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References Abernethy R.B. (1994) The New Weibull Handbook, Robert B. Abernethy, North Palm Beach. Abramowitz M. and Stegun I.A. (eds) (1972) Handbook of Mathematical Functions/with Formulas, Graphs, and Mathematical Tables, Dover Publications. Amstadter B.L. (1971) Reliability Mathematics: Fundamentals, Practices, Procedures, McGraw-Hill Book Company. Andrews J.D. and Moss T.R. (2002) Reliability and Risk Assessment, Professional Engineering Publishing. Ang A.H.S. and Tang W.H. (1975) Probability Concepts in Engineering Planning and Design, vol. 1, Basic Principles, John Wiley & Sons, Ltd. Ashby M.F. and Jones D.R.H. (2000) Engineering Materials, vol. 1: An Introduction to their Properties and Applications, Butterworth-Heinemann. ASM (1985a) American Society for Metals, Metals Handbook, vol. 9: Metallography and Microstructures. ASM (1985b) American Society for Metals, Metals Handbook, 9th edn, vol. 8: Mechan- ical Testing, Metals Park, Ohio. Atkinson K.E. (1989) An Introduction to Numerical Analysis, 2nd edn, John Wiley & Sons, Ltd. Barlow R.E. and Proschan F. (1965) Mathematical Theory of Reliability, John Wiley & Sons, Inc. Barlow R.E. and Proschan F. (1975) Statistical Theory of Reliability and Life Testing, Rinehart and Winston, Inc. Batdorf S.B. and Crose J.G. (1974) ‘A statistical theory for the fracture of brittle structures subjected to non-uniform polyaxial stresses’, Journal of Applied Mechanics, 41, 459–464. Bazovsky I. (1961) Reliability Theory and Practice, Prentice-Hall, Inc. Bedford T. and Cooke R. (2001) Probabilistic Risk Analysis, Foundations and Methods, Cambridge University Press. Bergman B. (1985) Journal of Materials Science Letters, 4, 1143–1146. Bird G.C. and Saynor D. (1984) ‘The effect of peening shot size on the performance of carbon-steel springs’, Journal of Mechanical Working Technology, 10 (2), 175. Reliability and Risk Models: Setting Reliability Requirements. by M.T. Todinov Copyright 2005 John Wiley & Sons, Inc. ISBN 0-470-09488-5 (HB)

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References

Abernethy R.B. (1994) The New Weibull Handbook, Robert B. Abernethy, North PalmBeach.

Abramowitz M. and Stegun I.A. (eds) (1972) Handbook of Mathematical Functions/withFormulas, Graphs, and Mathematical Tables, Dover Publications.

Amstadter B.L. (1971) Reliability Mathematics: Fundamentals, Practices, Procedures,McGraw-Hill Book Company.

Andrews J.D. and Moss T.R. (2002) Reliability and Risk Assessment, ProfessionalEngineering Publishing.

Ang A.H.S. and Tang W.H. (1975) Probability Concepts in Engineering Planning andDesign, vol. 1, Basic Principles, John Wiley & Sons, Ltd.

Ashby M.F. and Jones D.R.H. (2000) Engineering Materials, vol. 1: An Introduction totheir Properties and Applications, Butterworth-Heinemann.

ASM (1985a) American Society for Metals, Metals Handbook, vol. 9:Metallography andMicrostructures.

ASM (1985b) American Society for Metals, Metals Handbook, 9th edn, vol. 8: Mechan-ical Testing, Metals Park, Ohio.

Atkinson K.E. (1989) An Introduction to Numerical Analysis, 2nd edn, John Wiley &Sons, Ltd.

Barlow R.E. and Proschan F. (1965) Mathematical Theory of Reliability, John Wiley &Sons, Inc.

Barlow R.E. and Proschan F. (1975) Statistical Theory of Reliability and Life Testing,Rinehart and Winston, Inc.

Batdorf S.B. and Crose J.G. (1974) ‘A statistical theory for the fracture of brittlestructures subjected to non-uniform polyaxial stresses’, Journal of Applied Mechanics,41, 459–464.

Bazovsky I. (1961) Reliability Theory and Practice, Prentice-Hall, Inc.Bedford T. and Cooke R. (2001) Probabilistic Risk Analysis, Foundations and Methods,Cambridge University Press.

Bergman B. (1985) Journal of Materials Science Letters, 4, 1143–1146.Bird G.C. and Saynor D. (1984) ‘The effect of peening shot size on the performance ofcarbon-steel springs’, Journal of Mechanical Working Technology, 10 (2), 175.

