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Passivation process in quasi-continuous laser derusting with intermediate pulse width and line-scanning method

机译:准连续激光除锈中脉冲宽度钝化工艺及线扫描法

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摘要

Floating rust composed of particles and aggregates is the primary product of iron or steel corrosion. Because the floating rust has a porous structure and small thickness, part of the irradiating laser energy can be transmitted through the rust layer and be absorbed by the iron substrate. The adherent force between the floating rust and the metal substrate is weak. In this paper we carried out a series of experiments on this specific rust type to achieve laser derusting and passivating simultaneously. We used a line-scanning method (50% overlapping ratio between adjacent laser spots) to get the nearly average uniform distribution of laser fluence in a large cleaning area. The laser irradiation can directly heat a metal surface to cause thermo-elastic vibration to shake off the rust layer and to cause oxidization to form a protective layer. The most important factor of laser passivating is that the iron surface must be heated to the melting point of iron but not much higher. During this short melting period, on the one hand the iron surface could be oxidized completely; on the other hand the melting of the iron surface could make uniform the oxygen concentration and temperature in the molten iron bath.
机译:由颗粒和聚集体组成的浮锈是铁或钢腐蚀的主要产物。由于浮锈具有多孔结构且厚度较小,因此一部分照射的激光能量可以透过锈层并被铁基板吸收。浮锈与金属基材之间的粘附力很弱。在本文中,我们针对这种特定类型的锈蚀进行了一系列实验,以同时实现激光除锈和钝化。我们使用线扫描方法(相邻激光点之间的重叠率为50%)来获得大清洁区域中激光能量密度的近乎均匀分布。激光照射可以直接加热金属表面,从而引起热弹性振动,从而使锈层脱落并引起氧化,从而形成保护层。激光钝化的最重要因素是,必须将铁表面加热到铁的熔点,但不要高得多。在短暂的熔化过程中,一方面,铁表面可能被完全氧化;另一方面,铁表面被完全氧化。另一方面,铁表面的熔化可以使铁水浴中的氧气浓度和温度均匀。

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