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首页> 外文期刊>Lasers in engineering >The Importance of Operating Conditions and Parameters on Laser Alloying with Silicon During Surface Layer Modification of Nodular Iron
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The Importance of Operating Conditions and Parameters on Laser Alloying with Silicon During Surface Layer Modification of Nodular Iron

机译:球墨铸铁表面层改性过程中激光与硅合金化的操作条件和参数的重要性

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The main goal of this research was to characterize the influence of different cooling rates (generated by combination of laser treatment parameters) during laser alloying with silicon on the microstructure of the surface layer of nodular iron. The alloyed zones contain martensite, austenite, cementite and phases with Si such as C0.12Fe0.79Si0.09 and FeSi. The content of these phases depends on the laser heat treatment parameters. For example, in the case of the alloyed zone cooled at the rate of nearly 10(4)degrees C/s, observation revealed the presence of very-fine-crystalline microstructures characterized by high homogeneity, contrary to the zone cooled at a lower rate. The higher the cooling rate of the alloyed zone was obtained, the higher was the amount of C0.12Fe0.79Si0.09. The higher the silicon concentration in the alloyed zone, the higher the amount of FeSi. The hardness of the alloyed zone was increased along with the increasing cooling rate.
机译:这项研究的主要目的是表征在与硅激光合金化过程中,不同冷却速度(由激光处理参数的组合产生)对球墨铸铁表面层微观结构的影响。合金区包含马氏体,奥氏体,渗碳体和含Si的相,例如C0.12Fe0.79Si0.09和FeSi。这些相的含量取决于激光热处理参数。例如,在合金化区域以接近10(4)℃/ s的速度冷却的情况下,观察发现存在以高均质性为特征的非常细微的晶体结构,这与以较低速度冷却的区域相反。获得的合金区的冷却速率越高,C0.12Fe0.79Si0.09的含量越高。合金区中的硅浓度越高,FeSi的含量越高。随着冷却速率的增加,合金区的硬度也增加了。

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