Reliability and Risk Models: Setting Reliability Requirements. by M.T. TodinovCopyright 2005 John Wiley & Sons, Inc. ISBN 0-470-09488-5 (HB)

Page 2: Refs

Blake I.F. (1979) An Introduction to Applied Probability, John Wiley and Sons, Ltd.Blischke W.R. & Murthy D.N. (2000) Reliability: Modelling, Prediction, and Optimisa-

tion, John Wiley & Sons, Ltd.Bogdanoff J.L. and Kozin F. (1985) Probabilistic Models of Cumulative Damage, John

Wiley & Sons, Ltd, New York.Booker J.D., Raines M. and Swift K.G. (2001) Designing Capable and Reliable Products,

Butterworth.Box G.E.P. and Muller M.E. (1958) ‘A note on the generation of random normal

deviates’, Annals of Mathematical Statistics, 28, 610–611.Brooksbank D. and Andrews K.W. (1972) ‘Stress fields around inclusions and their

relation to mechanical properties’, Journal of the Iron and Steel Institute, 4, 246–255.Budinski K.G. (1996) Engineering Materials: Properties and Selection, 5th edn, Prentice-

Hall, Inc.Burrell N.K. (1985) ‘Controlled shot peening of automotive components’, SAE Trans-

actions, Section 3, 94 (850365).Bury K.V. (1975) Statistical Models in Applied Science, John Wiley & Sons, Ltd.Carter A.D.S. (1986) Mechanical Reliability, Macmillan Education Ltd.Carter A.D.S. (1997) Mechanical Reliability and Design, Macmillan Press Ltd.Chatfield C. (1998) Problem Solving: A Statistician’s Guide, Chapman & Hall.Cheney W. and Kincaid D. (1999) Numerical Mathematics and Computing, 4th edn,

Brooks/Cole Publishing Company.Chernykh Yu.M. (1991) ‘Determination of the depth of the defective surface layer of

silicon steel springs’, Metal Science and Heat Treatment, 33 (9–10), 792–793.Christensen P. and Baker M. (1982) Structural Reliability Theory and its Applications,

Springer-Verlag.Christian J.W. (1965) The Theory of Transformations in Metals and Alloys, Pergamon

Press.Cox B.N. (1989) ‘Inductions from Monte-Carlo simulations of small fatigue cracks’,

Engineering Fracture Mechanics, 33 (4), 655–670.Cullity B.D. (1978) Elements of X-ray Diffraction, 2nd edn, Addison-Wesley.Curry D.A. and Knott J.F. (1979) ‘Effect of microstructure on cleavage fracture tough-

ness of quenched and tempered steels’, Metal Science, 7, 341–345.Danzer R. and T. Lube (1996) ‘New fracture statistics for brittle materials’, Fracture

Mechanics of Ceramics, 11, 425–439.Dasgupta A. and Pecht M. (1991) ‘Material failure mechanisms and damage models’,

IEEE Transactions on Reliability, 40 (5), 531–536.DeGroot M. (1989) Probability and Statistics, Addison-Wesley.Dianqing L., Shengkun Z. and Wenyong T. (2004) ‘Risk based inspection planning for

ship structures subjected to corrosion deterioration’, Proceedings of the ProbabilisticSafety Assessment and Management Conference PSAM7-ESREL’04, Berlin, 6,3336–3342.

Dieter G.E. (1986) Mechanical Metallurgy, McGraw-Hill.Dodson B. (1994) Weibull Analysis, ASQC Quality Press.Dowling N.E. (1999) Mechanical Behaviour of Materials, Prentice Hall.Draper N.R. and Smith H. (1981) Applied Regression Analysis, 2nd edn, John Wiley &

Sons, Ltd.Drenick R.F. (1960) ‘The failure low of complex equipment’, Journal of the Society for

Industrial and Applied Mathematics, 8, 680–690.Easterling E. (1983) Introduction to the Physical Metallurgy of Welding, Butterworths.Ebeling C.E. (1997) An Introduction to Reliability and Maintainability Engineering,

McGraw-Hill.

308 References

Page 3: Refs

Evans A.G. (1978) ‘A general approach for the statistical analysis of multiaxial fracture’,Journal of the American Ceramic Society, 61, 302–308.

Everitt B.S. and Hand D.J. (1981) Finite Mixture Distributions, Chapman & Hall.Foley J.D., van Dam A., Feiner S.K. and Hughes J.F. (1996) Computer Graphics:Principles and Practice, Addison-Wesley Publishing Company.

Freudenthal A.M. (1954) ‘Safety and the probability of structural failure’, AmericanSociety of Civil Engineers Transactions, No. 2843, 1337–1397.

