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The effect of the number of passes in friction stir processing of aluminum alloy (AA6082) and its failure analysis

机译:铝合金搅拌摩擦加工次数的影响及其失效分析

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Friction stir processing (FSP) is a technique based on micro-structural modification. Though this concept attracts the attention of the researchers, there arise a necessity of deep investigation in many areas to understand the changes and failure caused by the process. To achieve the required micro grain size, few process attributes like tool geometry, rotational speed, transverse speeds, etc., are to be regulated. The defects, especially tunnel voids can be greatly reduced by identifying the adequate process parameters. The reason for such defect is due to inadequate heat supply during processing and dynamic recrystallization. In this study, FSP of aluminum AA6082 alloy is performed to investigate the effect of different process parameters, such as number of passes and tool rotational speed. Mechanical and microstructure analysis of the specimens were conducted to determine the changes in the properties of the aluminum alloy. Temperature distribution was also monitored using infrared (IR) camera to determine the temperature intensity in degrees at limited points. The results show that the heat generation increases when rotational speed increases. Hardness and tensile strength were tested across the FSP processed zone. After FSP, the microstructure of the alloy is found to be exceedingly refined. However, FSP causes minuscule improves the hardness of the material, whereas the tensile and impact strength improves significantly.
机译:搅拌摩擦加工(FSP)是一种基于微结构改性的技术。尽管此概念吸引了研究人员的注意,但仍需要在许多领域进行深入研究,以了解由过程引起的变化和失败。为了获得所需的微晶粒度,几乎不需要调节工艺属性,例如刀具几何形状,转速,横向速度等。通过确定适当的工艺参数,可以大大减少缺陷,尤其是隧道空隙。这种缺陷的原因是由于在加工和动态重结晶过程中热量供应不足。在这项研究中,对铝AA6082合金进行FSP来研究不同工艺参数(例如通过次数和工具转速)的影响。对样品进行机械和微观结构分析,以确定铝合金性能的变化。还使用红外(IR)摄像机监控温度分布,以确定温度强度(以度为单位)。结果表明,当转速增加时,热量产生增加。在整个FSP加工区中测试了硬度和拉伸强度。在FSP之后,发现合金的微观结构非常细化。但是,FSP引起的微小影响提高了材料的硬度,而拉伸强度和冲击强度却得到了显着提高。

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