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The results indicate that larger thoria particles (>1 μm) deform concomitantly with the matrix to cigar-shaped particles and then fracture into segments as deformation of the matrix continues. Smaller particles remain relatively spherical and are not deformed. The net effect of this process is to superpose a nonuniform distribution of large particle segments on a background of small, undeformed, uniformly distributed particles. The consequences of this change in thoria dispersion morphology in reference to work hardening, recrystallization, and fracture of tungsten-thoria materials are discussed. In addition, some conclusions are drawn as to the origin of the large, deformable thoria particles and the effect of different processing modes on the resultant dispersion morphology.",{"EN":203},"Effect of deformation on ThO2 particle morphology in W-1 Wt Pct ThO2 materials",{"VOID":205},"[\"1249323603119039113\"]",{"VOID":207},"J. L. Walter and A. U. Seybolt:Trans. TMS-AIME, 1969, vol. 245, p. 1093.\nM. C. Inman: AF-AFOSR-669-66, Penn State University, 1967.\nH. G. Sell, W. R. Morcom, G. W. King, and N. F. Cerulli. AFML-TR-65-407, Part I, Westinghouse Lamp Division, Bloomfield, New Jersey, 1965.\nH. G. Sell, W. R. Morcom, and G. W. King: AFML-TR-65-407, Part II, Westing-house Lamp Division, Bloomfield, New Jersey, 1966.\nP. A. Dow and W. K. Armitage: ARML-TR-65-137, Aeon Laboratories, England, 1965.\nG. D. Rieck:Tungsten and Its Compounds, Pergamon Press Ltd., England, 1967, p. 63.\nE. V. Caspary: inTech.—Wiss. Abhandl. Osram—Ges., Vol. 9, p. 193, Springer-Verlag, Heidelberg, Germany, 1967.\nA. Kelly and R. B. Nicholson:Progr. Mater. Sci., vol. 10, No. 3, B. Chalmers, ed., The Macmillan Company, New York, 1963.\nC. J. Smithells.Tungsten, Chemical Publishing Company, New York, 1953.\nM. A. P. Dewey: AFML-TR-68-107, Aeon Laboratories, England, 1968.\nJ. R. Hague, J. F. Lynch, A. Rudnick, F. C. Holden, and W. H. Duckworth, eds.,Refractory Ceramics for Aerospace, Battelle Memorial Inst., Columbus, Ohio-Published by the Am. Ceram. Soc., 1964.\nG. L. Davis:Metallurgia, 1958, vol. 58, p. 177.\nG. L. Davis:Metallurgia, 1958, vol. 58, p. 228.\nG. D. Rieck:Acta Met., 1961, vol. 9, p. 825.\nJ. L. Meijering and G. D. Rieck:Philips Tech. Rev., 1957, vol. 19, p. 109.\nJ. Walter:Trans. TMS-AIME, 1967, vol. 239, p. 1979.\nK. H. Westmacott, C. W. Fountain, and R. J. Stirton:Acta Met., 1960, vol. 14, p. 1628.\nM. F. Ashby and R. Ebeling:Trans. TMS-AIME, 1966, vol. 236, p. 1396.\nB. A. Wilcox and A. H. Clauer:Trans. TMS-AIME, 1966, vol. 236, p. 570.\nM. F. Ashby.Phil. Mag., 1966, vol. 14, p. 1157.\nGurland and Plateau:Trans. ASM, 1963, vol. 56, p. 442.\nG. T. Hahn and A. R. Rosenfield:Trans. TMS-AIME, 1967, vol. 239, p. 668.\nA. Gilbert:Phil. Mag., 1963, vol. 12, p. 139.\nA. Kelly:Proc. Roy. Soc., London, 1964, vol. 282, p. 63.\nD. L. McDanels, R. W. Jech, and J. W. Weston:NASA TN D-2757, 1965.\nH. L. 