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Change in the properties of porous materials during deformation

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Soviet Powder Metallurgy and Metal Ceramics Aims and scope

Conclusions

  1. 1.

    We studied certain of the physicomechanical properties of porous iron-based materials subjected to plastic deformation under nonuniform triaxial compression.

  2. 2.

    We determined the initiation temperature of oxidation for porous iron and ferrographite materials.

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Literature cited

  1. A. Ya. Artamonov, Poroshkovaya Metallurgiya, No. 3 (1961).

  2. A. D. Moshkov and Ya. V. Uspenskii, Production Technology and Application of Porous Bearings [in Russian], Mashgiz (1959).

  3. V. A. Krivoukhov, Deformation of the Surface Layers of Metal During Cutting [in Russian], Mashgiz (1945).

  4. I. V. Kragel'skii, Friction and Wear [in Russian], Gostekhizdat (1962).

  5. B. D. Grozin, Mechanical Properties of Steel [in Russian], Mashgiz (1951).

  6. N. N. Zorev, Problems in the Mechanics of the Cutting of Metals [in Russian], Mashgiz (1956).

  7. A. V. Gur'ev, Variation in the modulus of normal elasticity with increasing deformation, FMM, VII, No. 4 (1959).

  8. A. Kh. Kottrell, Dislocations and Plastic Flow in Crystals [in Russian], Metallurgizdat (1959).

  9. A. Ya. Artamonov, V. A. Danilenko, and A. Yu. Kashtalyan, Poroshkovaya Metallurgiya, No. 1 (1964).

  10. M. E. Blanter, Techniques for Investigating Metals and Processing Experimental Data [in Russian], Metallurgizdat (1952).

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Translated from Poroshkovaya Metallurgiya, No. 8 (56), pp. 80–84, August, 1967.

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Artamonov, A.Y., Kozachenko, M.V. & Yurchenko, D.Z. Change in the properties of porous materials during deformation. Powder Metall Met Ceram 6, 660–663 (1967). https://doi.org/10.1007/BF00774555

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  • DOI: https://doi.org/10.1007/BF00774555

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