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首页> 外文期刊>Bulletin of the Polish Academy of Sciences. Technical Sciences >Technological aspects of friction stir processing of AlZn5.5MgCu aluminum alloy
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Technological aspects of friction stir processing of AlZn5.5MgCu aluminum alloy

机译:Alzn5.5mgCu铝合金摩擦搅拌加工技术方面

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摘要

FSP technology was used to modify the surface layer of the AlZn5.5.MgCu aluminum alloy by enriching its SiC particles.For this goal the FSP multi-chamber method was used.The SiC powder was placed in separated chambers hollowed in the modified material perpendicular to the surface of the sample.In order to achieve a more even distribution of the reinforcing phase in the aluminum alloy matrix and to minimize the risk of uncontrolled displacement of the SiC powder at the time of inserting the pin into the material,a two-step treatment was applied.In the first one,the working area of the pin was shifted relative to the axis of the chambers by AL.In the second step of the treatment the tool moved centrally along the line of chambers.As a result of friction treatment,intensive sputtering of SiC particles in the surface of the aluminum alloy and strong refinement of the alloy were observed.The consequence of the microstructural changes in the surface layer of the material and the formation of a metal-ceramic composite microstructure was a significant increase in the hardness of the aluminum alloy.
机译:采用FSP技术对AlZn5进行表面改性。5.MgCu铝合金通过富集其SiC颗粒。为此,采用了FSP多室法。将SiC粉末置于垂直于样品表面的改性材料中挖空的分离室中。为了在铝合金基体中实现更均匀的增强相分布,并在将销插入材料时将碳化硅粉末失控位移的风险降至最低,采用了两步处理。在第一步中,针的工作区域相对于腔室的轴线移动了AL。在第二步中,工具沿着腔室的直线中心移动。摩擦处理的结果是,SiC颗粒在铝合金表面剧烈溅射,合金得到了强烈细化。材料表层的微观结构变化和金属-陶瓷复合微观结构的形成导致铝合金的硬度显著增加。

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