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On the formation features, microstructure and microhardness of single laser tracks formed by laser cladding of a NiCrBSi self-fluxing alloy

机译:NiCrBSi自熔合金激光熔覆形成的单个激光道的形成特征,显微组织和显微硬度

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摘要

In the present paper, the influence of laser cladding conditions on the powder flow conditions, as well as the microstructure, phases and microhardness of an Ni-based self-fluxing alloy coating are described. The optimal granulations of a self-fluxing alloy powder and the relationship between the flow of powder of various fractions and the flow rate and pressure of the transporting gas have been determined. The laser beam speed, track pitch and the distance from the nozzle to the coated surface influence the height and width of single tracks. Regularities in the formation of microstructure under different cladding conditions are defined, as well as regularity of distribution of elements over the track depth and in the transient zone. The patterns of microhardness distribution over the track depth for different cladding conditions are found. These patterns as well as the optimal laser spot pitch allowed obtaining a uniform cladding layer. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文描述了激光熔覆条件对粉末流动条件的影响,以及镍基自熔合金涂层的组织,相和显微硬度。确定了自熔性合金粉末的最佳造粒以及各种馏分的粉末流量与输送气体的流量和压力之间的关系。激光束的速度,轨道间距以及从喷嘴到涂层表面的距离都会影响单个轨道的高度和宽度。定义了在不同熔覆条件下微观结构形成的规律性,以及在轨道深度和过渡带中元素分布的规律性。发现了在不同包层条件下在轨道深度上的显微硬度分布图。这些图案以及最佳的激光点间距允许获得均匀的包层。 (C)2018 Elsevier Ltd.保留所有权利。

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