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Status Solidi, 1965, vol. 8, pp. 499–507.",{},{"id":426,"createTime":427,"updateTime":428,"relativeEntities":429,"slug":430,"properties":431,"entityType":71,"verifyStatus":72,"verifyTime":440,"verifyNote":74,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":441,"fullTextUrl":20,"authors":442,"publicationType":128,"publisherRelationship":475,"citationCount":21,"citationInfo":494,"publishDate":496,"publishYear":326,"citationAnalyzeStatus":497,"lastCitationAnalyze":498,"indexDatabases":499,"openAccess":20,"references":20,"isForceReanalyzing":192},"92160311-a73d-4958-810d-319633567007","2023-12-07T05:19:47.823+00:00","2026-07-29T15:10:16.389+00:00",[],"The-effect-of-atomic-order-on-fracture-surface-morphology",{"title":432,"gsPaper":434,"references":436,"doi":438},{"EN":433},"The effect of atomic order on fracture surface morphology",{"VOID":435},"[\"13507170811640448672\"]",{"VOID":437},"W. Justusson, V. E. Zackay, and E. R. Morgan:Trans. ASM, 1957, vol. 49, p. 905.\nH. J. Leamy: Ph.D. Thesis, Iowa State University, Ames, Iowa, 1967.\nH. J. Leamy and F. X. Kayser:Phys. Stat. Sol., 1969, vol. 34, p. 765.\nJ. H. Westbrook:Mechanical Properties of Intermetallic Compounds, J. H. Westbrook, ed., John Wiley & Sons, New York, 1960.\nJ. H. Westbrook:J. Electrochem. Soc., 1956, vol. 103, p. 54.\nM. J. Marcinkowski and Henry Chessin:Phil. Mag., 1964, vol. 10, p. 837.\nM. J. Marcinkowski and D. S. Miller:Phil. Mag., 1961, vol. 6, p. 837.\nPaul A. Flinn:Trans. TMS-AIME, 1960, vol. 218, p. 145.\nE. C. W. Perryman:J. Inst. Metals, 1954-55, vol. 83, p. 369.\nS. Harper:J. Inst. Metals, 1956-57, vol. 85, p. 415.\nM. J. Marcinkowski:Phil. Mag., 1968, vol. 17, p. 159.\nJ. H. Westbrook and D. L. Wood:J. Inst. Metals, 1962-63, vol. 91, p. 174.\nJ. H. Westbrook:Met. Rev., 1964, vol. 9, p. 415.\nNorman S. Stoloff:Fracture, H. Liebowitz, ed., Vol. VI, p. 1, Academic Press, New York, 1968.\nR. G. Davies and N. S. Stoloff:Trans. TMS-AIME, 1964, vol. 230, p. 390.\nC. D. Beachem:Fracture, H. L. Liebowitz, ed., Vol. I, p. 243, Academic Press, New York, 1968.\nM. J. Marcinkowski and D. E. Campbell: Third Bolton Landing Conference—Ordered Alloys—Structural Applications and Physical Metallurgy, September 8–10, 1969.\nJohn R. Low, Jr:Deformation and Flow In Solids, R. Grammel, ed., p. 60, Springer-Verlag, Berlin, 1956.\nJacques Friedel:Dislocations, p. 320, Addison-Wesley Publishing Co., Inc., Reading, Mass., 1964.",{"VOID":439},"10.1007\u002FBF02811791","2024-06-24T19:08:58.888+00:00","https:\u002F\u002Flink.springer.com\u002F10.1007\u002FBF02811791",[443,458],{"id":444,"sortIndex":21,"researcher":20,"roles":445,"affiliations":446,"properties":455,"displayName":457,"givenName":20,"familyName":20},"0b589fe8-a21c-4f22-a214-bcd43ac5a7b9",[216],[447],{"id":448,"sortIndex":21,"affiliation":449,"properties":20},"ae250107-3f05-45f9-b459-b56c6d0a885d",{"id":448,"createTime":20,"updateTime":20,"relativeEntities":450,"slug":20,"properties":451,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":454,"statistic":20},[],{"title":452},{"VI":453},"Engineering Materials Group and Department of Mechanical Engineering, Glenn L. 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Wayman: unpublished research, University of Illinois, 1974.",{},{"id":580,"createTime":581,"updateTime":582,"relativeEntities":583,"slug":584,"properties":585,"entityType":71,"verifyStatus":72,"verifyTime":594,"verifyNote":74,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":595,"fullTextUrl":20,"authors":596,"publicationType":128,"publisherRelationship":653,"citationCount":151,"citationInfo":672,"publishDate":674,"publishYear":326,"citationAnalyzeStatus":156,"lastCitationAnalyze":675,"indexDatabases":676,"openAccess":20,"references":20,"isForceReanalyzing":192},"71017362-ec55-427d-813c-06aa650f09b3","2024-01-08T04:58:08.024+00:00","2026-07-25T17:20:25.403+00:00",[],"Serrated-yielding-in-a-5005-Al-alloy",{"title":586,"gsPaper":588,"references":590,"doi":592},{"EN":587},"Serrated yielding in a 5005 Al alloy",{"VOID":589},"[\"10810308885372635039\"]",{"VOID":591},"K. Mukherjee, C. D’Antonia, R. Maciag, and G. Fischer:J. Appl. Phys., 1968, vol. 39, p. 5434.