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Discussion of scraping depth and feeding rate performance of micro shaping
Conference paper   Peer reviewed

Discussion of scraping depth and feeding rate performance of micro shaping

Meng-Ju Lin and Rongshun Chen
Solid State Phenomena, Vol.311 SSP, pp.80-87
2020

Abstract

Micro channel Micro shaper Scraping Tool path planning Atomic and Molecular Physics and Optics Materials Science (all) Condensed Matter Physics
A novel micromachining technology is investigated in this work. Precision machining of micrometer sizes can be achieved by a tool scraping on CNC machine. The knife for scraping with small knife nose with radius of fifty micrometer can scrape surfaces of designed function by path planning of CNC machine. To investigate performance, micro channels are scraped on workpieces by micro shaping. For tool path planning, feeding rate and scraping depth have significant effect on machining performance and depth-to-width ratio. Poly-methyl methacrylate (PMMA) and aluminum alloy are materials for scraping. From the results of experiments, aluminum alloy has better machining performance and smoother scraping surface than PMMA. Smaller scraping depth would induce better performance and size precision. For feeding rate, 800 mm/min is better for PMMA and 500 mm/min is better for aluminum alloy.

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