LI-900 silica tiles

E684171

LI-900 silica tiles are ultra-lightweight, heat-resistant ceramic tiles used to protect the Space Shuttle from the extreme temperatures of atmospheric reentry.

All labels observed (1)

Label Occurrences
LI-900 silica tiles canonical 1

How this entity was disambiguated

Statements (48)

Predicate Object
instanceOf ceramic tile ⓘ
reusable surface insulation ⓘ
thermal protection material ⓘ
appliedTo Space Shuttle leading edges vicinity ⓘ
Space Shuttle lower surface ⓘ
Space Shuttle nose area ⓘ
attachmentFeature strain isolation pad between tile and structure ⓘ
attachmentMethod bonded to Shuttle skin with silicone adhesive ⓘ
category aerospace thermal protection system ⓘ
coating black borosilicate glass coating ⓘ
coatingFunction protect silica substrate from moisture ⓘ
radiate heat away ⓘ
color black on coated surface ⓘ
white on uncoated silica core ⓘ
compositionByWeight approximately 10 percent silica fiber ⓘ
approximately 90 percent air ⓘ
density about 144 kilograms per cubic meter ⓘ
about 9 pounds per cubic foot ⓘ
developedAt NASA Ames Research Center ⓘ
developedBy NASA ⓘ
developedForProgram Space Shuttle program ⓘ
era 1970s ⓘ
function insulate against aerodynamic heating ⓘ
protect Space Shuttle aluminum structure during reentry ⓘ
manufacturingProcess sintered silica fiber block machining ⓘ
surface glazing with glass coating ⓘ
massPerTile typically less than 1 kilogram ⓘ
material amorphous silica ⓘ
notableFeature can be held by edges while red-hot without burning hand ⓘ
operatedIn low Earth orbit missions ⓘ
property brittle ⓘ
high thermal shock resistance ⓘ
highly porous ⓘ
low thermal conductivity ⓘ
ultra-lightweight ⓘ
protects Space Shuttle aluminum airframe ⓘ
relatedTo FRCI-12 tiles ⓘ
LI-2200 silica tiles ⓘ
replacedPartiallyBy FRCI-12 tiles on later Shuttle flights ⓘ
reusability reusable for multiple missions ⓘ
shape mostly square or rectangular blocks ⓘ
thermalConductivity very low ⓘ
usedFor thermal protection during atmospheric reentry ⓘ
usedOn NASA Space Shuttle orbiter ⓘ
vulnerability susceptible to impact damage ⓘ
susceptible to moisture absorption if coating is damaged ⓘ
withstandTemperature up to about 1260 degrees Celsius ⓘ
up to about 2300 degrees Fahrenheit ⓘ

How these facts were elicited

Referenced by (1)

Full triples — surface form annotated when it differs from this entity's canonical label.