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A Comparative Study of High-Power Diode Laser and CO_2 Laser Surface Hardening of AISI 1045 Steel

机译:AISI 1045钢的高功率二极管激光器和CO_2激光器表面硬化的比较研究

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摘要

The study investigates laser surface hardening in the AISI 1045 steel using two different types of industrial laser: a high-power diode laser (HPDL) and a CO_2 laser, respectively. The effect of process parameters such as beam power, travel speed on structure, case depth, and microhardness was examined. In most cases, a heat-affected zone (HAZ) formed below the surface; a substantial increase in surface hardness was achieved. In addition, big differences were found between the hardened specimens after HPDL surface hardening and CO_2 laser surface hardening. For HPDL, depths of the HAZ were almost equal in total HAZ o, without surface melting. For CO_2 laser, the depths changed a lot in the HAZ, with surface melting in the center. To better understand the difference of laser hardening results when use these two types of laser, numerical (ANSYS) analysis of the heat conduction involved in the process was also studied. For HPDL method, a rectangular beam spot and uniform energy distribution across the spot were assumed, while for CO_2 laser, a circular beam spot and Gaussian energy distribution were assumed. The results showed that the energy distribution variety altered the thermal cycles of the HAZ dramatically. The rectangular HPDL laser beam spot with uniform energy distribution is much more feasible for laser surface hardening.
机译:这项研究使用两种不同类型的工业激光器研究AISI 1045钢中的激光器表面硬化:分别是高功率二极管激光器(HPDL)和CO_2激光器。检查了工艺参数(例如光束功率,行进速度)对结构,表面深度和显微硬度的影响。在大多数情况下,表面下方会形成一个热影响区(HAZ)。表面硬度大大提高。此外,在HPDL表面硬化和CO_2激光表面硬化后,硬化试样之间存在很大差异。对于HPDL,HAZ的深度与总HAZ o几乎相等,而没有表面熔化。对于CO_2激光,热影响区的深度变化很大,中心处于表面熔化状态。为了更好地理解使用这两种类型的激光器时激光硬化结果的差异,还研究了过程中涉及的热传导的数值分析(ANSYS)。对于HPDL方法,假设矩形束斑和跨该点的能量均匀分布,而对于CO_2激光器,假定圆形束斑和高斯能量分布。结果表明,能量分布的变化极大地改变了热影响区的热循环。具有均匀能量分布的矩形HPDL激光束斑对于激光表面硬化更为可行。

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