Examining the effect of the die angle on tool load and wear in the extrusion process

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Abstract

The tool durability is a crucial factor in each manufacturing process, and this also includes the extrusion process. Striving to achieve the higher product quality should be accompanied by a long-term tool life and production cost reduction. This article presents the comparative research of load and wear of die at various angles of working cone during the concurrent extrusion. The numerical calculations of a tool load during the concurrent extrusion were performed using the MSC MARC software using the finite element method (FEM). Archard model was used to determine and compare die wear. This model was implemented in the software using the FEM. The examined tool deformations and stress distribution were determined based on the performed analyses. The die wear depth at various working cone angles was determined. Properly shaped die has an effect on the extruded material properties, but also controls loads, elastic deformation, and the tool life. © 2014 The Author(s).

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Nowotyńska, I., & Kut, S. (2014). Examining the effect of the die angle on tool load and wear in the extrusion process. Journal of Materials Engineering and Performance, 23(4), 1307–1312. https://doi.org/10.1007/s11665-014-0872-4

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