Nano light-guiding particles for light-guiding ink
A technology of light-guiding particles and light-guiding inks, which can be used in inks, applications, household appliances, etc., can solve the problems of poor dispersion and compatibility, and achieve good heat resistance and dispersion, excellent optical diffusion effects, and unique comfort. The effect of slippery feel
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2017-01-04
Abstract
Description
technical field
[0001] The invention belongs to the technical field of light-guiding ink preparation, and in particular relates to nano light-guiding particles for light-guiding ink. Background technique
[0002] The light guide plate is an important part of the backlight module in the liquid crystal panel. When using the light guide ink, the ink is printed into reflective points through screen printing technology, so that the point light source is converted into a surface light source, so that the entire light guide plate can emit light uniformly. Effect. The composition of the light guide ink will directly affect the quality of the light guide point, and the quality of the light guide point will directly affect the brightness uniformity of the light guide plate.
[0003] The main problems of the currently used light-guiding inks are that the resulting light-guiding plates have low luminance and poor luminous uniformity, and at the same time, the solvents contained in the ...
Examples
Embodiment 1
[0017] Under the action of ultrasonic stirring, take a 250 ml Erlenmeyer flask, add 5 grams of absolute ethanol, 8 grams of stearic acid, 8 grams of sodium hexametaphosphate, and 70 grams of titanium dioxide, and stir for 15 minutes at a stirring speed of 1500 rpm; continue to add honey 9 grams of wax was stirred for 15 minutes, and the average particle diameter of titanium dioxide was 30 nanometers. Finally, it is spray-dried and air-jet pulverized by an air-flow superfine powder mill.
Embodiment 2
[0019] Under the effect of ultrasonic stirring, take a 250 ml Erlenmeyer flask, add 10 grams of absolute ethanol, 5 grams of stearic acid, 10 grams of sodium tripolyphosphate, and 60 grams of zinc oxide, stir for 20 minutes, and the stirring speed is 1800 rpm; continue to add 15 grams of organic wax was stirred for 20 minutes, and the average particle diameter of zinc oxide was 40 nanometers. Finally, it is spray-dried and air-jet pulverized by an air-flow superfine powder mill.
Embodiment 3
[0021] Under the action of ultrasonic stirring, take a 250 ml Erlenmeyer flask, add 8 grams of absolute ethanol, 8 grams of stearic acid, 5 grams of sodium polyacrylate, and 72 grams of aluminum oxide, stir for 30 minutes, and the stirring speed is 2000 rpm; 5 grams of tetrafluoroethylene micropowder was stirred for 25 minutes, and the average particle diameter of aluminum oxide was 50 nanometers. Finally, it is spray-dried and air-jet pulverized by an air-flow superfine powder mill.