Alessandro Rodrigues
Sao Paulo State University
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Featured researches published by Alessandro Rodrigues.
Journal of The Brazilian Society of Mechanical Sciences and Engineering | 2007
Alessandro Rodrigues; Reginaldo Teixeira Coelho
This paper presents specific cutting energy measurements as a function of the cutting speed and tool cutting edge geometry. The experimental work was carried out on a vertical CNC machining center with 7,500 rpm spindle rotation and 7.5 kW power. Hardened steels ASTM H13 (50 HRC) were machined at conventional cutting speed and high-speed cutting (HSC). TiN coated carbides with seven different geometries of chip breaker were applied on dry tests. A special milling tool holder with only one cutting edge was developed and the machining forces needed to calculate the specific cutting energy were recorded using a piezoelectric 4-component dynamometer. Workpiece roughness and chip formation process were also evaluated. The results showed that the specific cutting energy decreased 15.5% when cutting speed was increased up to 700%. An increase of 1o in tool chip breaker chamfer angle lead to a reduction in the specific cutting energy about 13.7% and 28.6% when machining at HSC and conventional cutting speed respectively. Furthermore the workpiece roughness values evaluated in all test conditions were very low, closer to those of typical grinding operations (~0.20 mm). Probable adiabatic shear occurred on chip segmentation at HSC.
Journal of The Brazilian Society of Mechanical Sciences and Engineering | 2010
Alessandro Rodrigues; Hidekasu Matsumoto; Wyser José Yamakami; Rafael Gustavo da R. Paulo; Cleiton Lazaro Fazolo de Assis
This paper presents a study on the influence of milling condition on workpiece surface integrity focusing on hardness and roughness. The experimental work was carried out on a CNC machining center considering roughing and finishing operations. A 25 mm diameter endmill with two cemented carbide inserts coated with TiN layer were used for end milling operation. Low carbon alloyed steel Cr-Mo forged at 1200 oC was used as workpiece on the tests. Two kinds of workpiece conditions were considered, i.e. air cooled after hot forging and normalized at 950 oC for 2 h. The results showed that finishing operation was able to significantly decrease the roughness by at least 46% without changing the hardness. On the other hand, roughing operation caused an increase in hardness statistically significant by about 6%. The machined surface presented deformed regions within feed marks, which directly affected the roughness. Surface finish behavior seems to correlate to the chip ratio given the decrease of 25% for roughing condition, which damaged the chip formation. The material removal rate for finishing operation 41% greater than roughing condition demonstrated to be favorable to the heat dissipation and minimized the effect on material hardness.
International Conference on Advances In Materials and Processing Technologies, Pts One and Two | 2011
Alessandro Rodrigues; Hidekasu Matsumoto; Wyser José Yamakami; Ruís Camargo Tokimatsu; Miguel Ângelo Menezes; Daniel Iwao Suyama; Adriana Norcino; Saimon Vendrame
This work measured the effect of milling parameters on the surface integrity of low‐carbon alloy steel. The Variance Analysis showed that only depth of cut did not influence on the workpiece roughness and the Pearson’s Coefficient indicated that cutting speed was more influent than tool feed. All cutting parameters introduced tensile residual stress in workpiece surface. The chip formation mechanism depended specially on cutting speed and influenced on the roughness and residual stress of workpiece.
Journal of Materials Processing Technology | 2008
Lincoln Cardoso Brandão; Reginaldo Teixeira Coelho; Alessandro Rodrigues
Journal of The Brazilian Society of Mechanical Sciences and Engineering | 2013
Sabrina Bodziak; Adriano Fagali de Souza; Alessandro Rodrigues; Anselmo Eduardo Diniz; Reginaldo Teixeira Coelho
Congresso Brasileiro de Engenharia de Fabricação | 2017
Eli Cruz Junior; Hidekasu Matsumoto; Alessandro Rodrigues
Congresso Brasileiro de Engenharia de Fabricação | 2017
Wyser José Yamakami; Brubeyk Nascimento; Menezes Miguel; Hidekasu Matsumoto; Alessandro Rodrigues
Congresso Brasileiro de Engenharia de Fabricação | 2017
Rodolfo Da Silva Manera; Alessandro Rodrigues; Hidekasu Matsumoto; Juno Gallego
Congresso Brasileiro de Engenharia de Fabricação | 2017
Daniel Secco; Alessandro Rodrigues; Hidekasu Matsumoto
Congresso Brasileiro de Engenharia de Fabricação | 2017
Alessandro Rodrigues; Suzana Regina da Silva Moreira; Fernando Brandão de Oliveira; Wyser José Yamakami; Hidekasu Matsumoto