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Exploring Polymer-Based Additive Manufacturing for Cost-Effective Stamping Devices: A Feasibility Study with Finite
Cristian Giolu1, Cristina Pupăză1, Cătălin Gheorghe Amza1
1Faculty of Industrial Engineering and Robotics, National University of Science and Technology Politehnica Bucharest, 060042 Bucharest, Romania.
Polymers
|July 13, 2024
Summary
Manufacturing stamping devices with 3D printing (Material Extrusion Additive Manufacturing) shows promise for cost reduction. While ABS polymer devices face limitations, Nylon shows potential for thinner metal sheets, suggesting feasibility for prototyping.
Area of Science:
- Materials Science
- Manufacturing Engineering
- Mechanical Engineering
Background:
- Traditional metal stamping devices are costly and time-consuming to produce.
- Additive Manufacturing (AM) offers potential for rapid prototyping and cost reduction in manufacturing.
Purpose of the Study:
- To investigate the feasibility of using Material Extrusion (MEX) Additive Manufacturing (AM) for producing stamping devices.
- To evaluate the performance of polymer-based stamping devices using Finite Element Analysis (FEA).
Main Methods:
- Finite Element Analysis (FEA) was employed to simulate the performance of polymer stamping devices.
- The study analyzed devices made from Acrylonitrile Butadiene Styrene (ABS) and Nylon polymers.
- Performance was evaluated based on deformations and angular deviations when stamping metal sheets of varying thicknesses (up to 1 mm).
Main Results:
- ABS polymer devices operate near their material limits under compression, showing significant deviations (up to 1.4 mm and 4 degrees for 0.5 mm sheets).
- Nylon polymer devices demonstrated suitability for stamping thinner sheets (0.25 mm), outperforming ABS.
- ABS devices exhibited substantial angular deviations, reaching up to 45 degrees for 1 mm sheets.
Conclusions:
- MEX AM is a promising technology for the small-batch production and prototyping of stamping devices.
- Further material and mechanical optimization is necessary to minimize deformations and enhance the precision of polymer-based stamping devices.
- Nylon shows greater potential than ABS for applications involving thinner metal sheets.

