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Method for gelatinizing coloring material in powder on cloth, and cloth equipment

A coloring material and powder state technology, which is applied in the field of powder coloring material gluing cloth method and cloth equipment field, can solve the problems of low production efficiency, pattern deformation, screen blockage, etc., improve production efficiency and quality, and prevent pattern distortion , fine pattern effect

Inactive Publication Date: 2009-07-01
KEDA INDUSTRIAL GROUP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0009] The purpose of the present invention is to provide a powdery colorant gluing distribution method and distribution equipment, which can effectively solve the technical defects such as screen blockage, pattern deformation and low production efficiency in the existing dry printing

Method used

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  • Method for gelatinizing coloring material in powder on cloth, and cloth equipment
  • Method for gelatinizing coloring material in powder on cloth, and cloth equipment
  • Method for gelatinizing coloring material in powder on cloth, and cloth equipment

Examples

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Effect test

no. 1 example

[0078] Figure 7 It is a structural schematic diagram of the first embodiment of the present invention. The dot-matrix gluing device 1' of this embodiment is composed of 5 to 15 nozzle groups 11 arranged in a certain layout, and each nozzle group 11 is composed of 3 to 6 nozzles 10 arranged in a certain layout, and each nozzle 10 is composed of The programming controller is responsible for spraying the colloid on the surface of the ceramic tile 5 and forming an overall dot-matrix sprinkler head layout above the conveying platform 4 . Specifically, as Figure 7 As shown, the dot-matrix gluing device 1' is composed of 9 nozzle groups 11 arranged in sequence along the vertical direction of the tile conveying direction A, and each nozzle group 11 is composed of 4 nozzles 10 arranged in sequence along the tile conveying direction A, A 36-dot matrix dot-matrix nozzle layout is formed. Each shower head 10 is connected with a programmable controller, and the programmable controller...

no. 2 example

[0081] Figure 12It is a structural schematic diagram of the second embodiment of the present invention. The dot-matrix gluing device in this embodiment includes one or more horizontal shafts 12 and one or more nozzle groups 11, the horizontal shafts 12 are set to be perpendicular to the tile conveying direction A, and the nozzle groups 11 are connected to the horizontal shaft 12 by transmission. The nozzle group 11 can move left and right along the direction B on the horizontal axis 12. Whether it moves or not, the moving speed and the moving time are controlled by the programmable controller. Each nozzle 10 in the nozzle group 11 is also controlled by the programmable controller. Colloid is sprayed on the surface, and a horizontally moving dot-matrix nozzle layout is formed above the conveying platform 4 . This embodiment is basically the same as the first embodiment in terms of nozzle group, nozzle structure, function and working process, etc. The difference lies in the wa...

no. 3 example

[0083] Figure 13 It is a structural schematic diagram of the third embodiment of the present invention. The dot-matrix gluing device of this embodiment includes one or more longitudinal axes 13 and one or more nozzle groups 11, the longitudinal axes 13 are arranged parallel to the tile conveying direction A, and the nozzle groups 11 are connected to the longitudinal axis 13 by transmission. The shower head group 11 can move back and forth along the direction A on the longitudinal axis 13, and whether it moves or not, the moving speed and the moving time are controlled by the programmable controller, and each shower head 10 in the shower head group 11 is also controlled by the programmable controller. Colloid is sprayed on the surface, and a vertically moving dot-matrix nozzle layout is formed above the conveying platform 4 . This embodiment is basically the same as the technical solution of the first embodiment in terms of nozzle group, nozzle structure, function and working...

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Abstract

The present invention relates to a method for distributing powder-state color material by gluing and distributing equipment. The distributing method comprises the steps of: when the conveying platform drives the tiles to move, a gluing device applies colloid on the surface of the tiles to form a gluing area with a predetermined shape; The powder distributing device brushes the powder color on the surface of the tiles, so that the surface of the tiles is covered by the powder color; the powder suction device absorbs the powder color outside the glue-coated area of ​​the tile surface to form a color area with a set shape . The distributing equipment includes a gluing device that applies colloid on the surface of the tile to form a gluing area, a powder distributing device that brushes the powder color on the surface of the tile, and sucks the powder color outside the gluing area away from the tile. Surface powder suction device. The invention adopts the technical scheme of fixing the powder color material by the glue layer, can realize monochromatic and overlay cloth, improves production efficiency and product quality, and reduces production cost.

Description

technical field [0001] The invention relates to a ceramic tile production method and equipment, in particular to a powder-state coloring material gluing distributing method and distributing equipment. Background technique [0002] In the production process of wall and floor tiles, especially ceramic tiles, in order to make the appearance of the tiles beautiful, various patterns or patterns are usually printed on the surface of the tiles to achieve a good decorative effect. At present, ceramic tile printing mainly adopts two methods of dry printing and wet printing, each of which is divided into lithographic printing and roller printing, and the liquid dyes or powdery colorants of different colors are hollowed out on the screen through the pressure of the scraper. The mesh is transferred to the tile to create the same pattern as the design tile. [0003] Wet printing is a relatively traditional printing process. The screen is made into a lithographic screen or a roller scree...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B41/81
Inventor 武桢
Owner KEDA INDUSTRIAL GROUP CO LTD