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1

Hernigou, Philippe, Alexandre Poignard, Charles Henri Flouzat Lachaniette, et al. "Couple alumine alumine versus alumine–polyethylene chez les patients de moins de 30ans avec prothèses de hanche bilatérales." Revue de Chirurgie Orthopédique et Traumatologique 97, no. 7 (2011): S301. http://dx.doi.org/10.1016/j.rcot.2011.08.153.

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2

Bizot, P., F. Gaucher, S. Leclercq, R. Nizard, J. Witvoet, and L. Sedel. "Prothèses totales de hanche alumine-alumine hybrides avant 50 ans : étude multicentrique comparée." Revue de Chirurgie Orthopédique et Réparatrice de l'Appareil Moteur 91, no. 4 (2005): 358–59. http://dx.doi.org/10.1016/s0035-1040(05)84338-7.

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3

Laghmouche, Nadir, Didier Hannouche, Florence Aim, Jérôme Delambre, and Remy Nizard. "Résultat à 10ans de recul des prothèses totales de hanche alumine-alumine sans ciment." Revue de Chirurgie Orthopédique et Traumatologique 101, no. 7 (2015): S213. http://dx.doi.org/10.1016/j.rcot.2015.09.180.

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4

Cogan, A., R. Nizard, and L. Sedel. "Survenue de bruits après prothèse totale de hanche alumine-alumine. Analyse de 284 hanches consécutives." Revue de Chirurgie Orthopédique et Traumatologique 97, no. 2 (2011): 197–98. http://dx.doi.org/10.1016/j.rcot.2011.02.002.

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5

Chappard, Daniel, Louis Rony, and Florence Pascaretti-Grizon. "Produits de dégradation des prothèses de hanche alumine-alumine identifiés histochimiquement dans les tissus périprothétiques." Morphologie 103, no. 342 (2019): 108. http://dx.doi.org/10.1016/j.morpho.2019.09.070.

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6

Osso, D., O. Tillement, G. Le Caer, A. Mocellin, and P. Matteazzi. "Nanocomposites alumine-mctal : élaboration et microstructure." Revue de Métallurgie 91, no. 9 (1994): 1370. http://dx.doi.org/10.1051/metal/199491091370.

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7

Rousseau, M. A., S. Le Mouel, D. Goutallier, and S. Van Driessche. "Résultats à long terme du couple de frottement alumine/alumine sur 98 prothèses de hanche cimentées." Revue de Chirurgie Orthopédique et Réparatrice de l'Appareil Moteur 90, no. 8 (2004): 741–48. http://dx.doi.org/10.1016/s0035-1040(04)70754-0.

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8

Dorval, Nicolas, and Étienne Belzile. "L’analyse acoustique in vivo de PTH à interface alumine-alumine démontre deux types de bruits distincts." Revue de Chirurgie Orthopédique et Traumatologique 97, no. 7 (2011): S333. http://dx.doi.org/10.1016/j.rcot.2011.08.231.

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9

Rony, Louis, Florence Pascaretti-Grizon, Laurent Hubert, and Daniel Chappard. "Identification histochimique des débris d’usure libérés par les prothèses de hanche alumine-alumine dans les tissus périprothétiques." Revue de Chirurgie Orthopédique et Traumatologique 107, no. 1 (2021): 19–25. http://dx.doi.org/10.1016/j.rcot.2020.06.013.

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10

Guichard, J. L., O. Tillement, and A. Mocellin. "Mécanosynthèse et élaboration de cermets alumine-métal." Matériaux & Techniques 85, no. 9-10 (1997): 21–25. http://dx.doi.org/10.1051/mattech/199785090021.

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11

Franzese, Juan R., Leandro D’Elia, Andres Bilmes, Martin Muravchik, and Mariano Hernandez. "Superimposition of oligo-miocene extensional and contractional basins in the northpatagonian Andean retroarc: The Alumine Basin, Neuquen, Argentina." Andean Geology 38, no. 2 (2011): 319. http://dx.doi.org/10.5027/andgeov38n2-a04.

