 , 200-204 [2017]
  • Studies of standard heat treatment effects on microstructure and mechanical properties of laser net shape manufactured Inconel 718
    40 ( 10 ) , 2410-2422 [2009]
  • Stress analysis of dissimilar metal weld between carbon steel and stainless steel formed by transition grading technique
    2 ( 4-5 ) , 1657-1664 [2015]
  • Statistical analysis and optimization of process parameters in Ti6Al4V laser cladding using Nd : YAG laser .
    50 ( 7 ) , 985-995 [2012]
  • State of the Art in Directed Energy Deposition : From Additive Manufacturing to Materials Design
    9 ( 7 ) , 418 [2019]
  • Standard test methods for tension testing of metallic materials.
    [2001]
  • Solidification in direct metal deposition by LENS processing
    53 ( 9 ) , 30-34 . [2001]
  • Selective laser melting of iron-based powder
    149 ( 1-3 ) , 616-622 [2004]
  • Restoration of nickel-base turbine blade knifeedges withControlled laser aided additive manufacturing
    12 , 402-409 [2011]
  • Recent developments in metal laminated tooling by multiple laser processing
    9 ( 1 ) , 24-29 [2003]
  • Rationalization of microstructure heterogeneity in INCONEL 718 builds made by the direct laser additive manufacturing process
    45 ( 10 ) , 4470-4483 [2014]
  • R. W. The Effect of Laves phase on the mechanical properties
  • R. Influence of various processConditions on surface finishes induced by the direct metal deposition laser technique on a Ti
    of Materials Processing Technology , 213 (
  • Progress in additive manufacturing and rapid prototyping
    47 ( 2 ) , 525-540 [1998]
  • Predicting the geometric form ofClad in laserCladding by powder using multiple regression analysis ( MRA )
    29 ( 2 ) , 554-557 [2008]
  • PracticalConsiderations andCapabilities for laser assisted direct metal deposition
    21 ( 4 ) , 417-423 . [2000]
  • Powder Injection : The Key to Reconditioning and GeneratingComponents Using LaserCladding
    [2001]
  • On the Machinability and Surface Finish of Superalloy GH909 Under Dry Cutting Conditions
    21 ( 4 ) [2018]
  • Modeling of laser cladding with powder injection
    35 ( 6 ) , 1139-1150 [2004]
  • Modeling for laser-material interaction to predict and control the cross sectional area of coaxial laser cladding with powder
    [2006]
  • Microstructural and mechanical characterization of Ti6Al4V refurbished parts obtained by laser metal deposition
    [2015]
  • Metal fabrication by additive manufacturing using laser and electron beam melting technologies
    28 ( 1 ) , 1-14 [2012]
  • Metal additive manufacturing : a review
    23 ( 6 ) , 1917-1928 [2014]
  • Material issues in additive manufacturing : A review
    25 , 185-200 [2017]
  • Lasers in additive manufacturing : A review
    4 ( 3 ) , 307-322 . [2017]
  • Laser rapid manufacturing of Colmonoy-6 components
    44 ( 10 ) , 1096-1109 [2006]
  • Laser powder-bed fusion additive manufacturing : Physics of complex melt flow and formation mechanisms of pores , spatter , and denudation zones
    108 , 36-45 [2016]
  • Laser direct metal deposition technology and microstructure and composition segregation of Inconel 718 superalloy
    18 ( 4 ) , 73-78 [2011]
  • Laser aided direct metal deposition of Inconel 625 superalloy : Microstructural evolution and thermal stability
    509 ( 1-2 ) , 98-104 [2009]
  • Laser Engineered Net Shaping¢ç for Repair and Hydrogen Compatibility
    90 ( 9 ) [2011]
  • Laser Cladding of Ti-6Al-4 V Powder on Ti6Al-4 V Substrate : Effect of Laser Cladding Parameters on Microstructure
    12 , 323-329 [2011]
  • Introduction to the design rules for Metal Big Area Additive Manufacturing
    27 , 159-166 [2019]
  • Influence of process parameters on temperature and residual stress distributions of the deposited part by a Ti-6Al-4V wire feeding type direct energy deposition process
    32 ( 11 ) , 5363-5372 [2018]
  • Influence of hatch spacing on heat and mass transfer , thermodynamics and laser processability during additive manufacturing of Inconel 718 alloy
    109 , 147-157 [2016]
  • Inconel¢ç 718 superalloy machinability evaluation after laser cladding additive manufacturing process
    97 ( 5-8 ) , 2873-2885 [2018]
  • Improvement of strategies and parameters for multi-axis laser cladding operations
    56 , 113-120 [2014]
  • Hybrid manufacturing process for rapid high performance tooling combining high speed milling and laser cladding
    [2004]
  • Height control of laser metal-wire deposition based on iterative learning control and 3D scanning
    50 ( 9 ) , 1230-1241 [2012]
  • Feasibility Exploration of Superalloys for AISI 4140 Steel Repairing using Laser Engineered Net Shaping .
