Shanmugavel Rajesh, Chinthakndi Narmada, Selvam Mayakannan, Madasamy Naganandhan, Shanmugakani Senthil Kumar, Nair Anish, Prakash Chander, Buddhi Dharam, Dixit Saurav
Department of Mechanical Engineering, Kalasalingam Academy of Research and Education, Krishnankoil 626126, India.
Department of Automobile Engineering, Kalasalingam Academy of Research and Education, Krishnankoil 626126, India.
Materials (Basel). 2022 Jun 28;15(13):4548. doi: 10.3390/ma15134548.
Several components are made from Al-Mg-based composites. MoS is used to increase the composite's machinability. Different weight percent (3, 4, and 5) of MoS are added as reinforcement to explore the machinability properties of Al-Mg-reinforced composites. The wire cut electrical discharge machining (WEDM) process is used to study the machinability characteristics of the fabricated Al-Mg-MoS composite. The machined surface's roughness and overcut under different process conditions are discussed. The evaluation-based distance from average solution (EDAS) method is used to identify the optimal setting to get the desired surface roughness and overcut. The following WEDM process parameters are taken to determine the impact of peak current, pulse on time, and gap voltage on surface roughness, and overcut. The WEDM tests were carried out on three different reinforced samples to determine the impact of reinforcement on surface roughness and overcut. The surface roughness and overcut increase as the reinforcement level increases, but the optimal parameters for all three composites are the same. According to EDAS analysis, I, Ton, and V are the best conditions. Furthermore, peak current and pulse on-time significantly influence surface roughness and overcut.
几种部件由铝镁基复合材料制成。二硫化钼用于提高复合材料的可加工性。添加不同重量百分比(3%、4%和5%)的二硫化钼作为增强材料,以探索铝镁增强复合材料的可加工性。采用电火花线切割加工(WEDM)工艺来研究制备的铝镁 - 二硫化钼复合材料的可加工性特征。讨论了不同工艺条件下加工表面的粗糙度和过切量。采用基于距离平均解的评价方法(EDAS)来确定获得所需表面粗糙度和过切量的最佳设置。选取以下电火花线切割加工工艺参数来确定峰值电流、脉冲导通时间和间隙电压对表面粗糙度和过切量的影响。对三种不同的增强样品进行电火花线切割加工试验,以确定增强材料对表面粗糙度和过切量的影响。随着增强材料含量的增加,表面粗糙度和过切量增大,但三种复合材料的最佳参数相同。根据EDAS分析,峰值电流(I)、脉冲导通时间(Ton)和间隙电压(V)为最佳条件。此外,峰值电流和脉冲导通时间对表面粗糙度和过切量有显著影响。