Effects of Sn and Bi addition on cutting performance of Al-Mg-Si alloy were investigated by comparing the chipping shape
surface roughness and tangle cutter condition in process of cutting of three kinds of Al-Mg-Si-(Sn
Bi) alloys. The existing forms of Sn and Bi in the Al-Mg-Si alloys were observed to understand their ralein cutting performance of alloy by XRD (X-ray diffraction) and SEM (scanning electron microscope). The results reveal that formed Mg2Sn
Mg3Bi or Sn phase in Al-Mg-Si alloy can result in the brittle crack of chip as a result of softening during high speed cutting process
while they can form cavity or crack to result in chip fracture due to deformed rate different from matrix during low velocity cutting process
improving the cutting performance of the alloy. In addition
cutting performance of Al-Mg-Si alloy with mixed Sn and Bi addition is superior to that of ones with only Sn or Bi addition.
关键词
易切削铝合金Al-Mg-Si合金切削性能
Keywords
Free-cutting Al AlloyAl-Mg-Si AlloyCutting Performance
State Key Laboratory of Materials Processing and Die & Mould Technology, School of Materials Science and Engineering, Huazhong University of Science and Technology
Northeastern University
成都理工大学四川大学
四川大学
Chengdu University of Science and Technology,Chengdu,China) Zhang Xianju Li Wei Shen Baoluo Tu Mingjing