\nA. Portevin and F. LeChatelier:Compt. Rend., 1923, vol. 176, p. 507.\nA. W. McReynolds:Metals Trans., 1949, vol. 185, p. 32.\nV. A. Phillips, A. J. Swain, and R. Eborall:J. Inst. Metals, 1952-53, vol. 81, p. 625.\nS. G. Harris:Vacancies and Other Point Defects in Metals and Alloys, p. 220, Institute of Metals, London, 1958.\nJ. Caisso:Rev. Met., 1959, vol. LVI, p. 237.\nJ. Caisso and J. Guillot:Rev. Met., 1962, vol. LIX, p. 395.\nD. J. Bailey, W. F. Flanagan, and G. E. Miller:Acta Met., 1965, vol. 13, p. 436.\nA. T. Thomas:Acta Met., 1966, vol. 14, p. 1363.\nH. Borchers, H. M. Tensi, and H. Ehrhardt:Z. Metallk., 1967, vol. 58, p. 863.\nB. J. Brindley and P. J. Worthington:Acta Met., 1969, vol. 17, p. 1357.\nA. H. Cottrell:Phil. Mag., 1953, vol. 44, p. 829.\nK. Mukherjee, C. D’Antonio, and R. J. Maciag:Scripta Met., 1970, vol. 4, p. 209.\nS. R. Ramaswami and S. R. MacEwen:Bull. AIME, 1967, vol. 2, p. 4.\nJ. Takamura, K. Okazaki, and I. G. Greenfield:J. Phys. Soc. Japan, 1963, vol. 18, p. 78.\nT. Kino, S. Kabemoto, and S. Yoshica:J. Phys. Soc. Japan, 1963, vol. 18, p. 85.\nA. J. Perry:Acta Met., 1966, vol. 14, p. 1143.\nA. C. Damask and G. J. Dienes:Point Defects in Metals, Gordon and Breach Science Publishers, Inc., New York, 1963.",{"VOID":593},"10.1007\u002FBF03038442","2024-08-30T18:58:55.186+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF03038442",[597,612,627,640],{"id":598,"sortIndex":21,"researcher":20,"roles":599,"affiliations":600,"properties":609,"displayName":611,"givenName":20,"familyName":20},"0a9b9a3c-84f5-4fd9-9e14-c4bf48ca05a5",[216],[601],{"id":602,"sortIndex":21,"affiliation":603,"properties":20},"6c2c6533-4f3a-4226-a5b6-91e86b526faf",{"id":602,"createTime":20,"updateTime":20,"relativeEntities":604,"slug":20,"properties":605,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":608,"statistic":20},[],{"title":606},{"VI":607},"Department of Physical and Engineering Metallurgy, Polytechnic Institute of Brooklyn, Brooklyn",[],{"title":610},{"VI":611},"K. 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Maciag",{"url":595,"publisher":654,"properties":668},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":655,"slug":10,"properties":656,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":660,"manageAffiliations":661,"indexDatabases":662,"url":20,"thumbnailPath":20,"statistic":663,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":657,"title":658,"eissn":659},{"VOID":13},{"EN":15},{"VOID":17},[],[],[],{"impactFactor":21,"impactFactorByYear":664,"i10Index":27,"i10IndexLast5Year":21,"totalPublication":28,"totalPublicationByYear":665,"totalCitation":35,"totalCitationByYear":666,"totalCitationPerPublication":42,"totalCitationPerPublicationByYear":667,"hindexLast5Year":49,"hindex":49},{"1971":21,"1972":21,"1974":21,"1975":21},{"1970":30,"1971":31,"1972":32,"1973":33,"1974":34},{"1970":37,"1971":38,"1972":39,"1973":40,"1974":41},{"1970":44,"1971":45,"1972":46,"1973":47,"1974":48},{"pages":669,"volume":671},{"VOID":670},"3233-3234",{"VOID":324},{"total":151,"publishYear":326,"statisticByYear":673},{