Dimitrios Skarvelakis, Georgios E. Stavroulakis
The complexity of an extrusion die profile is determined by its geometry. Various metrics such as the complexity index, shape factor, and form factor are used to quantify how geometric intricacy affects production costs, die life, energy consumption, product quality, and overall manufacturability. Bearing geometry plays a critical role in controlling metal flow and tool life in aluminum extrusion. In this study, a simulation-based investigation is performed to investigate the influence of bearing geometry on extrusion behavior using the finite element method. Two extrusion dies are examined: A single-cavity die with uniform bearing geometry and a dual-cavity die with controlled bearing geometry modification in one cavity. The results show that the bearing modification in the dual-cavity die causes severe flow imbalance, with exit velocity deviations. This imbalance leads to localized pressure amplification, increased thermal gradients, and stress concentration in critical die regions. In contrast, the single-cavity die, due to its simple geometry, exhibits uniform flow, stable pressure evolution, and low tool stress. These findings demonstrate the high sensitivity of multi-cavity extrusion dies to bearing geometry and highlight the importance of simulation-driven die design for achieving balanced flow and improved tool performance.
@article{21c71bf6-9d77-44b4-8e23-7a6d4b5cc07e,
title={Aluminum Extrusion Simulation Using Finite Elements},
author={Dimitrios Skarvelakis and Georgios E. Stavroulakis},
year={2026},
language={English}
}TY - JOUR TI - Aluminum Extrusion Simulation Using Finite Elements AU - Dimitrios Skarvelakis AU - Georgios E. Stavroulakis PY - 2026 LA - English ER -
Bobur Gayratov, Bekhzod Gayratov
Copper smelter slag represents a significant secondary resource of critical metals, while flotation tailings serve as an abundant sulfur-bearing waste
Kun Wang, Feng Hu
The tensile properties and work-hardening behavior of austempered bainitic steels below martensite start temperature (Ms) were investigated and compar
Wei Jiang, Dong Wu
Martensitic stainless steels (MSSs) have been widely used in the manufacture of turbine blades, surgical instruments, and cutting tools because of the
Muhammad Mohsin, Stefano Rovetta
The rapid advancement of technology has led to a substantial increase in Waste Electrical and Electronic Equipment (WEEE), which poses significant env
Md Kaviul Islam, Anirudha Karati
The printed circuit board (PCB), a central component of most electronic devices, represents a significant fraction of the electronic product waste str
Muhammad R. R. Fatih, Hou-Jen Chen
Martensitic stainless steel (MSS) is widely used in several parts of automobiles where high strength, hardness, and corrosion resistance are required.