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ASTM G124 Test Data For Selected Al-Si Alloys, Al-Composites, Binary Alloys and Stainless Steels

机译:ASTM G124用于选定的Al-Si合金,Al-复合材料,二元合金和不锈钢的测试数据

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Promoted-ignition/combustion testing of metallic materials in gaseous oxygen at pressures of up to 68.9 MPa (10,000 psia) has been performed at NASA's White Sands Test Facility (WSTF) since 1986. Recent work within the Department of Mechanical Engineering at The University of Queensland (UQ), Australia, prompted an extensive review of WSTF's promoted-ignition/combustion database. Previously unpublished data were found relating specifically to the present research, as well as other data which may be of interest to industry and researchers. This paper presents data on the following specific metallic systems; Aluminum-Silicon Binary Alloys (10,20,30, and 50 wt% Si), Aluminum-Silicon Carbide Metal Matrix Composites (MMCs) (10,20,30, and 55 volume% SiC) and other related materials, Binary Alloy Combinations of Al, Co, Cu, Fe, Ni, and Si, and Stainless Steels 304, 316, 347, CF8M, and 15-5 PH. A brief discussion of the data and the motivation behind the testing is included. The results indicate that the Al-Si alloys, up to 50 wt% Si, have threshold pressures similar to that of pure aluminium. Results for the Al-SiC MMCs show a significant increase in threshold pressure over that of pure aluminium. This material may provide a useable alternative to conventional oxygen system component materials. Further testing of binary alloys and stainless steels to better understand the influence of different configurations and alloying elements is warranted.
机译:自1986年以来,在美国宇航局的白沙试验设施(WSTF)中,在NASA的白色沙子测试设施(WSTF)中,在NASA的白色沙子测试设施(WSTF)中的促进 - 点火/燃烧试验已经在NASA的白色砂测试设施(WSTF)。最近在大学机械工程系中的工作澳大利亚昆士兰州(UQ)促进了对WSTF的促销点火/燃烧数据库进行了广泛的审查。找到了以前未发布的数据,具体有关本研究,以及行业和研究人员可能感兴趣的其他数据。本文介绍了以下特定金属系统的数据;铝 - 硅二元合金(10,20,30和50wt%Si),碳化铝 - 碳化硅金属基质复合材料(MMC)(10,20,30和55体积%SiC)等相关材料,二元合金组合Al,Co,Cu,Fe,Ni和Si和不锈钢304,316,347,CF8M和15-5 pH。简要讨论数据和测试背后的动机。结果表明,Al-Si合金,高达50wt%Si,具有类似于纯铝的阈值压力。 Al-SiC MMC的结果显示纯铝的阈值压力显着增加。该材料可以提供与常规氧气系统成分材料的可用替代方案。需要进一步测试二元合金和不锈钢,以更好地了解不同配置和合金元素的影响。

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