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Titlebook: ABCM Series on Mechanical Sciences and Engineering; 12th Brazilian Manuf Déborah de Oliveira,Maksym Ziberov,Alisson Rocha M Conference proc

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https://doi.org/10.1007/978-94-007-2733-5a Taylor Hobson profilometer. Micromilling was performed with the Minitech micromilling system with a maximum speed of 60,000 rpm. Mitsubishi’s (Al,Ti)N coated carbide tool, with a cutting diameter of 400 µm were used. The cutting parameters included a cutting speed of 12.6 m/min, feed per tooth of
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https://doi.org/10.1007/978-3-319-21506-8ing edge preparation affected only the feed force and surface roughness (lower feed force and roughness obtained using the tool with a chamfer 80 μm wide and angle of 30º). Regarding tool life, the commercial tool and the tool prepared with chamfer width of 80 μm and angle of 30º presented superior
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Numerical Acoustic Radiation Models,ling capacities of the base fluid. In this sense, this work aims to evaluate the influence of the type of base fluid and nanoparticles concentration on the surface integrity of SAE 52100 hardened steel after grinding with graphene-based nanofluids applied with the MQL technique. Two different base f
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Geometry Study on 410NiMo Alloy Parts Printed by WAAM-CMT,978-94-007-3907-9
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The Influence of Edge Preparation on the Performance of Ceramic Inserts Applied to Hard Turning,978-1-4471-4429-8
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The Influence of Base Fluid and Graphene Nanoparticles Concentration on Surface Integrity of SAE 52978-3-319-64125-6
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