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Influence of heat input and powder density on energetic efficiency of high power diode laser cladding of carbon steel with AISI316L powder

机译:输入热量和粉末密度对AISI316L粉末对碳钢大功率二极管激光熔覆能量效率的影响

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摘要

High power diode laser with coaxial powder injection was used to deposit single tracks ofaustenitic stainless steel on to a carbon steel plate, and the influence of heat input and powder density on energetic efficiency of the process, as well as on some geometrical features of the clad and on dilution was investigated. The energetic efficiency, calculated as the energy used to form the clad and the Heat Affected Zone, tends to increase with the powder density, while it decreases on increasing heat input. The combination of a high powder density and a low heat input is expected to optimize the energetic efficiency. In these conditions, the chemical dilution of the clad is minimized whilst aspect ratio is rather low but still acceptable. Moreover, the energy spent for the powder and the substrate can be correlated to the iron contamination of the clad.
机译:使用同轴粉末注射的高功率二极管激光器在碳钢板上沉积奥氏体不锈钢单道焊道,以及热量输入和粉末密度对过程能量效率以及包层某些几何特征的影响并研究了稀释度。能量效率(以形成包层和热影响区所用的能量计算)随着粉末密度的增加而趋于增加,而随着热量输入的增加而降低。高粉末密度和低热量输入的组合有望优化能量效率。在这些条件下,当长宽比相当低但仍然可以接受时,包覆层的化学稀释度将降至最低。而且,花费在粉末和基底上的能量可以与包层的铁污染相关。

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