New Thermal Issues on the Modelling of Tool-Workpiece Interaction: Application to Dry Cutting of AISI 1045 Steel

Author:

Courbon Cédric1,Mabrouki Tarek2,Rech Joël1,Mazuyer Denis1,D'Eramo Enrico3

Affiliation:

1. University of Lyon

2. University of Lyon, LaMCoS, UMR CNRS/INSA-Lyon 5259

3. Ascometal - Creas

Abstract

The present work proposes to enhance the thermal interface denition in Finite Element (FE) simulations of machining. A user subroutine has been developed in Abaqus/Explicit © to implement a new experimentally-based heat partition model extracted from tribological tests. A 2D Arbitrary-Lagragian-Eulerian (ALE) approach is employed to simulate dry orthogonal cutting of AISI 1045 steel with coated carbide inserts. Simulation results are compared to experimental ones over a whole range of cutting speeds and feed rates in terms of average cutting forces, chip thickness, tool chip contact length and heat flux. This study emphasizes that heat transfer and temperature distribution in the cutting tool are drastically in uenced by the thermal formulation used at the interface. Consistency of the numerical results such as heat flux transmitted to the tool, peak temperature as well as hot spot location can be denitively improved.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Cited by 10 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Empirical Modelling of Temperature, Contact Length and Friction in Turning;Proceedings of the 2nd International Conference on Innovative Materials, Manufacturing, and Advanced Technologies;2023-09-13

2. An improved thermomechanical modeling for orthogonal cutting of AISI 1045 steel;Results in Engineering;2023-03

3. Numerical simulation of friction stir-assisted incremental forming with synchronous bonding of heterogeneous sheet metals;The International Journal of Advanced Manufacturing Technology;2020-01-02

4. Advances in material and friction data for modelling of metal machining;CIRP Annals;2017

5. Further insight into the chip formation of ferritic-pearlitic steels: Microstructural evolutions and associated thermo-mechanical loadings;International Journal of Machine Tools and Manufacture;2014-02

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