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Theoretical and experimental study on laser surface hardening by repetitive laser pulses

机译:重复激光脉冲强化激光表面的理论和实验研究

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摘要

An analytical solution for the temperature variation in a semi-infinite workpiece heated by repetitive laser pulses has been derived and the effects of various process parameters, viz. laser power, beam diameter, scan speed, pulse duration, repetition frequency and duty cycle on the surface transformation hardening have been investigated. The study shows that the soaking time of the top surface layer at a temperature above the phase transformation temperature, on which the homogeneity of microstructure and the depth of hardening depend, can be increased by repetitive laser pulse heating in comparison to continuous wave laser heating. The depth of hardness increases with the number of incident laser pulses at low frequencies in the range of Hz. This has been demonstrated by comparing the surface hardness characteristics of AISI 1055 steel specimens resulted by the continuous wave and repetitive laser pulse hardening processes.
机译:已经得出了通过重复激光脉冲加热的半无限工件中温度变化的解析解,并且得出了各种工艺参数的影响。研究了激光功率,光束直径,扫描速度,脉冲持续时间,重复频率和表面转变硬化的占空比。研究表明,与连续波激光加热相比,重复激光脉冲加热可以增加相变温度以上的温度下表面层的浸泡时间,而相变温度取决于相变温度和淬火深度。硬度的深度随着Hz范围内低频入射激光脉冲的数量而增加。通过比较由连续波和重复激光脉冲硬化过程产生的AISI 1055钢试样的表面硬度特性,可以证明这一点。

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