Effect of the MoSi2-YSZ High-emissivity Coatings on the Performance of Thermal Insulation and Thermal Shock Resistance of Ablative Materials Based on Silicone Rubber
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Affiliation:

1.School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240;2.Shanghai Key Laboratory of Advanced High-temperature Materials and Precision Forming, Shanghai 200240;3.Shanghai Institute of Aerospace System Engineering, Shanghai 200240

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TQ336.9

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    Abstract:

    Silicone rubber-based radiant thermal protection coating was prepared by MoSi2-YSZ filler and characterized with ablation resistance and thermal shock resistance. Compared with traditional ablation coating, the high-emissivity coating with MoSi2-YSZ has an emissivity over 0.93 in the range of 0.3~2.5 μm, the temperature rise of the backboard of high-emissivity coating is reduced by 60% in static heating condition, while the temperature rise of the thermal shock test is reduced by 30%. High-emissivity coatings exhibit hysteresis in response to temperature due to the heat dissipation of radiation during high temperature testing, the peak temperature change rate of the backboard is reduced by 40%. In addition, the dense oxide layer formed by MoSi2 oxidation also has good protection and self-healing properties for the inner structure, which greatly increases the stability and reliability of the coating under high temperature conditions.

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History
  • Received:March 31,2021
  • Revised:February 16,2023
  • Adopted:August 17,2021
  • Online: March 29,2023
  • Published: