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(2002)
Suzdal’tsev, “Study of highly dense lithium aluminum silicate glass workpiece aqueous suspension preparation and molding,
(2003)
Rheotech - nological properties of aqueous suspensions based on crystallized lithium aluminum silicate glass
(2001)
Calculation-theoretical model of ceramic workpiece molding wall thickness during casting from aqueous slips into porous molds,
(2002)
Study of highly dense lithium aluminum silicate glass workpiece aqueous suspension preparation and mold
(2004)
Suzdal’tsev, “Statistical analysis of the production process for preparing lithium aluminum silicate glass composition objects,
(2003)
Synthesis of highly heat-resistant radioparent glass ceramic materials and development of technology for preparation of flying equipment radomes based upon them
(2003)
Waste utilization in the production of lithium aluminum silicate glass ceramic
(2004)
Statistical analysis of the production process for preparing lithium aluminum silicate glass composition objects
(2003)
Suzdal’tsev, “Synthesis of highly heat-resistant radioparent glass ceramic materials and development of technology for preparation of flying equipment radomes based upon them,
(2002)
Study of highly dense lithium aluminum silicate glass workpiece aqueous suspension preparation and molding
Results are given for a study of features of workpiece casting technology from aqueous lithium aluminum silicate glass slips. Production examples are developed reducing raw material loss to a minimum during slip preparation and workpiece molding.
Refractories and Industrial Ceramics – Springer Journals
Published: Jun 16, 2015
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