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The Alumine Basin is a volcano-sedimentary depocentre located in the Andean retroarc at 39°S. It is the southern part of a major depositional system: the Bio Bio-Alumine Basin. Stratigraphical, geochronological, sedimentological and structural analysis allow us to conclude that the basin evolved through two stages: an Oligocene extensional stage filled with basalts and reworked volcaniclastic and pyroclastic deposits (Rancahue Formation) and a Miocene contractional stage, filled with alluvial and pyroclastic deposits covered by basaltic lavas (Chimehuin and Tipilihuque formations). The volcani
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12

Arribart, H. "Rotation-tunnel de l'ammonium dans l' alumine β". Journal de Physique 46, № 1 (1985): 83–93. http://dx.doi.org/10.1051/jphys:0198500460108300.

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13

Georges, A., C. Gleitzer, C. Guénard, and Tassot P. "Mécanismes d'oxydation des réfractaires du type alumine — graphite — SiC." Revue de Métallurgie 85, no. 2 (1988): 153–64. http://dx.doi.org/10.1051/metal/198885020153.

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14

Balard, Henri, Anas Mansour, Eugène Papirer, and Pierre Pichat. "Adsorption photo-induite de l'oxygène sur une alumine gamma." Journal de Chimie Physique 82 (1985): 1051–58. http://dx.doi.org/10.1051/jcp/1985821051.

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15

Balard, Henri, Anas Mansour та Eugène Papirer. "Oxydation photocatalytique des alcools physisorbés sur une alumine γ". Journal de Chimie Physique 84 (1987): 907–10. http://dx.doi.org/10.1051/jcp/1987840907.

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16

Chatain, D., I. Rivollet, and N. Eustathopoulos. "Adhésion thermodynamique dans les systèmes non-réactifs métal liquide-alumine." Journal de Chimie Physique 83 (1986): 561–67. http://dx.doi.org/10.1051/jcp/1986830561.

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17

Finiels, P. J. "Intérêt des biocéramiques en alumine poreuse cellulaire en chirurgie rachidienne." Neurochirurgie 50, no. 6 (2004): 630–38. http://dx.doi.org/10.1016/s0028-3770(04)98454-8.

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18

Beraud, Catherine, and Claude Esnouf. "Liaison cuivre-alumine : evolution et caractérisation microscopique des composés interfaciaux." Microscopy Microanalysis Microstructures 1, no. 1 (1990): 69–90. http://dx.doi.org/10.1051/mmm:019900010106900.

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19

Boyer, Patrick, Vincent Lestrat, and Denis Huten. "217 Le couple alumine-alumine dans les prothèses totales de hanche du sujet de moins de 60 ans. Résultats à 8 ans de recul moyen." Revue de Chirurgie Orthopédique et Réparatrice de l'Appareil Moteur 93, no. 7 (2007): 120–21. http://dx.doi.org/10.1016/s0035-1040(07)79560-0.

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20

Lerat, J. L., and A. Mitach. "Couple de frottement métal-métal versus alumine-alumine : étude randomisée de 264 prothèses de hanches. Résultats préliminaires avec un recul de 5 à 6 ans." Revue de Chirurgie Orthopédique et Réparatrice de l'Appareil Moteur 93, no. 3 (2007): 309. http://dx.doi.org/10.1016/s0035-1040(07)90261-5.

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21

Taran, Martine, and Bernard Delmond. "Obtention de nouveaux squelettes diterpéniques lors de l'isomérisation d'époxydes diterpéniques sur alumine active." Canadian Journal of Chemistry 66, no. 7 (1988): 1558–65. http://dx.doi.org/10.1139/v88-253.

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The isomerization of diterpene epoxides on active neutral alumina has established the existence of new rearrangements of the diterpene skeleton. Methyl 8,14β-epoxysandarcopimarate leads to bicyclic diterpene compounds by a Grob fragmentation, to derivatives of cleistanthane by a 1,2 migration of the vinyl substituent, as well as to one cycloditerpene compound. The 7,8 (or 8,9) derivatives of methyl isopimarate lead essentially to hydroxyolefins formed by a bifunctional acid–base mechanism at the alumina surface. [Journal translation]
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22

Bechara, R., D. Balloy, and D. Vanhove. "Synthèse de Fischer-Tropsch sur catalyseurs au cobalt déposé sur alumine." Journal de Chimie Physique 94 (1997): 1962–68. http://dx.doi.org/10.1051/jcp/1997941962.

