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Type Leisch, M.; Rendulic, K. D.
  Publication Atom probe analysis of addition agent behavior in electrodeposition Volume Journal Article
Pages 1984
  Abstract Journal de Physique  
  Corporate Author J. de Phys.  
Publisher 45-C9  
Editor
  Summary Language Series Editor atom probe field ion microscopy  
Abbreviated Series Title
  Series Issue ISSN  
Medium
  Expedition Notes  
Call Number  
Contribution Id  
Serial URL ISBN  
no 8598
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VanGenderen, M. J.; Sijbrandij, S. J.; Böttger, A.; Mittemeijer, E. J.; Smith, W., G D Atom probe analysis of initial decomposition of Fe-N martensite Journal Article 1997 Materials Science and Technology Mater. Sci. Tech. 13 806-812 Atom Probe Field Ion Microscopy no 2637
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VanGenderen, M. J.; Sijbrandij, S. J.; Böttger, A.; Mittemeijer, E. J.; Smith, W., G D Atom probe analysis of the first stage of tempering of iron-carbon-nitrogen martensite Journal Article 1997 Zeitschrift für Metallkunde Z. Metallkd 88 401-409 Atom Probe Field Ion Microscopy no 2527
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Wadman, B.; Andren, H. O.; Falk, L. K. L. Atom probe analysis of thin oxide layers on zircaloy needles Journal Article 1989 Journal de Physique J. de Phys. 50-C8 atom probe field ion microscopy no 4767
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Ren, D. G. Atom probe and field ion microscope investigation of the negative creep mechanism in nickel-base superalloy Journal Article 1998 J. Mat. Proc. Tech. 73 74-77 Atom Probe Field Ion Microscopy no 2910
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Böttger, A.; vanGenderen, J. J.; Sijbrandij, S. J.; Mettemeijer, E. J.; Smith, W., G D Atom probe and x-ray diffraction analysis of the composition and structure of precipitates formed on tempering of ternary iron-carbon-nitrogen martensites Journal Article 1996 ISIJ Int. 36 764-767 Atom Probe Field Ion Microscopy no 3453
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Leax, T. R.; Brenner, S. S.; Spitznagel, J. A. Atom probe examination of thermally aged CF8M cast stainless steel Journal Article 1992 Metall. Trans. 23A atom probe field ion microscopy no 5075
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Atrens, A.; Wang, J. Q.; Stiller, K.; Andren, H. O. Atom probe field ion microscope measurements of carbon segregation at an alpha :alpha grain boundary and service failures by intergranular stress corrosion cracking Journal Article 2006 Corrosion Science 48 1 79-92 Grain boundary analysis; Pipeline steel; Carbon segregation; Stress corrosion cracking This work reports on a critical measurement to understand the intergranular stress corrosion cracking (IGSCC) of pipeline steels: the atom probe field ion microscope (APFIM) measurement of the carbon concentration at a grain boundary (GB). The APFIM measurement was related to the microstructure and to IGSCC observations. The APFIM indicated that the GB carbon concentration of X70 was not, vert, similar10 at% or less, which correlated with a high resistance to IGSCC for X70. no 9396
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Sieloff, D. D.; Brenner, S. S.; Burke, M. G. Atom probe field-ion microscopy of conventionally cast and melt-spun nickel aluminide alloys containing boron and hafnium Journal Article 1986 Journal de Physique J. de Phys. 47-C7 APFIM Ni3Al; atom probe field ion microscopy no 3726
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Brenner, S. S.; Miller, M. K.; Soffa, W. A. Atom probe field-ion microscopy studies of modulated structures Journal Article 1984 NATO ASI Ser., Ser. E , Modulated , Struct. Mater., 83 APFIM spinodal decomposition FeCr FeBe; atom probe field ion microscopy no 8515
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