Transition between flow-drill screwing systems considering joining process and joint characteristics

IF 3.9 Q2 ENGINEERING, INDUSTRIAL
Stephan Altvater, Sebastian P. Sikora, Tjark Siefkes
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引用次数: 3

Abstract

Flow-drill screwing is one of the key joining technologies for car body structures in multi-material lightweight design. In the course of technological developments and subsequent volume production of a product, different assets are used to obtain the same joints, assuming that similar processes yield the same joint characteristics. Since a simple transfer of the process parameters for joining the same materials is usually not possible, a remarkable experimental effort is required to meet manufacturing requirements. In this study the transition to an enhanced flow-drill screwing system and its effects on the joint is investigated. For this purpose, two flow-drill screwing systems typically used in the automotive industry are considered. An application-oriented approach for determining the joining parameters is shown. First, the optimal joining parameters for the target system were determined based on the process curves and parameters of the initial system by fulfilling the requirements for the joint. The joints were evaluated by using cross sections and single-lap shear tests. On this basis, the results of both flow-drill screwing systems were compared. Due to the further development of the flow-drill screwing system the process times can be significantly shortened while achieving the same mechanical properties and better process control at the same time.

考虑连接工艺和接头特性的流钻螺杆系统之间的过渡
流钻螺纹连接是汽车车身结构多材料轻量化设计中的关键连接技术之一。在技术发展和随后的产品批量生产过程中,假设相似的工艺产生相同的接头特征,则使用不同的资产来获得相同的接头。由于连接相同材料的工艺参数的简单转移通常是不可能的,因此需要大量的实验努力来满足制造要求。本文研究了向强化流钻螺杆系统的过渡及其对接头的影响。为此,考虑了汽车工业中通常使用的两种流钻旋紧系统。给出了一种确定连接参数的面向应用的方法。首先,根据初始系统的工艺曲线和参数,满足对接要求,确定目标系统的最优连接参数;通过截面和单搭剪试验对节点进行了评价。在此基础上,比较了两种流钻螺杆系统的效果。随着流钻螺杆系统的进一步发展,在保证相同的力学性能和更好的工艺控制的同时,可大大缩短工艺时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Industrial and Manufacturing Engineering
Advances in Industrial and Manufacturing Engineering Engineering-Engineering (miscellaneous)
CiteScore
6.60
自引率
0.00%
发文量
31
审稿时长
18 days
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