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Performance of cork and ceramic matrix composite joints for re-entry thermal protection structures

机译:软木和陶瓷基复合材料可重入防热结构的性能

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摘要

In view of spacecraft re-entry applications into planetary atmospheres, hybrid thermal protection systems based on cork and ceramic matrix composites are investigated. Joints of NORCOAT LIEGE cork with C/C SiC ceramic matrix composite were fabricated using a) high temperature commercial inorganic adhesives and b) in-situ polymerization of the cork on top of the CMC. Mechanical shear tests under ambient conditions and in liquid nitrogen are carried out. The ultimate shear strength of all the adhesive joints at room temperature varies between 0.52 and 0.78 MPa and is similar to that of the in-situ joints. At liquid nitrogen temperature the shear strength is enhanced by up to 80%, but the ultimate shear strain decreases up to 55%. The failure mode is discussed for the two types of the fabrication procedure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:考虑到航天器再进入行星大气的应用,研究了基于软木和陶瓷基复合材料的混合热保护系统。 NORCOAT LIEGE软木与C / C SiC陶瓷基复合材料的接头是使用a)高温商用无机粘合剂和b)将软木在CMC上方进行原位聚合制成的。在环境条件下和液氮中进行机械剪切试验。在室温下,所有粘合接头的极限剪切强度在0.52到0.78 MPa之间变化,与原位接头的极限剪切强度相似。在液氮温度下,剪切强度最多可提高80%,但最终剪切应变最多可降低55%。针对两种类型的制造过程讨论了故障模式。 (C)2016 Elsevier Ltd.保留所有权利。

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