Influence of cutting parameters, tool coatings and friction on the process heat in cutting processes and phase transformations in workpiece surface layers∗

Author:

Schulze V.1,Michna J.1,Zanger F.1,Faltin C.2,Maas U.2,Schneider J.3

Affiliation:

1. Karlsruhe Institute of Technology (KIT), wbk Institute of Production Science, Karlsruhe

2. Karlsruhe Institute of Technology (KIT), Institute of Technical Thermodynamics, Karlsruhe

3. Karlsruhe Institute of Technology (KIT), Institute of Applied Materials – Reliability of Components and Systems (IAM-ZBS), Karlsruhe

Abstract

Abstract The surface states and thus the functionality of machined workpieces are influenced by parameters of the process and the cutting tool. Depending on these variables different mechanical and thermal loads lead to changing characteristics of components. This paper presents a 2D-FE-cutting simulation model predicting machining induced phase transformations of workpiece surface layers for the steel 42CrMo4 (AISI 4140) considering detailed friction modeling between tool and workpiece, based on tribological experiments. The cutting simulation model was developed using the commercial software ABAQUS. Friction and phase transformations are implemented using specific user subroutines. The model calculates the process of austenization and the transformed volume fraction of the phases ferrite/perlite, bainite and martensite. Additional thermo dynamical simulations of the heat transfer using the code INSFLA are performed. The simulated temperatures, cutting forces and phase transformations are compared to orthogonal cutting experiments.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,Metals and Alloys,Industrial and Manufacturing Engineering

Reference29 articles.

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