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Processes of conversion of a hot metal particle into aerogel through clusters

机译:通过团簇将铁水颗粒转化为气凝胶的过程

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Processes are considered for conversion into a fractal structure of a hot metal micron-size particle that is located in a buffer gas or a gas flow and is heated by an external electric or electromagnetic source or by a plasma. The parameter of this heating is the particle temperature, which is the same in the entire particle volume because of its small size and high conductivity. Three processes determine the particle heat balance: particle radiation, evaporation of metal atoms from the particle surface, and heat transport to the surrounding gas due to its thermal conductivity. The particle heat balance is analyzed based on these processes, which are analogous to those for bulk metals with the small particle size, and its high temperature taken into account. Outside the particle, where the gas temperature is lower than on its surface, the formed metal vapor in a buffer gas flow is converted into clusters. Clusters grow as a result of coagulation until they become liquid, and then clusters form fractal aggregates if they are removed form the gas flow. Subsequently, associations of fractal aggregates join into a fractal structure. The rate of this process increases in medium electric fields, and the formed fractal structure has features of aerogels and fractal fibers. As a result of a chain of the above processes, a porous metal film may be manufactured for use as a filter or catalyst for gas flows.
机译:考虑将过程转换为位于缓冲气体或气流中并由外部电源或电磁源或等离子体加热的热金属微米级颗粒的分形结构。加热的参数是颗粒温度,由于其小尺寸和高电导率,因此在整个颗粒体积中是相同的。三种过程决定了颗粒的热平衡:颗粒的辐射,金属原子从颗粒表面的蒸发以及由于其导热性而传热到周围的气体中。基于这些过程来分析颗粒热平衡,这些过程类似于具有小粒径且考虑到其高温的大块金属的过程。在气体温度低于其表面温度的颗粒外部,在缓冲气流中形成的金属蒸气转化为团簇。团簇由于凝结而生长,直到变成液体,然后如果团簇从气流中除去,则团簇形成分形聚集体。随后,分形聚集体的关联加入了分形结构。该过程的速率在中等电场中增加,并且形成的分形结构具有气凝胶和分形纤维的特征。作为上述过程的链结的结果,可以制造多孔金属膜以用作气流的过滤器或催化剂。

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