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23

Montagne, L., P. Vast, G. Palavit, C. Plard, and C. Oberlin. "Composites alumine-nickel à liant polyphosphate. Nouveau matériau pour éléments chauffants." Matériaux & Techniques 79, no. 7-8 (1991): 3–7. http://dx.doi.org/10.1051/mattech/199179070003.

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24

Kokunešoski, Maja, Dušan Kićević, Đorđe Šaponjić, Svetlana Ilić, Adela Egelja, and Aleksandra Šaponjić. "Influence of methyl methacrylate as an acrylic binder on a green machining of alumina ceramics." Zastita materijala 60, no. 2 (2019): 157–61. http://dx.doi.org/10.5937/zasmat1902157k.

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25

Gheldane, Farid, Seddik Bouras, Youcef Berriche, Noureddine Bouaouadja, and Gilbert Fantozzi. "Etude du comportement thermomécanique des composites mullite-zircone et mullite-alumine-zircone." Revue des composites et des matériaux avancés 15, no. 2 (2005): 173–88. http://dx.doi.org/10.3166/rcma.15.173-188.

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26

Mercier, Noelle, and Nazir Chebbo. "Modeling of ultrasonic wave interaction with alumine and silica inclusions in steel." Journal of the Acoustical Society of America 105, no. 2 (1999): 954. http://dx.doi.org/10.1121/1.425763.

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27

Marini, B., F. Mudry, and A. Pineau. "Étude de la croissance des cavités ductiles dans un composite acier-alumine." Matériaux & Techniques 73, no. 8-9 (1985): E69—E72. http://dx.doi.org/10.1051/mattech/198573080069.

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28

SAINTE-CATHERINE, M. C. "DÉPOTS DE ZIRCONE-ALUMINE OBTENUS PAR PROJECTION PLASMA : FORMATION, MICROSTRUCTURE ET PROPRIÉTÉS." Le Journal de Physique Colloques 51, no. C5 (1990): C5–353—C5–359. http://dx.doi.org/10.1051/jphyscol:1990542.

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29

Boyer, P., D. Huten, P. Loriaut, V. Lestrat, C. Jeanrot, and P. Massin. "Les prothèses totales de hanche à couple Alumine-Alumine chez les patients de moins de 50 ans sont-elles la meilleure option ? Un suivi de sept à 15 ans." Revue de Chirurgie Orthopédique et Traumatologique 96, no. 6 (2010): 687–93. http://dx.doi.org/10.1016/j.rcot.2010.06.004.

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30

Taran, Martine, and Bernard Delmond. "Obtention de nouveaux squelettes diterpéniques lors de l'isomérisation d'époxydes diterpéniques sur alumine active." Canadian Journal of Chemistry 66, no. 11 (1988): 2963. http://dx.doi.org/10.1139/v88-460.

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31

Hicter, P., D. Chatain, A. Pasturel, and N. Eustathopoulos. "Approche électronique de l'adhésion thermodynamique dans les systèmes non réactifs métal SP-alumine." Journal de Chimie Physique 85 (1988): 941–45. http://dx.doi.org/10.1051/jcp/1988850941.

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32

Su, Tao, Wei-Wei Zhang, Ya-Ming Zhang, et al. "Standardization of the manufacturing procedure for Pinelliae Rhizoma Praeparatum cum Zingibere et Alumine." Journal of Ethnopharmacology 193 (December 2016): 663–69. http://dx.doi.org/10.1016/j.jep.2016.09.038.

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33

Thuy, Vu Moc, and Pierre Maitte. "Utilisation Du Permanganate Impregne Sur Alumine Pour L'Oxydation Des Alcools En Composes Carbonyles." Bulletin des Sociétés Chimiques Belges 98, no. 11 (2010): 877–78. http://dx.doi.org/10.1002/bscb.19890981110.

