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Cutting Forces during Orthogonal Machining Process of AISI 1018 Steel: Numerical and Experimental Modeling

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TLDR
In this article, the causes of machining parameters like cutting speed, depth of cut (DOC) and feed on the cutting forces are analyzed using numerical model in the Finite Element code ABAQUS/Explicit.
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This article is published in Materials Today: Proceedings.The article was published on 2017-01-01. It has received 7 citations till now. The article focuses on the topics: Machining & Numerical control.

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Cutting Forces Assessment in CNC Machining Processes: A Critical Review.

TL;DR: This paper aims to give a review of the different techniques and devices for measuring the forces developed for machining processes, allowing a quick perception of the advantages and limitations of each technique, through the literature research carried out, using recently published works.
Journal ArticleDOI

Accessing the cutting forces in machining processes: An overview

TL;DR: In this paper, an overview of the different techniques and devices for measuring the forces developed in machining processes, allowing a quick perception of the advantages and limitations of each technique, through a literature research carried out using recently published works.
Journal ArticleDOI

A Machining Program Employing a Slip Line Field Modelling Technique Over Other Constitutive Models

TL;DR: In this article, a slip line model is used to simulate the slip line line of a tool-chip interface and a slip-up-edge model is proposed. KEywORdS Build-Up-Edge, Chip, Constitutive Models, Machining, Shear Zone, Slip Line Model, Tool-Chip Interface
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Investigations on the Wear Performance of Coated Tools in Machining UNS S32101 Duplex Stainless Steel

TL;DR: In this paper , the impact of feed rate and cutting length variations on the milling tools wear and their performance was evaluated and a comparison of all the tested tools was made, determining that the TiAlSiN-coated tools produced highly satisfactory results, especially in terms of sustained flank wear.
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Cutting temperature prediction in high speed machining by numerical modelling of chip formation and its dependence with crater wear

TL;DR: In this article, a finite element model using the AbaqusTM code is conducted to predict the interface cutting temperature and its dependence with the crater wear mechanism for high speed machining above 20m/s.
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Optimization of Material Removal Rate During Turning of SAE 1020 Material in CNC Lathe using Taguchi Technique

TL;DR: In this paper, the authors employed the Taguchi method with L25 (5^3) Orthogonal Array for three parameters namely Speed, Feed and Depth of cut to increase the material removal rate.
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