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首页> 外文期刊>MATEC Web of Conferences >The influence of laser heat treatment on the geometric structure of the surface and condition of the surface layer and selected properties of Waspaloy
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The influence of laser heat treatment on the geometric structure of the surface and condition of the surface layer and selected properties of Waspaloy

机译:激光热处理对表面层表面和条件的几何结构的影响及kseSpaloy的选定性能

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In the aviation industry the nickel-based superalloys such as Waspaloy are very often used. Conventional machining of this alloys is difficult and expensive. Therefore a Waspaloy requires the new techniques for machining like e.g. Laser Assisted Machining (LAM). New development directions of mechanical engineering are focusing on this type of hybrid machining, where materials are heated and cut in the single process. LAM enables increasing the material machinability through the increase of its temperature in cutting zone. It is assumed that additional increased temperature in the contact zone between surface of material and cutting tool causes the increase of machinability. This paper presents the results of laser heat treatment process on Waspaloy material. The influence of laser heat treatment parameters on the surface condition and selected properties of Waspaloy were analyzed. Laser heat treatment was carried out using diode laser with nominal power equaled to 3.0 kW. The laser beam power density and its scanning laser beam velocity were analyzed. In the first step the single laser tracks were prepared and analyzed. In the second step the multiple laser tracks were prepared. The special attention was directed on change in microstructure. It was found that the laser heat treatment have significant influence on microstructure. The dendritic microstructure of Waspaloy which is characterized by a lower microhardness, causes better machinability of this material.
机译:在航空工业中,通常使用镍基超合金如酸丝。这种合金的常规加工难以且昂贵。因此,一种马那帕金需要用于加工的新技术,如例如,激光辅助加工(LAM)。机械工程的新发展方向专注于这种类型的混合加工,其中材料被加热和切割在单一过程中。林使能通过在切割区中的温度的增加来提高材料加工性。假设材料表面和切削工具表面之间的接触区域中的额外增加的温度导致加工性的增加。本文介绍了在黄蜂材料上激光热处理过程的结果。分析了激光热处理参数对马萨克洛伊的表面条件和选定性质的影响。使用二极管激光进行激光热处理,标称功率等于3.0kW。分析了激光束功率密度及其扫描激光束速度。在第一步中,制备并分析单个激光轨道。在第二步中,制备多个激光轨道。特别关注的是微观结构的变化。发现激光热处理对微观结构具有显着影响。具有较低微硬度的kAnpaloy的树突式微观结构引起这种材料的更好的可加工性。

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