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Testing of Candidate Rigid Heatshield Materials at LHMEL for the Entry, Descent, and Landing Technology Development Project

机译:在LHMEL进行的入门,降落和着陆技术开发项目的候选刚性隔热屏材料测试

摘要

The material testing results described in this paper were part of a material development program of vendor-supplied, proposed heat shield materials. The goal of this program was to develop low density, rigid material systems with an appreciable weight savings over phenolic-impregnated carbon ablator (PICA) while improving material response performance. New technologies, such as PICA-like materials in honeycomb or materials with variable density through-the-thickness were tested. The material testing took place at the Wright-Patterson Air Force Base Laser Hardened Materials Laboratory (LHMEL) using a 10.6 micron CO2 laser operating with the test articles immersed in a nitrogen-gas environment at 1 atmosphere pressure. Test measurements included thermocouple readings of in-depth temperatures, pyrometer readings of surface temperatures, weight scale readings of mass loss, and sectioned-sample readings of char depth. Two laser exposures were applied. The first exposure was at an irradiance of 450 W/cm2 for 50 or 60 seconds to simulate an aerocapture maneuver. The second laser exposure was at an irradiance of 115 W/cm2 for 100 seconds to simulate a planetary entry. Results from Rounds 1 and 2 of these screening tests are summarized.
机译:本文所述的材料测试结果是卖方提供的,建议的隔热板材料开发计划的一部分。该计划的目标是开发低密度,刚性的材料系统,与酚醛浸渍碳烧蚀剂(PICA)相比,可显着减轻重量,同时提高材料响应性能。测试了新技术,例如蜂窝状的PICA类材料或厚度可变的厚度的材料。材料测试是在Wright-Patterson空军基地激光硬化材料实验室(LHMEL)进行的,使用的是10.6微米CO2激光器,将测试物品浸入1大气压的氮气环境中。测试测量包括深度温度的热电偶读数,表面温度的高温计读数,质量损失的重量秤读数以及炭深度的切片样品读数。施加两次激光曝光。第一次曝光是在450 W / cm2的辐照度下进行50或60秒,以模拟一次空中捕获动作。第二次激光照射在115 W / cm2的辐射下持续100秒,以模拟行星进入。总结了这些筛选测试的第1轮和第2轮的结果。

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