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Results 1 to 25 of 335

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Magnesia : A refractories manufacturer perspectiveFRITH, M; BUFFREY, T; STRAWBRIDGE, I et al.British ceramic transactions. 1998, Vol 97, Num 1, pp 29-34, issn 0967-9782Conference Paper

Problemlösung bei der Brikettierung von MgO = Problem solution in the briquetting of MgOKAHLE, K; KRAUKE, W.Chemieingenieurtechnik. 1992, Vol 64, Num 3, pp 278-279, issn 0009-286XArticle

Proposals for developing raw-material base for magnesia productionTIKHOMIROV, E. A; ANDRYUSHCHENKO, I. V; ROMANENKO, T. M et al.Refractories (New York). 1991, Vol 32, Num 9-10, pp 533-537, issn 0034-3102Article

Interaction at the periclase-slag melt phase boundaryVADASZ, P; MOLNAR, L.Ceramics (Praha). 1992, Vol 36, Num 4, pp 199-204, issn 0862-5468Article

The new generation of magnesia refractoriesKHOROSHAVIN, L. B.Refractories (New York). 1990, Vol 31, Num 7-8, pp 410-411, issn 0034-3102, 2 p.Article

Volume stability of spinel-bonded magnesia castablesRIGAUD, M; XING, C; KOVAC, V et al.Key engineering materials. 1997, pp 1818-1820, issn 1013-9826, isbn 0-87849-761-7, 3VolConference Paper

Investigation of the wastes of chromium ore concentration for use as raw material in the manufacture of refractoriesANTONOV, G. I; YAKOBCHUK, L. M; PROKUDIN, V. YU et al.Refractories (New York). 1994, Vol 35, Num 1-2, pp 64-67, issn 0034-3102Article

ChromitePAPP, J. F.American Ceramic Society bulletin. 1993, Vol 72, Num 6, pp 90-92, issn 0002-7812Article

Hexavalent chromium in refractoriesKHOROSHAVIN, L. B; DERYABIN, V. A; PEREPELITSYN, V. A et al.Refractories (New York). 1993, Vol 34, Num 9-10, pp 457-462, issn 0034-3102Article

Sintering of magnesium hydroxide obtained from magnesium chloride solutionsANTONOV, G. I; GRIVAKOVA, ZH. A.Refractories (New York). 1988, Vol 29, Num 1-2, pp 76-80, issn 0034-3102Article

Connection between the technological factors and properties of articles containing a sintered periclase chromite intermediate productROMANOVSKII, L. B; TEREKHIN, V. A.Refractories (New York). 1986, Vol 27, Num 11-12, pp 618-619, issn 0034-3102Article

Mechanism of dense magnesia layer formation near the surface of magnesia-carbon brickWATANABE, A; TAKAHASHI, H; NAKATANI, F et al.Journal of the American Ceramic Society. 1986, Vol 69, Num 9, pp C213-C214, issn 0002-7820Article

Increasing the effectiveness of utilization of magnesite raw materialsKOVALEV, M. N; VLADIMIROV, A. I.Refractories (New York). 1985, Vol 26, Num 9-10, pp 479-482, issn 0034-3102Article

ChromitePAPP, J. F.American Ceramic Society bulletin. 1994, Vol 73, Num 6, pp 91-93, issn 0002-7812Article

Study of phase formation when brucite is heatedUST'YANTSEV, V. M; TRETNIKOVA, M. G; GALKIN, YU. M et al.Refractories (New York). 1993, Vol 34, Num 3-4, pp 210-213, issn 0034-3102Article

A genetic classification of scrap of magnesia partsBOCHAROV, L. D; BIBAEV, V. M; PEREPELITSYN, V. A et al.Refractories (New York). 1992, Vol 33, Num 3-4, pp 219-225, issn 0034-3102Article

Introducing separate beneficiation technology for magnesites at the magnezit combineRUDNYKH, T. G; KIRILLOV, L. P; CHISTYAKOV, YU. N et al.Refractories (New York). 1991, Vol 32, Num 3-4, pp 123-126, issn 0034-3102Article

Rational use of caustic magnesite dust in the production of refractoriesSIMONOV, K. V; ZAGNOIKO, V. V; KOPTELOV, V. N et al.Refractories (New York). 1989, Vol 30, Num 5-6, pp 363-371, issn 0034-3102Article

Dissolution of comminuted magnesium oxide as affected by the density of dislocations introduced by various comminution methodsALBANESE-KOTAR, N. F; MIKKOLA, D. E.Materials science and engineering. 1987, Vol 91, pp 233-240, issn 0025-5416Article

Scanning electron microscopy of industrial low-flux dolomite refractory clinkersPAN, H. C; KO, Y. C.Journal of materials science. 1987, Vol 22, Num 11, pp 4061-4066, issn 0022-2461Article

Suitability of Zavadov deposit dolomites for use as raw materialANTONOV, G. I; GRIVAKOVA, ZH. A; MASLOV, A. G et al.Refractories (New York). 1987, Vol 28, Num 1-2, pp 95-100, issn 0034-3102Article

Application de la spectrométrie d'émission avec excitation par plasma induit par haute fréquence (ICP) au dosage du bore dans les magnésites et les réfractaires basiques de magnésie = The use of inductively coupled plasma emission spectrometry for the boron determination in magnesites and basic magnesite refractoriesVALLE, F. J; BARBA, M. F.Verres et réfractaires (1976). 1986, Vol 40, Num 2, pp 173-177, issn 0337-5676Article

Some results of the installation of a technology for periclase-spinel refractoriesANDRIEVSKIKH, L. I; NAZMUTDINOV, R. SH; KOPTELOV, V. N et al.Refractories and industrial ceramics. 1996, Vol 37, Num 9-10, pp 323-325, issn 1083-4877Article

Investigating sintering of magnesia obtained by chemical beneficiationNOVIKOV, V. L; ABBAKUMOV, V. G; ASHKINADZE, G. SH et al.Refractories (New York). 1991, Vol 32, Num 5-6, pp 253-263, issn 0034-3102Article

Obtaining magnesia and periclase refractories from bischofite from the Volgograd depositsSIMONOV, K. V; GLEZER, E. B; AFINOGENOVA, N. S et al.Refractories (New York). 1988, Vol 29, Num 1-2, pp 34-38, issn 0034-3102Article

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