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首页> 外文期刊>Journal of Manufacturing Processes >Influence of nanoparticle properties and laser settings on the surface features created by microscale pulsed laser remelting
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Influence of nanoparticle properties and laser settings on the surface features created by microscale pulsed laser remelting

机译:纳米颗粒性能和激光设置对微观脉冲激光重熔产生的表面特征的影响

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摘要

Pulsed laser remelting is a manufacturing technique to alter the surface properties of materials. When the pulse is active, the intensive laser beam irradiates an area causing rapid melting. When the pulse is turned off, rapid solidification occurs as heat diffuses into the bulk from the relatively small melt zone. The technique can alter the microstructure, chemical distribution, and surface geometry simultaneously, and hence is an inexpensive and scalable alternative to creating patterned multi-material surface layers. In this study, S7 tool steel surfaces were coated with three different nanoparticles (SiC, Al2O3, and Ho2O3) and then pulsed laser remelted. During pulsed laser remelting, nanoparticles were found to either agglomerate on the surface forming clusters or mix with the molten substrate forming alloyed regions. The formation of the clusters or alloyed regions depends on nanoparticle properties and laser parameters. Nanoparticles with good wettability, solubility, and reactivity with the molten substrate form alloyed regions, whereas nanoparticles lacking these properties form clusters. Moreover, higher laser powers result in stronger fluid flow and assisted in mixing of nanoparticles with the substrate. The clusters exhibited improved bonding to the substrate compared to an as-coated layer. The alloyed regions exhibited considerable enhancements in hardness and wear resistance due to the strengthening effect of the nanoparticles well-dispersed in the S7 tool steel matrix.
机译:脉冲激光重熔是改变材料表面性质的制造技术。当脉冲有效时,密集激光束照射导致快速熔化的区域。当脉冲关闭时,随着热量扩散到来自相对小的熔体区的大部分中,发生快速凝固。该技术可以同时改变微观结构,化学分布和表面几何形状,因此是创建图案化的多材料表面层的廉价且可伸缩的替代方案。在该研究中,S7工具钢表面涂有三种不同的纳米颗粒(SiC,Al2O3和HO2O3),然后脉冲激光再熔断。在脉冲激光重熔期间,发现纳米颗粒在表面形成簇上的凝聚物或与形成合金区域的熔融基板混合。簇或合金区域的形成取决于纳米颗粒性能和激光参数。纳米颗粒具有良好的润湿性,溶解性和与熔融基材形成合金区域的反应性,而缺乏这些性质的纳米颗粒形成簇。此外,较高的激光功率导致更强的流体流动并辅助纳米颗粒与基材混合。与涂层相比,簇表现出与基材的改善键合。由于纳米颗粒在S7工具钢基质中分散的纳米颗粒的强化效果,所合金区域的硬度和耐磨性具有相当大的增强。

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