Gere J. and Timoshenko S.P. (1999)Mechanics ofMaterials, 4th edn, Stanley Thornes Ltd.Gildersleeve M.J. (1991) ‘Relationship between decarburisation and fatigue strengthof through hardened and carburising steels’, Materials Science and Technology, 7,307–310.

Glitzmann P. and Klee, V. (1994) ‘Polytopes: On some complexity of some basicproblems in computational convexity II. Volume and mixed volumes’. In Polytopes:Abstract, Convex and Computational, eds T. Bisztriczky et al., Kluwer, Dordrecht.

Gnedenko B.V. (1962) The Theory of Probability, Chelsea Publishing Company.Griffith A.A. (1920) Philosophical Transactions of the Royal Society, London, Series A,221, 163.

Grosh D.L. (1989) A Primer of Reliability Theory, John Wiley & Sons, Ltd.Gross D. and Harris C.M. (1985) Fundamentals of Queuing Theory, 2nd edn, John Wiley& Sons, Ltd.

Gumbel, E.J. (1958) Statistics of Extremes, Columbia University Press.Hahn G.T. (1984) Metallurgical Transactions A, 15A, 947–959.Harry M.J. and Lawson J.R. (1992) Six Sigma Producibility Analysis and ProcessCharacterisation, Addison-Wesley.

Haugen E.B. (1980) Probabilistic Mechanical Design, John Wiley & Sons, Ltd.Hearn D. and Baker M. Pauline (1997) Computer Graphics: C version, Prentice Hall Inc.Heitmann W.E., T.G. Oakwood and G. Krauss (1996) ‘Continuous heat treatment ofautomotive suspension spring steels’. In Fundamentals and Applications of Microalloy-ing Forging Steels, Proceedings of a symposium sponsored by the Ferrous MetallurgyCommittee of TMS, eds Chester J. Van Tyne et al.

Henley E.J. and Kumamoto H. (1981) Reliability Engineering and Risk Assessment,Prentice-Hall Inc.

Hertzberg R.W. (1996) Deformation and Fracture Mechanics of Engineering Materials,4th edn, John Wiley & Sons, Inc.

Hobbs G.K. (2000) Accelerated Reliability Engineering, HALT and HASS, John Wiley& Sons, Ltd.

Horowitz E. and Sahni S. (1997) Computer Algorithms, Computer Science Press.Hoyland A. and RausandM. (1994) System Reliability Theory, JohnWiley and Sons, Ltd.Hull D. and Clyne T.W. (1996) An Introduction to Composite Materials, 2nd edn,Cambridge University Press.

IEC (International Electrotechnical Commission) (1991) International Vocabulary,Chapter 191: Dependability and Quality of Service, IEC 50 (191).

Jayatilaka A. and Trustrum K. (1977) Journal of Material Science, 12, 1426.Kay D.C. (1995) Graphics File Formats, 2nd edn, Windcrest/McGraw-Hill.Kendall M.G. and Moran P.A.P. (1963) Geometrical Probability, Charles Griffin &Company Ltd.

Knuth D.E. (1997) The Art of Computer Programming, vol. 2, SeminumericalAlgorithms, 3rd edn, Addison-Wesley.

Kumar U., Knezevic J. and Crocker J. (1999) ‘Maintenance free operating period – analternative measure to MTBF and failure rate for specifying reliability?’, ReliabilityEngineering and System Safety, 64, 127–131.

References 309

Page 4: Refs

Lehmer D.H. (1951) ‘Mathematical methods in large-scale computing units’. In Pro-ceedings of the 2nd Annual Symposium on Large-scale Digital Computing Machinery,Harvard University Press, 141–145.

Lewis E.E. (1996) Introduction to Reliability Engineering, 2nd edn, JohnWiley & Sons Inc.McMahon C.J. and Cohen M. (1965) Acta Metallurgica, 13, 591.Mattson E. (1989) Basic Corrosion Technology for Scientists and Engineers, John Wiley

& Sons, Ltd (Halsted Press).Meeker W.Q. and Escobar L.A. (1998) Statistical Methods for Reliability Data, John

Wiley & Sons, Inc.Melchers R.E. (1999) Structural Reliability Analysis and Prediction, 2nd edn, John Wiley

& Sons, Ltd.Metcalfe A.V. (1994) Statistics in Engineering, a Practical Approach, Chapman & Hall.Miller I. and Miller M. (1999) John E. Freund’s Mathematical Statistics, 6th edn,

