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力控摩擦铆接基础:第一部分——接头形成与热生成

Fundamentals of Force-Controlled Friction Riveting: Part I-Joint Formation and Heat Development.

作者信息

Pina Cipriano Gonçalo, Blaga Lucian A, F Dos Santos Jorge, Vilaça Pedro, Amancio-Filho Sergio T

机构信息

Graz University of Technology, Institute of Materials Science, Joining and Forming, BMVIT Endowed Professorship for Aviation, 8010 Graz, Austria.

Department of Mechanical Engineering, School of Engineering, Aalto University, FI-00076 Espoo, Finland.

出版信息

Materials (Basel). 2018 Nov 15;11(11):2294. doi: 10.3390/ma11112294.

Abstract

This work presents a systematic study on the correlations between process parameters and rivet plastic deformation, produced by force-controlled friction riveting. The 5 mm diameter AA2024 rivets were joined to 13 mm, nominal thickness, polyetherimide plates. A wide range of joint formations was obtained, reflecting the variation in total energy input (24⁻208 J) and process temperature (319⁻501 °C). The influence of the process parameters on joint formation was determined, using a central composite design and response surface methodology. Friction time displayed the highest contribution on both rivet penetration (61.9%) and anchoring depth (34.7%), and friction force on the maximum width of the deformed rivet tip (46.5%). Quadratic effects and two-way interactions were significant on rivet anchoring depth (29.8 and 20.8%, respectively). Bell-shaped rivet plastic deformation-high mechanical interlocking-results from moderate energy inputs (~100 J). These geometries are characterized by: rivet penetration depth of 7 to 9 mm; maximum width of the deformed rivet tip of 9 to 12 mm; and anchoring depth higher than 6 mm. This knowledge allows the production of optimized friction-riveted connections and a deeper understanding of the joining mechanisms, further discussed in Part II of this work.

摘要

这项工作对力控摩擦铆接过程参数与铆钉塑性变形之间的相关性进行了系统研究。将直径5mm的AA2024铆钉与标称厚度13mm的聚醚酰亚胺板连接。获得了广泛的接头形式,反映了总能量输入(24⁻208J)和工艺温度(319⁻501°C)的变化。采用中心复合设计和响应面方法确定了工艺参数对接头形成的影响。摩擦时间对铆钉穿透(61.9%)和锚固深度(34.7%)的贡献最大,摩擦力对变形铆钉尖端的最大宽度贡献最大(46.5%)。二次效应和双向相互作用对铆钉锚固深度有显著影响(分别为29.8%和20.8%)。适度的能量输入(约100J)会产生钟形铆钉塑性变形——高机械互锁。这些几何形状的特点是:铆钉穿透深度为7至9mm;变形铆钉尖端的最大宽度为9至12mm;锚固深度大于6mm。这些知识有助于生产优化的摩擦铆接连接,并更深入地理解连接机制,本工作的第二部分将进一步讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5aff/6266009/b4c5530db5c4/materials-11-02294-g001.jpg

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