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A New Approach in Surface Modification and Surface Hardening of Aluminum Alloys Using Friction Stir Process: Cu-Reinforced AA5083

机译:摩擦搅拌法在铝合金表面改性和表面硬化中的新方法:铜增强AA5083

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摘要

In the current study, a new approach for surface modification and surface hardening of aluminum alloys is developed. The method is based on the logic of in-situ reinforcing FSP strategies. The novelty of the proposed process is the application of a bulk reinforcing metallic material instead of metallic powders. The FSP was carried out on aluminum alloy AA5083—thick plates. A thin sheet of pure copper (cross-section 4 × 0.8 mm ) was placed in a machined groove on the upper surface of the aluminum plate, and both materials were FSPed together. Samples with one, two and three FSP passes were manufactured respectively. Results indicate that the copper thin sheet was successfully integrated in the AA5083 stir zone. By increasing the FSP passes, almost all copper was integrated in the stir zone, mainly in the form of coper-based micron-sized intermetallic particles, and secondly, by copper diffusion in the AA5083 matrix. Due to the presence of complex intermetallic compounds created by the high heat input and intense plastic deformation, the hardness inside the stir-zone was found highly increased from 77 to 138 HV.
机译:在当前的研究中,开发了一种铝合金表面改性和表面硬化的新方法。该方法基于现场增强FSP策略的逻辑。所提出的方法的新颖性是使用块状增强金属材料代替金属粉末。 FSP在铝合金AA5083厚板上进行。将纯铜薄片(横截面4×0.8 mm)放在铝板上表面的机加工凹槽中,并将两种材料一起用FSP封装。分别生产了通过一次,两次和三次FSP测试的样品。结果表明,铜薄板已成功整合到AA5083搅拌区中。通过增加FSP的通过,几乎所有的铜都以主要是基于铜的微米级金属间化合物的形式集成在搅拌区中,其次是通过铜在AA5083基体中的扩散。由于高热量输入和强烈的塑性变形产生了复杂的金属间化合物,因此发现搅拌区内部的硬度从77 HV高度增加到138 HV。

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