Concealed theft-proof latex paint and preparation method thereof

A latex paint, concealed technology, applied in latex paint, heat-sensitive paint, coating, etc., can solve the problems of strong deterrence, easy aging of equipment, high false alarm rate, etc., to achieve good concealment and anti-vibration Good performance and clear imaging effect

Inactive Publication Date: 2010-04-21
GUANGDONG SANVO CHEM IND TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although new technologies such as lasers, ultrasonic waves, and microwaves have been developed successively, infrared technology has remained in the mainstream for quite a long time.
Its defects are manifested in the aspects of easy aging of equipment, short service life, high false alarm rate, and inability to prevent curve perimeters.
Although the popular needle camera is relatively invisible, it is especially suitable for military detection applications, but it is greatly affected by high magnetic radiation and nuclear radiation, and basically loses its detection function
However, the perimeter protection system of electronic fence detectors has a low false alarm rate and strong deterrent and deterrent power, that is, the police will call the police before the criminals break in through the wall. difficulty

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] According to the proportion by weight, put 33.27 parts of deionized water into the reactor, add 0.2 parts of cellulose Clariant hs100000yp2 at 300 rpm, and disperse for 25 minutes; put in the dispersant Corning Dispersant at 800 rpm 0.5 part of 5040, 0.05 part of wetting agent Corning Hydropalat 436, 0.1 part of antifoaming agent Blackburn CF. (proportion by weight: titanium dioxide: kaolin: heavy calcium carbonate = 1: 0.4: 1 mixture homogeneous composition) 25 parts, dispersed for 60 minutes; under 300 rev / min, drop into preservative Rohm and Haas ROCIMA -101 0.15 parts, defoamer Olaide OF-291 0.18 parts, acrylic emulsion Rohm and Haas AC-261 30 parts, PH regulator 0.05 parts, thickener Rohm and Haas RM-2020 0.5 parts, evenly dispersed The finished product is obtained after filtration.

Embodiment 2

[0037] According to the proportion by weight, put 30.83 parts of deionized water into the reaction kettle, add 0.18 parts of cellulose subquaron HBR250 at 400 rpm, and disperse for 30 minutes; put in the dispersant Cytec at 1000 rpm 0.8 parts of XL 260, 0.06 parts of wetting agent Haichuan PE 100, 0.15 parts of defoamer OF-291, dispersed for 15 minutes; at a speed of 1200 rpm, 15 parts of black silicon wafer powder, color 20 parts of filler (proportion by weight: titanium dioxide: kaolin: heavy calcium carbonate = 1:0.5:0.8), dispersed for 50 minutes; at 500 rpm, put the preservative Rohm and Haas 0.1 part of LXE, 0.2 part of defoamer Olaide OF-291, 32 parts of acrylic emulsion Bardford RS2806, 0.08 part of PH regulator, 0.6 part of thickener Lockwood HV-80, dispersed evenly and filtered to obtain the finished product.

Embodiment 3

[0039] According to the proportion by weight, put 27.25 parts of deionized water into the reaction kettle, add 0.15 parts of cellulose subacron HBR250 at a speed of 500 rpm, and disperse for 20 minutes; put in the dispersant Clariant at a speed of 1200 rpm SB 10 1.0 part, wetting agent Nopco 902W 0.08 part, defoamer Nopco SN-DEFOAMER 328 0.2 part, disperse for 30 minutes; adjust the speed to 1500 rpm, put in black silicon wafer powder 20 15 parts, pigments and fillers (proportioning by weight: titanium dioxide: kaolin: heavy calcium carbonate = 1: 0.6: 2) 15 parts, dispersed for 55 minutes; Common EWP 0.2 parts, defoamer Nopco SN-DEFOAMER 328 0.22 parts, acrylic emulsion Sunrise TBH-1 35 parts, PH regulator 0.1 part, thickener Nopco's SN-THICKENER 6120.8 parts, disperse evenly and filter Then get the finished product.

[0040] Main raw materials and their technical indicators:

[0041] 1. Black silicon wafer powder

[0042] Appearance: black powder

[0043] Solid content: ...

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Abstract

The invention discloses a concealed theft-proof latex paint and a preparation method thereof. The latex paint consists of deionized water, cellulose, dispersant, wetting agent, defoaming agent, black silicon wafer powder, pigment and filler, preservative, defoaming agent, polyacrylic emulsion, pH adjusting agent and thickening agent. The latex paint has the advantages of clear thermally-formed image, high sensitivity, good vibration resistance and the like, is not affected by environments (such as electromagnetic radiation, nuclear radiation, illumination and the like), and can keep better performance under the climatic conditions of fog, rain, snow and the like; the thermally-formed image has good concealed protection; the latex paint can be displayed without image in a visible light range, complements the prior theft-proof art, is directly brushed or sprayed on the wall as common latex paint, and can be used for key theft-proof sections of curve boundary; and the latex paint has the advantages of convenient construction, low cost and long theft-proof property, does not need any maintenance cost, and does not need any power supply equipment.

Description

technical field [0001] The invention relates to a concealed anti-theft latex paint applied to buildings and a preparation method thereof. technical background [0002] With the development of science and technology, the technical application of anti-theft alarm has developed from relying on wire fences to the popular infrared imaging technology in the new era. Although new technologies such as lasers, ultrasonic waves, and microwaves have been developed successively, infrared technology has remained in the mainstream for a long period of time. Its defects are manifested in the aspects of easy aging of equipment, short service life, high false alarm rate, and inability to prevent curve perimeters. Although the popular needle camera is relatively invisible and is especially suitable for military detection, it is greatly affected by high magnetic radiation and nuclear radiation, and basically loses its detection function. However, the perimeter protection system of electronic...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D133/00C09D7/12C09D5/02C09D5/26
Inventor 陈炳耀王存军陈明毅钟顺玉
Owner GUANGDONG SANVO CHEM IND TECH
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