},"1970-11-01","2026-07-25T17:20:25.402+00:00",[],{"id":678,"createTime":679,"updateTime":680,"relativeEntities":681,"slug":682,"properties":683,"entityType":71,"verifyStatus":72,"verifyTime":694,"verifyNote":74,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":695,"fullTextUrl":20,"authors":696,"publicationType":128,"publisherRelationship":727,"citationCount":21,"citationInfo":746,"publishDate":748,"publishYear":250,"citationAnalyzeStatus":497,"lastCitationAnalyze":749,"indexDatabases":750,"openAccess":20,"references":20,"isForceReanalyzing":192},"406357d1-f4d0-4ed0-810b-f95dd750354b","2024-01-25T05:18:42.577+00:00","2026-07-24T01:47:29.937+00:00",[],"Thermally-induced-residual-stresses-in-eutectic-composites",{"abstract":684,"title":686,"gsPaper":688,"references":690,"doi":692},{"EN":685},"The effect of thermally induced residual stresses on the yield behavior of a unidirectionally solidified eutectic, (Co, Cr)-(Cr, Co)7C3 is presented. At low temperatures, the yield stress is found to depend on the sense of the applied stress. The difference in yield stress between tension and compression is a function of temperature and disappears at a sufficiently high stress relaxation temperature. A straightforward analysis is presented that predicts the observed yielding behavior and a stress relaxation temperature that agrees well not only with the value obtained by observing the temperature dependence of the yield stress, but also with the value obtained from the thermal expansion behavior of the eutectic composite.",{"EN":687},"Thermally induced residual stresses in eutectic composites",{"VOID":689},"[\"6688427304034872378\"]",{"VOID":691},"L. J. Ebert, C. H. Hamilton, and S. S. Hecker: AFML-TR-67-95 (April 1967). AD-814815.\nL. J. Ebert, C. H. Hamilton, and S. S. Hecker: AFML-TR-68-71 (March 1968) AD-837237.\nL. J. Ebert, R. J. Fedar, C. H. Hamilton, S. S. Hecker, and P. K. Wright: AFML-TR-69-129 (June 1969).\nE. M. Lenoe: AFML-TR-67-125 (May 1967).\nE. V. Summer:SAMPE J., 1966, vol. 10, F-11.\nF. Laszio:J. Iron Steel Inst., 1943, vol. 148, pp. 173–99.\nV. V. Abramov:Residual Stresses and Strains in Metals, Mashgis, Moscow, 1963.\nW. D. Kingrey:Introduction to Ceramics, p. 478., John Wiley, New York, 1960.\nG. L. Denman: AFML-TR-65-279 (March 1966).\nD. L. McDanels, R. W. Jech, and J. W. Weeton:Metal Prog., 1960, vol. 78, pp. 118–21.\nF. Laszlo:J. Iron Steel Inst., 1945 vol. 151, pp. 207–28.\nE. R. Thompson and F. D. Lemky:Met. Trans., 1970, vol. 1, pp. 2799–2806.\nE. R. Thompson, D. A. Koss, and J. C. Chesnutt,Met. Trans., 1970, vol. 1, pp. 2807–13.\nJ. Hinnuber and O. Rudiger,Arch. Eisenhuettenw., 1953, vol. 24, p. 267.",{"VOID":693},"10.1007\u002FBF02913877","2024-06-24T21:49:58.260+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF02913877",[697,712],{"id":698,"sortIndex":21,"researcher":20,"roles":699,"affiliations":700,"properties":709,"displayName":711,"givenName":20,"familyName":20},"2f853e29-4b24-4cd8-9e52-6c6d0587f8e3",[216],[701],{"id":702,"sortIndex":21,"affiliation":703,"properties":20},"0714135c-d64f-420d-8811-b8fdc759d506",{"id":702,"createTime":20,"updateTime":20,"relativeEntities":704,"slug":20,"properties":705,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":708,"statistic":20},[],{"title":706},{"VI":707},"Department of Metallurgical Engineering, Michigan Technological