Search Results - "Shayakhmetov, U. Sh"

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  1. 1

    Nanostructured foam ceramics for building purposes: production technology and applications by Sinitsin, D.A., Shayakhmetov, U.Sh, Rakhimova, O.N., Khalikov, R.M., Nedoseko, I.V.

    Published in Nanotehnologii v stroitelʹstve (01-01-2021)
    “…Introduction. Foam-ceramic heat-insulating building materials have the greatest stability of the demanded technological characteristics due to their unique…”
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    Journal Article
  2. 2

    Refractory Composites Based on Pyrophyllite Raw Materials by Shayakhmetov, U. Sh, Shayakhmetov, A. U., Zakharov, A. V., Khamidullin, A. R., Gazizova, A. T.

    Published in Refractories and industrial ceramics (01-09-2018)
    “…The results of a physical and chemical investigation of pyrophyllite from the Kul’-Yurt-Tau deposit in the Republic of Bashkortostan (Russia) are presented…”
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    Journal Article
  3. 3

    The Influence of High-Temperature Deformation on the Structure of Aluminum-Phosphate Composites by Shayakhmetov, U. Sh, Khalikov, R. M., Khamidullin, A. R., Shayakhmetov, A. K., Khaidarshin, É. A.

    Published in Refractories and industrial ceramics (01-11-2018)
    “…The physical, chemical and structural developments taking place in aluminum-phosphate composites when heated under a load were investigated in the present…”
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  4. 4

    Roast-free technology for fabrication of chamotte-graphite stopper plugs for continuous casting of steel by Vasin, K. A., Murzakova, A. R., Shayakhmetov, U. Sh

    Published in Refractories and industrial ceramics (01-07-2013)
    “…A roast-free technology for the production of chamotte-graphite plugs based on inorganic binder for continuous steel casting is presented…”
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  5. 5

    Study of high-temperature deformation and creep of composite materials based on corundum and pyrophyllite raw material by Murzakova, A. R., Shayakhmetov, U. Sh, Bakunov, V. S.

    Published in Refractories and industrial ceramics (01-11-2012)
    “…Results are provided for a study of high-temperature deformation and creep of composites based on corundum, pyrophyllite raw material, and phosphate binder…”
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  6. 6

    Effect of A12O3 and ZrO2 on some properties of compositions based on silicon nitride and phosphate binders by Shayakhmetov, U. Sh, Amirov, R. A.

    Published in Refractories and industrial ceramics (01-03-1999)
    “…It is established that A12O3 and ZrO2 stabilized by CaO in an amount of at most 30% increase the high-temperature strength of materials based on Si3N4 and…”
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  7. 7

    Technology of Composites Based on Kul’-Yurt-Tau Pyrophyllites by Bakunov, V. S., Murzakova, A. R., Shayakhmetov, U. Sh, Shayakhmetov, R. U., Yakupova, L. V.

    Published in Glass and ceramics (01-05-2013)
    “…The basic technical characteristics of composites based on pyrophyllite and raw rocks from the Kul’-Yurt-Tau deposit and using phosphate binders are…”
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    Journal Article
  8. 8

    Structural Changes on Heating and High-Temperature Deformation of Composites Based on Pyrophyllite Raw Material from the Kul’-Yurt-Tau Deposit by Bakunov, V. S., Murzakova, A. R., Shayakhmetov, U. Sh, Shayakhmetov, R. U., Yakupova, L. V.

    Published in Glass and ceramics (01-05-2013)
    “…The changes occurring when composites based on pyrophyllite raw material, obtained from the Kul’-Yurt-Tau deposit, with phosphate binder are heated are…”
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    Journal Article
  9. 9

    Obtaining composites based on pyrophyllite from the Kul’-Yurt-Tau deposit and phosphate binder by Bakunov, V. S., Shayakhmetov, U. Sh, Murzakova, A. R., Shayakhmetov, R. U., Yakupova, L. V.

