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Effect of cutting parameters and texture parameters on derivative cutting

delete2026-06-02
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PRE
AI
L
Liang Zhou
P
Ping Zou *
X
Xue Wang
Z
Zhehao Yao
DOI:10.1080/10426914.2026.2682776delete
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Abstract

Abstract

En 中文
Derivative cutting is the primary cause of textured tool failure, yet few have considered the importance of matching cutting parameters (cutting speed v, feed rate f, and cutting width w) and texture parameters (texture location ld, texture width wd, and texture spacing ws) to suppress it. Accordingly, two sets of experiments were carried out. First, the influence of texture parameters on cutting performance was examined; then, appropriate texture parameters were applied under various cutting conditions. Using the variable control method, the effect of matching cutting and texture parameters on suppressing derivative cutting was examined by means of shear angle, cutting temperature, metallographic change, chip morphology, derivative cutting, and tool wear. The results indicated that the cutting parameters v = 99 m/min, f = 0.12 mm/r, and w = 2 mm, along with the texture parameters ld = 200 μm, wd = 50 μm, and ws = 50 μm, were well matched. Under this matching condition, the maximum increase in shear angle reached 20.6%, while reductions in cutting temperature, metallographic thickness, and peeling width were 18.4%, 28.4%, and 53.2%, respectively.
Keywords:
Tool
texturing
turning
matching
performance

Journal

M
Materials and Manufacturing Processes
IF:
4.7
Papers:
4.6K
Citations:
9.3K

Organization

N
Northeastern University
Scholars:
2.3W
Papers: 1.5W
Citations: 3.0W
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