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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Preparation of CoAl intermetallic compound by combustion synthesis in self-propagating mode
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Preparation of CoAl intermetallic compound by combustion synthesis in self-propagating mode

机译:自蔓延燃烧合成燃烧制备CoAl金属间化合物

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The production of cobalt aluminide (CoAl) from elemental powder compacts was conducted by self-propagating high-temperature synthesis (SHS) in this study. Effects of the initial sample density, particle size of the reactants, and initial sample temperature on the combustion characteristics, as well as on the composition and morphology of final products were studied. Unlike most of the inteimetallic reactions, the combustion on the CoAl powder compact is self-sustained upon initiation even without any preheating prior to ignition, implying that the reactions are highly exothermic. The combustion process was preceded by the fast propagation of the flame-front, followed by vigorous bulk combustion. The flame-front propagation velocity and combustion temperature were found to increase with increasing sample green density. The use of fine particles of Al (10 (mu m) also increased the flame-front velocity. In addition, the combustion products synthesized from the samples using fine Al particles were slightly shrunk or retained the original shape. However, when the coarse particles of Al (350 mesh) were used the sample exhibited a volume expansion after combustion, resulting in an increase in the sample porosity. According to the XKD analysis, combustion products obtained in this study were all made up of a single-phase composition of CoAl without the presence of any secondary phases or unreacted constituent elements. Based upon the measured data of this study, the activation energy with a value of 121.7 kJ/mol was deduced for the synthesis of CoAl by SHS.
机译:在这项研究中,通过自蔓延高温合成(SHS)进行了从元素粉末压块生产铝化钴(CoAl)。研究了初始样品密度,反应物粒度和初始样品温度对燃烧特性以及最终产物的组成和形态的影响。与大多数金属金属反应不同,CoAl粉末压块在燃烧时会自动维持燃烧,即使在点火前未进行任何预热也是如此,这意味着反应是高度放热的。燃烧过程之前是火焰前锋的快速传播,然后是剧烈的整体燃烧。发现火焰前传播速度和燃烧温度随着样品生坯密度的增加而增加。另外,使用10μm的Al微粒也提高了火焰前速,另外,使用Al微粒的试样合成的燃烧产物略微收缩或保持了原来的形状,但是,在粗大的情况下。使用X射线衍射分析(XKD)分析,本研究中获得的燃烧产物全部由单相CoAl组成。根据本研究的实测数据,推导了通过SHS合成CoAl的活化能值为121.7 kJ / mol。

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