Luminescent coating
A technology of luminescent paint and electroluminescence, which is applied in the direction of luminescent paint and coating to achieve the effect of continuous and uninterrupted light.
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Embodiment 1
[0015] Embodiment 1 Luminous paint
[0016] The luminescent paint of the present invention is mainly composed of the following raw materials: 100g of piezoelectric ceramic particles, 50g of conductive glue, 100g of electroluminescent powder, and 20g of fluorescent powder. The piezoelectric ceramic particles are polarized. The particle size of piezoelectric ceramic particles is 70-150 microns. The electroluminescent powder is obtained by the following steps: taking ZnS as a matrix material, and performing copper-doped coating treatment, so that a high-conductivity layer containing Cu2S is formed on the surface of the luminous body particles.
Embodiment 2
[0017] Embodiment 2 Luminous paint
[0018] The luminescent paint of the present invention is mainly composed of the following raw materials: 150g of piezoelectric ceramic particles, 50g of conductive glue, 150g of electroluminescent powder, and 30g of fluorescent powder, wherein the piezoelectric ceramic particles have been polarized. The particle size of piezoelectric ceramic particles is 80-100 microns. The electroluminescent powder is obtained by the following steps: taking ZnS as a matrix material, and performing copper-doped coating treatment, so that a high-conductivity layer containing Cu2S is formed on the surface of the luminous body particles.
Embodiment 3
[0019] Embodiment 3 Luminous paint
[0020] The luminescent paint of the present invention is mainly composed of the following raw materials: 200g of piezoelectric ceramic particles, 80g of conductive glue, 200g of electroluminescent powder, and 40g of phosphor powder, wherein the piezoelectric ceramic particles have undergone polarization treatment. The electroluminescent powder is obtained by the following steps: taking ZnS as a matrix material, and performing copper-doped coating treatment, so that a high-conductivity layer containing Cu2S is formed on the surface of the luminous body particles.
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Abstract
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