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Observations during Al:Zr composite particle combustion in varied gas environments

机译:不同气体环境下Al:Zr复合粒子燃烧过程中的观察

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This work presents observations of Al:Zr bi-metallic composite particle combustion in multiple gas environments using particles that were synthesized by both arrested reactive ball milling and physical vapor deposition (PVD). We report on combustion and microexplosion behavior using high speed videography and emission spectroscopy in four different environments: air, Ar + O-2, Ar + N-2, and Ar. We report multiple final morphologies including thin, hollow-shelled combustion products that imply gaseous expansion of the particles during combustion at temperatures ranging from 2700 to 3500 K. Scanning electron microscopy and energy dispersive spectroscopy are performed on these post-reaction products to analyze their morphologies and elemental compositions. We also report evidence of Al burning in the vapor phase in air and in Ar + O-2. Ball milled and PVD particles microexplode extensively and repeatedly in air. In the Ar + O-2 environment, ball milled particles show no secondary or tertiary explosions, while the PVD particles rarely microexplode. In Ar + N-2 and Ar environments, the particles react to form hot intermetallic particles but show very little combustion and no microexplosions. We propose a two-phase reaction mechanism for Al:Zr in which Al vaporizes and combusts in the vapor phase, then exhibits a critical shift to a condensed phase reaction and burns similarly to pure Zr. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:这项工作提出了使用多种气体的Al:Zr双金属复合颗粒燃烧的观察结果,这些颗粒是通过停滞反应球磨和物理气相沉积(PVD)合成的。我们使用高速摄影和发射光谱在四种不同环境中报告燃烧和微爆炸行为:空气,Ar + O-2,Ar + N-2和Ar。我们报告了多种最终形态,包括薄的空心壳燃烧产物,这些产物暗示了在2700至3500 K的温度下燃烧过程中颗粒的气态膨胀。对这些后反应产物进行了扫描电子显微镜和能谱分析,以分析其形态和元素组成。我们还报告了在空气和Ar + O-2中气相燃烧Al的证据。球磨和PVD微粒在空气中广泛而反复地爆炸。在Ar + O-2环境中,球磨颗粒没有二次爆炸或三次爆炸,而PVD颗粒很少发生微爆炸。在Ar + N-2和Ar环境中,粒子反应形成热的金属间粒子,但燃烧很少,没有微爆炸。我们提出了一种Al:Zr的两相反应机理,其中Al在汽相中蒸发并燃烧,然后表现出向冷凝相反应的临界转变,并与纯Zr相似地燃烧。 (C)2018年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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