FIELD: construction.
SUBSTANCE: invention relates to construction, namely to method of erecting walls of buildings from glass. Method of continuous three-dimensional filling of monolithic walls of glass mills consists in applying the wall material to a glass melting furnace during the movement of a glass melting furnace according to the coordinates of the location of the walls in 3D space, with simultaneous loading of raw materials into the glass melting furnace, melting of raw materials in the glass melting furnace, dosed supply of molten material through the outlets of the glass melting furnace during the movement of the glass melting furnace according to coordinates in three-dimensional space with the formation of the walls of the building by pouring them, at the same time a certain path is chosen, along which the glass furnace is moved within the limits of the location of each wall of the building under construction, as well as the technical result is achieved by the fact that the device for continuous three-dimensional filling of monolithic walls of glassmass contains a glass furnace, a three-dimensional movement mechanism of the glass melting furnace and a leveling device for leveling the wall plane, which is arranged to form a wall plane after application of the wall material with a glass oven, wherein there is an infrared heater disposed to move and provide heating of the formed wall portion on the three-dimensional displacement mechanism, and the mechanism of three-dimensional movement with the furnace, the device for leveling the plane of the wall and the infrared radiator are located in the volume, which is limited by a frame closed by heat-insulating plates covered on the inside with heat-reflecting screens and having openable windows with the possibility of creating convection and temperature control in this volume.
EFFECT: increase in dimensions of the monolithic glass walls to be manufactured due to the prevention of their destruction under the influence of temperature deformation while maintaining the optimum construction speed.
5 cl, 7 dwg
Authors
Dates
2018-05-30—Published
2017-06-28—Filed