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Published in: European Journal of Wood and Wood Products 1/2023

13-08-2022 | Original Article

Influence mechanism of tool cutting geometry on chip formation in experimentally simulating wood sanding

Authors: Jian Zhang, Bin Luo, Li Li, Hongguang Liu

Published in: European Journal of Wood and Wood Products | Issue 1/2023

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Abstract

The material removal in wood sanding is associated with the chip formation and flow, which is directly influenced by grits cutting geometries. Hence, typical single grits with conical, triangular pyramid (3 M) and pentagonal pyramid (5 M) cutting geometries were selected to experimentally simulate wood sanding on sugar maple wood (Acer saccharum). The results of dynamic chip formation showed that only 3 M geometry produced discernable continuous chips. Combined with the scratch morphology and the cutting force ratio, more cutting actions occurred for 3 M geometry, while the conical and 5 M geometry induced material compression and better surface quality. According to the established force model and the result of specific energy, the work done by tangential cutting force Ft to compress and densify wood material by the conical and 5 M geometry was similar and even larger than the work done by Ft to make debris caused by the 3 M geometry. Besides, less oscillation of Ft suggested that the 5 M geometry performed more stable negative-rake cutting. It can be concluded that the grit cutting geometry has a notable effect on the chip formation, surface quality and energy dissipation.

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Literature
Metadata
Title
Influence mechanism of tool cutting geometry on chip formation in experimentally simulating wood sanding
Authors
Jian Zhang
Bin Luo
Li Li
Hongguang Liu
Publication date
13-08-2022
Publisher
Springer Berlin Heidelberg
Published in
European Journal of Wood and Wood Products / Issue 1/2023
Print ISSN: 0018-3768
Electronic ISSN: 1436-736X
DOI
https://doi.org/10.1007/s00107-022-01869-5

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