University, Houghton",[],{"title":710},{"VI":711},"D. A. Koss",{"id":713,"sortIndex":98,"researcher":20,"roles":714,"affiliations":715,"properties":724,"displayName":726,"givenName":20,"familyName":20},"e644a62f-50d4-4cd1-b19e-67336c2f64fe",[216],[716],{"id":717,"sortIndex":21,"affiliation":718,"properties":20},"eb445bba-cf66-4d1b-bb4c-42aca0e0f46f",{"id":717,"createTime":20,"updateTime":20,"relativeEntities":719,"slug":20,"properties":720,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":723,"statistic":20},[],{"title":721},{"VI":722},"Materials Science and Mechanical Engineering, University of Southern California, Los Angeles",[],{"title":725},{"VI":726},"S. M. Copley",{"url":695,"publisher":728,"properties":742},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":729,"slug":10,"properties":730,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":734,"manageAffiliations":735,"indexDatabases":736,"url":20,"thumbnailPath":20,"statistic":737,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":731,"title":732,"eissn":733},{"VOID":13},{"EN":15},{"VOID":17},[],[],[],{"impactFactor":21,"impactFactorByYear":738,"i10Index":27,"i10IndexLast5Year":21,"totalPublication":28,"totalPublicationByYear":739,"totalCitation":35,"totalCitationByYear":740,"totalCitationPerPublication":42,"totalCitationPerPublicationByYear":741,"hindexLast5Year":49,"hindex":49},{"1971":21,"1972":21,"1974":21,"1975":21},{"1970":30,"1971":31,"1972":32,"1973":33,"1974":34},{"1970":37,"1971":38,"1972":39,"1973":40,"1974":41},{"1970":44,"1971":45,"1972":46,"1973":47,"1974":48},{"pages":743,"volume":745},{"VOID":744},"1557-1560",{"VOID":248},{"total":21,"publishYear":250,"statisticByYear":747},{},"1971-06-01","2026-07-24T01:47:29.936+00:00",[],{"id":752,"createTime":753,"updateTime":754,"relativeEntities":755,"slug":756,"properties":757,"entityType":71,"verifyStatus":72,"verifyTime":768,"verifyNote":74,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":769,"fullTextUrl":20,"authors":770,"publicationType":128,"publisherRelationship":814,"citationCount":21,"citationInfo":833,"publishDate":674,"publishYear":326,"citationAnalyzeStatus":19,"lastCitationAnalyze":835,"indexDatabases":836,"openAccess":20,"references":20,"isForceReanalyzing":192},"6f4383e3-752a-4b1e-811f-c1fad9ea6ede","2024-01-04T03:02:34.503+00:00","2026-07-22T10:05:47.989+00:00",[],"Structures-revealed-in-zone-refined-aluminum-by-tritium-decoration",{"abstract":758,"title":760,"gsPaper":762,"references":764,"doi":766},{"EN":759},"A method is described for decorating structures in solid aluminum by precipitation of hydrogen onto them. Radioactive hydrogen is employed so that the deposition sites can be revealed by the use of autoradiographic techniques. The study was conducted with zone refined aluminum, and the primary structure that was revealed was that remaining after directional solidification during the last zone pass. The tritium was added to the specimen at 600°C and its precipitation was brought about by quenching the sample. As little as 0.05 ppm of tritium was sufficient to reveal complex structures in the cast metal that are attributed to association of unidentified residual impurity atoms with low angle subgrain boundaries that are thought to have resulted from polygonization occurring immediately behind the advancing solid-liquid interface. Wide-angle grain boundaries were also decorated. New structures were introduced by various levels of strain that accompanied different upsetting