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Morphological control of porous structure in Al-Ti intermetallics foam manufactured by reactive precursor process

机译:反应前体工艺制备的Al-Ti金属间化合物泡沫多孔结构的形貌控制

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In this paper, a novel processing method (reactive precursor method) to manufacture high-melting point porous Al-Ti intermetallics is investigated. Especially, morphological control of porous structure is focused. In the reactive precursor process, precursors are made by blending aluminum and titanium powders. The precursor is heated to ignite an exothermic reaction (so called "combustion reaction") between the elemental powders. Pore formation is a well-known intrinsic feature of the combustion reaction, and we tried to control the pore morphology. Fundamentally, the closed-cell structure can be obtained when the maximum temperature during the reaction exceeds the melting point of the reaction product. By blending the exothermic agent powder in the precursor, the maximum temperature is increased and the reaction products are melted. The porosity is controlled by the maximum temperature. In contrast, an open-cell porous structure can be obtained when the maximum temperature is below the melting point of the reaction product. Microwave heating turned out to be an effective method to create an open cell structure. A powdery substance that does not react with other elemental powders (heat-absorbing agent powder) decreases the temperature during the reaction. Closed, open and bimodal-sized open pores have been achieved by the reactive precursor process so far.
机译:本文研究了一种新型的制备高熔点多孔Al-Ti金属间化合物的方法(反应前体方法)。特别地,关注多孔结构的形态控制。在反应性前体工艺中,前体是通过混合铝粉和钛粉制成的。加热前体以点燃元素粉末之间的放热反应(所谓的“燃烧反应”)。孔的形成是燃烧反应的众所周知的固有特征,我们试图控制孔的形态。根本上,当反应过程中的最高温度超过反应产物的熔点时,可获得闭孔结构。通过将放热剂粉末掺入前体中,最高温度升高并且反应产物熔融。孔隙率由最高温度控制。相反,当最高温度低于反应产物的熔点时,可以获得开孔多孔结构。事实证明,微波加热是创建开孔结构的有效方法。不与其他元素粉末(吸热剂粉末)反应的粉末状物质会降低反应过程中的温度。到目前为止,反应性前体工艺已实现了封闭,开放和双峰大小的开放孔。

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