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Ablative Heat Shield

Aerospace Engineering

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An ablative heat shield protects a spacecraft during atmospheric reentry by allowing its outer surface to char, melt, and vaporize under the extreme heat of reentry, a process called ablation that carries heat away from the vehicle and creates a cooler boundary layer of expelled gas that blocks further convective, catalytic, and radiative heating from reaching the structure beneath. The rocket pioneer Robert Goddard proposed a layered, poorly heat-conductive shielding concept as early as 1920, but practical ablative shield development began in the 1950s alongside ballistic missile research; the engineers H. Julian Allen and A. J. Eggers Jr. published findings in 1958 showing, counterintuitively, that a blunt reentry shape produces less total heat load than a streamlined one, a discovery that reshaped reentry vehicle design. Materials such as carbon phenolic, AVCOAT, and various PICA formulations have since been developed for different heat-flux conditions, and SpaceX's PICA-X variant, developed between 2006 and 2010, was reported to cost roughly a tenth as much to manufacture as the original NASA formulations.

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