环境条件对摩擦堆焊的影响。

IF 2.5 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING
M. Hoffmann, E. A. Duda, P. Aspes, B. Klusemann
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引用次数: 0

摘要

摩擦堆焊(FS)是一种固态堆焊工艺,通过摩擦热和耗材螺柱材料低于其熔化温度的严重塑性变形,将层沉积在基材表面。键合是由于加速扩散而发生的。多层叠层的沉积被称为多层FS (MLFS),它是增材制造(AM)的一个有前途的候选者,因为它比基于融合的AM更具优势。在本研究中,研究了环境工艺条件的影响,即与其他增材制造工艺一样对基体进行预热,以及水下和室温实验。研究了环境条件对工艺行为、层的几何形状、微观结构和力学性能的影响。预热基材导致整体工艺温度升高(424.1°C),导致层更薄更宽,晶粒更大,超长组织,以及MLFS堆叠从顶部(140 HV0.1)到底部(95 HV0.1)的平滑硬度转变。工艺温度越低,例如,水下FS(326.5℃),层越厚,宽度越小,晶粒越小。硬度在层界面处呈周期性变化,在较低的工艺温度下更为明显,即硬度值在100 HV0.1 ~ 150 HV0.1之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of ambient conditions in friction surfacing

Friction surfacing (FS) is a solid-state deposition process in which layers are deposited on a substrate surface by frictional heat and severe plastic deformation of a consumable stud material below its melting temperature. Bonding occurs due to accelerated diffusion. The deposition of several layers on top of each other is referred to as multi-layer FS (MLFS), a promising candidate for additive manufacturing (AM) as it offers advantages over fusion-based AM. In this study, the MLFS process for the precipitation-hardenable alloy AA2024 is investigated regarding the influence of environmental process conditions, i.e., preheating of the substrate like other AM processes as well as underwater and room temperature experiments. The influence of ambient conditions on the process behavior, the layer geometries, the microstructure, and the mechanical properties is shown. Preheating the substrate leads to an overall higher process temperature (424.1 °C), resulting in thinner and wider layers, larger grains, an overaged microstructure, and a smooth hardness transition in the MLFS stacks from top (140 HV0.1) to bottom (95 HV0.1). The lower the process temperatures, e.g., for underwater FS (326.5 °C), the thicker and less wide the layers and the smaller the grains. The hardness shows a periodic pattern at the layer interface, which is more pronounced at lower process temperatures, i.e., the hardness values range from 100 HV0.1 to 150 HV0.1.

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来源期刊
Welding in the World
Welding in the World METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
4.20
自引率
14.30%
发文量
181
审稿时长
6-12 weeks
期刊介绍: The journal Welding in the World publishes authoritative papers on every aspect of materials joining, including welding, brazing, soldering, cutting, thermal spraying and allied joining and fabrication techniques.
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