Prentice Hall International, Inc.Miller K.J. (1993) Materials Science and Technology, 9, 453–462.MIL-HDBK-217F (1991) Reliability Prediction of Electronic Equipment, US Depart-

ment of Defence, Washington, DC.MIL-STD-1629A (1977) US Department of Defence Procedure for Performing a Failure

Mode and Effects Analysis.Miner M.A. (1945) Journal of Applied Mechanics, 12, 159–164.Montgomery D.C., Runger G.C. and Hubele N.F. (2001) Engineering Statistics, 2nd

edn, John Wiley & Sons, Ltd.Murakami Y., Kodama S. and Konuma S. (1989) ‘Quantitative evaluation of effects of

non-metallic inclusions on fatigue strength of high strength steels. I: Basic fatiguemechanism and evaluation of correlation between the fatigue fracture stress and thesize and location of non-metallic inclusions’, International Journal of Fatigue, 11 (5),291–298.

Murakami Y. and Usuki H. (1989) ‘Quantitative evaluation of effects of non-metallicinclusions on fatigue strength of high strength steels. II: Fatigue limit evaluation basedon statistics for extreme values of inclusion size’, International Journal of Fatigue, 11(5), 299–307.

Nakov P. and Dobrikov P. (2003) Programming¼þþAlgorithms, 2nd edn, Top Team.Niku-Lari A. (1981) ‘Shot-peening’. In the First International Conference on Shot Peen-

ing, Paris, 14–17 September, p. 1, Pergamon Press.O’Connor P.D.T (2003) Practical Reliability Engineering, 4th edn, JohnWiley & Sons, Ltd.Ohring M. (1995) Engineering Materials Science, Academic Press, Inc.OREDA-1992 (Offshore Reliability Data) (1992) DNV Technica.Ortiz K. and Kiremidjian A. (1988) ‘Stochastic modelling of fatigue crack growth’,

Engineering Fracture Mechanics, 29 (3), 317–334.Paris P.C. and Erdogan F. (1963) Journal of Basic Engineering, 85, 528–534.Park S.K and Miller K.W. (1988) ‘Random number generators: good ones are hard to

find’, Communications of the ACM, 31 (10), 1192–1201.Parzen E., (1960)Modern Theory of Probability and its Applications. John Wiley & Sons,

Inc., New York.RAE (2002) ‘The societal aspects of risk’, Report produced by working groups of the

Royal Academy of Engineering.Ramakumar R. (1993) Engineering Reliability, Fundamentals and Applications, Prentice

Hall.Relf M.N. (1998) ‘Maintenance-free operating periods – the designer’s challenge’. In

Proceedings of the 13th Advances in Reliability Technology Symposium, 21–23 April,Manchester.

310 References

Page 5: Refs

Rigaku Corporation (1994) Instruction Manual for Strainflex MSF-2M/PSF-2M.Rimmer S. (1993) Bit-Mapped Graphics, 2nd edn, Windcrest/McGraw-Hill.Rosenfield A.R. (1997) In George R. Irwin Symposium on Cleavage Fracture (ed.Kwai S. Chan), The Minerals, Metals and Materials Society, Materials Park, Ohio,229–236.

Ross P.J. (1988) Taguchi Techniques for Quality Engineering, McGraw-Hill.Ross S.M. (1997) Simulation, 2nd edn, Harcourt Academic Press.Ross S.M. (2000) Introduction to Probability Models, 7th edn, A Harcourt Science andTechnology Company.

Rubinstein R.Y. (1981) Simulation and the Monte-Carlo Method, John Wiley & Sons,Ltd, New York.

SAE J936 (1965) Report of Iron and Steel Technical Committee.Sherwin D.J. and Bossche A. (1993) The Reliability, Availability and Productiveness ofSystems, Chapman & Hall.

Smith D.J. (1972) Reliability Engineering, Putman Publishing.Sobol I.M. (1994) A Primer for the Monte-Carlo Method, CRC Press.Sommerville D.M.Y. (1958) An Introduction to the Geometry of N Dimensions, Dover.Thompson G. (1999) Improving Maintainability and Reliability through Design, Profes-sional Engineering Publishing Ltd.

Thompson W.A. (1988) Point Process Models with Applications to Safety and Reliability,Chapman & Hall.

Ting J.C. and Lawrence F.V. (1993) ‘Modelling the long-life fatigue behaviour of a castaluminium alloy’, Fatigue and Fracture of Engineering Materials and Structures, 16 (6),631–647.

Todinov M.T. (1996) ‘A new approach to the kinetics of a phase transformation withconstant radial growth rate’, Acta Materialia, 44, 4697–4703.

