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Adriano Fagali de Souza

Researcher at Universidade Federal de Santa Catarina

Publications -  32
Citations -  735

Adriano Fagali de Souza is an academic researcher from Universidade Federal de Santa Catarina. The author has contributed to research in topics: Machining & Surface roughness. The author has an hindex of 11, co-authored 28 publications receiving 562 citations.

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Size effect and minimum chip thickness in micromilling

TL;DR: In this paper, the authors compared the size effect behavior in micro-and macromilling by applying Analysis of Variance on the specific cutting force (kc) and relating it with the tool edge radius (re), workpiece roughness (Ra), cutting force and chip formation when cutting slots in AISI 1045 steel.

A cultura da batata-doce.

TL;DR: In this article, the authors discuss the role of the soqueira in the preparation of a solo plantio and its role in the production of colheita and colheitas.
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Effect of laser speed, layer thickness, and part position on the mechanical properties of maraging 300 parts manufactured by selective laser melting

TL;DR: In this article, the effect of adjusting the process parameters on the microstructure and properties of maraging steel 300 parts built by selective laser melting technology has been studied, and a simple analysis of the manufacturing time as a function of the SLM parameters was also performed.
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Mechanistic approach to predict real machining time for milling free-form geometries applying high feed rate

TL;DR: In this article, a machine response time (MRT) variable is used to characterize the real CNC machine's capacity to move in high feed rates in free-form geometries.
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Evaluating the Roughness According to the Tool Path Strategy When Milling Free Form Surfaces for Mold Application

TL;DR: In this article, the authors investigate different tool path strategies for milling a mold cavity during finishing operation and show that the tool path strategy has a great influence on the real milling time, surface roughness and hand finishing time and also show that traditional roughness parameters are not adequate to measure the roughness in such applications.