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Process Optimization and Properties of Laser Cladding High Speed Steel Coatings on Nodular Cast Iron

机译:结节铸铁激光熔覆高速钢涂层的过程优化与性能

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Rolls in the steel industry withstand very high loads, thermal cycling leading to thermal fatigue, and severe environmental. How to improve the wear resistance and elongate the service life of rolls matters a lot in reducing the consumption of rolls. In recent years, because of its better red-hardness and wear property, high speed steel (HSS) was used to manufacture the new type composite rolls. As a surface treatment technology, laser cladding can fabricate coating to improve the wear resistance of substrate. In this paper, the substrates for laser cladding were nodular cast iron rolls, Nd:YAG solid pulsed laser and continuous wave CO_2 laser were both used to explore the feasibility of preparation HSS coatings. The Nd:YAG laser cladding results that the coated layers combined metallurgically with the substrate with a lot of microcracks. The average microhardness up to 600 HV is about 2 times as high as that of the substrate. The CO2 laser cladding results that: fully dense and crack free clad surfaces of high speed steel with an excellent metallurgical bonding were deposited. The average microhardness up to 900 HV is about 3 times as high as that of the substrate. The high-temperature (500 °C) wear rate is 40% of nodular cast iron's in 30 min.
机译:在钢铁行业罗尔斯承受很高负载,热循环导致热疲劳,以及严重的环境。如何提高耐磨性和延长轧辊使用寿命的问题了很多降低轧辊的消耗。近年来,由于其更好的红色硬度和磨损性能的,高速钢(HSS)中的溶液用于制造新型复合轧辊。作为表面处理技术,激光熔覆可以制造涂覆,以提高基材的耐磨损性。在本文中,对于激光熔覆的基材为球墨铸铁辊的Nd:YAG固体脉冲激光和连续波激光器CO_2均被用来探索制备HSS涂层的可行性。的Nd:YAG激光熔覆结果可知,涂覆层用了很多微裂纹的衬底冶金结合。平均硬度高达600 HV为约2倍那样高的底物。 CO2激光熔覆结果:完全致密和裂纹具有优异的冶金结合高速钢的自由包覆表面进行沉积。平均硬度高达900 HV为约3倍高,基板的。高温(500℃)磨损率的球墨铸铁的在30分钟内40%。

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