Pervaiz Salman, Kannan Sathish, Subramaniam Abhishek
Department of Mechanical and Industrial Engineering, Rochester Institute of Technology-Dubai Campus, Dubai 341055, UAE.
Department of Mechanical Engineering, American University of Sharjah, Sharjah 26666, UAE.
Materials (Basel). 2020 Sep 9;13(18):3995. doi: 10.3390/ma13183995.
Nickel-based superalloys are famous in the demanding applications. Inconel 718 is one of the most commonly used nickel-based superalloys due to its extraordinary inherent properties. Inconel 718 is a suitable material for high temperature applications due to the properties such as anti-oxidization, high hot hardness, high creep, and fatigue strength. Drilling operation is one of the most widely used manufacturing operations in almost all industrial sectors. However, drilling operation is very complex in nature due to the presence of intricate geometry of the drill bit. In conventional drilling, cutting is performed by the combined action of the chisel edge and the two or more cutting lips. In depth analysis of the cutting process shows that chisel edge starts with an indentation at the center of the twist drill. Then away from the center, chisel edge performs orthogonal cutting with negative rake angle. Whereas, cutting action at the cutting lip is oblique in nature, and force analysis involves the use of element formulation due to involvement of radius. It is rarely found in the literature where drilling operation at different inclination angles is conducted and analyzed. The presented study numerically investigates the cutting performance of drilling operation, when operated at different inclination angles. The study revealed cutting force variation at different inclination angles due to the different tool workpiece engagement for each inclination. The magnitude of thrust force increased when inclination angle is changed from 30° to 60°. It can be linked with the higher chip load initially in this case as compared to the 30° inclination angle. The cutting temperature was affected by spindle speed (53.7%), followed by feed rate (33.31%) and inclination angle (3.44%).
镍基高温合金在苛刻的应用领域中颇负盛名。因科镍合金718是最常用的镍基高温合金之一,因其具有非凡的固有特性。因科镍合金718由于具有抗氧化、高热硬度、高蠕变和疲劳强度等特性,是高温应用的合适材料。钻孔操作是几乎所有工业部门中使用最广泛的制造操作之一。然而,由于钻头复杂的几何形状,钻孔操作本质上非常复杂。在传统钻孔中,切削是由横刃和两个或更多切削刃的联合作用完成的。对切削过程的深入分析表明,横刃从麻花钻中心的压痕开始。然后远离中心,横刃以负前角进行正交切削。而切削刃处的切削作用本质上是倾斜的,由于半径的参与,力分析涉及单元公式的使用。在文献中很少发现对不同倾斜角度的钻孔操作进行研究和分析。本研究通过数值模拟研究了不同倾斜角度下钻孔操作的切削性能。研究表明,由于每个倾斜角度下刀具与工件的接触情况不同,切削力在不同倾斜角度下会发生变化。当倾斜角度从30°变为60°时,轴向力的大小增加。这可能与在这种情况下初始时比30°倾斜角度更高的切屑载荷有关。切削温度受主轴转速(53.7%)的影响最大,其次是进给速度(33.31%)和倾斜角度(3.44%)。