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Ablation of carbonaceous materials in a hydrogen-helium arc-jet flow

机译:氢氦弧喷射流中碳质材料的烧蚀

摘要

The stagnation-point ablation rates of a graphite, a carbon-carbon composite, and four carbon-phenolic materials are measured in an arc-jet wind tunnel with a 50% hydrogen-50% helium mixture as the test gas. Flow environments are determined through measurements of static and impact pressures, heat-transfer rates to a calorimeter, and radiation spectra, and through numerical calculation of the flow through the wind tunnel, spectra, and heat-transfer rates. The environments so determined are: impact pressure approx. 3 atm, Mach number approx. 2.1, convective heat-transfer rate approx. 14 kw/sq cm, and radiative heat-transfer rate approx. 7 kw/sq cm in the absence of ablation. Ablation rates are determined from the measured rates of mass loss and recession of the ablation specimens. Compared with the predicted ablation rates obtained by running RASLE and CMA codes, the measured rates are higher by about 15% for all tested materials.
机译:石墨,碳-碳复合材料和四种碳-酚类材料的停滞点烧蚀率是在电弧喷射风洞中以50%氢气-50%氦气混合物作为测试气体进行测量的。通过测量静压和冲击压,量热仪的传热速率和辐射光谱,以及通过风洞的流量,光谱和传热速率的数值计算,确定流动环境。如此确定的环境是:冲击压力约。 3 atm,马赫数约2.1,对流传热率约14千瓦/平方厘米,辐射传热率约。在没有消融的情况下为7千瓦/平方厘米。消融率是根据测量的质量损失率和消融标本的衰退率确定的。与通过运行RASLE和CMA代码获得的预计消融率相比,所有测试材料的测量率均高出约15%。

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