operations. Grain and subgrain boundaries that developed during strain anneals were “antisites” for hydrogen deposition. This opposite behavior is attributed to the absence of impurity atoms in these “new” boundaries. An explanation for the behavior of hydrogen in aluminum is given in terms of the condensation of vacancies vs their loss to vacancy sinks. These phenomena are shown to be involved in the enlargement of hydrogen-filled pores in aluminum.",{"EN":761},"Structures revealed in zone refined aluminum by tritium decoration",{"VOID":763},"[\"2510757810928066873\"]",{"VOID":765},"C. E. Ransley and H. Neufeld:J. Inst. Metals, 1948, vol. 12, pp. 599–620.\nW. Eichenauer and A. Pebler:Z. Metallk., 1957, vol. 48, pp. 373–78.\nS. H. Howe and C. Elbaum:Phil. Mag., 1961, vol. 6, pp. 1227–40.\nR. O. Simmons and R. W. Balluffi:Phys. Rev., 1960, vol. 117, pp. 52–61.\nL. M. Foster, A. S. Gillespie, Jr., T. H. Jack and W. W. Hill:Nucleonics, 1963, vol. 21, no. 4, pp. 53–55.\nA. S. Gillespie, Jr.:Anal. Chem., 1960, vol. 32, pp. 1624–26.\nR. A. Kramer and L. M. Foster:Compound Semiconductors, Chap. 16, R. Willardson and H. Goering, eds., Reinhold, N. Y., 1962.\nM. S. Hunter: Alcoa Research Laboratories, New Kensington, Pa., private communication.\nB. Chalmers:AIME Trans., 1954, vol. 200, pp. 519–32.\nE. Teghtsoonian and B. Chalmers:Can. J. Phys., 1951, vol. 29, pp. 370–81.\nJ. W. Rutter and B. Chalmers:Can. J. Phys., 1953, vol. 31, pp. 15–39.\nH. A. Atwater and B. Chalmers:Can. J. Phys., 1957, vol. 35, pp. 208–15.\nP. E. Doherty and R. S. Davis:Acta Met., 1959, vol. 7, pp. 118–23.\nA. A. Hendrickson and E. S. Machlin:Acta Met., 1955, vol. 3, pp. 64–69.\nO. N. Salmon and D. Randall: Knolls Atomic Power Laboratory (USA) Report, 1954, KAPL-984.\nD. Randall and O. N. Salmon: Knolls Atomic Power Laboratory (USA) Report, 1953, KAPL-904.\nC. R. Cupp and P. Flubacher:J. Nuclear Mater., 1962, vol. 6, pp. 213–28.\nD. E. Talbot and D. A. Granger:J. Inst. Metals, 1963-64, vol. 91, pp. 290–97.\nD. G. Brandon:Modern Techniques in Metallography, p. 242, D. Van Nostrand, N. Y., 1966.\nJ. W. Taylor:J. Inst. Metals, 1957-58, vol. 86, pp. 456–63.\nF. Seitz:Acta Met., 1953, vol. 1, pp. 355–69.\nC. Elbaum:Phil. Mag., 1960, vol. 5, pp. 669–74.\nP. G. Shewmon:Diffusion in Solids, Chap. 6, McGraw-Hill Book, Co., N. Y., 1963.",{"VOID":767},"10.1007\u002FBF03038427","2024-06-23T02:58:14.629+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF03038427",[771,786,801],{"id":772,"sortIndex":21,"researcher":20,"roles":773,"affiliations":774,"properties":783,"displayName":785,"givenName":20,"familyName":20},"e1ba0e93-99bb-4aa9-aeea-e1a344eff5de",[216],[775],{"id":776,"sortIndex":21,"affiliation":777,"properties":20},"4e13f32d-f26e-409b-a8d7-cf09129ca68a",{"id":776,"createTime":20,"updateTime":20,"relativeEntities":778,"slug":20,"properties":779,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":782,"statistic":20},[],{"title":780},{"VI":781},"Crystal Synthesis Group, T. J. Watson Research Center, IBM Corp., Yorktown Heights",[],{"title":784},{"VI":785},"L. M. Foster",{"id":787,"sortIndex":98,"researcher":20,"roles":788,"affiliations":789,"properties":798,"displayName":800,"givenName":20,"familyName":20},"f8436128-8c03-49fe-97f9-30949e432d2d",[216],[790],{"id":791,"sortIndex":21,"affiliation":792,"properties":20},"a06411c5-c923-4a73-a4e1-dcab96e04488",{"id":791,"createTime":20,"updateTime":20,"relativeEntities":793,"slug":20,"properties":794,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":797,"statistic":20},[],{"title":795},{"VI":796},"Alcoa