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2025 | OriginalPaper | Chapter

Tool Life Simulation of Femoral Stem Hip Arthroplasty Hot Forging Dies

Authors : Dinny Harnany, Fahmi Mubarok, Felix Rajaim B. Munthe

Published in: Smart Innovation in Mechanical Engineering

Publisher: Springer Nature Singapore

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Abstract

This chapter presents a comprehensive simulation study on the tool life of hot forging dies used in the production of femoral stem hip arthroplasty components. The research focuses on the wear and deformation of dies during the forging process, utilizing ANSYS LS Dyna for simulation and the Archard Wear Equation for wear calculation. The study investigates the total deformation and maximum equivalent stress of the workpiece, providing critical insights into the critical areas during forging. The results reveal that smaller workpiece dimensions lead to higher tool life due to reduced flashing area and lower friction time. The chapter also emphasizes the importance of die closure tolerance as per ASTM A521 standards in determining the tool life of forging dies. By offering a detailed analysis of the forging process and the factors affecting tool life, this chapter provides valuable information for optimizing forging processes and extending the lifespan of forging dies.

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Metadata
Title
Tool Life Simulation of Femoral Stem Hip Arthroplasty Hot Forging Dies
Authors
Dinny Harnany
Fahmi Mubarok
Felix Rajaim B. Munthe
Copyright Year
2025
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-7898-0_2

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