    Published in Glass and ceramics (2013)
    “…Changes of the phase and chemical compositions as well as the course of strengthening on heating of mixtures of pyrophyllitic raw material from the…”
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    Journal Article
  10. 10

    Deformation of unfired phosphate-bound refractories. Part 3. Deformation of hardened cements on heating and cooling by Bakunov, V S, Shayakhmetov, U Sh

    Published in Refractories and industrial ceramics (01-01-2007)
    “…Deformation tests have been made on hardened cements. A difference from unhardened ones, which show considerable plastic (viscous) deformation, is that the…”
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  11. 11

    Deformation of nonfired refractories on phosphate binders. 4. Deformation due to heating and creep of cement composition by Bakunov, V S, Shayakhmetov, U Sh

    Published in Refractories and industrial ceramics (01-03-2007)
    “…Results of a study of deformation due to heating and of creep of phosphate materials are presented. The range of necessary loads and the rate of temperature…”
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    Journal Article
  12. 12

    Deformation of unfired refractories based on phosphate binders. 7. Deformation of composites based on silicon nitride by Bakunov, V S, Shayakhmetov, U Sh

    Published in Refractories and industrial ceramics (01-07-2007)
    “…Results are presented for a study of the deformation of phosphate composites based on Si^sub 3^N^sub 4^ and ZrO^sub 2^ making it possible to predict the…”
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  13. 13

    Deformation of nonfired refractories based on phosphate binders. 5. Creep specifics in cement mixtures by Bakunov, V S, Shayakhmetov, U Sh

    Published in Refractories and industrial ceramics (01-03-2007)
    “…The results of experimental studies of aluminosilicate cement are described identifying two temperature intervals of deformation, which differ in their creep…”
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  14. 14

    Deformation of nonfired refractories based on phosphate binders. 6. Deformation under heating and creep in corundum composites by Bakunov, V S, Shayakhmetov, U Sh

    Published in Refractories and industrial ceramics (01-03-2007)
    “…The results of studying heating deformation and creep are described for two systems: electrocorundum -- α-Al^sub 2^O^sub 3^ -- phosphate binder and…”
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  15. 15

    High-temperature creep of alumosilicate concretes on phosphate binder by Shayakhmetov, U. Sh, Valiev, I. M., Vasin, K. A., Malikov, R. S.

    Published in Refractories and industrial ceramics (01-11-1999)
    “…Results of high-temperature creep tests of alumosilicate concretes on a phosphate binder that consists of a mixture of electrocorundum, technical alumina, and…”
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  16. 16

    Deformation of unfired refractories based on phosphate binders. 2. Deformation of unhardened cements in heating and cooling cycles by Bakunov, V S, Shayakhmetov, U Sh

    Published in Refractories and industrial ceramics (01-01-2007)
    “…Results are provided for an experimental study of the deformation of an unhardened aluminophosphate cement composite with cyclic heating and cooling regimes…”
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  17. 17

    Deformation of nonfired refractories on phosphate binders. 1. Specifics of nonfired refractories on phosphate binders by Bakunov, S S, Shayakhmetov, U Sh

    Published in Refractories and industrial ceramics (01-11-2006)
    “…Brief data on phosphate binders and materials based on them are provided. Compositions are selected to investigate their deformation in heating under load and…”
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  18. 18

    Experience of the use of alumosilicate materials on phosphate binders for lining “Aichelin” heat-treatment furnaces by Shayakhmetov, U. Sh, Valeev, I. M., Vasin, K. A., Shitov, A. V.

    Published in Refractories and industrial ceramics (01-09-1998)
    “…Alumosilicate composite materials on a phosphate binder which provide high operational stability are suggested as substitutes for imported lining elements of…”
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  19. 19

    Deformation of nonfired composites in heating and cooling cycles by Shayakhmetov, U Sh, Bakunov, V S, Bikbulatov, V R, Valeev, I M

    Published in Glass and ceramics (01-05-2006)
    “…Theeformation of nonfired ceramic composites based on aluminophosphate cement is studied depending on treatment temperature and loading. It is established that…”
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  20. 20

    Measuring the high-temperature strain and creep in nonfired refractories by Shayakhmetov, U Sh, Bakunov, V S, Valeev, I M, Bikbulatov, V R

    Published in Refractories and industrial ceramics (01-03-2006)
    “…Instrumentation and methodology for the experimental study of high-temperature strain and creep under load in phosphate-bonded nonfired refractories are…”
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