Numerical Investigation of Missile Strike over an Unmanned Aerial Vehicle

Authors

  • Kiran Myageri BE-Final Year Students, Dept. of Aeronautical Engg. Acharya Institute of Technology, Bangalore - 560107, India
  • Keskar Vaibhav Dattatraya BE-Final Year Students, Dept. of Aeronautical Engg. Acharya Institute of Technology, Bangalore - 560107, India
  • Shivakumar B. N. BE-Final Year Students, Dept. of Aeronautical Engg. Acharya Institute of Technology, Bangalore - 560107, India
  • Rakhesh Athani BE-Final Year Students, Dept. of Aeronautical Engg. Acharya Institute of Technology, Bangalore - 560107, India
  • Somashekar V. BE-Final Year Students, Dept. of Aeronautical Engg. Acharya Institute of Technology, Bangalore - 560107, India

DOI:

https://doi.org/10.37591/.v7i2.1169

Abstract

Objectives: The present work deals with the impact analysis of missile over an unmanned aerial vehicle (UAV), the missile is made to strike on the UAV with various angles on the different locations and structural behaviour of the UAV will be investigated through the intended work. Novelty: There is very limited data concerning structural failure modes caused by impact and explosion loading on an UAV due to missiles. Method: The research is being focused on the structural deformation/failure/damage of an UAV by missile attack at first, creating a 3-D Model of UAV by using CATIA V5R20. Then, meshing will be done using ANSYS Workbench and complete crash analysis is carried out with the help of LS-DYNA software. Outcome: The outcome of this research work is understanding the structural behaviour of the materials i.e. von-mises stress and total deformation during impact for various cases. It could be used to improve the behaviour of material for impact load in order to overcome the further identified challenging issues.


Keywords: Unmanned aerial vehicle, crash analysis, structural behaviour

Cite this Article
Kiran Myageri, Keskar Vaibhav, Dattatraya, Shivakumar B.N. et al. Numerical Investigation of Missile Strike over an Unmanned Aerial Vehicle. Research & Reviews: Journal of Space Science & Technology. 2018; 7(2):
21–27p.


Published

2018-09-06

Issue

Section

Articles