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34

Galusková, Dagmar, Miroslav Hnatko, Jozef Kraxner, Dušan Galusek, and Pavol Šajgalík. "Influence of Calcium Addition on the Chemical Durability of the Model Alumino-Silicate Glasses in Aqueous Solutions." Key Engineering Materials 512-515 (June 2012): 1009–14. http://dx.doi.org/10.4028/www.scientific.net/kem.512-515.1009.

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The corrosion resistance of liquid phase sintered (LPS) alumina ceramics in aqueous environments strongly depends on composition and chemistry of grain boundary glass formed during sintering. The chemical durability of model alumino-silicate glasses with various contents of CaO in aqueous solutions was therefore evaluated. Prepared glasses were corroded under hydrothermal conditions in deionized water under static conditions. The examination of surface morphology of corroded specimens after the contact with deionized water, together with the analysis of corrosion solution provided information
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35

Mansour, A., H. Balard та E. Papirer. "Étude de l’oxydation photoinduite d’alcools normaux et ramifiés chimisorbés en surface d’une alumine γ". Journal de Chimie Physique 84 (1987): 569–76. http://dx.doi.org/10.1051/jcp/1987840569.

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36

Duclos, R., R. Baddi, L. Clarisse, and J. Crampon. "Etude de la redistribution des phases dans des Matériaux Duplex Alumine-Zircone Déformés Superplastiquement." Le Journal de Physique IV 05, no. C3 (1995): C3–207—C3–213. http://dx.doi.org/10.1051/jp4:1995318.

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37

Thuy, Vu Moc. "Utilisation du Chromate Imprégné Sur Alumine Pour L'Oxydation des Dérivés Halogènes En Composés Carbonyles." Bulletin des Sociétés Chimiques Belges 102, no. 4 (2010): 299–300. http://dx.doi.org/10.1002/bscb.19931020413.

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38

Muis, Lince, Edwin Permana, and Hasrul Anwar. "Aplikasi Zeolite dari Cangkang Kelapa Sawit Pada Penyerapan Logam Kromium Heksavalen (Cr6+) Heksavalen Pada Industri Elektroplating." Jurnal Daur Lingkungan 2, no. 1 (2019): 1. http://dx.doi.org/10.33087/daurling.v2i1.16.

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Zeolite is a hydrated alumino-silicate compound having a main element which consists of alkali and alkaline-earth cations, especially Ca, K and Na, with a general formula (LmAlx Sig O2nH2O) where L is a metal. Zeolite can be synthesized from a sample containing silica and alumina. The compounds contain alkali hydroxide or organic bases. Palm kernel shells are one of the industrial wastes containing many minerals such as SiO2 58.02%; Al2O3 8.7%. The source of silica and alumina in oil palm shells is used as a base for making zeolites using the hydrothermal method in a reactor. Fine samples of p
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39

Libeyre, P. "Le polyimide-alumine : un isolant performant utilisé dans un aimant supraconducteur refroidi à l'hélium superfluide." Revue de Physique Appliquée 23, no. 11 (1988): 1761–65. http://dx.doi.org/10.1051/rphysap:0198800230110176100.

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40

Mathieu, G., J. Roue, A. Poignard, and P. Hernigou. "Métallose par contact métal/alumine sur une ostéotomie tibiale de valgisation. À propos d’un cas." Revue de Chirurgie Orthopédique et Réparatrice de l'Appareil Moteur 94, no. 3 (2008): 297–300. http://dx.doi.org/10.1016/j.rco.2007.08.002.

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41

Denape, J., Y. Guilmard, and J. A. Petit. "Seuils de dégradation d’une alumine en frottement à grande vitesse contre differents aciers au chrome." Matériaux & Techniques 79, no. 12 (1991): 32–39. http://dx.doi.org/10.1051/mattech/199179120032.

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42

Xu, Guangzheng, Hui Wang, Yingqian Deng, Keyi Xie, Weibo Zhao, and Xingchu Gong. "Research Progress on Quality Control Methods for Xiaochaihu Preparations." Separations 8, no. 11 (2021): 199. http://dx.doi.org/10.3390/separations8110199.

