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Morphology of Excess Carbides Damascus Steel

机译:大马士革钢中过量碳化物的形态

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Considered the nature of changes in the morphology of carbides of the unalloyed high-carbon alloys type Damascus steel depending on the degree of supercooling of the melt, heat treatment and plastic deformation. It is shown that iron-carbon alloy with carbon content as in white cast iron at high degrees of supercooling can crystallize as a high-carbon steel. Considered three hypotheses for the formation of the eutectic carbides in pure iron-carbon alloys. The first hypothesis is based on the thermal process of dividing plates of secondary cementite or of ledeburite on isolated single grain. The second hypothesis is based on the deformation process of crushing of secondary cementite or of ledeburite into separate fragments (the traditional view on the formation of eutectic carbides). The third hypothesis is based on the transformation of metastable ledeburite in a stable phase of eutectic carbide prismatic morphology. Found that some types of wootz, which carbon content as in of white cast irons not is contain its structure of ledeburite. It is shown that the structure of consists entirely of the eutectic carbides prismatic morphology.
机译:考虑了取决于熔体的过冷度,热处理和塑性变形的大马士革型非合金高碳合金的碳化物形态变化的性质。结果表明,在过冷度高的情况下,如白口铸铁中具有碳含量的铁-碳合金可以结晶为高碳钢。考虑了在纯铁碳合金中形成共晶碳化物的三个假设。第一个假设是基于在孤立的单个晶粒上划分次渗碳体或渗碳体的板的热过程。第二个假设是基于将次渗碳体或莱氏体压碎成独立碎片的变形过程(关于共晶碳化物形成的传统观点)。第三个假设是基于在亚共晶碳化物棱柱形形态稳定相中的亚稳态莱氏体的转变。发现某些类型的乌兹瓦特,其碳含量不如白口铸铁中所含,其结构为莱氏体。结果表明,的结构完全由共晶碳化物的棱柱形形态组成。

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