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Effect of processing parameters on thermal behavior and related density in GH3536 alloy manufactured by selective laser melting

  • Liang Zhang
  • , Jia Song
  • , Wenheng Wu
  • , Zhibin Gao
  • , Beibei He
  • , Xiaoqing Ni
  • , Qianlei Long
  • , Lin Lu
  • , Guoliang Zhu
  • Shanghai Research Institute of Materials
  • Shanghai Engineering Research Center of 3D Printing Materials
  • Tongji University
  • Shanghai Jiao Tong University

Research output: Contribution to journalArticlepeer-review

32 Scopus citations

Abstract

GH3536 alloy is one of the high-temperature nickel-based alloys and widely applied in aviation and aerospace industries. In this study, a combination of experiment and simulation is proposed to study the effect of processing parameters on the selective laser melting (SLM) of GH3536 powder. It is concluded that the relationship between density and laser input energy during SLM complies with a quadratic function and presents an inverted U-shaped distribution. By fitting density and input power to a quadratic polynomial, the optimal laser input energy during SLM of GH3536 alloy can be obtained. The result shows that using 275 W laser power and 960 mm/s scanning speed, the SLM GH3536 specimens can reach the maximum density. This experimental result is consistent with the simulation result obtained by analyzing molten pool dimension. Furthermore, a full process energy prediction diagram for SLM GH3536 alloy based on the simulated molten pool depth and width is proposed. The result shows that it provides an innovative and efficient method for the selection of processing parameters during SLM of GH3536 powder.

Original languageEnglish
Pages (from-to)1405-1414
Number of pages10
JournalJournal of Materials Research
Volume34
Issue number8
DOIs
StatePublished - 29 Apr 2019
Externally publishedYes

Keywords

  • GH3536 alloy
  • line energy density
  • molten pool dimension
  • numerical simulation
  • selective laser melting

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