Extreme High-Speed Laser Material Deposition (EHLA) of AISI 4340 Steel

被引:32
作者
Li, Tianci [1 ,2 ]
Zhang, Lele [1 ]
Bultel, Gregor Gilles Pierre [2 ]
Schopphoven, Thomas [2 ]
Gasser, Andres [2 ]
Schleifenbaum, Johannes Henrich [2 ,3 ]
Poprawe, Reinhart [2 ]
机构
[1] Beijing Jiaotong Univ, Sch Mech Elect & Control Engn, Beijing 100044, Peoples R China
[2] Fraunhofer Inst Laser Technol ILT, Steinbachstr 15, D-52074 Aachen, Germany
[3] Rhein Westfal TH Aachen, DAP Digital Addit Prod, Steinbachstr 15, D-52074 Aachen, Germany
关键词
EHLA; hardness; AISI; 4340; microstructure; build-up strategy; repair; FATIGUE BEHAVIOR; RESIDUAL-STRESS; STRENGTH; REPAIR; MICROSTRUCTURE;
D O I
10.3390/coatings9120778
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A variant of conventional laser material deposition (LMD), extreme high-speed laser material deposition (German acronym: EHLA) is characterized by elevated process speeds of up to 200 m/min, increased cooling rates, and a significantly reduced heat affected zone. This study focuses on the feasibility of using EHLA to apply material onto Fe-based substrate materials with AISI 4340 as a filler material. We studied how three different build-up strategies-consisting of one, three, and five consecutive deposited layers and hence, different thermal evolutions of the build-up volume-influence the metallurgical characteristics such as microstructure, porosity, hardness, and static mechanical properties. We propose a thermo-metallurgical scheme to help understand the effects of the build-up strategy and the thermal evolution on the microstructure and hardness. The tensile strength of the build-up volume was determined and is higher than the ones of forged AISI 4340 material.
引用
收藏
页数:16
相关论文
共 23 条
[1]  
[Anonymous], 2016, EN ISO 6892-1:2006
[2]  
[Anonymous], 2009, ISO 6892-1
[3]   Fatigue in AISI 4340 steel thermal spray coating by HVOF for aeronautic application [J].
Bonora, R. G. ;
Voorwald, H. J. C. ;
Cioffi, M. O. H. ;
Junior, G. S. ;
Santos, L. F. V. .
FATIGUE 2010, 2010, 2 (01) :1617-1623
[4]   Repairing of sintered tools using laser cladding by wire [J].
Capello, E ;
Colombo, D ;
Previtali, B .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2005, 164 :990-1000
[5]   Effects of laser cladding on fatigue performance of AISI 4340 steel in the as-clad and machine treated conditions [J].
Chew, Youxiang ;
Pang, John Hock Lye ;
Bi, Guijun ;
Song, Bin .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2017, 243 :246-257
[6]   Rapid tooling by laser powder deposition: Process simulation using finite element analysis [J].
Costa, L ;
Vilar, R ;
Reti, T ;
Deus, AM .
ACTA MATERIALIA, 2005, 53 (14) :3987-3999
[7]   Tribological enhancement of AISI 420 martensitic stainless steel through friction-stir processing [J].
Dodds, S. ;
Jones, A. H. ;
Cater, S. .
WEAR, 2013, 302 (1-2) :863-877
[8]   Mechanical properties and microstructural features of AISI 4340 high-strength alloy steel under quenched and tempered conditions [J].
Lee, WS ;
Su, TT .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 1999, 87 (1-3) :198-206
[9]   Laser cladding as a potential repair technology for damaged aircraft components [J].
Liu, Qianchu ;
Janardhana, Madabhushi ;
Hinton, Bruce ;
Brandt, Milan ;
Sharp, Khan .
INTERNATIONAL JOURNAL OF STRUCTURAL INTEGRITY, 2011, 2 (03) :314-331
[10]   Bilinear CTOD/CTOA scheme for characterisation of large range mode I and mixed mode stable crack growth through AISI 4340 steel [J].
Maiti, S. K. ;
Kishore, G. Krishna ;
Mourad, A. -H. I. .
NUCLEAR ENGINEERING AND DESIGN, 2008, 238 (12) :3175-3185