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kw.\*:("Molino vibrante")

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Optimierung der Zerkleinerung von Ferrosilicium 90 in einer Reaktionsschwingmühle = Optimisation of the size reduction of ferrosilicon 90 in a reactive vibratory millMECKLENBURG, A; KUNZ, U; HOFFMANN, U et al.Chemieingenieurtechnik. 2000, Vol 72, Num 3, pp 264-268, issn 0009-286XArticle

The influence of mill size in vibration milling of dolomiteORUMWENSE, O. A; FORSSBERG, E.Aufbereitungs-Technik. 1990, Vol 31, Num 10, pp 531-538, issn 0004-783X, 8 p.Article

A method of power measurements for vibrating ball millASAI, N; TAJIRI, K; JIMBO, G et al.Kagaku kōgaku ronbunshū. 1994, Vol 20, Num 3, pp 411-417, issn 0386-216XArticle

Einfluss der Betriebsbedingungen auf die Bewegungs- und Stopvorgänge in Rohrschwingmühlen = Influence des conditions opératoires sur les processus de mouvement et de choc dans les broyeurs tubulaires vibrants = Effect of the operating conditions on motion and impact processes in vibratory tube millsKURRER, K.-E; GOCK, E.Aufbereitungs-Technik. 1986, Vol 27, Num 10, pp 546-554, issn 0004-783XArticle

Dimensionierung von Rohrschwingmühlen mit Hilfe eines maschinen-dynamischen Simulationsmodells = Sizing of tube vibration mills with the aid of simulation model based on machine dynamics = Le dimensionnement de broyeurs vibrants à l'aide d'un modèle de simulation mécanique et dynamique = El dimensionamiento de los molinos tubulares vibratorios con ayuda de un modelo de simulación mecánico-dinámicoJENG, J.-J; GOCK, E.Aufbereitungs-Technik. 1992, Vol 33, Num 7, pp 361-373, issn 0004-783X, 12 p.Article

Effect of mill diameter on the rate of initial grinding in vibration ball millsHASEGAWA, M; HONMA, T; KANDA, Y et al.Powder technology. 1990, Vol 60, Num 3, pp 259-264, issn 0032-5910, 6 p.Article

Effizienzsteigerung des Schwingmahlprozesses mit der Exzenter-Schwingmühle = Increased efficiency of the vibratory milling process with the eccentric vibratory mill = Augmentation de l'efficacité du processus de broyage à l'aide du broyeur vibrant à excentriqueGOCK, E; KURRER, K.-. E.Aufbereitungs-Technik. 1998, Vol 39, Num 3, pp 103-111, issn 0004-783X, 8 p.Article

Activation of interaction processes in the system SiC-AlNORDAN'YAN, S. S; VIKHMAN, S. V; OSMAKOV, A. S et al.Russian journal of applied chemistry. 1997, Vol 70, Num 5, pp 682-687, issn 1070-4272Article

Formation of α-Al2O3 from Al(OH)3 in the presence of seed particles and its sinterability : The role as a seed of ball abrasion powder in vibration millingYOSHIZAWA, Y.-I; SAITO, F.Nippon seramikkusu kyokai gakujutsu ronbunshi. 1996, Vol 104, Num 9, pp 867-871, issn 0914-5400Article

Zur Auslegung von Rohrschwingmühlen = Design of vibrating tube mills = Le dimensionnement de broyeurs vibrants à tube = El dimensionamiento de molinos tubulares vibratoriosLÖWE, J; REIFERT, L.Aufbereitungs-Technik. 1994, Vol 35, Num 11, pp 582-594, issn 0004-783X, 12 p.Article

The effect of NaNO3 and Ca(HCOO)2 addition on the hydration of vibratory reground cement at -6°C and +20°C = L'effet de l'addition de NaNO3 et de Ca(HCOO)2 sur l'hydratation de ciment rebroyé par vibration à -6°C et +20°CJANOTKA, I; FRTALOVA, D; STEVULA, L et al.Silikáty. 1990, Vol 34, Num 1, pp 25-39, issn 0037-5241Article