Research Laboratories, New Kensington, USA",[],{"title":799},{"VI":800},"T. H. Jack",{"id":802,"sortIndex":114,"researcher":20,"roles":803,"affiliations":804,"properties":811,"displayName":813,"givenName":20,"familyName":20},"cdfd923b-23d6-4aa1-aa6a-4d30915fd5d4",[216],[805],{"id":791,"sortIndex":21,"affiliation":806,"properties":20},{"id":791,"createTime":20,"updateTime":20,"relativeEntities":807,"slug":20,"properties":808,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":810,"statistic":20},[],{"title":809},{"VI":796},[],{"title":812},{"VI":813},"W. W. Hill",{"url":769,"publisher":815,"properties":829},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":816,"slug":10,"properties":817,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":821,"manageAffiliations":822,"indexDatabases":823,"url":20,"thumbnailPath":20,"statistic":824,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":818,"title":819,"eissn":820},{"VOID":13},{"EN":15},{"VOID":17},[],[],[],{"impactFactor":21,"impactFactorByYear":825,"i10Index":27,"i10IndexLast5Year":21,"totalPublication":28,"totalPublicationByYear":826,"totalCitation":35,"totalCitationByYear":827,"totalCitationPerPublication":42,"totalCitationPerPublicationByYear":828,"hindexLast5Year":49,"hindex":49},{"1971":21,"1972":21,"1974":21,"1975":21},{"1970":30,"1971":31,"1972":32,"1973":33,"1974":34},{"1970":37,"1971":38,"1972":39,"1973":40,"1974":41},{"1970":44,"1971":45,"1972":46,"1973":47,"1974":48},{"pages":830,"volume":832},{"VOID":831},"3117-3124",{"VOID":324},{"total":21,"publishYear":326,"statisticByYear":834},{},"2026-07-22T10:05:47.988+00:00",[],{"id":838,"createTime":839,"updateTime":840,"relativeEntities":841,"slug":842,"properties":843,"entityType":71,"verifyStatus":72,"verifyTime":853,"verifyNote":74,"languages":854,"translateLanguages":20,"viewCount":21,"primaryUrl":855,"fullTextUrl":20,"authors":856,"publicationType":128,"publisherRelationship":887,"citationCount":20,"citationInfo":20,"publishDate":902,"publishYear":568,"citationAnalyzeStatus":156,"lastCitationAnalyze":903,"indexDatabases":904,"openAccess":20,"references":905,"isForceReanalyzing":192},"2642f8ca-6393-4f73-815e-6b6da76190dc","2024-04-11T04:27:14.426+00:00","2026-07-21T18:03:18.302+00:00",[],"Denucleation",{"abstract":844,"title":846,"gsPaper":847,"keywords":849,"doi":851},{"EN":845},"Ultrarapid cooling may result in material with extremely fine grain size and interdendritic spacing, or containing supersaturated solutions or nonequilibrium phases. Unfortunately, ultrarapid cooling cannot be obtained in large masses of metal; thus the interesting properties cannot be exploited commercially. The same structures can be obtained by denucleation, that is removal or neutralization of the nucleants that act at low undercooling. A denucleated melt, regardless of its size, can be undercooled to a temperature well below its freezing point, where it can be made to freeze rapidly on a chosen nucleant. Electro-lytically refined aluminum crystallizes normally with a fairly coarse grain at 1 to 2°C undercooling. By removing all nucleants with less than 5°C undercooling a grain size of less than 1 mm diam was achieved in a furnace cooled sample. In aluminum-manganese alloys, denucleation produces refinement of the grain structure