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Large-size electric heating glass batch production system based on composite micro-nano additive manufacturing

A technology of electric heating glass and additive manufacturing, which is applied in the direction of manufacturing tools, glass manufacturing equipment, glass transportation equipment, etc., can solve the problems of low efficiency of single nozzle and short production time, and achieve low cost, high degree of automation and adaptable process good sex effect

Pending Publication Date: 2022-07-05
QINGDAO TECHNOLOGICAL UNIVERSITY +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0009] In order to solve the deficiencies in the prior art, the present invention provides a system and method for mass production of large-scale electrically heated glass based on composite micro-nano additive manufacturing, which combines the single-plate electrode electric field to drive multi-nozzle jet deposition micro-nano 3D printing and precision micro-nano 3D printing. Electroforming technology realizes high-efficiency and low-cost batch manufacturing of large-scale high-performance metal grid transparent electric heating glass; the invention adopts single-plate electrode electric field-driven multi-nozzle jet deposition micro-nano 3D printing technology, multi-nozzle parallel printing, has very High printing efficiency overcomes the low efficiency of a single nozzle and can realize efficient manufacturing of large-area metal grids; the invention introduces precision micro-electroforming technology, based on the printed metal grid, through single-step body forming to achieve The large-scale high-performance composite metal grid is efficiently manufactured, which greatly improves the production efficiency; the invention precisely micro-electroforms nickel on the printed silver grid, which can not only effectively reduce square resistance, but also repair printing defects and improve It improves the consistency and stability of large-area manufacturing, improves weather resistance, and prolongs the service life; the production time required for micro-electroforming is very short (less than 10 minutes), which greatly improves production efficiency and reduces production costs. The harsh requirements of large-scale industrial production are met; through the automatic production system disclosed in the present invention, the continuous production of large-scale high-performance metal mesh transparent electric heating glass is realized; combined with the above technologies and strategies, the present invention realizes large-scale high-performance metal mesh Efficient and low-cost industrial-scale large-scale production of lattice transparent electric heating glass

Method used

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  • Large-size electric heating glass batch production system based on composite micro-nano additive manufacturing
  • Large-size electric heating glass batch production system based on composite micro-nano additive manufacturing
  • Large-size electric heating glass batch production system based on composite micro-nano additive manufacturing

Examples

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Embodiment 1

[0103] Based on the proposed composite micro-nano additive manufacturing device, the large-scale transparent electric heating glass production method includes:

[0104] (1) A large-sized glass substrate is used as the printing substrate.

[0105] (2) By modifying the surface of the substrate pretreatment, the adhesion between the printing material and the substrate surface is improved, and at the same time, the phenomenon of material block and wire breakage during the printing process is avoided.

[0106] (3) Use conductive paste with high viscosity and high silver content as printing material.

[0107] (4) Electric field driven jet deposition 3D printing with single plate electrode is used as a manufacturing technology for super-large transparent electric heating glass, and the "necking" effect of Taylor cone in electric field driving is used to achieve various periods, line widths, heights and widths. Ratio and shape of metal mesh grid; at the same time, the use of electros...

Embodiment 2

[0158] This example is a composite micro-nano additive manufacturing device for large-size transparent electrically heated glass based on single-plate electrode, multi-nozzle electric field-driven jet deposition 3D printing and micro-electroforming process, and selects conductive silver paste to print graphics on super-large glass substrates structure, the manufactured graphic structure is a grid structure, and the specific preparation steps include:

[0159] Step 1: Preprocessing of the production system.

[0160] Place the raw glass substrate on the glass substrate conveying module; check the feeding module, back pressure module, and printing module of the printing device; check the power module, ultrasonic stirring module, and liquid circulation module of the micro-electroforming device; check the cleaning and air-drying device, and the vacuum high-temperature sintering device and manipulator to ensure that the equipment of each functional unit and module enters the standby...

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Abstract

The invention provides a large-size electric heating glass batch production system based on composite micro-nano additive manufacturing. The large-size electric heating glass batch production system comprises a glass substrate conveying module; the device comprises at least one first manipulator, at least one first cleaning and air drying unit, at least one second manipulator, at least one single-plate electrode electric field driven multi-nozzle spray deposition micro-nano 3D printing device, at least one third manipulator, at least one vacuum high-temperature sintering unit and at least one fourth manipulator. The device comprises at least one first cleaning and air-drying unit, at least one second cleaning and air-drying unit, at least one fifth manipulator, at least one micro-electroforming unit, at least one sixth manipulator, at least one third cleaning and air-drying unit, at least one seventh manipulator, at least one protective film pasting unit and at least one eighth manipulator. According to the invention, a single-plate electrode electric field driving multi-nozzle spray deposition micro-nano 3D printing technology and a precise micro-electroforming technology are combined, so that the batch production of the oversized high-performance transparent electric heating glass is realized.

Description

technical field [0001] The invention relates to the technical field of transparent electric heating glass and micro-nano additive manufacturing, in particular to a composite micro-nano additive manufacturing technology combining single-plate electrode electric field-driven multi-nozzle jet deposition micro-nano 3D printing and micro-electroforming technology, so as to realize The invention relates to a low-cost, mass-manufactured production system for large-size transparent electric heating glass with high light transmittance and low square resistance, and a working method thereof. Background technique [0002] The statements in this section merely provide background related to the present disclosure and do not necessarily constitute prior art. [0003] Transparent electric heating glass has a very common application in many fields, especially large-sized transparent electric heating glass is used in defrosting, defogging and anti-icing in the fields of automobiles, home app...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C03C17/40C03C23/00B08B11/04C03B35/14C03B35/00C25D13/02
CPCC03C17/40C03C23/007C03C23/0085B08B11/04C03B35/14C03B35/00C25D13/02
Inventor 兰红波于志浩李红珂朱晓阳张厚超许权赵佳伟
Owner QINGDAO TECHNOLOGICAL UNIVERSITY