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Forming of plates and disks samples from austenitic stainless steel, manganese carbon steel and low carbon steel using laser heating

机译:使用激光加热从奥氏体不锈钢,锰碳钢和低碳钢形成板和盘样品

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The aim of research was investigate possibility and specific of laser forming of austenitic stainless steel and manganese carbon steel, make results comparison between specimens treated by pressure and laser formed specimens. In this research the mechanisms of laser forming were analyzed. Thermal gradient mechanism (TGM) is the most suitable and the most effective. The recommendation of treatment condition based on results of experimental investigation presented in this paper. The value of deformation was proportional to the number of scans and inversely proportional to the scanning speed for both carbon and stainless steel specimens. While treating carbon steel the effect of ‘post deformation’ can occur, it does can have the direction, which matches with the direction of main deformation or can be opposite. This effect can be explained by polymorphic transformation which occurs in carbon steels during heating-cooling cycle. Stability of laser formed designs was under investigation. Was found, that during laser forming of discs, to achieve uniform deformation, should use uniform heating conditions created by closed circuit heating area.
机译:研究的目的是研究奥氏体不锈钢和锰碳钢的激光成形的可能性和特殊性,对压力处理的试样和激光成形的试样进行结果比较。在这项研究中,分析了激光成形的机理。热梯度机制(TGM)是最合适,最有效的。本文根据实验研究结果提出治疗条件的建议。对于碳和不锈钢样品,变形值与扫描次数成正比,与扫描速度成反比。在处理碳素钢时,可能会发生“后变形”的影响,它的方向可能与主变形的方向匹配或相反。碳钢在加热-冷却循环中发生的多晶相变可以解释这种效果。激光成型设计的稳定性正在研究中。发现,在光盘的激光成型过程中,要实现均匀的变形,应使用由闭路加热区域产生的均匀加热条件。

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