词条 | LI-900 |
释义 |
StatisticsLI-900 has a bulk density of 144.2 kg/m³ (9 lb/ft³). It was for this reason that it was called the LI-900. It is made from 99.9% pure silica glass fibres, and is 94% air by volume. An LI-900 tile can be heated to {{convert|1204|°C|K+°F|abbr=on}} and then immediately plunged into cold water and suffer no damage.[2] Black and white tiles were used on the Space Shuttle to control the temperature of the vehicle while in orbit.{{Citation needed|date=January 2011}}
There are typically 20,000 HRSI LI-900 tiles on a Space Shuttle, and 725 LRSI LI-900 tiles. ProblemsStrengthAs a result of optimizing its thermal properties, overall strength was reduced. The tile was therefore not suitable to be used in high-stress areas such as around the landing gear doors and windows. To solve this, a higher strength version of the LI-900 material was produced, with a bulk density of 352.4 kg/m³ (22 lbs/ft³), which was called the LI-2200.[2] This tile provided the strength and insulating properties, but with a considerable weight penalty. Damage reductionA research and development program was started to establish a means for substantially improving the damage resistance and micrometeorite orbital debris (MMOD) characteristics of the LI-900 shuttle baseline tile. This would result in a greatly reduced amount of damage and therefore less repair between flights.{{Citation needed|date=January 2011}} A short term solution was found by developing a new surface treatment for the tile, which took advantage of the Ames technology previously developed, and designated TUFI. A prototype of this material was produced successfully, its damage resistance was determined, and its microstructural stability was demonstrated.{{Citation needed|date=January 2011}} A longer term solution used AETB-8 as the insulation substrate. This substrate is significantly stronger than the LI-900 substrate, and is more compatible with the TUFI surface treatment.{{Citation needed|date=January 2011}} See also
References1. ^{{cite web |url=http://science.ksc.nasa.gov/shuttle/technology/sts-newsref/sts_sys.html |title=Space Shuttle Orbiter Systems, |publisher=NASA |year=2000 |accessdate=2009-12-06}} 2. ^1 2 {{cite web |url=http://www.nasa.gov/centers/kennedy/pdf/167473main_TPS-06rev.pdf |title=Orbiter Thermal Protection System, Thermal Materials |publisher=NASA |format=PDF |year=2006 |pages=3 |accessdate=2008-06-05}} Sources
3 : Space Shuttle program|Thermal protection|Lockheed Corporation |
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