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EFFECT OF LASER GLAZING AND LASER SHOCK PEENING ON TRIBOLOGICAL PERFORMANCE OF 1080 CARBON STEEL

机译:激光上光和激光震击对1080碳钢的摩擦学性能的影响

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摘要

High-power laser surface treatments in the form of glazing, shock peening, cladding, and alloying can significantly affect material tribology. In this paper, effects of laser glazing, laser shock peening, and their combination on the tribological behavior of 1080 carbon steel were investigated. Laser glazing is a process in which a high-power laser beam melts the top layer of the surface, followed by rapid cooling and resolidification. This results in a new surface layer microstructure and properties. Laser shock peening, on the other hand, is a mechanical process in which a laser generates pressure pulses on the surface of the metal, similar to shot peening. Five conditions were evaluated: untreated (baseline), laser shock peened only (PO), laser-glazed only (GO), laser-glazed then shock peened last (GFPL), and laser shock peened then glazed last (PFGL). In pin-on-disc testing, all laser-treated surfaces reduced dry friction, with the GFPL surface having maximum friction reduction of 43%. Under lubricated conditions, all laser-treated surfaces except the PO sample lowered friction. Similarly, all glazed samples reduced wear by a factor of 2-3, while the PO sample did not change wear significantly. These tribological results are associated with changes in the near-surface microstructure and properties.
机译:上光,冲击喷丸,熔覆和合金化形式的高功率激光表面处理会严重影响材料的摩擦学。本文研究了激光上光,激光冲击喷丸及其组合对1080碳钢的摩擦学行为的影响。激光上光是一种过程,其中高功率激光束熔化表面的顶层,然后快速冷却并重新固化。这导致了新的表面层微观结构和性能。另一方面,激光冲击喷丸是一种机械过程,其中激光在金属表面上产生压力脉冲,类似于喷丸喷丸。评估了五个条件:未处理(基线),仅激光冲击硬化(PO),仅激光上釉(GO),激光上釉然后最后进行冲击硬化(GFPL)和激光上冲击然后最后上釉(PFGL)。在针对光盘测试中,所有经激光处理的表面都减少了干摩擦,而GFPL表面的最大摩擦减小了43%。在润滑条件下,除PO样品外,所有经过激光处理的表面均降低了摩擦。同样,所有上釉的样品将磨损降低了2-3倍,而PO样品并没有显着改变磨损。这些摩擦学结果与近表面微观结构和性质的变化有关。

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