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Surface Modifications Of Aisi 1045 Steel Created By High Intensity 1064 And 532 Nm Picosecond Nd:yag Laser Pulses

机译:高强度1064和532 Nm皮秒Nd:yag激光脉冲产生的Aisi 1045钢的表面改性

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摘要

Interaction of Nd:YAG laser, operating at 1064 or 532 nm wavelength and a pulse duration of 40 ps, with AISI 1045 steel was studied. Surface damage thresholds were estimated to be 0.30 and 0.16 J/cm~2 at the wavelengths of 1064 and 532 nm, respectively. The steel surface modification was studied at the laser energy density of 10.3 J/cm~2 (at 1064 nm) and 5.4 J/cm~2 (at 532 nm). The energy absorbed from Nd:YAG laser beam is partially converted to thermal energy, which generates a series of effects, such as melting, vaporization of the molten material, shock waves, etc. The following AISI 1045 steel surface morphological changes and processes were observed: (ⅰ) both laser wavelengths cause damage of the steel in the central zone of irradiated area; (ⅱ) appearance of a hydrodynamic feature in the form of resolidified droplets of the material in the surrounding outer zone with 1064 nm laser wavelength; (ⅲ) appearance of periodic surface structures, at micro- and nano-level, with the 532 nm wavelength and, (ⅳ) development of plasma in front of the target. Generally, interaction of laser beam with the AISI 1045 steel (at 1064 and 532 nm) results in a near-instantaneous creation of damage, meaning that large steel surfaces can be processed in short time.
机译:研究了工作在1064或532 nm波长,脉冲持续时间为40 ps的Nd:YAG激光与AISI 1045钢的相互作用。在1064和532 nm的波长处,表面损伤阈值分别估计为0.30和0.16 J / cm〜2。在10.3 J / cm〜2(在1064 nm)和5.4 J / cm〜2(在532 nm)的激光能量密度下研究了钢的表面改性。从Nd:YAG激光束吸收的能量被部分转换为热能,从而产生一系列影响,例如熔化,熔融材料的汽化,冲击波等。观察到以下AISI 1045钢表面形态变化和过程:(ⅰ)两种激光波长均会在辐照区域的中心区域损坏钢; (ⅱ)在周围外部区域以1064 nm激光波长出现的重新凝固的材料小滴形式的流体动力学特征; (ⅲ)出现在微米和纳米级的周期性表面结构,波长为532 nm,(ⅳ)在靶物前方出现等离子体。通常,激光束与AISI 1045钢(在1064和532 nm处)的相互作用会导致近乎瞬时的损坏,这意味着可以在短时间内处理大型钢表面。

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