2,077
Views
21
CrossRef citations to date
0
Altmetric
Engineering and structural materials

Investigation of microstructure in additive manufactured Inconel 625 by spatially resolved neutron transmission spectroscopy

, , , &
Pages 324-336 | Received 28 Nov 2015, Accepted 12 May 2016, Published online: 08 Jul 2016

References

  • Gu DD, Meiners W, Wissenbach K, et al. Laser additive manufacturing of metallic components: materials, processes and mechanisms. Int Mater Rev. 2012;57:133–164. 10.1179/1743280411Y.0000000014
  • Vaezi M, Seitz H, Yang SF. A review on 3D micro-additive manufacturing technologies. Int J Adv Manuf Technol. 2013;67:1721–1754.10.1007/s00170-012-4605-2
  • Frazier WE. Metal additive manufacturing: a review. J Mater Eng Perform. 2014;23:1917–1928. 10.1007/s11665-014-0958-z
  • Herderick, E. Additive manufacturing of metals: a review. 2011 proceedings of MS&T 11; 2011 October 16–20; Columbus, Ohio; 2011.
  • Dinda GP, Dasgupta AK, Mazumder J. Laser aided direct metal deposition of Inconel 625 superalloy: microstructural evolution and thermal stability. Mater Sci Eng A. 2009;509:98–104. 10.1016/j.msea.2009.01.009
  • Bilheux HZ, McGreevy R, Anderson IS, editors. Neutron Imaging and Applications. Springer Science+Business Media, LLC; 2009
  • Strobl M, Manke I, Kardjilov N, et al. Advances in neutron radiography and tomography. J Phys D: Appl Phys. 2009;42:243001. 10.1088/0022-3727/42/24/243001
  • Watkins T, Bilheux H, An K, et al. Neutron characterization for additive manufacturing. Adv Mat & Proc. 2013;171:23–27.
  • Kockelmann W, Frei G, Lehmann EH, et al. Energy-selective neutron transmission imaging at a pulsed source Nucl. Instrum Methods Phys Res A. 2007;578:421–434. 10.1016/j.nima.2007.05.207
  • Tremsin AS, Vogel SC, Mocko M, et al. Energy resolved neutron radiography at LANSCE pulsed neutron facility. Neutron News. 2013;24:28–32. 10.1080/10448632.2013.831612
  • Santisteban JR, Edwards L, Stelmukh V. Characterization of textured materials by TOF transmission. Physica B. 2006;385-386:636–638. 10.1016/j.physb.2006.06.090
  • Sato H, Takada O, Iwase K, et al. Imaging of a spatial distribution of preferred orientation of crystallites by pulsed neutron Bragg edge transmission. J Phys: Conf Ser. 2010;251:012070.
  • Lehmann EH, Frei G, Vontobel P, et al. The energy-selective option in neutron imaging. Nucl Instrum Methods Phys Res A. 2009;603:429–438. 10.1016/j.nima.2009.02.034
  • Tremsin AS, Kockelmann W, Zhang Shu-Yan, et al. Investigation of microstructure within metal welds by energy resolved neutron imaging subm. Phy Proc. Forthcoming 2015
  • Steuwer A, Withers PJ, Santisteban JR, et al. Bragg edge determination for accurate lattice parameter and elastic strain measurement. Phys Stat Sol A. 2001;185(2):221–230. 10.1002/(ISSN)1521-396X
  • Tremsin AS, McPhate JB, Steuwer A, et al. High-resolution strain mapping through time-of-flight neutron transmission diffraction with a microchannel plate neutron counting detector. Strain: Intern. J. Experim. Mechanics. 2012;48. 296–305. 10.1111/str.2012.48.issue-4
  • Tremsin AS, McPhate JB, Vallerga JV, et al. High-resolution strain mapping through time-of-flight neutron transmission diffraction. Mat Sci Forum. 2014;772:9–13.
  • Dehoff RR, Kirka MM, Sames WJ, et al. Site specific control of crystallographic grain orientation through electron beam additive manufacturing. Mat Sci Tech. 2015;31:931–938. 10.1179/1743284714Y.0000000734
  • Tremsin AS, Vogel SC, Mocko M, et al. Non-destructive studies of fuel rodlets by neutron resonance absorption radiography and thermal neutron radiography. J Nucl Mater. 2013;440:633–646. 10.1016/j.jnucmat.2013.06.007
  • Tremsin AS, Shinohara T, Kai T, et al. Neutron resonance transmission spectroscopy with high spatial and energy resolution at J-PARC pulsed neutron source Nucl Instr Meth A. 2014;746:47–58. 10.1016/j.nima.2014.01.058
  • Wagner V, Friedrich H and Wille P. Performance of a high- tech neutron velocity selector. Phys B: Cond Matter. 1992;180–181:938–940
  • Treimer W, Strobl M, Kardjilov N, et al. A wave length tunable device for neutron radiography and tomography Appl Phys Lett. 2006;89:203504. 10.1063/1.2384801
  • Schulz M, Böni P, Calzada E, et al. Energy-dependent neutron imaging with a double crystal monochromator at the ANTARES facility at FRM II Nucl Instr Meth A. 2009;605:33–35. 10.1016/j.nima.2009.01.123
  • Gorini G, Perelli-Cippo E, Tardocchi M, et al. The resonant detector and its application to epithermal neutron spectroscopy. Nucl Instr Methods Phys. Res A. 2004;529:293–300. 10.1016/j.nima.2004.04.168
  • Tremsin AS. High resolution neutron counting detectors with microchannel plates and their applications in neutron radiography, diffraction and resonance absorption imaging. Neutron News. 2012;23:35–38. 10.1080/10448632.2012.725341
  • Tremsin AS, Vallerga JV, McPhate JB, et al. Optimization of high count rate event counting detector with Microchannel Plates and quad Timepix readout. Nucl Instrum Methods Phys Res A. 2015;787:20–25. 10.1016/j.nima.2014.10.047
  • Parker JD, Harada M, Hattori K, et al. Applications of a micro-pixel chamber (μPIC) based, time-resolved neutron imaging detector at pulsed neutron beams. J Phys Conf Ser. 2014;502:012048.
  • Kiyanagi Y, Kamiyama T, Kino K, et al. Pulsed neutron imaging using 2-dimensional position sensitive detectors J. Instrum, JINST. 2014;9:C07012. 10.1088/1748-0221/9/07/C07012
  • Harada M, Oikawa K, Kasugai Y, et al. Shielding design of a neutron beam line “NOBORU” at JSNS/J-PARC. Pro Nucl Sci Techn. 2011;1:94–97. 10.15669/pnst.1.94
  • Vogel. A Rietveld-Approach for the Analysis of Neutron Time-of-Flight Transmission Data (Ph.D. thesis). Germany: Kiel University;2000.
  • Ashcroft NW, Mermin ND. Solid state physics. New York, NY: Harcourt; 1976.