بحث بعنوان ABAQUS Tutorial for Composite and Adhesive Joint
اسم المؤلف
Armin yousefi kanani
التاريخ
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ABAQUS Tutorial for Composite and Adhesive Joint
Armin yousefi kanani
Lancaster University
Contents
1- 2D DCB with Cohesive Element 3
2- Single Lap Joint (Surface Based Cohesive) .4
3- 3D DCB with cohesive element .5
4- 2D DCB with XFEM method .6
5- 2D ENF with XFEM Method .7
6- 2D ENF with Cohesive element method 8
7- Buckling and Post Buckling of Composite Plate 9
Future Tutorials .10
8- Tensile test of flexible adhesive by using XFEM method 10
9- Tensile test of epoxy adhesive by using XFEM method 11
10- Tensile test of aluminium (Using plastic deformation property) .12
12- Modelling the various adhesive joints such as: scarf, stepped, double lap, etc. by using
CZM element .14
Introduction:
I am a Mechanical Engineer with over three years’ professional experiences. I currently work
as a researcher at Lancaster University. I was always interested to learn new software that why
I chose the subject of my MSc dissertation in a way that enabled me to work in
experimental research and finite element analysis. I have made my first tutorial for UDEMY
based on my knowledge that I got during my master course in the field of composite material
for ANSYS ACP. There are more than 1656 students enrolled in this course from 81 countries
around the world, which makes it one of the very popular courses on Udemy. It has a rating of
4.4 given by 369 people thus also makes it one of the best-rated course in Udemy.
Now two years after starting my PhD, I feel confident to make Tutorial this time for ABAQUS
software in the area of adhesive and composite material. The concept of lightweighting is a
hot research topic in the manufacturing sector. One of the most effective methods of achieving
lightweight is to use advanced lightweight materials instead of conventional materials. Among
commonly available joining technologies, the use of adhesive joints attracts most attention due
to their advantages of enabling the development of lightweight, cost-effective and five highly
integrated structures with more uniform load distribution and improved damage tolerance.
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