TY - JOUR
T1 - Development of a VCM-driven micro-impact process technology
AU - Lin, Po An
AU - Chen, Shun Tong
N1 - Publisher Copyright:
© 2025 Taylor & Francis Group, LLC.
PY - 2025
Y1 - 2025
N2 - To help overcome the difficulty associated with the efficient production of large-in-number micro-pit arrays, a voice coil motor driven (VCM-driven) high-frequency micro-impact process is proposed in this study. Recovery, compression and cushioning forces needed for the impact system are provided by in-series dual-compression springs incorporated into the proposed design. Within each impact cycle, the impact shaft returns extremely quickly to its home position allowing for no loss in power transmission. Experiments show that an array of 2,300 compact, regular and highly consistent honeycomb-like micro-pits can be created in just 15.3 s with outstanding efficiency at an impact frequency of 150 Hz, spring stiffness of 1.04 N/mm, and feed-rate of 22.5 mm/s. The surface roughness of the tank-walls created are suitable for possible cell culturing. The success of the proposed process as an alternative to current conventional methods of great-in-number micro-pit array manufacturing has great commercial potential.
AB - To help overcome the difficulty associated with the efficient production of large-in-number micro-pit arrays, a voice coil motor driven (VCM-driven) high-frequency micro-impact process is proposed in this study. Recovery, compression and cushioning forces needed for the impact system are provided by in-series dual-compression springs incorporated into the proposed design. Within each impact cycle, the impact shaft returns extremely quickly to its home position allowing for no loss in power transmission. Experiments show that an array of 2,300 compact, regular and highly consistent honeycomb-like micro-pits can be created in just 15.3 s with outstanding efficiency at an impact frequency of 150 Hz, spring stiffness of 1.04 N/mm, and feed-rate of 22.5 mm/s. The surface roughness of the tank-walls created are suitable for possible cell culturing. The success of the proposed process as an alternative to current conventional methods of great-in-number micro-pit array manufacturing has great commercial potential.
KW - VCM-driven
KW - dual-compression springs
KW - micro-impact process
KW - micro-pit array
UR - https://www.scopus.com/pages/publications/105001290992
UR - https://www.scopus.com/pages/publications/105001290992#tab=citedBy
U2 - 10.1080/10426914.2025.2469521
DO - 10.1080/10426914.2025.2469521
M3 - Article
AN - SCOPUS:105001290992
SN - 1042-6914
VL - 40
SP - 784
EP - 795
JO - Materials and Manufacturing Processes
JF - Materials and Manufacturing Processes
IS - 6
ER -