D'Urso Gianluca, Giardini Claudio
Department of Management, Information and Production Engineering-DIGIP, University of Bergamo, Via Pasubio 7b, Dalmine (BG) 24044, Italy.
Materials (Basel). 2016 Aug 11;9(8):689. doi: 10.3390/ma9080689.
The present study was carried out to evaluate how the friction stir spot welding (FSSW) process parameters affect the temperature distribution in the welding region, the welding forces and the mechanical properties of the joints. The experimental study was performed by means of a CNC machine tool obtaining FSSW lap joints on AA7050 aluminum alloy plates. Three thermocouples were inserted into the samples to measure the temperatures at different distance from the joint axis during the whole FSSW process. Experiments was repeated varying the process parameters, namely rotational speed, axial feed rate and plunging depth. Axial welding forces were measured during the tests using a piezoelectric load cell, while the mechanical properties of the joints were evaluated by executing shear tests on the specimens. The correlation found between process parameters and joints properties, allowed to identify the best technological window. The data collected during the experiments were used to validate a simulation model of the FSSW process, too. The model was set up using a 2D approach for the simulation of a 3D problem, in order to guarantee a very simple and practical solution for achieving results in a very short time. A specific external routine for the calculation of the thermal energy due to friction acting between pin and sheet was developed. An index for the prediction of the joint mechanical properties using the FEM simulations was finally presented and validated.
本研究旨在评估搅拌摩擦点焊(FSSW)工艺参数如何影响焊接区域的温度分布、焊接力以及接头的力学性能。实验研究通过一台数控机床进行,在AA7050铝合金板上获得FSSW搭接接头。在整个FSSW过程中,将三个热电偶插入样品中,以测量距接头轴线不同距离处的温度。通过改变工艺参数,即转速、轴向进给速度和压入深度,重复进行实验。在测试过程中,使用压电式测力传感器测量轴向焊接力,同时通过对试样进行剪切试验来评估接头的力学性能。工艺参数与接头性能之间的相关性得以确定最佳工艺窗口。实验过程中收集的数据也用于验证FSSW工艺的模拟模型。该模型采用二维方法建立,用于模拟三维问题,以便在极短时间内获得结果提供一个非常简单实用的解决方案。开发了一个特定的外部程序,用于计算销与板材之间摩擦产生的热能。最后提出并验证了一个使用有限元模拟预测接头力学性能的指标。