Assessment of cutting forces and hole quality in drilling Al2024 aluminium alloy: experimental and finite element study

被引:78
作者
Giasin, Khaled [1 ]
Hodzic, Alma [1 ]
Phadnis, Vaibhav [1 ]
Ayvar-Soberanis, Sabino [1 ]
机构
[1] Univ Sheffield, Sheffield, S Yorkshire, England
关键词
Drilling; Al2024; Burr formation; Surface roughness; Hardness; Finite element analysis; BURR FORMATION; CHIP MORPHOLOGY; TOOL EDGE; OPTIMIZATION; TITANIUM; PREDICTION; PARAMETERS; SIMULATION;
D O I
10.1007/s00170-016-8563-y
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Machining experiments were conducted to evaluate the impact of cutting parameters on the hole quality and cutting forces in drilling Al2024-T3 aerospace alloy. Al2024-T3 specimen were drilled using I broken vertical bar 6-mm TiAlN-coated carbide twist drills under dry cutting conditions. The hole quality was inspected in terms of its surface roughness, burr and chip formations, hole size, circularity error and post-machining microhardness of the subsurface of the holes. An analysis of variance (ANOVA) was carried out to determine the percentage contribution of cutting parameters on cutting forces and the inspected hole quality parameters. A three-dimensional (3D) finite element (FE) model of drilling Al2024-T3 is developed using Abaqus/Explicit to predict thrust force and torque. The FE model was validated using experimental results and found to be in good agreement. The results of the study showed that the cutting parameters have a significant impact on cutting forces and inspected hole quality parameters. Drilling at feed rates of 100 and 300 mm/min and spindle speeds of 1000, 3000, and 6000 rpm are recommended for producing holes with smaller surface roughness, deviation from nominal hole size, circularity error and burrs.
引用
收藏
页码:2041 / 2061
页数:21
相关论文
共 53 条
[1]   Burr formation and hole quality when drilling titanium and aluminium alloys [J].
Abdelhafeez, A. M. ;
Soo, S. L. ;
Aspinwall, D. K. ;
Dowson, A. ;
Arnold, D. .
CIRPE 2015 - UNDERSTANDING THE LIFE CYCLE IMPLICATIONS OF MANUFACTURING, 2015, 37 :230-235
[2]   Experimental investigation of transverse vibration-assisted orthogonal cutting of AL-2024 [J].
Adnan, Ahmed Syed ;
Subbiah, Sathyan .
INTERNATIONAL JOURNAL OF MACHINE TOOLS & MANUFACTURE, 2010, 50 (03) :294-302
[3]  
Akram S, NUMERICAL INVESTIGAT
[4]   Vibration Drilling of Al2024-T6 [J].
Amini, S. ;
Paktinat, H. ;
Barani, A. ;
Tehran, A. Fadaei .
MATERIALS AND MANUFACTURING PROCESSES, 2013, 28 (04) :476-480
[5]  
[Anonymous], 2013, VERSION A 6 13 DOCUM
[6]   Dry cutting study of an aluminium alloy (A2024-T351): a numerical and experimental approach [J].
Asad, M. ;
Girardin, F. ;
Mabrouki, T. ;
Rigal, J-F. .
INTERNATIONAL JOURNAL OF MATERIAL FORMING, 2008, 1 (Suppl 1) :499-502
[7]   Built-up edge investigation in vibration drilling of Al2024-T6 [J].
Barani, A. ;
Amini, S. ;
Paktinat, H. ;
Tehrani, A. Fadaei .
ULTRASONICS, 2014, 54 (05) :1300-1310
[8]   Chip morphology and hole surface texture in the drilling of cast aluminum alloys [J].
Batzer, SA ;
Haan, DM ;
Rao, PD ;
Olson, WW ;
Sutherland, JW .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 1998, 79 (1-3) :72-78
[9]  
Cakir A., 2015, INT J ADV MANUF TECH, P1
[10]   Prediction of the cutting temperatures of stainless steel with chamfered main cutting edge tools [J].
Chang, Chung-Shin .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2007, 190 (1-3) :332-341