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On the feasibility of a friction-based staking joining method for polymer-metal hybrid structures

机译:聚合物-金属混合结构基于摩擦的桩固连接方法的可行性

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摘要

The increased use of hybrid structures to reduce weight currently faces the limitations of traditional joining methods. Consequently there is a niche for development of new joining techniques, which can reduce or overcome some of the existing limitations. This paper presents for the first time the new Friction-based Injection Clinching Joining technique (F-ICJ), describing the microstructure and changes in local properties of joints between polyetherimide (PEI) and aluminum alloy 6082-T6. A shear layer around the rotating tool composes a polymer thermomechanically affected zone (PTMAZ), which presents pores as a result of evolution of gaseous products. The PTMAZ shows decreases of 8% to 12% in local strength compared to the base material, as measured by microhardness. Ultimate forces of 1419 ± 43 N in lap shear and 430 ± 44 N in cross tensile were achieved for F-ICJ joints. These levels are similar to ultrasonic staking joints of the same material combination, but the hollow design of F-ICJ stakes accounts for improved strength-to-weight ratio (18% in lap shear, 21% in cross tensile). Although the F-ICJ process currently requires longer cycles (7.5 s) than state-of-the-art ultrasonic staking (2.8-2.9 s), generated results indicate that the F-ICJ process is a competitive staking joining method with potential for improvement.
机译:目前越来越多地使用混合结构来减轻重量,这面临着传统连接方法的局限。因此,开发新的连接技术存在一个利基,它可以减少或克服一些现有的限制。本文首次介绍了一种新的基于摩擦的注射铆接技术(F-ICJ),它描述了聚醚酰亚胺(PEI)和铝合金6082-T6之间的接头的微观结构和局部性能的变化。旋转工具周围的剪切层组成了一个聚合物热机械影响区(PTMAZ),该区由于气态产物的析出而出现孔隙。通过显微硬度测量,与基材相比,PTMAZ的局部强度降低了8%至12%。 F-ICJ接头的搭接剪切极限力为1419±43 N,横向拉伸极限力为430±44N。这些水平类似于相同材料组合的超声铆接接头,但是F-ICJ桩的空心设计可提高强度/重量比(搭接剪切时为18%,横向拉伸时为21%)。尽管F-ICJ工艺目前需要的周期比最新的超声波铆接(2.8-2.9 s)要长(7.5 s),但生成的结果表明F-ICJ工艺是一种竞争性的铆接方法,具有改进的潜力。

著录项

  • 来源
    《Materials & design》 |2016年第2期|632-642|共11页
  • 作者单位

    Helmholtz-Zentrum Geesthacht, Centre for Materials and Coastal Research, Institute of Materials Research, Materials Mechanics, Solid State Joining Processes, Geesthacht, Germany;

    Graduate Program in Materials Science and Engineering (PPG-CEM), Federal University of Sao Carlos (UFSCar), Sao Carlos, SP, Brazil;

    Helmholtz-Zentrum Geesthacht, Centre for Materials and Coastal Research, Institute of Materials Research, Materials Mechanics, Solid State Joining Processes, Geesthacht, Germany;

    Graduate Program in Materials Science and Engineering (PPG-CEM), Federal University of Sao Carlos (UFSCar), Sao Carlos, SP, Brazil;

    Helmholtz-Zentrum Geesthacht, Centre for Materials and Coastal Research, Institute of Materials Research, Materials Mechanics, Solid State Joining Processes, Geesthacht, Germany,Hamburg University of Technology, Institute of Polymer Composites, Hamburg, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Processing technologies; Staking; Polymer-metal structures; Hybrid joining; Friction joining; Polyetherimide;

    机译:加工技术;放样聚合物金属结构;混合联接;摩擦连接;聚醚酰亚胺;

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