RIGIDIZED HYBRID INSULATING NON-OXIDE THERMAL PROTECTION SYSTEM AND METHOD OF PRODUCING NON-OXIDE CERAMIC COMPOSITE FOR MAKING THE SAME

PROBLEM TO BE SOLVED: To provide a method of producing a non-oxide ceramic composite for making a rigidized hybrid insulating non-oxide (RHINO) thermal protection system for a high-speed vehicle, such as a high-speed strike weapon.SOLUTION: A thermal protection system 200 is provided for a vehicle s...

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Hauptverfasser: LEANNE L LEHMAN, THOMAS R PINNEY, WINNIE W CHEN, MERNA E SALAMA, JONATHAN D EMBLER, PATRICK J MOBERS, DAN E DRIEMEYER, VANN HENG
Format: Patent
Sprache:eng ; jpn
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Zusammenfassung:PROBLEM TO BE SOLVED: To provide a method of producing a non-oxide ceramic composite for making a rigidized hybrid insulating non-oxide (RHINO) thermal protection system for a high-speed vehicle, such as a high-speed strike weapon.SOLUTION: A thermal protection system 200 is provided for a vehicle substructure. The thermal protection system 200 comprises an outer 210 for protecting the vehicle substructure. The thermal protection system 200 further comprises an inner layer 220 for conforming to the vehicle substructure. The thermal protection system 200 also comprises an insulation layer 230 sandwiched between the outer layer 210 and the inner layer 220. The insulation layer 230 includes a porous low-density ceramic insulating material having a densified portion 232 that convers an inner surface of the outer layer 210 to strengthen adhesion.SELECTED DRAWING: Figure 2 【課題】高速打撃兵器等の高速ビークル用硬化ハイブリッド絶縁非酸化物(RHINO)断熱システムを製造するための非酸化物セラミック複合材料を生成する方法を提供する。【解決手段】ビークルの基礎構造用の断熱システム200が提供されている。断熱システム200は、ビークルの基礎構造を保護するための外層210を含む。断熱システム200は更に、ビークルの基礎構造に順応するための内層220を含む。断熱システム200はまた、外層210と内層220との間に挟まれた絶縁層230も含む。絶縁層230は、接着性を高めるために、外層210の内面を覆う高密度化部分232を有する多孔性低密度セラミック絶縁材料を含む。【選択図】図2