4.7 Article

Effect of location on microstructure and mechanical properties of additive layer manufactured Inconel 625 using gas tungsten arc welding

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.msea.2016.09.015

Keywords

Additive layer manufacturing; Inconel 625; Gas tungsten arc welding; Microstructure; Mechanical properties

Funding

  1. National Natural Science Foundation of China [51475104, 51435004]
  2. State Key Development Program for Basic Research of China [2013CB035500]

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Additive layer manufacturing (ALM), using gas tungsten,arc welding (GTAW) as heat source, is a promising technology in producing Inconel 625 components due to significant cost savings, high deposition rate and convenience of processing. With the purpose of revealing how microstructure and mechanical properties are affected by the location within the manufactured wall component, the present study has been carried out. The manufactured Inconel 625 consists of cellular grains without secondary dendrites in the near-substrate region, columnar dendrites structure oriented upwards in the layer bands, followed by the transition from directional dendrites to equiaxed grain in the top region. With the increase in deposited height, segregation behavior of alloying elements Nb and Mo constantly strengthens with maximal evolution in the top region. The primary dendrite arm spacing has a well coherence with the content of Laves phase. The microhardness and tensile strength show obvious variation in different regions. The microhardness and tensile strength of near-substrate region are superior to that of layer bands and top region. The results are further explained in detail through the weld pool behavior and temperature field measurement. (C) 2016 Elsevier B.V. All rights reserved.

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