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首页> 外文期刊>Optics & Laser Technology >Development of laser dimpling strategies on TiN coatings for tribological applications with a highly energetic Q-switched fibre laser
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Development of laser dimpling strategies on TiN coatings for tribological applications with a highly energetic Q-switched fibre laser

机译:利用高能调Q光纤激光器在摩擦学应用的TiN涂层上开发激光微调策略

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摘要

Laser micromachining and structuring of thin ceramic surface coatings is an appealing process, especially for tribological applications. Studies show increased wear resistance and friction properties of dimpled surface coatings. The nature of the material and the delicacy of the coating integrity raise the problem of tight processing conditions, especially in terms of the ablated depth. However, for the industrial scale of the application, processing strategies with industrial grade laser systems are required. For this purpose, the present work reports the use of a highly energetic Q-switched fibre laser for the laser dimpling of TiN coatings applied in very limited micrometric thickness. The processing strategy that involves ramped pulse trains and controlled defocusing of the laser beam was demonstrated to be effective for controlling the dimple radius and depth without excessive machining to cause substrate contamination. The dimples were characterised for the amount of damage done by contaminating the coating material with the substrate. Results confirm that in non-contaminated conditions chemical composition of the TiN coating was also maintained.
机译:薄陶瓷表面涂层的激光微加工和结构化是一个有吸引力的过程,特别是对于摩擦学应用而言。研究表明,凹坑表面涂层的耐磨性和摩擦性能有所提高。材料的性质和涂层完整性的细腻性提出了严格的加工条件的问题,特别是在烧蚀深度方面。然而,对于应用的工业规模,需要工业级激光系统的加工策略。为此目的,本工作报道了将高能调Q光纤激光器用于以非常有限的微米厚度涂覆的TiN涂层的激光凹坑。事实证明,包括倾斜脉冲序列和受控激光束散焦的处理策略可有效控制凹坑半径和深度,而无需进行过多的加工而导致基板污染。凹坑的特征在于通过用基材污染涂层材料而造成的损坏量。结果证实,在未污染的条件下,TiN涂层的化学成分也得以保持。

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