TY - CONF
T1 - Design and fabrication of ultra-small micro end-mills for the machining of bone tissue
AU - Liang, Zhiqiang
AU - Li, Shidi
AU - Gao, Peng
AU - Zhou, Tianfeng
AU - Wang, Xibin
AU - Xie, Lijing
AU - Liu, Zhibing
AU - Jiao, Li
N1 - Publisher Copyright:
© ISAAT 2018 - 21st International Symposium on Advances in Abrasive Technology. All rights reserved.
PY - 2018
Y1 - 2018
N2 - Ultra-small micro end mills are widely used in micro-precision machining of medical bone tissue. However, there are still many challenges in the design and fabraction of ultra-small micro end-mills for biomedical. To improve the cutting performance of the micro end mills in micro machining of bone tissue, the optimization geometry design of the ultra-small micro end mills is studied. Three different shapes ultra-small micro end -mills (helical-type, Δ-type, and □-type) with the diameter of 50 μm are designed and manufactured by precision grinding. The strength and stiffness of the ultra-small micro end mills are analyzed by finite element analysis (FEA). The results show that the tool tip rigidity of the Δ-type and □-type is much higher than other helical-type micro end mills. The micro slot milling experiment on bone issue is carried out to compare their cutting performance. It is proposed that the Δ-type micro end mills can reduce the machining damage and improve the machining quality of bone tissue.
AB - Ultra-small micro end mills are widely used in micro-precision machining of medical bone tissue. However, there are still many challenges in the design and fabraction of ultra-small micro end-mills for biomedical. To improve the cutting performance of the micro end mills in micro machining of bone tissue, the optimization geometry design of the ultra-small micro end mills is studied. Three different shapes ultra-small micro end -mills (helical-type, Δ-type, and □-type) with the diameter of 50 μm are designed and manufactured by precision grinding. The strength and stiffness of the ultra-small micro end mills are analyzed by finite element analysis (FEA). The results show that the tool tip rigidity of the Δ-type and □-type is much higher than other helical-type micro end mills. The micro slot milling experiment on bone issue is carried out to compare their cutting performance. It is proposed that the Δ-type micro end mills can reduce the machining damage and improve the machining quality of bone tissue.
KW - Bone tissue
KW - Milling performance
KW - Tool design
KW - Ultra-small micro end mills
UR - http://www.scopus.com/inward/record.url?scp=85126498877&partnerID=8YFLogxK
M3 - Paper
AN - SCOPUS:85126498877
T2 - 21st International Symposium on Advances in Abrasive Technology, ISAAT 2018
Y2 - 14 October 2018 through 16 October 2018
ER -