in continuously cast billets and retention in solution of a higher percentage of manganese, in pure aluminum columnar grain and crystallization twins are found in plaster molds. By denucleation of aluminum-iron alloys, the FeAl6 phase can be made to appear in samples cooled at commercial rates of a few °C\u002Fsec and eutectic structures can be obtained in alloys with 4 pct Fe. In cast iron removal of nucleants with low undercooling shifts the crystallization from primary graphite to primary austenite.",{"EN":842},{"VOID":848},"[\"16154254141932692741\"]",{"EN":850},"",{"VOID":852},"10.1007\u002FBF02646615","2024-06-26T00:12:13.413+00:00",[76],"https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF02646615",[857,872],{"id":858,"sortIndex":21,"researcher":20,"roles":859,"affiliations":860,"properties":869,"displayName":871,"givenName":20,"familyName":20},"6a301216-0182-4f5f-904a-9f69c5db95a1",[],[861],{"id":862,"sortIndex":21,"affiliation":863,"properties":20},"ce20974d-f3a8-412e-a8d5-44457d9e9c2a",{"id":862,"createTime":20,"updateTime":20,"relativeEntities":864,"slug":20,"properties":865,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":868,"statistic":20},[],{"title":866},{"EN":867},"Kawecki Berylco Industries, Inc., Reading,",[],{"title":870},{"EN":871},"J. A. Marcantonio",{"id":873,"sortIndex":98,"researcher":20,"roles":874,"affiliations":875,"properties":884,"displayName":886,"givenName":20,"familyName":20},"3620ab48-44ef-4ab8-90f8-a8d04bb9f26c",[],[876],{"id":877,"sortIndex":21,"affiliation":878,"properties":20},"209e2ffe-9b46-4d3c-b836-aa5d36ac83e0",{"id":877,"createTime":20,"updateTime":20,"relativeEntities":879,"slug":20,"properties":880,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":883,"statistic":20},[],{"title":881},{"EN":882},"Metallurgical Research Dept., Revere Copper and Brass, Inc., Research and Development Center, Rome",[],{"title":885},{"EN":886},"L. F. Mondolfo",{"url":20,"publisher":888,"properties":20},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":889,"slug":10,"properties":890,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":894,"manageAffiliations":895,"indexDatabases":896,"url":20,"thumbnailPath":20,"statistic":897,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":891,"title":892,"eissn":893},{"VOID":13},{"EN":15},{"VOID":17},[],[],[],{"impactFactor":21,"impactFactorByYear":898,"i10Index":27,"i10IndexLast5Year":21,"totalPublication":28,"totalPublicationByYear":899,"totalCitation":35,"totalCitationByYear":900,"totalCitationPerPublication":42,"totalCitationPerPublicationByYear":901,"hindexLast5Year":49,"hindex":49},{"1971":21,"1972":21,"1974":21,"1975":21},{"1970":30,"1971":31,"1972":32,"1973":33,"1974":34},{"1970":37,"1971":38,"1972":39,"1973":40,"1974":41},{"1970":44,"1971":45,"1972":46,"1973":47,"1974":48},"1974-06-01","2026-07-21T18:03:18.301+00:00",[],[906,908,910,912,914],{"id":20,"text":907,"url":20,"identifiers":20},"C. C. Wang, C. S. Smith:Trans. AIME, 1950, vol. 188, p. 136.",{"id":20,"text":909,"url":20,"identifiers":20},"L. Bäckerud:Jerkont. Ann., 1968, vol. 152, p. 109.",{"id":20,"text":911,"url":20,"identifiers":20},"H. Jones:Mater. Sci Eng., 1969, vol. 5, p. 1.",{"id":20,"text":913,"url":20,"identifiers":20},"M. H. Burden and H. Jones:Metallography, 1970, vol. 3, p. 307.",{"id":20,"text":915,"url":20,"identifiers":20},"G. Koves, L. F. Mondolfo:J. Iron Steel Inst., 1963, vol. 202, p. 424."]