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Effect of parameters on grinding forces and energy while grinding Al (A356)/SiC composites

机译:Al(A356)/ SiC复合材料磨削时参数对磨削力和能量的影响

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Grinding processes require a high energy input per unit volume of material removed, which is converted to heat at the grinding zone, resulting in increased force and wear. In the present study, the influence of grinding parameters like work speed and depth of cut on grinding forces and energy was studied. An attempt has been made to study the forces and energy involved while grinding aluminium alloy (A356)/silicon carbide (SiC) composite material with different grinding wheels. Experiments were carried out on a surface grinding machine. Three different types of wheels like SiC, cubic boron nitride (CBN) and diamond wheels were used. The grinding forces increased with increase in depth of cut and work speed. SiC exhibited high grinding force compared to the CBN wheel. In the case of the diamond wheel, it was even less. The specific grinding energy was highest for the diamond wheel followed by CBN and SiC wheels. The specific grinding energy decreased with increase in depth of cut and work speed.
机译:研磨过程需要每单位体积去除的材料输入大量能量,该能量在研磨区域转化为热量,从而导致力和磨损增加。在本研究中,研究了诸如工作速度和切削深度的磨削参数对磨削力和能量的影响。已经尝试研究在用不同的砂轮磨削铝合金(A356)/碳化硅(SiC)复合材料时涉及的力和能量。实验是在平面磨床上进行的。使用了三种不同类型的砂轮,例如SiC砂轮,立方氮化硼(CBN)和金刚石砂轮。磨削力随着切削深度和工作速度的增加而增加。与CBN砂轮相比,SiC表现出较高的磨削力。就金刚石砂轮而言,甚至更少。金刚石砂轮的比磨削能量最高,其次是CBN和SiC砂轮。比切削能随着切削深度和工作速度的增加而降低。

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