Tool Run-Out in Micro-Milling: Development of an Analytical Model Based on Cutting Force Signal Analysis

Author:

Abeni Andrea1ORCID,Cappellini Cristian2ORCID,Seneci Greta1,Del Prete Antonio3ORCID,Attanasio Aldo1ORCID

Affiliation:

1. Dipartimento di Ingegneria Meccanica ed Industriale, Università degli Studi di Brescia, via Branze, 38, 25123 Brescia (BS), Italy

2. Dipartimento di Ingegneria Gestionale, dell'Informazione e della Produzione, Università degli Studi di Bergamo, via Pasubio, 7/b, 24044 Dalmine (BG), Italy

3. Dipartimento di Ingegneria dell’Innovazione, Università del Salento, Complesso Ecotekne–edificio “Corpo O”, Via per Monteroni, 73100 Lecce (LE), Italy

Abstract

Micro-machining is a widespread finishing process for fabricating accurate parts as biomedical devices. The continuous effort in reducing the gap between the micro- and macro-domains is connected to the transition from conventional to micro-scale machining. This process generates several undesired issues, which complicate the process’s optimization, and tool run-out is one of the most difficult phenomena to experimentally investigate. This work focuses on its analytical description; in particular, a new method to calibrate the model parameters based on cutting force signal elaboration is described. Today, run-out prevision requires time-consuming geometrical measurements, and the main aim of our innovative model is to make the analysis completely free from dimensional measurements. The procedure was tested on data extrapolated from the micro-machining of additively manufactured AlSi10Mg specimens. The strategy appears promising because it is built on a strong mathematical basis, and it may be developed in further studies.

Funder

European Union

Publisher

MDPI AG

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