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Aerodynamic and Structural Analysis of a Low Speed Campus Delivery Robot
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Date
Authors
Ardiansyah, Erik
Journal Title
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Volume Title
Publisher
Politeknik Negeri Batam
Abstract
This study presents a numerical evaluation of the
aerodynamic performance and structural integrity of a low-speed
campus delivery robot design using Computational Fluid
Dynamics (CFD) and Finite Element Analysis (EA) methods. CFD
simulations were conducted at speeds ranging from 0.5 m/s to 10.0
m/s to analyze airflow characteristics and drag forces. The results
show that drag force increases quadratically with speed, from
0.2091 N at 0.5 m/s to 12.9906 N at 10.0 m/s, but remains efficient
within typical campus operating speeds. FEA analysis under
vertical loads of 5–15 kg confirmed the structural strength of the
6061 aluminum frame: at the maximum 15 kg load, the peak stress
was only 3.207 MPa, well below the material's yield strength, with
a maximum deformation of 4.527 × 10⁻³ mm and a minimum
Factor of Safety (FOS) of 85.7, indicating the design is
overdesigned relative to its operational load. Future improvement
is recommended through frontal-shape optimization and selective
thickness reduction in low-stress regions to reduce overall weight
without compromising stability.
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