Untersuchungen an Vibrations-Mühlen mit geringen Schwingweiten = Etudes effectuées sur des broyeurs vibrants à petite amplitude d'oscillation = Studies on low amplitude vibro-energy grinding millORUMWENSE, O. A; FORSSBERG, E.Aufbereitungs-Technik. 1990, Vol 31, Num 2, pp 63-72, issn 0004-783XArticle

Optimization of the comminution of metallurgical grade (MG) silicon in a vibration millMECKLENBURG, André; KUNZ, Ulrich; HOFFMANN, Ulrich et al.Chemical engineering & technology. 2000, Vol 23, Num 10, pp 863-867, issn 0930-7516Article

Vibration milling of silicon carbide and sintered corundumPOLYAK, B. I; KRIVOKORYTOV, E. V; ROSSIKHINA, G. S et al.Glass and ceramics. 1997, Vol 54, Num 5-6, pp 182-185, issn 0361-7610Article

Changes in magnetic susceptibility of chalcopyrite induced by vibration grindingBALAZ, P; TKACOVA, K.Magnetic and electrical separation. 1992, Vol 3, Num 2, pp 113-115Article

Feinstzerkleinerung in Exzenter-Schwingmühlen = Ultra-fine grinding in eccentric vibratory millsBEENKEN, W.CFI. Ceramic forum international. 1997, Vol 74, Num 3, pp 157-161, issn 0173-9913Article

La modification de la composition chimique du charbon lors d'une action mécanique dans un milieu de solvantsKHRENKOVA, T. M; KIRDA, V. S.Himiâ tverdogo topliva. 1988, Num 3, pp 13-16, issn 0023-1177Article

Dielectric and ferroelectric properties of fine grains Pb(In1/2Nb1/2)O3-PbTiO3 ceramicsWONGSAENMAI, Supattra; XIAOLI TAN; ANANTA, Supon et al.Journal of alloys and compounds. 2008, Vol 454, Num 1-2, pp 331-339, issn 0925-8388, 9 p.Article

Preparation of perovskite nanopowders by vibro-milling techniqueKHAMMAN, Orawan; WONGMANEERUNG, Rewadee; CHAISAN, Wanwilai et al.Journal of alloys and compounds. 2008, Vol 456, Num 1-2, pp 492-497, issn 0925-8388, 6 p.Article

Effects of vibro-milling time and calcination on phase formation and particle size of lead zirconate nanopowdersKHAMMAN, Orawan; YIMNIRUN, Rattikorn; LAOSIRITAWORN, Yongyut et al.Ferroelectrics (Print). 2007, Vol 356, pp 209-214, issn 0015-0193, 6 p.Conference Paper

Fine-ground gypsum binders with mechanical-chemical activationSANITSKY, M. A; FISCHER, H.-B; SOLTYSIK, R. A et al.IBAUSIL .TagungInternationale Baustofftagung. 2000, pp 1.0259-1.0268, 2VolConference Paper

Impact energy spectra of tumbling millsRAJAMANI, R. K; SONGFACK, P; MISHRA, B. K et al.Powder technology. 2000, Vol 108, Num 2-3, pp 116-121, issn 0032-5910Article

Polymermodifizierung in einer Schwingmühle = Modification of polymers in a vibration millJANKE, G; FRENDEL, A; SCHMIDT-NAAKE, G et al.Chemieingenieurtechnik. 1999, Vol 71, Num 5, pp 496-500, issn 0009-286XArticle

Fine grinding of hard ceramic wastes in rotary-vibration millJAN, S; MARIUSZ, W. A; JACEK, K et al.Studies in environmental science. 1997, pp 591-598, issn 0166-1116, isbn 0-444-82771-4Conference Paper

Die Nocken-Gleitebene - Eine neue Mahlraumgeometrie für Rohrschwingmühlen = The impact plane - a new griding zone geometry for vibrating tube mills = La surface de glissement à cames - une nouvelle géométrie de la chambre de broyage des broyeurs vibrants à tube = Superficie de deslizamiento, de levas, - una nueva geometria del rencinto de molienda de los molinos tubulares vibratoriosLÖWE, J; SCHOLLBACH, A. E.Aufbereitungs-Technik. 1995, Vol 36, Num 6, pp 277-284, issn 0004-783XArticle

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