Gajewski Jakub, Golewski Przemysław, Sadowski Tomasz
Department of Machine Design and Mechatronics, Faculty of Mechanical Engineering, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland.
Department of Solid Mechanics, Faculty of Civil Engineering and Architecture, Lublin University of Technology, Nadbystrzycka 38, 20-618 Lublin, Poland.
Materials (Basel). 2021 Jan 15;14(2):419. doi: 10.3390/ma14020419.
Adhesive bonding are becoming increasingly important in civil and mechanical engineering, in the field of mobile applications such as aircraft or automotive. Adhesive joints offer many advantages such as low weight, uniform stress distribution, vibration damping properties or the possibility of joining different materials. The paper presents the results of numerical modeling and the use of neural networks in the analysis of dual adhesive single-lap joints subjected to a uniaxial tensile test. The dual adhesive joint was created through the use of adhesives with various parameters in terms of stiffness and strength. In the axis of the overlap, there was a point bonded joint characterized by greater stiffness and strength, and on the outside, there was a bonded joint limited by the edges of the overlap and characterized by lower stiffness and strength. It is an innovative solution for joining technology and the influence of such parameters as the thickness of one of the adherends, the radius of the point bonded joint and the material parameters of both adhesive layers were analyzed. The joint is characterized by a two-stage degradation process, i.e., after the damage of the rigid adhesive, the flexible adhesive ensures the integrity of the entire joint. For numerical modeling, the Finite Element Method (FEM) and cohesive elements was used, which served as input data to an Artificial Neural Network (ANN). The applied approach allowed the impact of individual parameters on the maximum force, initiation energy, and fracture energy to be studied.
粘接在土木和机械工程领域,以及飞机或汽车等移动应用领域正变得越来越重要。粘接接头具有许多优点,如重量轻、应力分布均匀、减振性能或能够连接不同材料。本文介绍了数值模拟的结果以及神经网络在双胶粘剂单搭接接头单轴拉伸试验分析中的应用。双胶粘剂接头是通过使用具有不同刚度和强度参数的胶粘剂制成的。在搭接轴线上,有一个具有较高刚度和强度的点粘接接头,在外侧,有一个受搭接边缘限制且刚度和强度较低的粘接接头。这是一种连接技术的创新解决方案,并分析了诸如一个被粘物的厚度、点粘接接头的半径以及两个胶粘剂层的材料参数等参数的影响。该接头的特点是有一个两阶段的退化过程,即刚性胶粘剂损坏后,柔性胶粘剂确保整个接头的完整性。对于数值模拟,使用了有限元方法(FEM)和内聚单元,这些作为人工神经网络(ANN)的输入数据。所采用的方法使得能够研究各个参数对最大力、起始能量和断裂能量的影响。