+Advanced Search
Investigation on realationship between defects and paramaters for titanium alloy fabricated by selective laser melting
Author:
Affiliation:

1.AECC Hunan Aviation Powerplant Research Institute;2.Institute of Metal Research,Chinese Academy of Sciences,Shenyang ,China

Clc Number:

TG146.23

  • Article
  • | |
  • Metrics
  • |
  • Reference [20]
  • |
  • Related [20]
  • | | |
  • Comments
    Abstract:

    Selective laser melting (SLM) technology can realize the direct fabrication of products with complex shape, high dimensional accuracy, and excellent mechanical properties. However, improper selection of fabrication parameters of SLM will introduce defects in the products. For the problem of defects, this investigation studied the influence of the two main fabrication parameters, laser power and scanning speed, on the type, size and quantity of internal defects in fabricated titanium alloy, and explored the evolution of defects with fabrication parameters. The results shown that there are mainly irregular shape and regular spherical shape defects in the titanium alloy fabricated by SLM. The area with low laser power (≤130 W) and high scanning speed (≥900 mm/s) is mainly irregular shape defects. Insufficient energy is the main reason for formation this type defect. The area with high laser power (≥190 W), low scanning speed (≤600 mm/s) is mainly regular spherical shape defects. The gasification of alloying elements caused by excessive energy is the main reason for formation this type defect. With the increasing of laser energy density, the SLM fabricated titanium alloy processing map was drawn according to the evolution law of defects. The evolution of defects presents three stages for the area of irregular shape defects gradually decreasing, micro-scale irregular defects to micro-scale regular spherical, and regular spherical defects gradually grow up.

    Reference
    [1] Lu Yichen(卢毅晨), Sun Zhonggang(孙中刚), Guo Yanhua(郭艳华) et al. Rare Metal Materials and Enegineering(稀有金属材料与工程)[J], 2020, 49(6): 2067
    [2] Xu Yangli(徐仰立), Zhang Dongyun(张冬云), Hu Songtao(胡松涛), Rare Metal Materials and Enegineering(稀有金属材料与工程)[J], 2020, 49(5): 1736
    [3] Xiong Zhiwei, Li Zhonghan, Sun Zhen et al. Journal of Materials Science Technology[J], 2019, 35: 2238
    [4] Ren Dechun, Li Shujun, Wang Hao et al. Journal of Materials Science Technology[J], 2019, 35(2): 285
    [5] Zhang Fengying, Hu Tengteng, Tan Hua et al. Rare Metal Materials and Engineering[J], 2019, 48(2): 0357
    [6] Xue Lei, Chen Jing, Lin Xin et al. Rare Metal Materials and Engineering(稀有金属材料与工程)[J]. 2007, 36(6): 989
    [7] Zhang Sheng(张升), Gui Ruizhi(桂睿智), Wei Qingsong(魏青松) et al. Journal of Mechanical Eneineering(机械工程学报)[J]. 2013, 49(23): 21
    [8] Yang Guang(杨光), Wang Wendong(王文东), Qin Lanyun(钦兰云) et al. Rare Metal Materials and Enegineering(稀有金属材料与工程)[J], 2016, 45(12): 3295
    [9] Gong Haijun, Rafi K,halid Gu Hengfeng et al. Materials and Design[J], 2015, 86: 545
    [10] Liu Lujing, Li Shujun, Wang Haoliang et al. Acta Materialia[J], 2016, 113: 56
    [11] Ren Dechun(任德春), Zhang Huibo(张慧博), Zhao Xiaodong(赵晓东) et al. Acta Metallurgica Sinica(金属学报)[J], 2020, 56(8): 1103
    [12] Vrancken Bey, Thijs Lore, Kruth Jean-Pierre et al. Journal of Alloys and Compounds[J], 2012, 541: 177
    [13] Bertoli Umberto Scipioni, Guss Gabe, Wu S heldon, et al. Materials Design[J], 2017: S0264127517308894.
    [14] Vandenbroucke Ben, Kruth, Jean-Pierre. Rapid Prototyping Journal[J], 2013, 13(4): 196-203.
    [15] Kasperovich Galina, Haubrich Jan, Gussone Joachim, et al. Materials Design[J], 2016, 105: 160-170.
    [16] Benedetti M, Fontanari V, Bandini M, et al. International Journal of Fatigue[J], 2018, 107: 96-109.
    [17] He Ruijun(贺瑞军),Wang Huaming(王华明). Acta Aeronautica et Astronautica Sinica (航空学报)[J], 2010, 31(07): 1488
    [18] Attar H, Calin M, Zhang L.C et al. Materials Science Engineering A[J], 2014, 593:170
    [19] Song Changhui, Yang Yongqiang, Wang Yunda, et al. International Journal of Advanced Manufacturing Technology[J], 2014, 75(1-4): 445
    [20] Qiu Chunlei, Panwisawas Chinnapat, Ward Mark, et al. Acta Materialia[J], 2015, 96: 72
    Cited by
    Comments
    Comments
    分享到微博
    Submit
Get Citation

[Zhao Chunling, Li Wei, Wang Qiang, Wang Yujian, Zhao Yu, Di Shixiong, Ren Dechun, Ji Haibin. Investigation on realationship between defects and paramaters for titanium alloy fabricated by selective laser melting[J]. Rare Metal Materials and Engineering,2021,50(8):2841~2849.]
DOI:10.12442/j. issn.1002-185X.20201011

Copy
Article Metrics
  • Abstract:1006
  • PDF: 1512
  • HTML: 198
  • Cited by: 0
History
  • Received:December 31,2020
  • Revised:April 26,2021
  • Adopted:May 11,2021
  • Online: September 07,2021
  • Published: August 31,2021