    10 , 912-922 [2017]
  • Effects of process variables on laser direct formation of thin wall
    39 ( 2 ) , 231-236 [2007]
  • Effect of standard heat treatment on the microstructure and mechanical properties of hot isostatically pressed superalloy inconel 718
    [2003]
  • Effect of processing parameters on microstructure and tensile properties of austenitic stainless steel 304L made by directed energy deposition additive manufacturing .
    110 , 226-235 [2016]
  • Effect of heat treatment on the microstructure and mechanical properties of Inconel 718 processed by selective laser melting
    [2015]
  • E112 : Standard test methods for determining average grain size
    [1996]
  • Dry machining of Inconel 718 , workpiece surface integrity
    211 ( 10 ) , 1590-1598 [2011]
  • Directed energy deposition processes . In Additive Manufacturing Technologies
    pp . 245-268 [2015]
  • Developing gradient metal alloys through radial deposition additive manufacturing
    4 , 5357 . [2014]
  • Design of experiments
    1 ( 3923 ) , 554-554 . [1936]
  • Cutting forces analysis in additive manufactured AISI H13 alloy
    46 , 476-479 . [2016]
  • Comparative study of Cobased alloys in repairing low Cr-Mo steel components by laser cladding
    39 , 368-375 [2012]
  • Characterization of the inhomogeneous constitutive properties of laser welding beams by the microVickers hardness test and the rule of mixture .
    37 , 19-27 [2012]
  • Characterization of stainless steel parts by laser metal deposition shaping
    55 , 104-119 [2014]
  • Arc-based additive manufacturing of steel components ? comparison of wire-and powder-based variants
    62 ( 2 ) , 243-247 . [2018]
  • Analysis of tool wear performance and surface quality in post milling of additive manufactured 316L stainless steel
    33 ( 5 ) , 2387-2395 [2019]
  • Analysis of the Machining Process of Inconel 718 Parts Manufactured by Laser Metal Deposition
    12 ( 13 ) , 2159 [2019]
  • Analysis of coaxial laser cladding processing conditions
    197 ( 2-3 ) , 127-136 [2005]
  • An overview of Direct Laser Deposition for additive manufacturing ; Part II : Mechanical behavior , process parameter optimization and control
    8 , 12-35 [2015]
  • An overview of Direct Laser Deposition for additive manufacturing ; Part I : Transport phenomena , modeling and diagnostics
    8 , 36-62 [2015]
  • Additive manufacturing of titanium alloys by electron beam melting : A review
    20 ( 5 ) , 1700842 [2018]
  • Additive manufacturing : technology , applications and research needs
    8 ( 3 ) , 215-243 . [2013]
  • Additive manufacturing ( 3D printing ) : A review of materials , methods , applications and challenges
    [2018]
  • Adaptive slicing for a multi-axis laser aided manufacturing process
    126 ( 2 ) , 254-261 . [2004]
  • A review of additive manufacturing
    [2012]