Elsevier

Materials & Design

Volume 195, October 2020, 109062
Materials & Design

Investigating the performance of 410, PH13-8Mo and 300M steels in a turning process with a focus on surface finish

https://doi.org/10.1016/j.matdes.2020.109062Get rights and content
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Highlights

  • Hardened engineering steels were investigated in finish turning. A turned surface roughness below 0.4 μm Ra could be consistently achieved.

  • A method was developed to screen in a relatively simple way for more effective machining parameters.

  • A generalised recommendation for good quality was a surface speed of at least 120 m/min and 0.088 mm/rev feed rate.

Abstract

This study generated novel behavioural data for three engineering steels undergoing a turning process. The materials were hardened 410, PH13-8Mo and 300M, two stainless steels and one high strength steel respectively. A primary aim was obtaining low machined surface roughness. A surface finish investigation compared tool geometries and tool materials. Multi-response cutting parameter screening was undertaken using a novel trade study and iteration method, where the calculated cut quality was used to identify better feed rates and surface speeds. In addition the sub-surface machined microstructure was examined.

Tools with a small nose radius produced the roughest surfaces. A surface roughness below 0.4 μm Ra could be consistently achieved on all three materials using rhombic wiper inserts and a feed rate up to 0.1 mm/rev. PH13-8Mo had the lowest machined surface roughness, as low as 0.11 μm in terms of Ra. In the parameter screening stage a generalised recommendation for good cut quality was a surface speed of at least 120 m/min and a feed rate of 0.088 mm/rev. The microstructure examination showed that for all materials under the conditions tested, there was no evidence of white amorphous layer formation and there was grain deformation for the 410 material only.

Keywords

Hardened steels
Turning
Surface finish
Machinability

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