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DECOMPOSITION AND IGNITION CHARACTERISTICS OF TITANIUM HYDRIDE AT HIGH HEATING RATES

机译:高加热速率下氢化钛的分解和点火特性

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An experimental study was conducted to evaluate the decomposition, ignition, and combustion behavior of titanium hydride under high heating rate conditions. Samples were deposited on filaments, which were rapidly heated by joule heating under various conditions. Dehydrogenation experiments were conducted under vacuum conditions at heating rates of up to 4 x 10(5) K/s. The results of these experiments suggest that, at high heating rates, the onset of dehydrogenation is limited by intraparticle diffusion. The ignition and combustion behavior was studied in air and for ambient pressures ranging from atmospheric up to 7 MPa in a windowed pressure vessel. Broadband light emission was used to quantify the ignition temperature. The experiments revealed that the ignition temperature decreased linearly with increasing pressure from approximately 1700 K to 1475 K. Comparison of the dehydrogenation temperatures to the ignition temperatures over the entire pressure range suggests that the onset of the dehydrogenation process is not likely to be affected by ambient pressure. Finally, observation of the steady state combustion process by high speed imaging and post mortem analysis revealed many similar combustion characteristics to pure titanium. Particle explosions were observed and quenched particles were found to consist of titanium, nitrogen, and oxygen.
机译:进行了一项实验研究,以评估高加热速率条件下氢化钛的分解,着火和燃烧行为。将样品沉积在长丝上,并通过焦耳加热在各种条件下对其进行快速加热。脱氢实验是在真空条件下以最高4 x 10(5)K / s的加热速率进行的。这些实验的结果表明,在高加热速率下,脱氢的开始受到颗粒内扩散的限制。在开窗压力容器中,在空气中以及从大气压到7 MPa的环境压力下研究了点火和燃烧行为。宽带发光用于量化点火温度。实验表明,点火温度随压力从大约1700 K升高到1475 K呈线性下降。在整个压力范围内,脱氢温度与点火温度的比较表明,脱氢过程的开始不太可能受到环境的影响。压力。最后,通过高速成像和事后分析观察稳态燃烧过程,发现许多燃烧特性与纯钛相似。观察到颗粒爆炸,发现淬火的颗粒由钛,氮和氧组成。

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