Composite coating with high temperature resistance and high bonding strength and low infrared emissivity and preparation method thereof

A low-infrared emission, composite coating technology, applied in coatings, chemical instruments and methods, metal material coating technology, etc., can solve the problems of coating emissivity increase, high temperature shedding, material performance instability, etc., and achieve high temperature Improvement of stability and emissivity, prevention of high-temperature oxidation behavior, and improvement of shedding phenomenon

Active Publication Date: 2016-01-13
NAT UNIV OF DEFENSE TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Low-emissivity functional materials include lead oxide coating, bismuth oxide coating, Ni / Au coating prepared by magnetron sputtering, high-quality tin-doped indium oxide (ITO) coating and aluminum-doped zinc oxide (AZO) coating, etc. Lower emissivity can be obtained in normal temperature environment, but there are still defects such as material diffusion between coatings and unstable material properties in high temperature environment, which leads to the increase of coating emissivity in high temperature environment
However, low emissivity prepared by high temperature resistant binders (such as phosphate glass, gallate glass, fluoride glass, etc.), fillers (such as Al, Au, Ag, etc.) and additives (such as ZnS, ZnSe, GaAs, Ge, etc.) Due to the thermal mismatch of the functional coating, it is easy to cause poor adhesion of the coating, high temperature peeling off, etc.

Method used

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  • Composite coating with high temperature resistance and high bonding strength and low infrared emissivity and preparation method thereof
  • Composite coating with high temperature resistance and high bonding strength and low infrared emissivity and preparation method thereof
  • Composite coating with high temperature resistance and high bonding strength and low infrared emissivity and preparation method thereof

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Effect test

Embodiment 1

[0036] a kind of like figure 1 with figure 2 The high-temperature-resistant, high-bonding strength low-infrared emissivity composite coating for alloy coating shown in the present invention is suitable for aerospace K424 alloys, and the low-infrared emissivity composite coating is It is a three-layer stacked structure, which sequentially includes a diffusion barrier layer 2, a low-emissivity functional layer 3 and a protective film 4 from the inside to the outside, wherein the diffusion barrier layer 2 is ZnO-Al 2 o 3 -SiO 2 Glass-ceramic coating, the low-emissivity functional layer 3 is a glass-ceramic coating containing Au powder, and the protective film 4 is a MgO thin film. The low infrared emissivity composite coating is coated on the base material 1 made of K424 superalloy plate. In the low infrared emissivity composite coating of the present embodiment, ZnO-Al 2 o 3 -SiO 2 ZnO, Al in glass-ceramic coating 2 o 3 and SiO 2 The mass proportioning is 35:11:44. T...

Embodiment 2

[0054] a kind of like figure 1 The high-temperature-resistant, high-bonding strength low-infrared emissivity composite coating for alloy coating shown in the present invention is suitable for aerospace K424 alloys, and the low-infrared emissivity composite coating is It is a three-layer stacked structure, which sequentially includes a diffusion barrier layer 2, a low-emissivity functional layer 3 and a protective film 4 from the inside to the outside, wherein the diffusion barrier layer 2 is ZnO-Al 2 o 3 -SiO 2 Glass-ceramic coating, the low-emissivity functional layer 3 is a glass-ceramic coating containing Au powder, and the protective film 4 is a MgO thin film. The low infrared emissivity composite coating is coated on the base material 1 made of K424 superalloy plate. In the low infrared emissivity composite coating of the present embodiment, ZnO-Al 2 o 3 -SiO 2 ZnO, Al in glass-ceramic coating 2 o 3 and SiO 2 The mass proportioning is 31:15:44. The mass fraction...

Embodiment 3

[0072] a kind of like figure 1 The high-temperature-resistant, high-bonding strength low-infrared emissivity composite coating for alloy coating shown in the present invention is suitable for aerospace K424 alloys, and the low-infrared emissivity composite coating is It is a three-layer stacked structure, which sequentially includes a diffusion barrier layer 2, a low-emissivity functional layer 3 and a protective film 4 from the inside to the outside, wherein the diffusion barrier layer 2 is ZnO-Al 2 o 3 -SiO 2 Glass-ceramic coating, the low-emissivity functional layer 3 is a glass-ceramic coating containing Au powder, and the protective film 4 is a MgO thin film. The low infrared emissivity composite coating is coated on the base material 1 made of K424 superalloy plate. In the low infrared emissivity composite coating of the present embodiment, ZnO-Al 2 o 3 -SiO 2 ZnO, Al in glass-ceramic coating 2 o 3 and SiO 2 The mass proportioning is 35:15:40. The mass fraction...

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Abstract

The invention discloses a high-temperature-resisting, high-bonding-strength and low-infrared-emissivity composite coating and a preparation method thereof. The composite coating comprises a diffusion obstruction layer composed of a devitrified glass coating, a low-emissivity functional layer composed of a devitrified glass containing Au powder, and a MgO protecting film in sequence from the inner layer to the outer layer; during preparation, the raw material powder is uniformly mixed, is smelted at high temperature, is quenched, is subjected to ball milling, and is baked to obtain glass dust; organic carrier and the glass dust are mixed to obtain the diffusion obstruction layer coating; the organic carrier, the Au powder and the glass dust, and conducting ball milling are mixed to obtain low-emissivity functional layer coating after ball billing is carried out; the diffusion obstruction layer coating is brushed on a substrate, and then baking and sintering are carried out to obtain the diffusion obstruction layer; the low-emissivity functional layer coating is brushed onto the diffusion obstruction layer, and baking and sintering are carried out to obtain the low-emissivity functional layer; the magnetic control sputtering method is adopted to prepare the MgO film on the low-emissivity functional layer to complete the preparation of the compound coating. The technical process of the composite coating is simple, the technology efficiency is high, and the product performance is good.

Description

technical field [0001] The invention belongs to the technical field of functional coating materials, and in particular relates to a high-temperature-resistant low-infrared emissivity coating with a multilayer superposition structure and a preparation method thereof. Background technique [0002] The infrared detector collects the 3μm-5μm and 8μm-14μm band infrared signals of the target, and then uses the difference in infrared radiation energy between the target and the background to identify the target through imaging. According to the calculation formula of infrared radiation energy difference: In the formula, ε 目 is the infrared emissivity of the target, ε 背 is the infrared emissivity of the background, T 目 is the surface temperature of the target, T 背 As the background temperature, it can be seen that reducing the surface temperature of the target can make the radiation intensity of the target and the background similar, and coating low-emissivity functional coating...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B32B15/04B32B9/04B22F7/04C23C14/08C23C14/35
Inventor 李俊生程海峰周永江刘海韬童思超
Owner NAT UNIV OF DEFENSE TECH
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