Todinov M.T. (1998) ‘Mechanism for the formation of the residual stresses fromquenching’, Modelling and Simulation in Materials Science and Engineering, 6,273–291.

Todinov M.T. (1999a) ‘Influence of some parameters on the residual stresses fromquenching’, Modelling and Simulation in Materials Science and Engineering, 7, 25–41.

Todinov M.T. (1999b) ‘Maximum principal tensile stress and fatigue crack origin forcompression springs’, International Journal of Mechanical Sciences, 41, 357–370.

Todinov M.T. (2000a) ‘On some limitations of the Johnson–Mehl–Avrami–Kolmogorov equation’, Acta Materialia, 48, 4217–4224.

Todinov M.T. (2000b) ‘Probability of fracture initiated by defects’, Materials Scienceand Engineering A, A276, 39–47.

Todinov M.T. (2000c) ‘Residual stresses at the surface of automotive suspensionsprings’, Journal of Materials Science, 35, 3313–3320.

Todinov M.T. (2001a) ‘An efficient method for estimating from sparse data the para-meters of the impact energy variation in the ductile-to-brittle transition region’,International Journal of Fracture, 111, 131–150.

Todinov M.T. (2001b) ‘Necessary and sufficient condition for additivity in the sense ofthe Palmgren–Miner rule’, Computational Materials Science, 21, 101–110.

Todinov M.T. (2001c) ‘Probability distribution of fatigue life controlled by defects’,Computers and Structures, 79, 313–318.

Todinov M.T. (2002a) ‘Distribution mixtures from sampling of inhomogeneous micro-structures: variance and probability bounds of the properties’, Nuclear Engineeringand Design, 214, 195–204.

Todinov M.T. (2002b) ‘Distribution of properties from sampling inhomogeneous mater-ials by line transects’, Probabilistic Engineering Mechanics, 17, 131–141.

References 311

Page 6: Refs

Todinov M.T. (2003a) ‘Statistics of inhomogeneous media formed by nucleation andgrowth’, Probabilistic Engineering Mechanics, 18, 139–149.

Todinov M.T. (2003b) ‘Modelling consequences from failure and material properties bydistribution mixtures’, Nuclear Engineering and Design, 224, 233–244.

Todinov M.T. (2003c) ‘Minimum failure-free operating intervals associated with ran-dom failures of non-repairable components’, Computers and Industrial Engineering,45, 475–491.

Todinov M.T. (2004a) ‘Uncertainty and risk associated with the Charpy impact energyof multi-run welds’, Nuclear Engineering and Design, 231, 27–38.

Todinov M.T. (2004b) ‘Setting reliability requirements based on minimum failure-freeoperating periods’, Quality and Reliability Engineering International, 20, 273–287.

Todinov M.T. (2004c) ‘A new reliability measure based on specified minimum distancesbefore the locations of random variables in a finite interval’, Reliability Engineeringand System Safety, 86, 95–103.

Todinov M.T. (2005) ‘Limiting the probability of failure for components containingflaws’, Computational Material Science, 32, 156–166.

Todinov M.T., Novovic, M., Bowen P. and Knott J.F. (2000) ‘Modelling the impactenergy in the ductile/brittle transition region of C-Mn multi-run welds’, MaterialsScience and Engineering A, A287, 116–124.

Trivedi K.S. (2002) Probability and Statistics with Reliability, Queuing and ComputerScience Applications, 2nd edn, John Wiley & Sons, Ltd.

Tryon R.G. and Cruse T.A. (1997) ‘Probabilistic mesomechanical fatigue crack nucle-ation model’, Journal of Engineering Materials and Technology, 119, 65–70.

Tuckwell H.C. (1988) Elementary Applications of Probability Theory, Chapman & Hall.Underwood E.E. (1969) Quantitative Stereology, Addison-Wesley.Villemeur A. (1992) Reliability, Availability, Maintainability and Safety Assessment,

vol. 2, John Wiley & Sons, Ltd.Vose D. (2002) Risk analysis, a quantitative guide, 2nd edn, John Wiley & Sons, Ltd.Wallin K., Saario T. and Torronen K. (1984) Metal Science, 18, 13–16.Weibel E.R. (1980) Stereological Methods: Theoretical Foundations (vol. 2), Academic

Press, London.Weibull W. (1951) A statistical distribution of wide applicability, Journal of Applied

Mechanics, 18, 293–297.Windle P.L., Crowder M. and Moskovic R. (1996) A statistical model for the analysis

and prediction of the effect of neutron irradiation on Charpy impact energy curves,Nuclear Engineering Design, 165, 43–56.

312 References