2019
DOI: 10.1016/j.jclepro.2018.09.150
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Tuning nanofluids for improved lubrication performance in turning biomedical grade titanium alloy

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Cited by 92 publications
(25 citation statements)
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“…The use of nanofluids facilitated the formation of fragments of continuous chips with a smaller radius of curling thanks to the reduction of the temperature gradient. This was confirmed in [18], where dry machining of Ti6AL4V resulted in a high frequency of chip breaking, and the use of nanoliquids facilitated the creation of semi-continuous and less coiled chips.…”
Section: Introductionmentioning
confidence: 73%
“…The use of nanofluids facilitated the formation of fragments of continuous chips with a smaller radius of curling thanks to the reduction of the temperature gradient. This was confirmed in [18], where dry machining of Ti6AL4V resulted in a high frequency of chip breaking, and the use of nanoliquids facilitated the creation of semi-continuous and less coiled chips.…”
Section: Introductionmentioning
confidence: 73%
“…This paves a way in generating uneven roughness profile on the work material ( Fig. 5) [18]. The roughness contour produced with dry condition with test number 14 (Table 4) reaches 2.1 µm as shown in Fig.…”
Section: Surface Roughnessmentioning
confidence: 84%
“…Hence, the surface roughness of the work material has to be reduced. The surface roughness considered for the study is average surface roughness (Ra) which is widely used [18,50,51]. The initial trial selected is test number 14 with poor value of net outrank flow (Table 6) as A2Vc2f2d3 indicating A2 = dry cutting, Vc2 = 1000 m/ min, f2 = 0.08 mm/min and d3 = 1.5 mm.…”
Section: Surface Roughnessmentioning
confidence: 99%
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