HUT63823A - Process for producing chemical-ceramic bonded, refractory stamping mass bgased on mullite zircon silicate
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Process for producing chemical-ceramic bonded, refractory stamping mass bgased on mullite zircon silicate
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Publication number
HUT63823A
HUT63823AHU10091AHU10091AHUT63823AHU T63823 AHUT63823 AHU T63823AHU 10091 AHU10091 AHU 10091AHU 10091 AHU10091 AHU 10091AHU T63823 AHUT63823 AHU T63823A
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Application filed by Geza NagyfiledCriticalGeza Nagy
Priority to HU10091ApriorityCriticalpatent/HU209120B/en
Publication of HU910100D0publicationCriticalpatent/HU910100D0/en
Publication of HUT63823ApublicationCriticalpatent/HUT63823A/en
Publication of HU209120BpublicationCriticalpatent/HU209120B/en
Fireproof mullite-zirconiumsilicate based gap filling tamping agent is improved by homogeneous admixt. of fine particle size Al(OH)3 to dry chemical components, that would otherwise weaken the fire resistance of the bonding phase. By this admixt. a satisfactory distribution of chemical agents is obtd. and close contact with the fine particle size and most fire resistant component of the system, aluminium-oxide, is achieved. - Prepn. of monolithic furnace brings resistance to high temps. and corrosive melts is accomplished.
HU10091A1991-01-151991-01-15Process for producing chemical-ceramic bonded, refractory stamping mass bgased on mullite zircon silicate
HU209120B
(en)
Process for Thermal Insulation for the Surface of a Molten Mass of Steel and Thermally Insulating Board Used as a Cover Plate for Carrying Out the Process
Practical Application of Thermochemical Calculations to the Study of Refractory Corrosion in Iron and Steelmaking Equipment.(MITS BISI: 28721)[Previously Titled: Thermochemical Calculations Applied to the Study of Refractory Corrosion in Iron and Steelmaking Applications.]