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Ignition and Combustion Characteristics of Pure Bulk Metals: Normal-Gravity Test Results

机译:纯大块金属的点火和燃烧特性:正重测试结果

摘要

An experimental apparatus has been designed for the study of bulk metal ignition under elevated, normal and reduced gravity environments. The present work describes the technical characteristics of the system, the analytical techniques employed, the results obtained from the ignition of a variety of metals subjected to normal gravity conditions and the first results obtained from experiments under elevated gravity. A 1000 W xenon short-arc lamp is used to irradiate the top surface of a cylindrical metal specimen 4 mm in diameter and 4 mm high in a quiescent pure-oxygen environment at 0.1 MPa. Iron, titanium, zirconium, magnesium, zinc, tin, and copper specimens are investigated. All these metals exhibit ignition and combustion behavior varying in strength and speed. Values of ignition temperatures below, above or in the range of the metal melting point are obtained from the temperature records. The emission spectra from the magnesium-oxygen gas-phase reaction reveals the dynamic evolution of the ignition event. Scanning electron microscope and x-ray spectroscopic analysis provide the sequence of oxide formation on the burning of copper samples. Preliminary results on the effect of higher-than-normal gravity levels on the ignition of titanium specimens is presented.
机译:设计了一种实验装置,用于研究在重力,正常和重力降低的环境下散装金属的着火情况。本工作描述了该系统的技术特性,所采用的分析技术,在正常重力条件下点火各种金属所获得的结果以及在重力升高下进行实验所获得的第一个结果。使用1000 W氙气短弧灯在静态纯氧环境中以0.1 MPa照射直径为4 mm,高度为4 mm的圆柱形金属样品的顶面。研究了铁,钛,锆,镁,锌,锡和铜样品。所有这些金属都表现出强度和速度不同的着火和燃烧行为。从温度记录获得低于,高于或在金属熔点范围内的着火温度值。镁-氧气相反应的发射光谱揭示了点火事件的动态演变。扫描电子显微镜和X射线光谱分析提供了燃烧铜样品时形成氧化物的顺序。给出了高于正常重力水平对钛试样着火影响的初步结果。

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