FIELD: machine building.
SUBSTANCE: invention relates to mechanical engineering and can be used in automatic lines for the production of a grid of rods. Automatic mesh production line comprises devices with longitudinal and transverse rods, a connection device for longitudinal and transverse rods, made in the form of a device for producing a melt of thermoplastic material, a mold, mold closing mechanism, a mesh moving mechanism, a forced cooling and / or heating system, and a stacking or winding mechanism in the form of a drum with a length measuring mesh cutter. System of forced cooling and / or heating is located in the area of the loading hopper for filling the material and in the zone of the upper and lower half-molds. Movement mechanism of the grid performs reciprocating movements and works continuously in cycles and periods and allows you not to stop the grid during the closing of the half-molds.
EFFECT: increase in the productivity of the automatic line for the fabrication of a mesh with a large range of rod diameters is achieved, while at the same time increasing the strength of the connection of the intersections of the longitudinal and transverse rods.
11 cl, 7 dwg
Title | Year | Author | Number |
---|---|---|---|
EXTRUSION-INFLATION MOULDING MACHINE | 2001 |
|
RU2186683C1 |
METHOD AND DEVICE FOR MOULDING ARTICLES WITH COMPACTION | 0 |
|
SU1831427A3 |
METHOD OF OBTAINING THICK-WALLED CASTINGS FROM POLYMERIC MATERIAL | 2014 |
|
RU2556921C1 |
DEVICE FOR CLOSURE OF DIE MOULD | 2008 |
|
RU2390413C1 |
AUTOMATIC LINE FOR PRODUCTION OF MESH OF RODS | 2013 |
|
RU2548358C2 |
METHOD OF MAKING MULTILAYER LONG COMPLEX-SHAPED ARTICLES FROM COMPOSITE MATERIALS AND DEVICE THEREFOR | 2014 |
|
RU2577577C1 |
AUTOMATIC PET-PACKAGE BLOWER | 2011 |
|
RU2458793C2 |
TURNTABLE-TYPE AUTOMATIC MOUNLDING MACHINE | 0 |
|
SU1031634A1 |
METHOD AND APPARATUS FOR INCREASING STRENGTH OF CAST FASTENED POROUS LOWER PART OF SHOE | 2002 |
|
RU2218850C2 |
DEVICE FOR MANUFACTURE OF ARTICLES BY INFLATION | 2002 |
|
RU2213660C1 |
Authors
Dates
2018-09-25—Published
2017-11-23—Filed