首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Joining dissimilar grade aluminum alloy sheets using multi-hole dieless friction stir riveting process
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Joining dissimilar grade aluminum alloy sheets using multi-hole dieless friction stir riveting process

机译:使用多孔无无摩擦搅拌铆接工艺加入异种级铝合金板材

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摘要

A recently developed spot joining process namely dieless friction stir riveting is explored for understanding the effect of multi-hole configurations on the joint formation in dissimilar grades of aluminum alloy sheets. These spot joints are strengthened by mechanical interlocking together with metallurgical bonding and possesses the absence of hook defect as well as pin hole defect. This contributes to superior lap shear fracture load than conventional spot joints. The mechanical load performance tests, detailed macro/micro structure analysis, the hardness measurement, external morphological study, and fracture mode analysis are conducted. Single-hole configuration yields appreciable mechanical performance than multi-hole configurations by achieving lap shear fracture load accounting about 7.42 kN and cross-tension fracture load accounting about 2.89 kN. The farther the holes in multi-hole configurations, the more imperfect the mechanical interlocking becomes. The dynamic recrystallization, associated grain growth, and its relation with the extent of plastic deformation in distinct zones of the joint are also identified. The frictional heat flux and severe plastic deformation have significantly affected the hardness of the two sheets. Critical weak zones leading to various fracture modes of the joint are also identified.
机译:为了了解多孔结构对不同等级铝合金板材接头形成的影响,探索了一种新开发的点连接工艺,即无模摩擦搅拌铆接。这些点接头通过机械联锁和冶金结合得到加强,并且不存在钩缺陷和针孔缺陷。这有助于获得比传统点式接头更好的搭接剪切断裂载荷。进行了机械载荷性能试验、详细的宏观/微观结构分析、硬度测量、外部形态研究和断裂模式分析。通过实现约7.42 kN的搭接剪切断裂载荷和约2.89 kN的交叉拉伸断裂载荷,单孔结构比多孔结构产生可观的机械性能。多孔结构中的孔越远,机械联锁就越不完善。还确定了动态再结晶、相关晶粒长大及其与接头不同区域塑性变形程度的关系。摩擦热流和严重的塑性变形显著影响了两种板材的硬度。还确定了导致接头各种断裂模式的关键薄弱区。

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