Cutting Force and Surface Roughness during Straight-Tooth Milling of Walnut Wood

Author:

Jiang Shangsong,Buck Dietrich,Tang Qi,Guan Jun,Wu Zhanwen,Guo Xiaolei,Zhu ZhaolongORCID,Wang Xiaodong

Abstract

Walnut (Juglans regia L.) is widely used in wood furnishings, and machinability is a key factor for improving product quality and enterprise benefits. This work focused on the influence of the rake angle, depth of cut, and cutting speed on the cutting force and machined surface roughness during the straight-tooth milling of walnut. On the basis of the experimental findings, a mathematical model was created using a response surface methodology to determine the relationship between the cutting force and the cutting conditions, as well as the relationship between the surface roughness and the cutting conditions. Variance analysis was used to study the significant contributions of the interactions of various factors and two-level interactions to the cutting force and surface roughness. The optimized combination of milling conditions, resulting in lowest cutting force and surface roughness, was determined to be a rake angle of 5°, a depth of cut of 0.6 mm, and a cutting speed of 45 m/s.

Funder

National Natural Science Foundation of China

Natural Science Foundation of the Jiangsu Higher Education Institutions of China

the Self-Made Experimental and Teaching Instruments of Nanjing Forestry University

Technology Innovation Alliance of Wood/Bamboo Industry

Qing Lan Project

International Cooperation Joint Laboratory

Publisher

MDPI AG

Subject

Forestry

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