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Study of cutting force and surface roughness in milling of Al/Sic metal matrix composites

机译:Al / Sic金属基复合材料铣削中切削力和表面粗糙度的研究

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In this experimental study, composite samples containing silicon are produced with powder metallurgy technique by sintering under argon atmosphere. The effect of cutting speeds, feed rates and different cutting tool types on cutting forces and surface roughness are investigated in the face milling operation of silicon carbide particle reinforced aluminium metal matrix composites. Machining operations are conducted using coated and uncoated tools. Main cutting force (Fx) and surface roughness (Ra) are measured for at four different cutting speeds (300, 350, 400 and 450 m/min) and three different feed rates (0.1, 0.15, 0.20 mm/tooth) and two depth of cut (0.5, 1 mm). As a result of experimental evaluation for coated and uncoated tools, main cutting force increased with increasing feed rate and depth of cut whereas, it is decreased significantly by higher cutting speed. On the other hand, Al-SiC produces the worst surface finish with increasing feed rate and depth of cut in the uncoated tools whereas, the surface roughness in the coated tools are decreased under the same cutting conditions. The best surface roughness is obtained with increasing cutting speed for both uncoated and coated tools.
机译:在该实验研究中,通过粉末冶金技术通过在氩气气氛下烧结来制备包含硅的复合样品。在碳化硅颗粒增强铝金属基复合材料的端面铣削操作中,研究了切削速度,进给速度和不同切削刀具类型对切削力和表面粗糙度的影响。机加工操作使用有涂层和无涂层的工具进行。在四种不同的切削速度(300、350、400和450 m / min)和三种不同的进给速度(0.1、0.15、0.20 mm /齿)和两种深度下测量主切削力(Fx)和表面粗糙度(Ra)切割(0.5,1毫米)。通过对涂层工具和非涂层工具进行实验评估的结果,主切削力随进给速度和切削深度的增加而增加,而切削速度越高,其主切削力就越大。另一方面,在未涂层的刀具中,随着进给速率和切削深度的增加,Al-SiC的表面光洁度最差,而在相同的切削条件下,涂层刀具的表面粗糙度会降低。对于未镀膜和镀膜的刀具,都可以通过提高切削速度获得最佳的表面粗糙度。

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