Citation: | PENG Qian, DONG Shi-yun, KANG Xue-liang, MEN Ping, YAN Shi-xing. Effect of preheating on the microstructure and properties of laser melting deposited 12CrNi2 alloy steel[J]. Chinese Journal of Engineering, 2018, 40(11): 1342-1350. doi: 10.13374/j.issn2095-9389.2018.11.008 |
[3] |
Sears J W. Development of laser-powder additive manufacturing for Industry:historical perspective, current and future applications//Marquis F D S. Powder Materials:Current Research and Industrial Practices Ⅲ. Hoboken:John Wiley&Sons, Inc, 2014:211
|
[5] |
Liu Q C, Elambasseril J, Sun S J, et al. The effect of manufacturing defects on the fatigue behaviour of Ti-6Al-4V specimens fabricated using selective laser melting. Adv Mater Res, 2014, 891-892:1519
|
[6] |
Shamsaei N, Yadollahi A, Bian L, et al. An overview of direct laser deposition for additive manufacturing; part Ⅱ:mechanical behavior, process parameter optimization and control. Addit Manuf, 2015, 8:12
|
[12] |
Mertens R, Vrancken B, Holmstock N, et al. Influence of powder bed preheating on microstructure and mechanical properties of H13 tool steel SLM parts. Phys Procedia, 2016, 83:882
|
[13] |
Lucía O, Maussion P, Dede E J, et al. Induction heating technology and its applications:past developments, current technology, and future challenges. IEEE Trans Ind Electron, 2014, 61(5):2509
|
[14] |
Farahmand P, Liu S, Zhang Z, et al. Laser cladding assisted by induction heating of Ni-WC composite enhanced by nano-WC and La2O3. Ceram Int, 2014, 40(10):15421
|