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2024 | OriginalPaper | Chapter

Thermomechanical Evaluation of Thermoplastics Injection Cycle Effects in Aluminium Moulds Using the Finite Element Method

Authors : Gimaézio Gomes Carvalho, Gabriel Vasconcellos Bayma, Márcio André Fernandes Martins, Cristiano Vasconcellos Ferreira, Valter Estevão Beal, Armando Sá Ribeiro Junior

Published in: ABCM Series on Mechanical Sciences and Engineering

Publisher: Springer Nature Switzerland

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Abstract

The chapter delves into the thermomechanical evaluation of thermoplastic injection cycles in aluminium moulds, comparing them with traditional steel moulds. It utilizes the Finite Element Method to simulate successive injection cycles, assessing temperature profiles, stress states, and parting line openings. The study reveals that while aluminium moulds offer superior thermal conductivity and faster cooling cycles, they may experience greater stresses and parting line openings compared to steel moulds. The research provides valuable insights into the potential benefits and challenges of using aluminium moulds in high-volume production, emphasizing the need for optimized processing parameters and mould design to harness aluminium's thermal advantages without compromising part quality.

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Metadata
Title
Thermomechanical Evaluation of Thermoplastics Injection Cycle Effects in Aluminium Moulds Using the Finite Element Method
Authors
Gimaézio Gomes Carvalho
Gabriel Vasconcellos Bayma
Márcio André Fernandes Martins
Cristiano Vasconcellos Ferreira
Valter Estevão Beal
Armando Sá Ribeiro Junior
Copyright Year
2024
DOI
https://doi.org/10.1007/978-3-031-43555-3_6

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