Title of article
Thermal coating erosion in a simulated Martian landing environment
Author/Authors
Anita Sengupta، نويسنده , , James Kulleck، نويسنده , , John Van Norman، نويسنده , , Manish Mehta، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2011
Pages
9
From page
335
To page
343
Abstract
An experimental and computational research program was implemented to quantify the thermal coating erosion that results from supersonic jets impinging on the surface of Mars during landing. Soil entrainment and acceleration in the impinging plume-flows result in high velocity particulate flux that can cause degradation of space-use thermal coatings. Computational fluid dynamics in conjunction with particle tracking simulations were used to determine the range of impact velocities expected during landing. The landing environment was simulated in a subscale particle erosion laboratory experiment with test coupons subjected to representative Martian soil media flux. Direct measurement of Mars rover white paint erosion has been obtained for a range of silica particle sizes (5–300 μm), impact velocities from 130 to 265 m/s, impingement angles from 30 to 90°, and mass loading of 10–240 mg/cm2. The post-erosion microstructure, absorptivity, and emissivity of the coating were also measured.
Keywords
Plume/ground interaction , Coating erosion , Thermal paint , Particulate erosion
Journal title
Wear
Serial Year
2011
Journal title
Wear
Record number
1091863
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