Crossref journal-article
Springer Science and Business Media LLC
Materials and Structures (297)
Bibliography

van Mier, J. G. M. (1986). Multiaxial strain-softening of concrete. Materials and Structures, 19(3), 179–190.

Authors 1
  1. Jan G. M. van Mier (first)
References 27 Referenced 147
  1. Evans R.H., Marathe H.S.—Microcracking and stress-strain curves for concrete in tension, Materials and Structures, RILEM, No. 1, Jan–Febr. 1968, pp. 61–64. / Materials and Structures, RILEM by R.H. Evans (1968)
  2. Spooner D.C., Dougill J.W.—A quantitative assessment of damage sustained in concrete during compressive loading, Magazine of Concrete Research, Vol. 27, No. 92, Sept. 1975, pp. 151–160. (10.1680/macr.1975.27.92.151) / Magazine of Concrete Research by D.C. Spooner (1975)
  3. Jamet P., Millard A., Nahas G.—Triaxial behaviour of a micro-concrete complete stress-strain curves for confining pressures ranging from 0 to 100 MPa, RILEM-CEB Symposium on “Concrete under multiaxial conditions,” INSA Toulouse, 1984, Vol. 1, pp. 133–140. / RILEM-CEB Symposium on “Concrete under multiaxial conditions,” INSA Toulouse by P. Jamet (1984)
  4. Ahmad S. H., Shah S. P.—Complete triaxial stress-strain curves for concrete, Journal of the Structural Division, Proceedings of ASCE, Vol. 108, No. ST4, April 1982, pp. 728–742. (10.1061/JSDEAG.0005921) / Journal of the Structural Division, Proceedings of ASCE by S. H. Ahmad (1982)
  5. Bieniawski Z.I.—Mechanism of brittle fracture of rock, Part I, II and III, Int. J. Rock Mech. Min. Sci. Vol. 4, 1967, pp. 395–430. (10.1016/0148-9062(67)90030-7) / Int. J. Rock Mech. Min. Sci. by Z.I. Bieniawski (1967)
  6. Ichikawa Y. et al.—Brittle-ductile fracture of a tuffaceous rock and plasticity theory, in Constitutive laws for engineering materials, ed. Desai, C.S., Gallagher, G.H., Tucson (AZ), 10–14 Jan. 1983, pp. 349–355.
  7. Borst R. de-Kusters G.M.A., Nauta, P., Witte F.C. de —DIANA: a three-dimensional nonlinear finite element package on a micro-computer, in “Engineering Software for Micro-Computers,”B.A. Schreffer, R.W. Lewis andS.A. Odonizzi eds. Pineridge Press, Swansea, UK, 1984, p. 435. / Engineering Software for Micro-Computers by G.M.A. Borst R. de-Kusters (1984)
  8. Bažant Z.P., Kim S.S.—Plastic fracturing theory for concrete, Journal of the Engineering Mechanics Division, Proc. ASCE, Vol. 105, No. EM3, June 1979, pp. 407–428. (10.1061/JMCEA3.0002482) / Journal of the Engineering Mechanics Division, Proc. ASCE by Z.P. Bažant (1979)
  9. Krajcinovic P., Fonseka G.K.—The continuous damage theory of brittle materials, part I: General Theory, Journal of Applied Mechanics, Trans. ASME, Vol. 48, Dec. 1981, pp. 809–845. (10.1115/1.3157739) / Journal of Applied Mechanics, Trans. ASME by P. Krajcinovic (1981)
  10. Hsu T.T.C. et al.—Microcracking of plain concrete and the shape of the stress-strain curve, ACI-Journal, Febr. 1963, pp. 209–224.
  11. Bažant Z.P.—Instability, ductility and size effect in strain-softening concrete, Journal of the Engineering Mechanics Division, Proc. ASCE, Vol. 102, No. EM2, April 1976, pp. 331–344. (10.1061/JMCEA3.0002111) / Journal of the Engineering Mechanics Division, Proc. ASCE by Z.P. Bažant (1976)
  12. Sture S., Ko H.Y.—Strain-softening of brittle geologic materials, Int. Jou. Num. Anal. Methods in Geo. Mech., Vol. 2, 1978, pp. 237–253. (10.1002/nag.1610020305) / Int. Jou. Num. Anal. Methods in Geo. Mech. by S. Sture (1978)
  13. Freudenthal A.J.—The inelastic behavior of engineering materials and structures, John Wiley & Sons, 1950.
  14. Gerstle K.H. et al.—Behavior of concrete under multiaxial stress-states, Journal of the Engineering Mechanics Division, Proc. ASCE, Vol. 106, No. EM6, Dec. 1980, pp. 1383–1403. (10.1061/JMCEA3.0002671) / Journal of the Engineering Mechanics Division, Proc. ASCE by K.H. Gerstle (1980)
  15. Mier J.G.M., van.—Multiaxial strain-softening of concrete, Part II: Load histories, Materials and Structures, RILEM, Vol. 19, No. 111, 1986. (10.1007/BF02472035)
  16. Mier J.G.M. van.—Strain-softening of concrete under multiaxial loading conditions, PhD thesis, Eindhoven University of technology, 1984, pp. 349.
  17. Mendenhall W.—Introduction to linear models and the design and analysis of experiments, Wadsworth, 1968.
  18. Schickert G.—Schwellenwerte beim Betondruck Versuch, Dissertation T.U. Berlin, November 1979, Deutscher Ausschuss fur Stahlbeton, Heft 312, Berlin 1980. / Schwellenwerte beim Betondruck Versuch by G. Schickert (1980)
  19. Kotsovos M.D.—Effect of testing techniques on the post-ultimate behaviour of concrete in compression, Materials and Structures, RILEM, Vol. 16, No. 91, Jan/Febr. 1983, pp. 3–12. / Materials and Structures, RILEM by M.D. Kotsovos (1983)
  20. Newman K., Sigvaldason O.T.—Testing machine and specimen characteristics and their effect on the mode of deformation, failure and strength of materials, Proc. Inst. Mech. Engrs., Vol. 180, Part 3A, 1965–1966, pp. 399–410. / Proc. Inst. Mech. Engrs. by K. Newman (1965–1966)
  21. Kotsovos M.D.—A fundamental explanation of the behaviour of reinforced concrete under multiaxial stress, Materials and Structures, RILEM, Vol. 15, No. 90, Nov./Dec. 1982, pp. 529–537. / Materials and Structures, RILEM by M.D. Kotsovos (1982)
  22. Sangha C.M., Dhir R.K.—Strength and complete stress-strain relationships for concrete tested in uniaxial compression under different test conditions, Materials and Structures, RILEM, Vol. 5, No. 30, 1972, pp. 361–370. / Materials and Structures, RILEM by C.M. Sangha (1972)
  23. Roy H.E.H., Sozen M.A.—Ductility of concrete, ACI Special Publication SP12, “Flexural Mechanics of Reinforced Concrete,” Miami, 1964, pp. 213–235.
  24. Mier J.G.M. van.—Influence of damage orientation distribution on the multiaxial stress-strain behaviour of concrete, Cement and Concrete Research, Vol. 15, No. 5, 1985, pp. 849–862. (10.1016/0008-8846(85)90152-8) / Cement and Concrete Research by J.G.M. Mier van (1985)
  25. Kupfer H.—Das Verhalten des Betons unter Mehrachsiger Kurzzeitbelastung unter Besonderer Berücksichtigung der Zweiachsiger Beanspruchung, Deutscher Ausschuss für Stahlbeton, Heft 229, Teil I, Berlin, 1973. / Das Verhalten des Betons unter Mehrachsiger Kurzzeitbelastung unter Besonderer Berücksichtigung der Zweiachsiger Beanspruchung by H. Kupfer (1973)
  26. Palaniswamy R., Shah S.P.—Fracture and stress-strain relationship of concrete under triaxial compression, Journal of the Engineering Mechanics Division, Proc. ASCE, 1974, ST5, pp. 901–916. (10.1061/JSDEAG.0003792)
  27. Heilmann H.G., Hilsdorf H.K., Finsterwalder K.—Festigkeit und Verformung Von Beton unter Zugspannungen, Deutscher Ausschuss fur Stahlbeton, Heft 203, Berlin, 1969. / Festigkeit und Verformung Von Beton unter Zugspannungen by H.G. Heilmann (1969)
Dates
Type When
Created 19 years ago (Aug. 10, 2006, 7:51 p.m.)
Deposited 4 years ago (July 31, 2021, 6:20 a.m.)
Indexed 2 weeks, 6 days ago (Aug. 6, 2025, 8:07 a.m.)
Issued 39 years, 3 months ago (May 1, 1986)
Published 39 years, 3 months ago (May 1, 1986)
Published Print 39 years, 3 months ago (May 1, 1986)
Funders 0

None

@article{van_Mier_1986, title={Multiaxial strain-softening of concrete: Part I: Fracture}, volume={19}, ISSN={1871-6873}, url={http://dx.doi.org/10.1007/bf02472034}, DOI={10.1007/bf02472034}, number={3}, journal={Materials and Structures}, publisher={Springer Science and Business Media LLC}, author={van Mier, Jan G. M.}, year={1986}, month=may, pages={179–190} }