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Xiaochaihu (XCH) is a classic Chinese medicine formula. XCH tablet, XCH granule, XCH capsule, and XCH effervescent tablet are included in the Chinese Pharmacopoeia. In this review, the formula and quality standards of XCH preparations at home and abroad were compared. The differences in manufacturing process of XCH preparations are discussed. The progress of research on the qualitative identification, quantitative detection and fingerprint chromatogram/specific chromatogram of XCH preparations was reviewed. The characteristic components of Pinelliae Rhizoma Praeparatum Cum Zingibere Et Alumine
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43

Essig, Jérôme, Christian Nourissat, and Gérard Asencio. "Prothèse totale de hanche à couple céramique alumine : série continue à neuf ans de recul moyen." Revue de Chirurgie Orthopédique et Traumatologique 97, no. 7 (2011): S333. http://dx.doi.org/10.1016/j.rcot.2011.08.232.

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44

Boutin, P. "Arthroplastie totale de la hanche par prothèse en alumine frittée. Étude expérimentale et premières applications cliniques." Revue de Chirurgie Orthopédique et Traumatologique 100, no. 1 (2014): 14–21. http://dx.doi.org/10.1016/j.rcot.2013.12.006.

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45

Vincent, H., A. Bekka, M. Anne та J. C. Joubert. "Synthèse, structure cristalline, conductivité ionique, et propriétés magnétiques d'un nouveau ferrite de type alumine β″ Na1.3K0.6Fe10.1Zn0.9O17". Journal of Solid State Chemistry 81, № 2 (1989): 181–91. http://dx.doi.org/10.1016/0022-4596(89)90005-4.

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46

Charrier, J., and S. Taubregeas. "Influence du sens de prélèvement sur la fissuration d’un composite à matrice métallique aluminium-alumine particulaire." Revue de Métallurgie 93, no. 12 (1996): 1569–77. http://dx.doi.org/10.1051/metal/199693121569.

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47

Liu, Yu-Jie, Xue-Lin Mo, Xiao-Zhang Tang, et al. "Extraction Optimization, Characterization, and Bioactivities of Polysaccharides from Pinelliae Rhizoma Praeparatum Cum Alumine Employing Ultrasound-Assisted Extraction." Molecules 22, no. 6 (2017): 965. http://dx.doi.org/10.3390/molecules22060965.

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48

Al-Hayek, N., and M. Doré. "Oxydation des phenols par le peroxyde d'hydrogene en milieu aqueux en presence de fer supporte sur alumine." Water Research 24, no. 8 (1990): 973–82. http://dx.doi.org/10.1016/0043-1354(90)90119-q.

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49

Queenan, R. B., and P. K. Davies. "A transmission electron microscopic study of structural transitions in fast ionic conductors." Proceedings, annual meeting, Electron Microscopy Society of America 45 (August 1987): 156–57. http://dx.doi.org/10.1017/s0424820100125713.

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Na ß“-alumina (Na1.67Mg67Al10.33O17) is a non-stoichiometric sodium aluminate which exhibits fast ionic conduction of the Na+ ions in two dimensions. The Na+ ions can be exchanged with a variety of mono-, di-, and trivalent cations. The resulting exchanged materials also show high ionic conductivities.Considerable interest in the Na+-Nd3+-ß“-aluminas has been generated as a result of the recent observation of lasing in the pulsed and cw modes. A recent TEM investigation on a 100% exchanged Nd ß“-alumina sample found evidence for the intergrowth of two different structure types. Microdiffractio
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50

Kuzin, V. I., R. V. Zubashchenko, D. A. Timoshenko, and M. A. Trubitsyn. "Production of fine-ground aluminas NK-Alumina 11 and NK-Alumina 14 for low-cement refractory castables." NOVYE OGNEUPORY (NEW REFRACTORIES), no. 5 (November 26, 2021): 94–97. http://dx.doi.org/10.17073/1683-4518-2021-5-94-97.

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The characteristics of fine-ground aluminas NK-Alumina 11 and NK-Alumina 14, developed in JSC «PKF «NK», for low-cement refractory castables are presented. It is shown that the quality indicators of the developed aluminas are not inferior to foreign analogues.
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