Dobrotă Dan, Lazăr Sergiu Viorel
Department of Industrial Engineering and Management, Faculty of Engineering, Lucian Blaga University of Sibiu, 550024 Sibiu, Romania.
S.C. Contintental Romania, 550018 Sibiu, Romania.
Polymers (Basel). 2021 Jan 19;13(2):298. doi: 10.3390/polym13020298.
The ultrasonic welding of polymeric materials is one of the methods often used in practice. However, each couple of material subjected to ultrasonic welding is characterized by different values of technological parameters. Therefore, the main objective of the research presented in this paper is to optimize the parameters for the ultrasonic welding of two materials, namely PBT-GF30 (70% polybutylene terephthalate + 30% fiber glass) and expanded polytetrafluoroethylene (e-PTFE). In this sense, the research was carried out considering a plate-type part made of PBT-GF30, which had a thickness of 2.1 mm, and a membrane-type part made of e-PTFE, with a thickness of 0.3 mm. The condition imposed on the welded joints made, namely to correspond from a technical point of view, was that the detachment pressure of the membrane should be at least 4 bar. To this end, a test device was designed. Additionally, the topography of the material layer from the plate-type part was analyzed, as well as the chemical composition and surface condition for the membrane-type part. The obtained results allowed the optimization of the following parameters: The welding force; welding time; amplitude; and holding time. All experimental results were processed using STATISTICS software, which established how each parameter influences the characteristics of welded joints.
聚合物材料的超声焊接是实际中常用的方法之一。然而,每一对进行超声焊接的材料都具有不同的工艺参数值。因此,本文所介绍研究的主要目的是优化两种材料,即聚对苯二甲酸丁二醇酯-玻璃纤维30%(70%聚对苯二甲酸丁二醇酯+30%玻璃纤维)和膨体聚四氟乙烯(e-PTFE)的超声焊接参数。从这个意义上说,研究是针对一个由聚对苯二甲酸丁二醇酯-玻璃纤维30%制成的板型部件(厚度为2.1毫米)和一个由膨体聚四氟乙烯制成的膜型部件(厚度为0.3毫米)进行的。对所制作的焊接接头施加的条件,即从技术角度来看应符合的条件,是膜的分离压力至少应为4巴。为此设计了一个测试装置。此外,还分析了板型部件材料层的形貌以及膜型部件的化学成分和表面状况。所获得的结果实现了以下参数的优化:焊接力、焊接时间、振幅和保压时间。所有实验结果均使用STATISTICS软件进行处理,该软件确定了每个参数如何影响焊接接头的特性。