IMR-MIP: DANSE Distributed Data Analysis for Neutron Scattering Experiments CNST

نویسندگان

  • Brent Fultz
  • Michael A.G. Aivazis
  • Ian S. Anderson
چکیده

s of the Satellite Meeting on Powder Diffraction of the XV Congress of the IUCr, Toulouse, France, (1990). 39. Th. Proffen and S. J. L. Billinge, “PDFFIT, a program for full profile structural refinement of the atomic pair distribution function”, J. Appl. Crystallogr. 32, 572 (1999). 40. A. A. Coelho, TOPAS V2.0: General profile and structure analysis (2000). 41. G.S. Pawley “Unit Cell Refinement from Powder Diffraction Scans,” J. Appl. Cryst. 14, 357-361 (1981). 42. A. Le Bail, H. Duroy, J. L. Fourquet, “Ab initio Structure Determination of LiSbWO6 by X-ray Powder Diffraction” Mater. Res. Bull. 23, 447-452 (1988). 43. D. Dragoi, E. Üstündag, B. Clausen and M.A.M. Bourke, “Investigation of thermal residual stresses in tungstenfiber/bulk metallic glass matrix composites,” Scripta Mater. 45, 245-252 (2001). 44. B. Clausen, S.Y. Lee, E. Üstündag, C.C. Aydiner, R.D. Conner and M.A.M. Bourke, “Compressive yielding of tungsten fiber reinforced bulk metallic glass composites,” Scripta Mater. 49, 123-128 (2003). 45. B. Clausen, T. Lorentzen and T. Leffers, “Self-consistent modeling of the plastic deformation of FCC polycrystals and its implications for diffraction measurements of internal stresses,” Acta Mater. 46, 3087-3098 (1998). 46. R.C. Rogan, E. Üstündag, B. Clausen and M.R. Daymond, “Texture and strain analysis of the ferroelastic behavior of Pb(Zr,Ti)O3 by in situ neutron diffraction,” J. Appl. Phys. 93, 4104-4111 (2003). 47. Y.D. Wang, H. Tian, A.D. Stoica, X.-L.Wang, P.K. Liaw, and J.W. Richardson, “Evidence on the Development of Large Grain-Orientation-Dependent Residual Stresses in a Cyclically-Deformed Alloy,” Nature Materials, 2, 103-106

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تاریخ انتشار 2005