Although ductile fracture is a continuing problem to the fabricator, fundamental work on this phenomenon is somewhat limited. Part of the reason for this is the great theoretical complexity of the problem and the difficulty in doing clear-cut experiments. However, significant progress has been made in recent years toward elucidating the mechanisms and controlling variables. This progress is outlined in the following sections.
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References
1.
BridgmanP. W., 'Studies in Large Plastic Flow and Fracture'. 1964: Cambridge, Mass. (Harvard Press).
2.
McLeanD., 'Mechanical Properties of Metals', p. 224. New York and London ( John Wiley).
3.
EdelsonB. I.BaldwinM. M., Jr.,Trans. Amer. Soc. Metals, 1962, 55, 230.
4.
CarrekerR. P., Jr., and W. R. Hibbard, Jr.,Ada Met., 1953, I, 654.
5.
ChinG. Y.HosfordW. F.BackofenW. A., Trans. Met. Soc. A.I.M.E., /964, 2302437–
6.
SmithR. L.RutherfordJ. L., Trans. Amer. Inst. Min. Met. Eng., 1957, 209, 857. A. Lawley, J. Van den Sype, and R. Maddin, Inst. metals, 1962–63, 97, 23.
7.
AshbyM. F., 'Proceedings of Bolton Landing Conference on Oxide-Dispersion Strengthening' (Lake George, New York, 1966), to be published by Gordon and Breach.
PalmerI. G.SmithG. C.WardaR. D., Conference Proceedings, 'Physical Basis of Yield and Fracture' (edited byStricklandA. C.) p. 53. 1966: London (Inst. Physics and Phys. Soc.)
12.
TurkaloA. M.LowJ. R., Jr.,Trans. Met. Soc. A.I.M.E., 1958, 272, 750.
13.
BackofenW. A., 'Fracture of Engineering Materials', p. 107. 7964: Metals Park, Ohio (Amer. Soc. Metals).
14.
RogersH. C., 'Fundamentals of Deformation Processing' (edited byBackofenW. A. et al.), p. 199. 7964: Syracuse (University Press).
15.
de KazinczyF.BackofenW. A., Trans. Amer. Soc. Metals, 1961, 53, 55.
16.
MarshallE. R.ShawM. C., ibid., 1952, 44, 705.
17.
MukherjeeA. K.HahnG. T.RosenfieldA. R., Wright-Patterson AFB, Tech. Rep. (AFML-TR-66-266), 1966.
18.
BeachemC. D., Trans. Amer. Soc. Metals, :963, 56, 318.
MillerD. R.BesagF. M. C., 'Proceedings of ist Inter-national Conference on Fracture' (edited byYokoboriT. et al.), Vol. II, p. 711, 7966: Sendai, Japan ( Japanese Society for Strength and Fracture of Materials).
30.
HoldenF. C.OgdenH. R.JaffeeR. I., 3. Metals, 1954, 6, 169.
31.
HahnG. T.CohenM.AverbachB. L., 3. Iron Steel Inst., 1962, 200, 634.
McClintockP. A., 'A Criterion for Ductile Fracture by the Growth of Holes', unpublished manuscript; see also F. A. McClintock, S. M. Kaplan, and C. A. Berg, Internat. 1. Fracture Mechanics, 1966, 2, 614.
36.
EdelsonB. I., Trans. Amer. Soc. Metals, 1963, 56, 83.
37.
PellouxR. M. N.McMillanJ. C., Ref. 28,Vol. II, P. 547.
BluhmJ. I.MorrisseyR. J., Ref. 28,Vol. III, p. 1739
43.
RogersH. C., Acta Met., 1959, 7, 750.
44.
CrussardC.PlateauJ.TamhankarR.HenryG.LajeunesseD., 'Fracture' (edited byAverbachB. L. et al.), P. 524–7959: New York (John Wiley); London (Chapman and Hall).
45.
EdwardsR. H., 3. Appi. Mechanics, 1951, 18, 19.
46.
WilsonH. B., Jr., Rohm and Haass Co., Redstone Arsenal Research Div., Rep. (S-42),1963-
47.
BeeversC. J.HoneycombeR. W. K., 'Fracture', P. 474. 1959: New York ( John Wiley); London (Chapman and Hall). (For a survey of the evidence favouring a critical resolved shear stress for ductile fracture, see A. Kelly and R. B. Nicholson, Progress Materials Sci., 1963, 10, 3).)
48.
ChenC. W., Acta Met., 1961, 9, 68.
49.
NiclaiA., 'Theory of Flow and Fracture of Solids', 1950: New York and London (McGraw-Hill).
50.
GanguleeA.GurlandJ., Tech. Rep. No. (8), USAEC Contract AF (30–1)2394, 1964.
51.
RogersH. C.LeechR. C.CoffinL. F., Jr., Final Rep. Contract A/Ow-65-0°977f, General Electric R & D Center, Schenec-tady, New York, 1965.
52.
LowJ. R., Jr.,Progress Materials Sci., 1963, 12, (i).
53.
SaadaG.WashburnJ., 3. Phys. Soc. Japan, 1963, x8, Suppl. I, 43.
54.
MakinM. J., Phil. Mag., 1964310, 695.
55.
SullivanC. P., 'A Review of Some Microstructural Aspects of Fracture in Crystalline Materials' (Bull. No. 122). 1967: New York (Welding Research Council).